-
1 скорость
speed
в механике - одна из основных характеристик движения материальной точки. — rate of motion. speed and velocity are often used interchangeably although some authorities maintain that velocity should be used only for the vector quantity.
- (вектор) (рис.124) — velocity (vel)
величина скорости в данном направлении, — а vector quantity equal to speed in a given direction.
- (темп изменения величины) — rate
- аварийного слива топлива (в воздухе) — fuel dumping /jettison/ rate. jettison rate for all tanks and all boost pumps operating is... kg per minute.
- аварийного слива топлива (производительность слива) порядка 2000 л/мин — fuel dump rate of 2000 liters per minute
- азимутальной коррекции (гироскопа) — azimuth erection rate
-, безопасная — safety speed
- бокового движения (вертолета) — sideward flight speed
- бокового перемещения (скольжения) — lateral velocity
скорость относительно невозмущенного воздуха в направлении поперечной оси. — the velocity relative to the undisturbed air in the direction of the lateral axis.
-, большая — high speed
-, большая (стеклоочистителя) — fast rate (fast)
"- велика" (надпись на указателе отклонения от заданной скорости прибора пкп) — fast
-, вертикальная — vertical speed
- вертикальная (для ссос) — descent /sink/ rate
-, вертикальная (при посадке) — descent velocity
with а limit descent velocity of... f.p.s. at the design landing weight...
- ветра (величина) — wind speed (ws)
скорость массы воздуха в горизонтальном направлении. — ws is horizontal velocity of а mass of air.
- ветра (величина и направление) (рис.124) — wind velocity
фактическая скорость ветра на высоте 50 фт. по сообщению) диспетчера. зафиксировать скорость и направление ветра. — the actual wind velocity at 50 foot height reported from the tower. record wind velocity and direction.
- ветра (название шкалы на графике) — wind
- ветра (сообщаемая диспетчерским пунктом или по метеосводке) — reported wind (speed)
- в зависимости от высоты и веса, вертикальная — vertical speed for altitude and weight
- взлета, безопасная (v2) — takeoff safety speed (v2)
скорость, достигаемая на первом этапе взлета, и выбираемая таким образом, чтобы обеспечить безопасное получение нормируемых градиентов набора высоты на втором этапе взлета. — the scheduled target speed to be attained at the 35 feet height with one engine inoperative.
- взлета, минимальная безопасная (v2 min) — minimum takeoff safety speed (v2 min)
наименьшая допустимая скорость на 1-м этапе взлета.
- взлета, минимально эволютивная (vmin эв) — air minimum control speed (v мса)
- в зоне ожидания — holding speed
- в момент отказа критического двигателя (при взлете) — critical engine failure speed (v1)
- в момент принятия решения (при взлете) — decision speed (v1)
-, воздушная — airspeed
скорость полета ла относительно воздуха, независимо от пути, пройденного относительно земной поверхности, — the rate of speed at which an aircraft is traveling through the atmosphere (air), and is independent of any distance covered on the surface of the earth.
- возникновения бафтинга — buffet (onset) speed
- возникновения бафтинга, предшествующего срыву — pre-stall buffet speed
- возникновения предупреждающей тряски (vтp) — pre-stall warning speed
скорость, при которой возникают заметные естественные или искусственно созданные признаки близости сваливания.
- возникновения флаттера — flutter (onset) speed
- восстановления (гироскопа) большая — fast erection rate
- вращения — rotational speed (n, n)
оборотов за единицу времени. — revolutions per unit time.
- вращения земли, угловая — earth('s) angular velocity
- вращения колеса (напр., при взлете) — tire speed. ; maximum takeoff weight restricted by tire speed
- в точке принятия решения — decision speed
- в точке принятия решения (при отказе критического двигателя) — critical engine failure speed
- встречного ветра — headwind speed
- встречного ветра (название шкалы на графике) — headwind
- в условиях турбулентности — rough air speed (vra)
- входа в зону турбулентности, заданная — target (air)speed for turbulent air penetration
-, выбранная заявителем — speed selected by the applicant
- выпуска (или уборки) шасси, максимальная — landing gear operating speed (vlo)
максимальная скорость полета, при которой разрешается выпускать или убирать шасси. — maximum speed at which it is safe to extend or retract the landing gear.
- выхода (гидросамолета, са молета-амфибии) на редан — hump speed. the speed at which the water resistance of a seaplane or amphibian is hignest.
- газового потока (через двиг.) — gas flow velocity
- герметизации кабины — cabin pressurization rate
-, гиперзвуковая — hypersonic speed
скорости от м-5 и выше. — pertaining to speeds of mach 5 or greater.
- горизонтального полета — level flight speed, speed in level flight
- горизонтального полета на максимальном продолжительном режиме (двиг.), максимальная — maximum speed in level flight with maximum continuous power
- горизонтального полета на расчетном режиме работы двигателей, максимальная — maximum speed in level flight with rated rpm and power
- движения назад (вертолета) — rearward (flight) speed
-, демонстрационная — demonstrated speed
- дисс (доплеровского измерителя скорости и сноса) — doppler velocity
- для определения характеристик устойчивости, максимальная — maximum speed for stability characteristic (vfc)
- горизонтального полета на режиме максимальной продолжительной мощности (тяги) — maximum speed in level flight with maximum continuous power (or thrust) (vh)
-, дозвуковая — subsonic speed
-, докритическая — pre-stall speed
-, допустимая — allowable speed
-, допустимая (ограниченная) — limiting speed
-, заданная воздушная — target airspeed
- заданная подвижным индексом — bug speed. fuel dumping may be necessary to reduce the bug speed.
- заправки топливом — fueling rate, fuel delivery rate
- захода на посадку (vзп) — approach speed (vapp)
- захода на посадку при всех работающих двигателях — approach speed with all engines operating
- захода на посадку при одном неработающем двигателе — approach speed with one engine inoperative
- захода на посадку с убранными закрылками — no flap approach speed
- захода на посадку с убранными закрылками и предкрылками — no flap-no slat approach speed. аn approach speed of 15 knots below no flap-no slat approach speeds can be used.
- захода на посадку с убранными предкрылками — no slat approach speed. with the leading edge slats extended, an approach speed of 15 knots below no flap - no slat approach speeds can be used.
-, звуковая — sonic speed
скорость ла или его части. равная скорости звука в данных условиях. — the speed of sound. when an object travels in air at the same speed as that of sound in the same medium.
-, земная индикаторная (v13) (из) — calibrated airspeed (cas)
- изменения (величины) — rate (of change)
- изменения бокового отклонения — crosstrack (distance) deviation rate, xtk deviation rate
- изменения шага (винта) — pitch-change rate
-, индикаторная воздушная — equivalnet airspeed (eas)
-, индикаторная земная (v13, из) (сша) — calibrated airspeed (cas)
равна показанию указателя скорости (приборной скорости) с учетом аэродинамической поправки (и инструментальной погрешности). напр., 150 км/ч из. — airspeed indicator reading, as installed in airplane, corrected for (static source) position (and instrument) error. cas is equal to the tas in standard atmosphere at sea level.
-, индикаторная земная (англ.) — rectified air speed (ras). ras is the indicated airspeed corrected for instrument and position errors.
- истечения выходящих газов (из реактивного сопла газотурбинного двигателя) — exhaust velocity, speed of ехhaust gases. the velocity of gaseous or other particles (exhaust stream) that exhaust through the nozzle.
-, истинная воздушная (ис) — true airspeed (tas)
скорость самолета относительно невозмущенного воздуха, равная скорости. — the speed of the airplane relative to undisturbed air.
-, истинная воздушная (по числу m) — true mach number (m)
показания указателя числа м c учетом аэродинамической поправки для приемника статического давления. — machmeter reading corrected for static source position error.
- касания (при посадке) — touch-down speed
- коррекции гироскопа — gyro erection rate
- коррекции гироскопа в азимуте — gyro azimuth erection rate
- коррекции гироскопа по крену и тангажу — gyro roll/pitch erection rate
- крейсерская — cruising speed
скорость полета, не превышающая 90 % расчетной скорости горизонтального полета. — а speed not greater than 90 % of the design level speed.
-, крейсерская расчетная — design cruising speed (vc)
- крена, угловая — rate of roll, roll rate
-, критическая (сваливания) — stalling speed (vs)
-, линейная — linear velocity
скорость в заданном направлении для определения скорости. — speed acting in one specified direction defines velocity.
-, линейная (скорость движения no прямой) — linear speed. rate of motion in a straight iine.
-, максимальная допустимая эксплуатационная (no терминологии икао) — maximum permissible operating speed
-, максимальная маневренная — maneuvering speed (va)
нe допускать максимального отклонения поверхности управления при превышении максимальной маневренной скорости. — maximum deflection of flight controls should not be used above va.
-, максимальная посадочная (vп max) — maximum landing speed
-, максимальная предельнодопустимая — maximum operating limit speed
-, максимальная предельнодопустимая, приборная — maximum operating limit indicated airspeed (ias)
-, максимальная эксплуатационная — maximum operating limit speed (vmo)
- максимально допустимая (vмд) — maximum operating limit speed (vmo)
- максимальной продопжительности (полета) — high-endurance cruise speed
"- мала" (надпись на указателе отклонения от заданной скорости прибора пкп) — slow
-, малая — low speed
-, малая (стеклоочистителя) — slow rate (slow)
-, минимальная — minimum speed
наименьшая установившаяся скорость горизонтального полета на высоте, значительно превышающей размер крыла, при любом режиме работы двигателей, — the lowest steady speed which can be maintained by an airplane in level flight at an altitude large in comparison with the dimension of the wings, with any throttle setting.
-, минимальная (полетная) — minimum flying speed
наименьшая установившаяся скорость, выдерживаемая при любом режиме работы двигателей в горизонтальном полете на высоте, превышающей размах крыла, — the lowest steady speed that can be maintained with any throttle setting whatsoever, by an airplane in level flight at an altitude above the ground, greater than the span of the wing.
-, минимальная посадочная (vп min) — minimum landing speed
-, минимально эволютивная (vminэ) — minimum control speed (vmc)
скорость, при которой в случае отказа критического двигателя обеспечивается возможность управления самолетом для выдерживания прямолинейного полета на данной скорости, при нулевом рыскании и угле крена не более 5°. — vmc is the speed at which, when the critical engine is suddenly made inoperative at that speed, it is possible to recover control of the airplane with the engine still inoperative and to maintain it in straight flight at that speed, either with zero yaw or with an angle of bank not in excess of 5°.
-, минимально эволютивная (в воздухе) (vminэв) — air minimum control speed (vmca)
минимальная скорость полета, при которой обеспечивается управление самолетом с макс. креном до 5° в случае отказа критического двигателя и при работе остальных двигателей на взлетном режиме. — the minimum flight speed at which the airplane is controllable with а maximum of 5 deg. bank when the critical engine suddenly becomes inoperative with the remaining engines at take-off thrust.
-, минимально эволютивная (на земле) (vmin эр) — ground minimum control speed (vmcg)
минимальная скорость разбега, обеспечивающая продолжение взлета, с использеванием только аэродинамических поверхностей правления, в случае отказа критич. двиг. и при работе остальных двигателей на взлетном режиме. — the minimum speed on the ground at which the takeoff can be continued, utilizing aerodynamic controls alone, when the critical engine suddenly becomes inoperative with the remaining engines at takeoff thrust.
-, минимально эволютивная (при начальном наборе высоты) — minimum control speed (at takeoff climb)
-, минимально эволютивная (у земли) — minimum control speed near ground
-, минимально допустимая эксплуатационная — minimum operating speed
- набора высоты (вдоль траектории) — climb speed
- набора высоты (вертикальная) — rate of climb
при проверке летных характеристик - вертикальная составляющая возд. скор. в условиях станд. атмосферы. в обычном полете - скорость удаления от земной поверхности. — in performance testing, the vertical component of the air speed in standard atmosphere. in general flying, the rate of ascent from tfle earth.
- набора высоты на маршруте — enroute climb speed
- набора высоты, начальная — initial climb-out speed
- набора высоты с убранными закрылками — flaps up climb(ing) speed, no flap climb speed
- на высоте 15м, посадочная — landing reference speed (vref)
минимальная скорость на высоте 15м при нормальной посадке. — the minimum speed at the 50 foot height in a normal landing.
- нагрева — heating rate
- наибольшей дальности — best range cruise speed
- наибольшей продолжительности полета — high-endurance cruise speed
- наивыгоднейшего набора высоты — speed for best rate of climb (vy)
- наивыгоднейшего угла траектории набора высоты — speed for best angle of climb (vx)
- на маршруте — еп route speed
- на режиме максимальной дальности, крейсерская — long-range cruise speed
- на режиме наибольшей дальности — best range cruise speed
- на режиме наибольшей продолжительности — high-endurance cruise speed
- начала изменения положения механизации (при взлете,v3) — speed at start of extendable (high-lift) devices retraction (v3)
- начала подъема передней опоры (при взлете) — rotation speed (vr)
- начала торможения (vн.т.) — brake application speed, speed at start of (wheel) brakes application
- начального набора высоты — initial climb speed, climb-out speed
- начального набора высоты (v4) (в конце полной взлетной дистанции) — initial climb speed (v4)
- начального набора высоты, установившаяся — steady initial climb speed. take-off safety speed, v2, at 35 feet shall be consistent with achievement of smooth transition to steady initial climb speed, v4 at height of 400 feet.
- (максимальная), непревышаемая — never exceed speed (vne)
-, нормируемая — rated speed
- обнаружения (искомого) светила (звезды) телескопом (астрокорректора) — star-detection rate of telescope
- образования (напр., льда) — rate of (ice) formation
-, ограниченная заявителем — speed selected by the applicant
the approach and landing speeds must be selected by the applicant.
-, ограниченная энергоемкостью тормозов — maximum brake energy speed (vmbe)
максимальная скорость движения самолета по земле, при которой энергоемкость тормозов сможет обеспечить полную остановку самолета, — the maximum speed on the ground from which a stop can be accomplished within the energy capabilities of the brakes.
-, околозвуковая — transonic speed
скорость в диапазоне от м = 0,8 - 1,2. — speed in а range of mach 0.8 to 1.2.
-, окружная — circumferential speed
-, окружная (конца лопасти) — tip speed
-, окружная (тангенциальная, касательная) — radial velocity. doppler effect in terms of radial velocity of a target.
-, опасная (самолета, превышающая vмо/mмо) — aircraft overspeed (а/с ovsp). speed exceeding vmo/mmo
- определяется для гладкой, сухой впп с жестким покрытием — vi speed is based on smooth, dry, hard surfaced runways
-, оптимальная — best speed
- отказа критического двигателя (при взлете) — critical engine failure speed (v1)
скорость, при которой после обнаружения отказавшего двигателя, дистанция продолжительного взлета до высоты 10,7 м не превышает располагаемой дистанции взлета, или дистанция до полной остановки не превышает располагаемой дистанции прерванного взлета, — the speed at which, when an engine failure is recognized, the distance to continue the takeoff to а height of 35 feet will not exceed the usable takeoff distance or, the distance to bring the airplane to а full stop will not exceed the accelerate-stop distance available.
- (сигнал) от доплеровской системы — doppler velocity
- от измерителя дисс (доплеровский измеритель путевой скорости и сноса), путевая — gappier ground speed (gsd)
- откачки (слива) топлива (на земле) — defueling rate, fuel off-loading rate
- отклонения закрылков — rate of the flaps motion
- отклонения от глиссады — glide slope deviation rate
- отклонения поверхности ynравления — control surface deflection rate
-, относительная — relative speed, speed of relative movement
motion of an aircraft relative to another.
- отработки (скорость изменения индикации прибора в зависимости от изменения параметра) — response rate /speed/, rate of response
- отработки астропоправки по курсу — rate /speed/ of response to celestial correction to azimuth e rror
- отработки поправки — correction response rate /speed/
- отработки сигнала — signal response rate
- отрыва (ла) — lirt-off speed (vlof:)
скорость в момент отрыва основных опорных устройств самолета от впп по окончании разбега при взлете (vотр.). — vlof is the speed at which the airplane first becomes airborne.
- отрыва колеса (характеристика тормозного колеса) — wheel unstick speed
-, отрыва, минимальная — minimum unstick speed (vmu)
устаназливается разработчиком (заявителем), как наименьшая скор, движения самолета на взлете, при которой еще можно производить отрыв самолета и затем продолжать взлет без применения особых методов пилотирования. — the speed selected by the applicant at and above which the airplane can be made to lift off the ground and сопtinue the take-off without displaying any hazardous characteristics.
- отрыва носового колеса (или передней стойки шасси) (vп.oп) — rotation speed (vr)
скорость начала преднамеренного увеличения угла тангажа при разбеге (рис. 113). — the speed at which the airplane rotation is initiated during the takeoff.
vr is the speed at which the nosewheel is raised and the airplane is rotated to the lift off attitude.
- отрыва передней опоры при взлете (vп.оп) — rotation speed
- перевода в набор высоты (после взлета) — initial climb speed
- перемещения органа управления — rate of control movement /displacement/
- пересечения входной кромки впп (vвк) — threshold speed (vt)
скорость самолета, с которой он пролетает над входной кромкой впп.
- пересечения входной кромки впп, демонстрационная — demonstrated threshold speed
- пересечения входной кромки впп, максимальная (vвк max.) — maximum threshold speed (vmt)
- пересечения входной кромки впп, намеченная (заданная) — target threshold speed (vtt). target threshold speed is the speed which the pilot aims to reach when the airplane crosses the threshold.
- пересечения входной кромки впп при нормальной работе всех двигателей (vвкn) — threshold speed with all еngines operating
- пересечения входной кромки впп при нормальной работе всех двигателей, намеченная (заданная) — target threshold speed with all engines operating
- пересечения входной кромки впп с двумя неработающими двигателями (vвк n-2) — threshold speed with two еngines inoperative
- пересечения входной кромки впп с одним неработающим двиг. (vвкn-1) — threshold speed with one еngine inoperative
- пересечения входной кромки впп с одним неработающим двигателем, намеченная (заданная) — target threshold speed with one engine inoperative
- пикирования — diving speed
- пикирования, демонстрационная — demonstrated flight diving speed (vdf)
-, пикирования, расчетная — design diving speed (vd)
- планирования — gliding speed
- планирования при заходе на посадку — gliding approach speed
- по азимуту, угловая — rate of turn
- поворота, угловая — rate of turn
- подъема передней опоры (стойки) шасси — rotation speed (vr)
скорость начала увеличения yгла тангажа на разбеге, преднамеренно создаваемого отклонением штурвала на себя для вывода самолета на взлетный угол атаки (vп.ст.). — the speed at which the airplane rotation is initiated during the takeoff, to lift /to rise/ the nose gear off the runway.
- поиска (искомой) звезды телескопом — (target) star detection rate of telescope
detection rate is the ratio of field of view to detection time.
-пo курсу, угловая — rate of turn
- полета — flight speed
- полета в болтанку — rough air speed (vra)
- полета в зоне ожидания — holding speed
- полета в неспокойном (турбулентном) воздухе — rough air speed (vra)
- полета для длительных режимов, наибольшая (vнэ) — normal operating limit speed (vno)
- полета, максимальная — maximum flying speed
- полета на наибольшую дальность крейсерская — best range cruise speed
- полета на наибольшую продолжительность — high-endurance cruise speed
- полета на режиме максимальной продолжительной мощности — speed (in flight) with maximum continuous power (or thrust)
- полета при болтанке — rough air speed (vra)
- полета с максимальной крейсерской тягой — speed (in flight) with maximum cruise /cruising/ thrust
-, пониженная — reduced (air) speed
при невозможности уборки створок реверса тяги продолжайте полет на пониженной скорости. — if reverser cannot be stowed, continue (flight) at reduced speed.
- по прибору (пр) — indicated airspeed (ias)
- попутного ветра — tailwind speed
- попутного ветра (название шкалы на графике) — tailwind
- порыва ветра — gust velocity
-, посадочная (vп) — landing speed
скорость самолета в момент касания основными его опорными устройствами поверхности впп — the minimum speed of an airplane at the instant of contact with the landing area in a normal landing.
-, посадочная (на высоте 15м) — landing reference speed (vref)
минимальная скорость на высоте 50 фт в условиях нормальной посадки, равная 1.3 скорости сваливания в посадочной конфигурации ла. — the minimum speed at 50 foot height in normal langin. equal to (1.3) times the stall speed in landing configuration.
-, постоянная — constant speed
-, поступательная (скорость движения вертолета вперед) — forward speed. steady angle of helicopter glide must be determined in autorotation, and with the optimum forward speed.
- по тангажу, угловая — rate of pitch
- потока газа (проходящего через двигатель, в фт/сек) — gas flow velocity (fps), vel f.p.s.
-, предельная (vпред.) — maximum operating limit speed (vmo)
скорость, преднамеренное превышение которой не допускается на всех режимах полета (набор высоты, крейсерский полет, снижение), кроме особо оговоренных случаев, допускаемых при летных испытаниях или тренировочных полетах. — speed that may not be deliberately exceeded in any regime of normal flight (climb, cruise or descent), unless а higher speed is authorized for flight test or pilot training operations.
-, предельно (свободно падающего тела) — terminal velocity
-, предельная (скорость самолета, превышающая допустимые ограничения vmo/mmo) — aircraft overspeed (а/с ovsp) а/с ovsp annunciator warns of exceeding air speed limitations (vmo/mmo)
-, предельно допустимая эксплуатационная (vпред.) — maximum operating limit speed (vmo)
- прецессии (гироскопа) — precession rate
- приближения (сближения) — closure rate
- приближения к земле (чрезмерная) — (excessive) closure rate to terrain, excessive rate of descent with respect to terrain
-,приборная воздушная (vпр) (пр) — indicated airspeed (ias)
показания указателя скорости, характеризующие величину скоростного напора, а не скорость перемещения самолета (напр.,150 км/ч пр). — airspeed indicator reading, as installed in the airplane, uncorrected for airspeed indicator system errors.
- приборная исправленная с учетом аэродинамической поправки и инструментальной погрешности прибора — calibrated airspeed (cas)
- при включении и выключении реверса тяги, максимальная — maximum speed for extending and retracting the thrust reverser, thrust reverser operating speed
- при включении стеклоочистителей лобовых стекол — windshield wiper operation speed
(т.е., скорость полета, при которой разрешается включать стеклоочистители) — do not operate the w/s wipers at speed in excess of... km/hr.
- при включении тормозов (при пробеге) — brake-on speed
- при выпуске воздушных тормозов — speed brake operating speed (vsb)
- при выпуске (уборке) посадочной фары — landing light operation speed
- при выпущенных интерцепторах (спойлерах), расчетная максимальная — design speller extended speed
- при выпуске (уборке) шасси, максимальная — maximum landing gear operating speed (vlo)
- при заходе на посадку и посадке, минимальная эволютивная — minimum control speed at арpreach and landing (vmcl)
- при (напр., взлетной) конфигурации самолета — speed in (takeaff) configuration
- при максимальной силе порыва ветра, расчетная — design speed for maximum gust intensity (vb)
- при максимальных порывах ветра, расчетная — design speed for maximum gust intensity
- при наборе высоты — climb speed
- при наборе высоты, наивыгоднейшая (оптимальная) — best climb speed
- при наборе высоты по маршруту на конечном участке чистой траектории — еn route climb speed at final net flight path segment
- принятия решения (v1) — (takeoff) decision speed (v1), critical engine failure speed (v1)
наибольшая скорость разбега самолета, при которой в случае отказа критич. двиг. (отказ распознается на этой скорости) возможно как безопасное прекращение, так и безопасное продолжение взлета. (рис. 113) — the speed at which, when an engine failure is recognized, the distance to continue the takeoff to а height of 35 feet will not exceed the usable takeoff distance, or, the distance to bring the airplane to а full stop will not exceed the accelerate-stop distance available.
- принятия решения относительная (v1/vr) — engine failure speed ratio (v1/vr ratio)
отношение скорости принятия решения v1 к скорости подъема передней стойки шасси vr. — the ratio of the engine failure speed, v1, for actual runway dimensions and conditions, to the rotation speed, vr
- принятия решения (v1), принятая при расчете макс. допустимого взлетного веса — critical engine failure speed (v1) assumed for max. allowable take-off weight max, allowable т.о. wt is derived from the corresponding critical engine failure speed (v1).
- при отказе критического двигателя (при взлете) — critical engine failure speed (v1)
- при отрыве носового колеса (см. скорость подъема передней опоры) (рис. 113) — rotation speed (vr)
- при предпосадочном маневре — (approach) pattern speed. overshooting the turn on final approach may occur with the higher (approach) pattern speed.
- при снижении — speed in descent
- при экстремальном снижении — emergency descent speed
- проваливания (резкая потеря высоты) — sink rate
- продольной составляющей ветра (график) — wind component parallel to flight path
- прохождения порога, максимальная — maximum threshold speed
- путевая (w) — ground speed (gs)
скорость перемещения самолета относительно земной поверхности, измеряемая вдоль линии пути. — aircraft velocity relative to earth surface measured along the present track.
- разбега, мннимально-эволю тивная (vmin эр) — round minimum control speed vmcg)
- разгерметизации — rate of decompression
- раскрытия (парашюта), критическая — critical opening speed
- рассогласования — rate of disagreement
-, расчетная — design speed
-, расчетная предельная (пикирования) — design diving speed (vd)
-, расчетная крейсерская — design cruising speed (vc)
-, расчетная маневренная — design maneuvering speed (va)
максимальная скорость, при которой максимальное отклонение поверхностей управления (элеронов,ph. рв) не вызывает опасных напряжений в конструкции ла. — the maximum speed at which application of full available aileron, rudder or elevator will not overstress the airplane.
- реакции — reaction rate
- реверса (поверхностей) управления — reversal speed
минимальная индикаторнаявоздушная скорость при которой возникает реверс поверхностей управления. — the lowest equivalent air speed at which reversal of control occurs.
-, рекомендованная изготовителем — manufacturer's recommended speed
-, рейсовая — block speed
-, рулежная — taxiing speed
- рыскания, угловая — rate of yaw, yaw rate
- сближения — closure /closing/ rate /speed/, rate of closure
скорость с которой два объекта приближаются друг к другу. — the speed at which two bodies approach each other.
- сближения с землей, опасная (чрезмерная) — excessive closure rate to terrain
- сваливания (vс) — stalling speed (vs)
скорость сваливания определяется началом сваливания самолета при заданных: конфигурации самолета, его полетном весе и режиме работы двигателей. — means the stalling speed or the minimum steady flight speed at which the airplane is controllabie.
- сваливания, минимальная (vсmin.) — minimurn stalling speed
- сваливания, приборная — indicated stalling speed
the indlcalcid air speed at the stall.
- сваливания при посадочной конфигурации (vсо) — stalling speed (vso). stalling speed or minimum steady flighl speed in landing configuration.
- сваливания при наработающих двигателях — power-off stalling speed
- сваливания при работающих двигателях — power-off stalling speed
- сваливания при рассматриваемой конфигурации самолета (vс1) — stalling speed (vs1). stalling speed or minimum steady. flight speed obtained in a specified configuration.
- сваливания с закрылками в посадочном положении, минимальная — minimum stalling speed with wing-flaps in landing setting
-, сверхзвуковая — supersonic speed
скорость, превышающая скорость звука, — pertaining to, or dealing with, speeds greater than the acoustic velocity.
- с выпущенными закрылками, максимальная — maximum flap extended speed (vfe)
- с выпущенными шасси, максимальная — maximum landing gear extended speed (vle)
максимальная скорость, при которой разрешается полет с выпущенным шасси, — maximum speed at which the airplane can be safety flown with the landing gear extended.
- скоса потока вниз — downwash velocity
- слежения за изменением высоты (корректором высоты) — rate of response to altitude variation /change/
- слива (откачки) топлива (на земле) — defueling rate, fuel off-loading rate
- снижения — speed of /in/ descent
-, снижения (напр., при посадке) — rate of sink, sink rate. touchdown at minimum rate of sink.
- снижения, вертикальная — rate of descent, descent /sink/ rate
- снижения в момент касания (водной поверхности при аварийной посадке на воду) — impact sink speed. the impact sink speed should be kept below 100 fpm to minimize the risk of a primary fuselage structural failure.
- снижения парашюта — parachute rate of descent
- снижения парашютов с единичным грузом — rate of descent of single cargo parachutes
- снижения, чрезмерная — excessive rate of descent, excessive sink rate
- сноса — drift rate
- согласования (гироагрегата) — rate of slaving, slaving rate
- согласования следящих сиетем (инерциальной системы) — servo loop slaving rate
- с отказавшим критическим двигателем, минимальная эеолютивная — minimum control speed with the critical engine inoperative (vmc)
- с полностью убранными закрылками, посадочная — zero flap landing speed
zero flap landing ground speeds are obviously high so fuel dumping may be necessary to reduce the bug speed.
- спуска, вертикальная — rate of sink, sink rate
touchdown at minimum rate of sink. perform high sink rate maneuver.
-, средняя — average speed
-, средняя эксплуатационная (коммерческая) — block speed
- срыва (см. скорость сваливания) — stalling speed (vs)
- схода (ракеты) с направляющей — launch(ing) speed
- тангажа, угловая — rate of pitch, pitch rate
-, текущая — current speed
ete calculation is based on current ground speed.
- (уборки) выпуска шасси, максимальная — maximum landing gear operating speed (vlo)
-, угловая — angular velocity
изменение угла за единицу времени, — the change of angle per unit time.
-, угловая — angular speed, angular rate, angular velocity
изменение направления за единицу времени, напр., отметки (цели) на экране радиолокатора. — change of direction per unit time, as for a target on a radar screen.
-, угловая инерционная (корпуса гироскопа относительно к-л. оси) — nertial angular velocity (of gyro case about the indicated axis)
-, угловая, (координатного сопровождающего) трехгранника (относительно земли) — angular velocity of moving соordinate trihedral
- у земли, минимальная эволютивная — minimum control speed near ground
-, установившаяся — steady speed
- установившегося полета, минимальная — minimum steady flight speed
- установившегося разворота, угловая — sustained turn rate (str)
- ухода гироскопа — gyro drift rate
- ухода гироскопа в азимуте — azimuth drift rate of the gyro
- флаттера, критическая — flutter speed
наименьшая индикаторная скорость, при которой возникает флаттер, — the lowest equivalent air speed at which flutter occurs.
"(-) число м" (кнопка) — v/m (button or key)
-, эволютивная (минимальная) — (minimum) control speed (vmc)
- эволютивная разбега, минимальная (vmin эр) — ground minimum control speed (vmcg)
-, экономическая — economic speed
скорость полета, при которой обеспечивается минимальный расход топлива на единицу пути в спокойном воздухе. — the flight speed at which the fuel consumption per unit of distance covered in still air, is а minimum.
-, экономическая крейсерская — economic cruising speed
-, эксплуатационная — operating speed
гашение с. — deceleration
на с. км/час — at а speed of km/hr
набор с. — acceleration
на полной с. — at full speed
нарастание с. — acceleration
переход к с. (набора высоты) — transition to (climb) speed
при с. км/час — at а speed of km/hr
разгон (ла) до с. — acceleration to speed of...
уменьшение с. (процесс) — deceleration
выдерживать с. (точно) — maintain /hold/ speed (accurately)
выражать значение с. полета в виде приборной (индикаторной) скорости — state (he speeds in terms of ias (eas)
гашение с. (перед выравниванием) — speed bleed-off (before flare)
гасить с. — decelerate
достигать с. (величина) — attain а speed of (... km/hr)
достигать с. (обозначание) — reach the speed (v1)
задавать с. — set up (speed, rate)
задавать с. км/час (при проверке барометрических приборов на земле) — apply pressure corresponding to а speed of... km/hr
набирать с. — gain /pick up/ speed, accelerate
увеличивать с. — increase speed, accelerate
уменьшать с. — decrease speed, decelerate
устанавливать с. (полета) — set up speedРусско-английский сборник авиационно-технических терминов > скорость
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2 Historical Portugal
Before Romans described western Iberia or Hispania as "Lusitania," ancient Iberians inhabited the land. Phoenician and Greek trading settlements grew up in the Tagus estuary area and nearby coasts. Beginning around 202 BCE, Romans invaded what is today southern Portugal. With Rome's defeat of Carthage, Romans proceeded to conquer and rule the western region north of the Tagus, which they named Roman "Lusitania." In the fourth century CE, as Rome's rule weakened, the area experienced yet another invasion—Germanic tribes, principally the Suevi, who eventually were Christianized. During the sixth century CE, the Suevi kingdom was superseded by yet another Germanic tribe—the Christian Visigoths.A major turning point in Portugal's history came in 711, as Muslim armies from North Africa, consisting of both Arab and Berber elements, invaded the Iberian Peninsula from across the Straits of Gibraltar. They entered what is now Portugal in 714, and proceeded to conquer most of the country except for the far north. For the next half a millennium, Islam and Muslim presence in Portugal left a significant mark upon the politics, government, language, and culture of the country.Islam, Reconquest, and Portugal Created, 714-1140The long frontier struggle between Muslim invaders and Christian communities in the north of the Iberian peninsula was called the Reconquista (Reconquest). It was during this struggle that the first dynasty of Portuguese kings (Burgundian) emerged and the independent monarchy of Portugal was established. Christian forces moved south from what is now the extreme north of Portugal and gradually defeated Muslim forces, besieging and capturing towns under Muslim sway. In the ninth century, as Christian forces slowly made their way southward, Christian elements were dominant only in the area between Minho province and the Douro River; this region became known as "territorium Portu-calense."In the 11th century, the advance of the Reconquest quickened as local Christian armies were reinforced by crusading knights from what is now France and England. Christian forces took Montemor (1034), at the Mondego River; Lamego (1058); Viseu (1058); and Coimbra (1064). In 1095, the king of Castile and Léon granted the country of "Portu-cale," what became northern Portugal, to a Burgundian count who had emigrated from France. This was the foundation of Portugal. In 1139, a descendant of this count, Afonso Henriques, proclaimed himself "King of Portugal." He was Portugal's first monarch, the "Founder," and the first of the Burgundian dynasty, which ruled until 1385.The emergence of Portugal in the 12th century as a separate monarchy in Iberia occurred before the Christian Reconquest of the peninsula. In the 1140s, the pope in Rome recognized Afonso Henriques as king of Portugal. In 1147, after a long, bloody siege, Muslim-occupied Lisbon fell to Afonso Henriques's army. Lisbon was the greatest prize of the 500-year war. Assisting this effort were English crusaders on their way to the Holy Land; the first bishop of Lisbon was an Englishman. When the Portuguese captured Faro and Silves in the Algarve province in 1248-50, the Reconquest of the extreme western portion of the Iberian peninsula was complete—significantly, more than two centuries before the Spanish crown completed the Reconquest of the eastern portion by capturing Granada in 1492.Consolidation and Independence of Burgundian Portugal, 1140-1385Two main themes of Portugal's early existence as a monarchy are the consolidation of control over the realm and the defeat of a Castil-ian threat from the east to its independence. At the end of this period came the birth of a new royal dynasty (Aviz), which prepared to carry the Christian Reconquest beyond continental Portugal across the straits of Gibraltar to North Africa. There was a variety of motives behind these developments. Portugal's independent existence was imperiled by threats from neighboring Iberian kingdoms to the north and east. Politics were dominated not only by efforts against the Muslims inPortugal (until 1250) and in nearby southern Spain (until 1492), but also by internecine warfare among the kingdoms of Castile, Léon, Aragon, and Portugal. A final comeback of Muslim forces was defeated at the battle of Salado (1340) by allied Castilian and Portuguese forces. In the emerging Kingdom of Portugal, the monarch gradually gained power over and neutralized the nobility and the Church.The historic and commonplace Portuguese saying "From Spain, neither a good wind nor a good marriage" was literally played out in diplomacy and war in the late 14th-century struggles for mastery in the peninsula. Larger, more populous Castile was pitted against smaller Portugal. Castile's Juan I intended to force a union between Castile and Portugal during this era of confusion and conflict. In late 1383, Portugal's King Fernando, the last king of the Burgundian dynasty, suddenly died prematurely at age 38, and the Master of Aviz, Portugal's most powerful nobleman, took up the cause of independence and resistance against Castile's invasion. The Master of Aviz, who became King João I of Portugal, was able to obtain foreign assistance. With the aid of English archers, Joao's armies defeated the Castilians in the crucial battle of Aljubarrota, on 14 August 1385, a victory that assured the independence of the Portuguese monarchy from its Castilian nemesis for several centuries.Aviz Dynasty and Portugal's First Overseas Empire, 1385-1580The results of the victory at Aljubarrota, much celebrated in Portugal's art and monuments, and the rise of the Aviz dynasty also helped to establish a new merchant class in Lisbon and Oporto, Portugal's second city. This group supported King João I's program of carrying the Reconquest to North Africa, since it was interested in expanding Portugal's foreign commerce and tapping into Muslim trade routes and resources in Africa. With the Reconquest against the Muslims completed in Portugal and the threat from Castile thwarted for the moment, the Aviz dynasty launched an era of overseas conquest, exploration, and trade. These efforts dominated Portugal's 15th and 16th centuries.The overseas empire and age of Discoveries began with Portugal's bold conquest in 1415 of the Moroccan city of Ceuta. One royal member of the 1415 expedition was young, 21-year-old Prince Henry, later known in history as "Prince Henry the Navigator." His part in the capture of Ceuta won Henry his knighthood and began Portugal's "Marvelous Century," during which the small kingdom was counted as a European and world power of consequence. Henry was the son of King João I and his English queen, Philippa of Lancaster, but he did not inherit the throne. Instead, he spent most of his life and his fortune, and that of the wealthy military Order of Christ, on various imperial ventures and on voyages of exploration down the African coast and into the Atlantic. While mythology has surrounded Henry's controversial role in the Discoveries, and this role has been exaggerated, there is no doubt that he played a vital part in the initiation of Portugal's first overseas empire and in encouraging exploration. He was naturally curious, had a sense of mission for Portugal, and was a strong leader. He also had wealth to expend; at least a third of the African voyages of the time were under his sponsorship. If Prince Henry himself knew little science, significant scientific advances in navigation were made in his day.What were Portugal's motives for this new imperial effort? The well-worn historical cliche of "God, Glory, and Gold" can only partly explain the motivation of a small kingdom with few natural resources and barely 1 million people, which was greatly outnumbered by the other powers it confronted. Among Portuguese objectives were the desire to exploit known North African trade routes and resources (gold, wheat, leather, weaponry, and other goods that were scarce in Iberia); the need to outflank the Muslim world in the Mediterranean by sailing around Africa, attacking Muslims en route; and the wish to ally with Christian kingdoms beyond Africa. This enterprise also involved a strategy of breaking the Venetian spice monopoly by trading directly with the East by means of discovering and exploiting a sea route around Africa to Asia. Besides the commercial motives, Portugal nurtured a strong crusading sense of Christian mission, and various classes in the kingdom saw an opportunity for fame and gain.By the time of Prince Henry's death in 1460, Portugal had gained control of the Atlantic archipelagos of the Azores and Madeiras, begun to colonize the Cape Verde Islands, failed to conquer the Canary Islands from Castile, captured various cities on Morocco's coast, and explored as far as Senegal, West Africa, down the African coast. By 1488, Bar-tolomeu Dias had rounded the Cape of Good Hope in South Africa and thereby discovered the way to the Indian Ocean.Portugal's largely coastal African empire and later its fragile Asian empire brought unexpected wealth but were purchased at a high price. Costs included wars of conquest and defense against rival powers, manning the far-flung navel and trade fleets and scattered castle-fortresses, and staffing its small but fierce armies, all of which entailed a loss of skills and population to maintain a scattered empire. Always short of capital, the monarchy became indebted to bankers. There were many defeats beginning in the 16th century at the hands of the larger imperial European monarchies (Spain, France, England, and Holland) and many attacks on Portugal and its strung-out empire. Typically, there was also the conflict that arose when a tenuously held world empire that rarely if ever paid its way demanded finance and manpower Portugal itself lacked.The first 80 years of the glorious imperial era, the golden age of Portugal's imperial power and world influence, was an African phase. During 1415-88, Portuguese navigators and explorers in small ships, some of them caravelas (caravels), explored the treacherous, disease-ridden coasts of Africa from Morocco to South Africa beyond the Cape of Good Hope. By the 1470s, the Portuguese had reached the Gulf of Guinea and, in the early 1480s, what is now Angola. Bartolomeu Dias's extraordinary voyage of 1487-88 to South Africa's coast and the edge of the Indian Ocean convinced Portugal that the best route to Asia's spices and Christians lay south, around the tip of southern Africa. Between 1488 and 1495, there was a hiatus caused in part by domestic conflict in Portugal, discussion of resources available for further conquests beyond Africa in Asia, and serious questions as to Portugal's capacity to reach beyond Africa. In 1495, King Manuel and his council decided to strike for Asia, whatever the consequences. In 1497-99, Vasco da Gama, under royal orders, made the epic two-year voyage that discovered the sea route to western India (Asia), outflanked Islam and Venice, and began Portugal's Asian empire. Within 50 years, Portugal had discovered and begun the exploitation of its largest colony, Brazil, and set up forts and trading posts from the Middle East (Aden and Ormuz), India (Calicut, Goa, etc.), Malacca, and Indonesia to Macau in China.By the 1550s, parts of its largely coastal, maritime trading post empire from Morocco to the Moluccas were under siege from various hostile forces, including Muslims, Christians, and Hindi. Although Moroccan forces expelled the Portuguese from the major coastal cities by 1550, the rival European monarchies of Castile (Spain), England, France, and later Holland began to seize portions of her undermanned, outgunned maritime empire.In 1580, Phillip II of Spain, whose mother was a Portuguese princess and who had a strong claim to the Portuguese throne, invaded Portugal, claimed the throne, and assumed control over the realm and, by extension, its African, Asian, and American empires. Phillip II filled the power vacuum that appeared in Portugal following the loss of most of Portugal's army and its young, headstrong King Sebastião in a disastrous war in Morocco. Sebastiao's death in battle (1578) and the lack of a natural heir to succeed him, as well as the weak leadership of the cardinal who briefly assumed control in Lisbon, led to a crisis that Spain's strong monarch exploited. As a result, Portugal lost its independence to Spain for a period of 60 years.Portugal under Spanish Rule, 1580-1640Despite the disastrous nature of Portugal's experience under Spanish rule, "The Babylonian Captivity" gave birth to modern Portuguese nationalism, its second overseas empire, and its modern alliance system with England. Although Spain allowed Portugal's weakened empire some autonomy, Spanish rule in Portugal became increasingly burdensome and unacceptable. Spain's ambitious imperial efforts in Europe and overseas had an impact on the Portuguese as Spain made greater and greater demands on its smaller neighbor for manpower and money. Portugal's culture underwent a controversial Castilianization, while its empire became hostage to Spain's fortunes. New rival powers England, France, and Holland attacked and took parts of Spain's empire and at the same time attacked Portugal's empire, as well as the mother country.Portugal's empire bore the consequences of being attacked by Spain's bitter enemies in what was a form of world war. Portuguese losses were heavy. By 1640, Portugal had lost most of its Moroccan cities as well as Ceylon, the Moluccas, and sections of India. With this, Portugal's Asian empire was gravely weakened. Only Goa, Damão, Diu, Bombay, Timor, and Macau remained and, in Brazil, Dutch forces occupied the northeast.On 1 December 1640, long commemorated as a national holiday, Portuguese rebels led by the duke of Braganza overthrew Spanish domination and took advantage of Spanish weakness following a more serious rebellion in Catalonia. Portugal regained independence from Spain, but at a price: dependence on foreign assistance to maintain its independence in the form of the renewal of the alliance with England.Restoration and Second Empire, 1640-1822Foreign affairs and empire dominated the restoration era and aftermath, and Portugal again briefly enjoyed greater European power and prestige. The Anglo-Portuguese Alliance was renewed and strengthened in treaties of 1642, 1654, and 1661, and Portugal's independence from Spain was underwritten by English pledges and armed assistance. In a Luso-Spanish treaty of 1668, Spain recognized Portugal's independence. Portugal's alliance with England was a marriage of convenience and necessity between two monarchies with important religious, cultural, and social differences. In return for legal, diplomatic, and trade privileges, as well as the use during war and peace of Portugal's great Lisbon harbor and colonial ports for England's navy, England pledged to protect Portugal and its scattered empire from any attack. The previously cited 17th-century alliance treaties were renewed later in the Treaty of Windsor, signed in London in 1899. On at least 10 different occasions after 1640, and during the next two centuries, England was central in helping prevent or repel foreign invasions of its ally, Portugal.Portugal's second empire (1640-1822) was largely Brazil-oriented. Portuguese colonization, exploitation of wealth, and emigration focused on Portuguese America, and imperial revenues came chiefly from Brazil. Between 1670 and 1740, Portugal's royalty and nobility grew wealthier on funds derived from Brazilian gold, diamonds, sugar, tobacco, and other crops, an enterprise supported by the Atlantic slave trade and the supply of African slave labor from West Africa and Angola. Visitors today can see where much of that wealth was invested: Portugal's rich legacy of monumental architecture. Meanwhile, the African slave trade took a toll in Angola and West Africa.In continental Portugal, absolutist monarchy dominated politics and government, and there was a struggle for position and power between the monarchy and other institutions, such as the Church and nobility. King José I's chief minister, usually known in history as the marquis of Pombal (ruled 1750-77), sharply suppressed the nobility and theChurch (including the Inquisition, now a weak institution) and expelled the Jesuits. Pombal also made an effort to reduce economic dependence on England, Portugal's oldest ally. But his successes did not last much beyond his disputed time in office.Beginning in the late 18th century, the European-wide impact of the French Revolution and the rise of Napoleon placed Portugal in a vulnerable position. With the monarchy ineffectively led by an insane queen (Maria I) and her indecisive regent son (João VI), Portugal again became the focus of foreign ambition and aggression. With England unable to provide decisive assistance in time, France—with Spain's consent—invaded Portugal in 1807. As Napoleon's army under General Junot entered Lisbon meeting no resistance, Portugal's royal family fled on a British fleet to Brazil, where it remained in exile until 1821. In the meantime, Portugal's overseas empire was again under threat. There was a power vacuum as the monarch was absent, foreign armies were present, and new political notions of liberalism and constitutional monarchy were exciting various groups of citizens.Again England came to the rescue, this time in the form of the armies of the duke of Wellington. Three successive French invasions of Portugal were defeated and expelled, and Wellington succeeded in carrying the war against Napoleon across the Portuguese frontier into Spain. The presence of the English army, the new French-born liberal ideas, and the political vacuum combined to create revolutionary conditions. The French invasions and the peninsular wars, where Portuguese armed forces played a key role, marked the beginning of a new era in politics.Liberalism and Constitutional Monarchy, 1822-1910During 1807-22, foreign invasions, war, and civil strife over conflicting political ideas gravely damaged Portugal's commerce, economy, and novice industry. The next terrible blow was the loss of Brazil in 1822, the jewel in the imperial crown. Portugal's very independence seemed to be at risk. In vain, Portugal sought to resist Brazilian independence by force, but in 1825 it formally acknowledged Brazilian independence by treaty.Portugal's slow recovery from the destructive French invasions and the "war of independence" was complicated by civil strife over the form of constitutional monarchy that best suited Portugal. After struggles over these issues between 1820 and 1834, Portugal settled somewhat uncertainly into a moderate constitutional monarchy whose constitution (Charter of 1826) lent it strong political powers to exert a moderating influence between the executive and legislative branches of the government. It also featured a new upper middle class based on land ownership and commerce; a Catholic Church that, although still important, lived with reduced privileges and property; a largely African (third) empire to which Lisbon and Oporto devoted increasing spiritual and material resources, starting with the liberal imperial plans of 1836 and 1851, and continuing with the work of institutions like the Lisbon Society of Geography (established 1875); and a mass of rural peasants whose bonds to the land weakened after 1850 and who began to immigrate in increasing numbers to Brazil and North America.Chronic military intervention in national politics began in 19th-century Portugal. Such intervention, usually commencing with coups or pronunciamentos (military revolts), was a shortcut to the spoils of political office and could reflect popular discontent as well as the power of personalities. An early example of this was the 1817 golpe (coup) attempt of General Gomes Freire against British military rule in Portugal before the return of King João VI from Brazil. Except for a more stable period from 1851 to 1880, military intervention in politics, or the threat thereof, became a feature of the constitutional monarchy's political life, and it continued into the First Republic and the subsequent Estado Novo.Beginning with the Regeneration period (1851-80), Portugal experienced greater political stability and economic progress. Military intervention in politics virtually ceased; industrialization and construction of railroads, roads, and bridges proceeded; two political parties (Regenerators and Historicals) worked out a system of rotation in power; and leading intellectuals sparked a cultural revival in several fields. In 19th-century literature, there was a new golden age led by such figures as Alexandre Herculano (historian), Eça de Queirós (novelist), Almeida Garrett (playwright and essayist), Antero de Quental (poet), and Joaquim Oliveira Martins (historian and social scientist). In its third overseas empire, Portugal attempted to replace the slave trade and slavery with legitimate economic activities; to reform the administration; and to expand Portuguese holdings beyond coastal footholds deep into the African hinterlands in West, West Central, and East Africa. After 1841, to some extent, and especially after 1870, colonial affairs, combined with intense nationalism, pressures for economic profit in Africa, sentiment for national revival, and the drift of European affairs would make or break Lisbon governments.Beginning with the political crisis that arose out of the "English Ultimatum" affair of January 1890, the monarchy became discredtted and identified with the poorly functioning government, political parties splintered, and republicanism found more supporters. Portugal participated in the "Scramble for Africa," expanding its African holdings, but failed to annex territory connecting Angola and Mozambique. A growing foreign debt and state bankruptcy as of the early 1890s damaged the constitutional monarchy's reputation, despite the efforts of King Carlos in diplomacy, the renewal of the alliance in the Windsor Treaty of 1899, and the successful if bloody colonial wars in the empire (1880-97). Republicanism proclaimed that Portugal's weak economy and poor society were due to two historic institutions: the monarchy and the Catholic Church. A republic, its stalwarts claimed, would bring greater individual liberty; efficient, if more decentralized government; and a stronger colonial program while stripping the Church of its role in both society and education.As the monarchy lost support and republicans became more aggressive, violence increased in politics. King Carlos I and his heir Luís were murdered in Lisbon by anarchist-republicans on 1 February 1908. Following a military and civil insurrection and fighting between monarchist and republican forces, on 5 October 1910, King Manuel II fled Portugal and a republic was proclaimed.First Parliamentary Republic, 1910-26Portugal's first attempt at republican government was the most unstable, turbulent parliamentary republic in the history of 20th-century Western Europe. During a little under 16 years of the republic, there were 45 governments, a number of legislatures that did not complete normal terms, military coups, and only one president who completed his four-year term in office. Portuguese society was poorly prepared for this political experiment. Among the deadly legacies of the monarchy were a huge public debt; a largely rural, apolitical, and illiterate peasant population; conflict over the causes of the country's misfortunes; and lack of experience with a pluralist, democratic system.The republic had some talented leadership but lacked popular, institutional, and economic support. The 1911 republican constitution established only a limited democracy, as only a small portion of the adult male citizenry was eligible to vote. In a country where the majority was Catholic, the republic passed harshly anticlerical laws, and its institutions and supporters persecuted both the Church and its adherents. During its brief disjointed life, the First Republic drafted important reform plans in economic, social, and educational affairs; actively promoted development in the empire; and pursued a liberal, generous foreign policy. Following British requests for Portugal's assistance in World War I, Portugal entered the war on the Allied side in March 1916 and sent armies to Flanders and Portuguese Africa. Portugal's intervention in that conflict, however, was too costly in many respects, and the ultimate failure of the republic in part may be ascribed to Portugal's World War I activities.Unfortunately for the republic, its time coincided with new threats to Portugal's African possessions: World War I, social and political demands from various classes that could not be reconciled, excessive military intervention in politics, and, in particular, the worst economic and financial crisis Portugal had experienced since the 16th and 17th centuries. After the original Portuguese Republican Party (PRP, also known as the "Democrats") splintered into three warring groups in 1912, no true multiparty system emerged. The Democrats, except for only one or two elections, held an iron monopoly of electoral power, and political corruption became a major issue. As extreme right-wing dictatorships elsewhere in Europe began to take power in Italy (1922), neighboring Spain (1923), and Greece (1925), what scant popular support remained for the republic collapsed. Backed by a right-wing coalition of landowners from Alentejo, clergy, Coimbra University faculty and students, Catholic organizations, and big business, career military officers led by General Gomes da Costa executed a coup on 28 May 1926, turned out the last republican government, and established a military government.The Estado Novo (New State), 1926-74During the military phase (1926-32) of the Estado Novo, professional military officers, largely from the army, governed and administered Portugal and held key cabinet posts, but soon discovered that the military possessed no magic formula that could readily solve the problems inherited from the First Republic. Especially during the years 1926-31, the military dictatorship, even with its political repression of republican activities and institutions (military censorship of the press, political police action, and closure of the republic's rowdy parliament), was characterized by similar weaknesses: personalism and factionalism; military coups and political instability, including civil strife and loss of life; state debt and bankruptcy; and a weak economy. "Barracks parliamentarism" was not an acceptable alternative even to the "Nightmare Republic."Led by General Óscar Carmona, who had replaced and sent into exile General Gomes da Costa, the military dictatorship turned to a civilian expert in finance and economics to break the budget impasse and bring coherence to the disorganized system. Appointed minister of finance on 27 April 1928, the Coimbra University Law School professor of economics Antônio de Oliveira Salazar (1889-1970) first reformed finance, helped balance the budget, and then turned to other concerns as he garnered extraordinary governing powers. In 1930, he was appointed interim head of another key ministry (Colonies) and within a few years had become, in effect, a civilian dictator who, with the military hierarchy's support, provided the government with coherence, a program, and a set of policies.For nearly 40 years after he was appointed the first civilian prime minister in 1932, Salazar's personality dominated the government. Unlike extreme right-wing dictators elsewhere in Europe, Salazar was directly appointed by the army but was never endorsed by a popular political party, street militia, or voter base. The scholarly, reclusive former Coimbra University professor built up what became known after 1932 as the Estado Novo ("New State"), which at the time of its overthrow by another military coup in 1974, was the longest surviving authoritarian regime in Western Europe. The system of Salazar and the largely academic and technocratic ruling group he gathered in his cabinets was based on the central bureaucracy of the state, which was supported by the president of the republic—always a senior career military officer, General Óscar Carmona (1928-51), General Craveiro Lopes (1951-58), and Admiral Américo Tómaz (1958-74)—and the complicity of various institutions. These included a rubber-stamp legislature called the National Assembly (1935-74) and a political police known under various names: PVDE (1932-45), PIDE (1945-69),and DGS (1969-74). Other defenders of the Estado Novo security were paramilitary organizations such as the National Republican Guard (GNR); the Portuguese Legion (PL); and the Portuguese Youth [Movement]. In addition to censorship of the media, theater, and books, there was political repression and a deliberate policy of depoliticization. All political parties except for the approved movement of regime loyalists, the União Nacional or (National Union), were banned.The most vigorous and more popular period of the New State was 1932-44, when the basic structures were established. Never monolithic or entirely the work of one person (Salazar), the New State was constructed with the assistance of several dozen top associates who were mainly academics from law schools, some technocrats with specialized skills, and a handful of trusted career military officers. The 1933 Constitution declared Portugal to be a "unitary, corporative Republic," and pressures to restore the monarchy were resisted. Although some of the regime's followers were fascists and pseudofascists, many more were conservative Catholics, integralists, nationalists, and monarchists of different varieties, and even some reactionary republicans. If the New State was authoritarian, it was not totalitarian and, unlike fascism in Benito Mussolini's Italy or Adolf Hitler's Germany, it usually employed the minimum of violence necessary to defeat what remained a largely fractious, incoherent opposition.With the tumultuous Second Republic and the subsequent civil war in nearby Spain, the regime felt threatened and reinforced its defenses. During what Salazar rightly perceived as a time of foreign policy crisis for Portugal (1936-45), he assumed control of the Ministry of Foreign Affairs. From there, he pursued four basic foreign policy objectives: supporting the Nationalist rebels of General Francisco Franco in the Spanish Civil War (1936-39) and concluding defense treaties with a triumphant Franco; ensuring that General Franco in an exhausted Spain did not enter World War II on the Axis side; maintaining Portuguese neutrality in World War II with a post-1942 tilt toward the Allies, including granting Britain and the United States use of bases in the Azores Islands; and preserving and protecting Portugal's Atlantic Islands and its extensive, if poor, overseas empire in Africa and Asia.During the middle years of the New State (1944-58), many key Salazar associates in government either died or resigned, and there was greater social unrest in the form of unprecedented strikes and clandestine Communist activities, intensified opposition, and new threatening international pressures on Portugal's overseas empire. During the earlier phase of the Cold War (1947-60), Portugal became a steadfast, if weak, member of the US-dominated North Atlantic Treaty Organization alliance and, in 1955, with American support, Portugal joined the United Nations (UN). Colonial affairs remained a central concern of the regime. As of 1939, Portugal was the third largest colonial power in the world and possessed territories in tropical Africa (Angola, Mozambique, Guinea-Bissau, and São Tomé and Príncipe Islands) and the remnants of its 16th-century empire in Asia (Goa, Damão, Diu, East Timor, and Macau). Beginning in the early 1950s, following the independence of India in 1947, Portugal resisted Indian pressures to decolonize Portuguese India and used police forces to discourage internal opposition in its Asian and African colonies.The later years of the New State (1958-68) witnessed the aging of the increasingly isolated but feared Salazar and new threats both at home and overseas. Although the regime easily overcame the brief oppositionist threat from rival presidential candidate General Humberto Delgado in the spring of 1958, new developments in the African and Asian empires imperiled the authoritarian system. In February 1961, oppositionists hijacked the Portuguese ocean liner Santa Maria and, in following weeks, African insurgents in northern Angola, although they failed to expel the Portuguese, gained worldwide media attention, discredited the New State, and began the 13-year colonial war. After thwarting a dissident military coup against his continued leadership, Salazar and his ruling group mobilized military repression in Angola and attempted to develop the African colonies at a faster pace in order to ensure Portuguese control. Meanwhile, the other European colonial powers (Britain, France, Belgium, and Spain) rapidly granted political independence to their African territories.At the time of Salazar's removal from power in September 1968, following a stroke, Portugal's efforts to maintain control over its colonies appeared to be successful. President Americo Tomás appointed Dr. Marcello Caetano as Salazar's successor as prime minister. While maintaining the New State's basic structures, and continuing the regime's essential colonial policy, Caetano attempted wider reforms in colonial administration and some devolution of power from Lisbon, as well as more freedom of expression in Lisbon. Still, a great deal of the budget was devoted to supporting the wars against the insurgencies in Africa. Meanwhile in Asia, Portuguese India had fallen when the Indian army invaded in December 1961. The loss of Goa was a psychological blow to the leadership of the New State, and of the Asian empire only East Timor and Macau remained.The Caetano years (1968-74) were but a hiatus between the waning Salazar era and a new regime. There was greater political freedom and rapid economic growth (5-6 percent annually to late 1973), but Caetano's government was unable to reform the old system thoroughly and refused to consider new methods either at home or in the empire. In the end, regime change came from junior officers of the professional military who organized the Armed Forces Movement (MFA) against the Caetano government. It was this group of several hundred officers, mainly in the army and navy, which engineered a largely bloodless coup in Lisbon on 25 April 1974. Their unexpected action brought down the 48-year-old New State and made possible the eventual establishment and consolidation of democratic governance in Portugal, as well as a reorientation of the country away from the Atlantic toward Europe.Revolution of Carnations, 1974-76Following successful military operations of the Armed Forces Movement against the Caetano government, Portugal experienced what became known as the "Revolution of Carnations." It so happened that during the rainy week of the military golpe, Lisbon flower shops were featuring carnations, and the revolutionaries and their supporters adopted the red carnation as the common symbol of the event, as well as of the new freedom from dictatorship. The MFA, whose leaders at first were mostly little-known majors and captains, proclaimed a three-fold program of change for the new Portugal: democracy; decolonization of the overseas empire, after ending the colonial wars; and developing a backward economy in the spirit of opportunity and equality. During the first 24 months after the coup, there was civil strife, some anarchy, and a power struggle. With the passing of the Estado Novo, public euphoria burst forth as the new provisional military government proclaimed the freedoms of speech, press, and assembly, and abolished censorship, the political police, the Portuguese Legion, Portuguese Youth, and other New State organizations, including the National Union. Scores of political parties were born and joined the senior political party, the Portuguese Community Party (PCP), and the Socialist Party (PS), founded shortly before the coup.Portugal's Revolution of Carnations went through several phases. There was an attempt to take control by radical leftists, including the PCP and its allies. This was thwarted by moderate officers in the army, as well as by the efforts of two political parties: the PS and the Social Democrats (PPD, later PSD). The first phase was from April to September 1974. Provisional president General Antonio Spínola, whose 1974 book Portugal and the Future had helped prepare public opinion for the coup, met irresistible leftist pressures. After Spinola's efforts to avoid rapid decolonization of the African empire failed, he resigned in September 1974. During the second phase, from September 1974 to March 1975, radical military officers gained control, but a coup attempt by General Spínola and his supporters in Lisbon in March 1975 failed and Spínola fled to Spain.In the third phase of the Revolution, March-November 1975, a strong leftist reaction followed. Farm workers occupied and "nationalized" 1.1 million hectares of farmland in the Alentejo province, and radical military officers in the provisional government ordered the nationalization of Portuguese banks (foreign banks were exempted), utilities, and major industries, or about 60 percent of the economic system. There were power struggles among various political parties — a total of 50 emerged—and in the streets there was civil strife among labor, military, and law enforcement groups. A constituent assembly, elected on 25 April 1975, in Portugal's first free elections since 1926, drafted a democratic constitution. The Council of the Revolution (CR), briefly a revolutionary military watchdog committee, was entrenched as part of the government under the constitution, until a later revision. During the chaotic year of 1975, about 30 persons were killed in political frays while unstable provisional governments came and went. On 25 November 1975, moderate military forces led by Colonel Ramalho Eanes, who later was twice elected president of the republic (1976 and 1981), defeated radical, leftist military groups' revolutionary conspiracies.In the meantime, Portugal's scattered overseas empire experienced a precipitous and unprepared decolonization. One by one, the former colonies were granted and accepted independence—Guinea-Bissau (September 1974), Cape Verde Islands (July 1975), and Mozambique (July 1975). Portugal offered to turn over Macau to the People's Republic of China, but the offer was refused then and later negotiations led to the establishment of a formal decolonization or hand-over date of 1999. But in two former colonies, the process of decolonization had tragic results.In Angola, decolonization negotiations were greatly complicated by the fact that there were three rival nationalist movements in a struggle for power. The January 1975 Alvor Agreement signed by Portugal and these three parties was not effectively implemented. A bloody civil war broke out in Angola in the spring of 1975 and, when Portuguese armed forces withdrew and declared that Angola was independent on 11 November 1975, the bloodshed only increased. Meanwhile, most of the white Portuguese settlers from Angola and Mozambique fled during the course of 1975. Together with African refugees, more than 600,000 of these retornados ("returned ones") went by ship and air to Portugal and thousands more to Namibia, South Africa, Brazil, Canada, and the United States.The second major decolonization disaster was in Portugal's colony of East Timor in the Indonesian archipelago. Portugal's capacity to supervise and control a peaceful transition to independence in this isolated, neglected colony was limited by the strength of giant Indonesia, distance from Lisbon, and Portugal's revolutionary disorder and inability to defend Timor. In early December 1975, before Portugal granted formal independence and as one party, FRETILIN, unilaterally declared East Timor's independence, Indonesia's armed forces invaded, conquered, and annexed East Timor. Indonesian occupation encountered East Timorese resistance, and a heavy loss of life followed. The East Timor question remained a contentious international issue in the UN, as well as in Lisbon and Jakarta, for more than 20 years following Indonesia's invasion and annexation of the former colony of Portugal. Major changes occurred, beginning in 1998, after Indonesia underwent a political revolution and allowed a referendum in East Timor to decide that territory's political future in August 1999. Most East Timorese chose independence, but Indonesian forces resisted that verdict untilUN intervention in September 1999. Following UN rule for several years, East Timor attained full independence on 20 May 2002.Consolidation of Democracy, 1976-2000After several free elections and record voter turnouts between 25 April 1975 and June 1976, civil war was averted and Portugal's second democratic republic began to stabilize. The MFA was dissolved, the military were returned to the barracks, and increasingly elected civilians took over the government of the country. The 1976 Constitution was revised several times beginning in 1982 and 1989, in order to reempha-size the principle of free enterprise in the economy while much of the large, nationalized sector was privatized. In June 1976, General Ram-alho Eanes was elected the first constitutional president of the republic (five-year term), and he appointed socialist leader Dr. Mário Soares as prime minister of the first constitutional government.From 1976 to 1985, Portugal's new system featured a weak economy and finances, labor unrest, and administrative and political instability. The difficult consolidation of democratic governance was eased in part by the strong currency and gold reserves inherited from the Estado Novo, but Lisbon seemed unable to cope with high unemployment, new debt, the complex impact of the refugees from Africa, world recession, and the agitation of political parties. Four major parties emerged from the maelstrom of 1974-75, except for the Communist Party, all newly founded. They were, from left to right, the Communists (PCP); the Socialists (PS), who managed to dominate governments and the legislature but not win a majority in the Assembly of the Republic; the Social Democrats (PSD); and the Christian Democrats (CDS). During this period, the annual growth rate was low (l-2 percent), and the nationalized sector of the economy stagnated.Enhanced economic growth, greater political stability, and more effective central government as of 1985, and especially 1987, were due to several developments. In 1977, Portugal applied for membership in the European Economic Community (EEC), now the European Union (EU) since 1993. In January 1986, with Spain, Portugal was granted membership, and economic and financial progress in the intervening years has been significantly influenced by the comparatively large investment, loans, technology, advice, and other assistance from the EEC. Low unemployment, high annual growth rates (5 percent), and moderate inflation have also been induced by the new political and administrative stability in Lisbon. Led by Prime Minister Cavaco Silva, an economist who was trained abroad, the PSD's strong organization, management, and electoral support since 1985 have assisted in encouraging economic recovery and development. In 1985, the PSD turned the PS out of office and won the general election, although they did not have an absolute majority of assembly seats. In 1986, Mário Soares was elected president of the republic, the first civilian to hold that office since the First Republic. In the elections of 1987 and 1991, however, the PSD was returned to power with clear majorities of over 50 percent of the vote.Although the PSD received 50.4 percent of the vote in the 1991 parliamentary elections and held a 42-seat majority in the Assembly of the Republic, the party began to lose public support following media revelations regarding corruption and complaints about Prime Minister Cavaco Silva's perceived arrogant leadership style. President Mário Soares voiced criticism of the PSD's seemingly untouchable majority and described a "tyranny of the majority." Economic growth slowed down. In the parliamentary elections of 1995 and the presidential election of 1996, the PSD's dominance ended for the time being. Prime Minister Antônio Guterres came to office when the PS won the October 1995 elections, and in the subsequent presidential contest, in January 1996, socialist Jorge Sampaio, the former mayor of Lisbon, was elected president of the republic, thus defeating Cavaco Silva's bid. Young and popular, Guterres moved the PS toward the center of the political spectrum. Under Guterres, the PS won the October 1999 parliamentary elections. The PS defeated the PSD but did not manage to win a clear, working majority of seats, and this made the PS dependent upon alliances with smaller parties, including the PCP.In the local elections in December 2001, the PSD's criticism of PS's heavy public spending allowed the PSD to take control of the key cities of Lisbon, Oporto, and Coimbra. Guterres resigned, and parliamentary elections were brought forward from 2004 to March 2002. The PSD won a narrow victory with 40 percent of the votes, and Jose Durão Barroso became prime minister. Having failed to win a majority of the seats in parliament forced the PSD to govern in coalition with the right-wing Popular Party (PP) led by Paulo Portas. Durão Barroso set about reducing government spending by cutting the budgets of local authorities, freezing civil service hiring, and reviving the economy by accelerating privatization of state-owned enterprises. These measures provoked a 24-hour strike by public-sector workers. Durão Barroso reacted with vows to press ahead with budget-cutting measures and imposed a wage freeze on all employees earning more than €1,000, which affected more than one-half of Portugal's work force.In June 2004, Durão Barroso was invited by Romano Prodi to succeed him as president of the European Commission. Durão Barroso accepted and resigned the prime ministership in July. Pedro Santana Lopes, the leader of the PSD, became prime minister. Already unpopular at the time of Durão Barroso's resignation, the PSD-led government became increasingly unpopular under Santana Lopes. A month-long delay in the start of the school year and confusion over his plan to cut taxes and raise public-sector salaries, eroded confidence even more. By November, Santana Lopes's government was so unpopular that President Jorge Sampaio was obliged to dissolve parliament and hold new elections, two years ahead of schedule.Parliamentary elections were held on 20 February 2005. The PS, which had promised the electorate disciplined and transparent governance, educational reform, the alleviation of poverty, and a boost in employment, won 45 percent of the vote and the majority of the seats in parliament. The leader of the PS, José Sôcrates became prime minister on 12 March 2005. In the regularly scheduled presidential elections held on 6 January 2006, the former leader of the PSD and prime minister, Aníbal Cavaco Silva, won a narrow victory and became president on 9 March 2006. With a mass protest, public teachers' strike, and street demonstrations in March 2008, Portugal's media, educational, and social systems experienced more severe pressures. With the spreading global recession beginning in September 2008, Portugal's economic and financial systems became more troubled.Owing to its geographic location on the southwestern most edge of continental Europe, Portugal has been historically in but not of Europe. Almost from the beginning of its existence in the 12th century as an independent monarchy, Portugal turned its back on Europe and oriented itself toward the Atlantic Ocean. After carving out a Christian kingdom on the western portion of the Iberian peninsula, Portuguese kings gradually built and maintained a vast seaborne global empire that became central to the way Portugal understood its individuality as a nation-state. While the creation of this empire allows Portugal to claim an unusual number of "firsts" or distinctions in world and Western history, it also retarded Portugal's economic, social, and political development. It can be reasonably argued that the Revolution of 25 April 1974 was the most decisive event in Portugal's long history because it finally ended Portugal's oceanic mission and view of itself as an imperial power. After the 1974 Revolution, Portugal turned away from its global mission and vigorously reoriented itself toward Europe. Contemporary Portugal is now both in and of Europe.The turn toward Europe began immediately after 25 April 1974. Portugal granted independence to its African colonies in 1975. It was admitted to the European Council and took the first steps toward accession to the European Economic Community (EEC) in 1976. On 28 March 1977, the Portuguese government officially applied for EEC membership. Because of Portugal's economic and social backwardness, which would require vast sums of EEC money to overcome, negotiations for membership were long and difficult. Finally, a treaty of accession was signed on 12 June 1985. Portugal officially joined the EEC (the European Union [EU] since 1993) on 1 January 1986. Since becoming a full-fledged member of the EU, Portugal has been steadily overcoming the economic and social underdevelopment caused by its imperial past and is becoming more like the rest of Europe.Membership in the EU has speeded up the structural transformation of Portugal's economy, which actually began during the Estado Novo. Investments made by the Estado Novo in Portugal's economy began to shift employment out of the agricultural sector, which, in 1950, accounted for 50 percent of Portugal's economically active population. Today, only 10 percent of the economically active population is employed in the agricultural sector (the highest among EU member states); 30 percent in the industrial sector (also the highest among EU member states); and 60 percent in the service sector (the lowest among EU member states). The economically active population numbers about 5,000,000 employed, 56 percent of whom are women. Women workers are the majority of the workforce in the agricultural and service sectors (the highest among the EU member states). The expansion of the service sector has been primarily in health care and education. Portugal has had the lowest unemployment rates among EU member states, with the overall rate never being more than 10 percent of the active population. Since joining the EU, the number of employers increased from 2.6 percent to 5.8 percent of the active population; self-employed from 16 to 19 percent; and employees from 65 to 70 percent. Twenty-six percent of the employers are women. Unemployment tends to hit younger workers in industry and transportation, women employed in domestic service, workers on short-term contracts, and poorly educated workers. Salaried workers earn only 63 percent of the EU average, and hourly workers only one-third to one-half of that earned by their EU counterparts. Despite having had the second highest growth of gross national product (GNP) per inhabitant (after Ireland) among EU member states, the above data suggest that while much has been accomplished in terms of modernizing the Portuguese economy, much remains to be done to bring Portugal's economy up to the level of the "average" EU member state.Membership in the EU has also speeded up changes in Portuguese society. Over the last 30 years, coastalization and urbanization have intensified. Fully 50 percent of Portuguese live in the coastal urban conurbations of Lisbon, Oporto, Braga, Aveiro, Coimbra, Viseu, Évora, and Faro. The Portuguese population is one of the oldest among EU member states (17.3 percent are 65 years of age or older) thanks to a considerable increase in life expectancy at birth (77.87 years for the total population, 74.6 years for men, 81.36 years for women) and one of the lowest birthrates (10.59 births/1,000) in Europe. Family size averages 2.8 persons per household, with the strict nuclear family (one or two generations) in which both parents work being typical. Common law marriages, cohabitating couples, and single-parent households are more and more common. The divorce rate has also increased. "Youth Culture" has developed. The young have their own meeting places, leisure-time activities, and nightlife (bars, clubs, and discos).All Portuguese citizens, whether they have contributed or not, have a right to an old-age pension, invalidity benefits, widowed persons' pension, as well as payments for disabilities, children, unemployment, and large families. There is a national minimum wage (€385 per month), which is low by EU standards. The rapid aging of Portugal's population has changed the ratio of contributors to pensioners to 1.7, the lowest in the EU. This has created deficits in Portugal's social security fund.The adult literacy rate is about 92 percent. Illiteracy is still found among the elderly. Although universal compulsory education up to grade 9 was achieved in 1980, only 21.2 percent of the population aged 25-64 had undergone secondary education, compared to an EU average of 65.7 percent. Portugal's higher education system currently consists of 14 state universities and 14 private universities, 15 state polytechnic institutions, one Catholic university, and one military academy. All in all, Portugal spends a greater percentage of its state budget on education than most EU member states. Despite this high level of expenditure, the troubled Portuguese education system does not perform well. Early leaving and repetition rates are among the highest among EU member states.After the Revolution of 25 April 1974, Portugal created a National Health Service, which today consists of 221 hospitals and 512 medical centers employing 33,751 doctors and 41,799 nurses. Like its education system, Portugal's medical system is inefficient. There are long waiting lists for appointments with specialists and for surgical procedures.Structural changes in Portugal's economy and society mean that social life in Portugal is not too different from that in other EU member states. A mass consumption society has been created. Televisions, telephones, refrigerators, cars, music equipment, mobile phones, and personal computers are commonplace. Sixty percent of Portuguese households possess at least one automobile, and 65 percent of Portuguese own their own home. Portuguese citizens are more aware of their legal rights than ever before. This has resulted in a trebling of the number of legal proceeding since 1960 and an eight-fold increase in the number of lawyers. In general, Portuguese society has become more permissive and secular; the Catholic Church and the armed forces are much less influential than in the past. Portugal's population is also much more culturally, religiously, and ethnically diverse, a consequence of the coming to Portugal of hundreds of thousands of immigrants, mainly from former African colonies.Portuguese are becoming more cosmopolitan and sophisticated through the impact of world media, the Internet, and the World Wide Web. A prime case in point came in the summer and early fall of 1999, with the extraordinary events in East Timor and the massive Portuguese popular responses. An internationally monitored referendum in East Timor, Portugal's former colony in the Indonesian archipelago and under Indonesian occupation from late 1975 to summer 1999, resulted in a vote of 78.5 percent for rejecting integration with Indonesia and for independence. When Indonesian prointegration gangs, aided by the Indonesian military, responded to the referendum with widespread brutality and threatened to reverse the verdict of the referendum, there was a spontaneous popular outpouring of protest in the cities and towns of Portugal. An avalanche of Portuguese e-mail fell on leaders and groups in the UN and in certain countries around the world as Portugal's diplomats, perhaps to compensate for the weak initial response to Indonesian armed aggression in 1975, called for the protection of East Timor as an independent state and for UN intervention to thwart Indonesian action. Using global communications networks, the Portuguese were able to mobilize UN and world public opinion against Indonesian actions and aided the eventual independence of East Timor on 20 May 2002.From the Revolution of 25 April 1974 until the 1990s, Portugal had a large number of political parties, one of the largest Communist parties in western Europe, frequent elections, and endemic cabinet instability. Since the 1990s, the number of political parties has been dramatically reduced and cabinet stability increased. Gradually, the Portuguese electorate has concentrated around two larger parties, the right-of-center Social Democrats (PSD) and the left-of-center Socialist (PS). In the 1980s, these two parties together garnered 65 percent of the vote and 70 percent of the seats in parliament. In 2005, these percentages had risen to 74 percent and 85 percent, respectively. In effect, Portugal is currently a two-party dominant system in which the two largest parties — PS and PSD—alternate in and out of power, not unlike the rotation of the two main political parties (the Regenerators and the Historicals) during the last decades (1850s to 1880s) of the liberal constitutional monarchy. As Portugal's democracy has consolidated, turnout rates for the eligible electorate have declined. In the 1970s, turnout was 85 percent. In Portugal's most recent parliamentary election (2005), turnout had fallen to 65 percent of the eligible electorate.Portugal has benefited greatly from membership in the EU, and whatever doubts remain about the price paid for membership, no Portuguese government in the near future can afford to sever this connection. The vast majority of Portuguese citizens see membership in the EU as a "good thing" and strongly believe that Portugal has benefited from membership. Only the Communist Party opposed membership because it reduces national sovereignty, serves the interests of capitalists not workers, and suffers from a democratic deficit. Despite the high level of support for the EU, Portuguese voters are increasingly not voting in elections for the European Parliament, however. Turnout for European Parliament elections fell from 40 percent of the eligible electorate in the 1999 elections to 38 percent in the 2004 elections.In sum, Portugal's turn toward Europe has done much to overcome its backwardness. However, despite the economic, social, and political progress made since 1986, Portugal has a long way to go before it can claim to be on a par with the level found even in Spain, much less the rest of western Europe. As Portugal struggles to move from underde-velopment, especially in the rural areas away from the coast, it must keep in mind the perils of too rapid modern development, which could damage two of its most precious assets: its scenery and environment. The growth and future prosperity of the economy will depend on the degree to which the government and the private sector will remain stewards of clean air, soil, water, and other finite resources on which the tourism industry depends and on which Portugal's world image as a unique place to visit rests. Currently, Portugal is investing heavily in renewable energy from solar, wind, and wave power in order to account for about 50 percent of its electricity needs by 2010. Portugal opened the world's largest solar power plant and the world's first commercial wave power farm in 2006.An American documentary film on Portugal produced in the 1970s described this little country as having "a Past in Search of a Future." In the years after the Revolution of 25 April 1974, it could be said that Portugal is now living in "a Present in Search of a Future." Increasingly, that future lies in Europe as an active and productive member of the EU. -
3 скорость
скорость сущ1. speed2. velocity аэродинамика малых скоростейlow-speed aerodynamicsаэродинамическая труба больших скоростейhigh-speed wind tunnelаэродинамическая труба околозвуковых скоростейtransonic wind tunnelбезопасная скоростьsafety speedбезопасная скорость взлетаtakeoff safety speedблок датчиков угловых скоростей гироскопаrate gyro unitблок контроля скорости пробега по землеground run monitorвектор воздушной скоростиairspeed vectorвектор путевой скоростиground speed vectorвертикальная скоростьvertical speedвоздушная скоростьairspeedвосстанавливать скоростьregain the speedвыдерживание скоростиspeed holdingвыдерживать требуемую скорость полетаmaintain the flying speedвычислитель воздушной скоростиair-speed computerгаситель скоростиspeedbrakeгасить посадочную скоростьkill the landing speedгасить скорость в полетеdecelerate in the flightгашение скоростейspeed bleedoffгиперзвуковая скоростьhypersonic speedдатчик воздушной скорости1. airspeed transmitter2. airspeed sensor датчик скоростиvelocity sensorдатчик угловой скорости крена1. roll-rate pickup2. roll rate sensor диапазон больших скоростейhigh-speed rangeдиапазон скоростейspeed rangeдозвуковая скоростьsubsonic speedдопустимая скоростьallowable speedдопустимая эксплуатационная скоростьpermissible operating speedединица скорости телеграфной передачиbaudзадавать определенную скоростьset up the speedзаданная скорость1. target speed2. sufficient speed 3. on-speed замедлять скоростьspeed downзапас скоростиspeed marginзаход на посадку с уменьшением скоростиdecelerating approachзона выдерживания скоростиspeed control areaизмеритель угловой скоростиturnmeterизмеритель угловой скорости кренаrate-of-roll meterиндикаторная воздушная скорость1. calibrate airspeed2. rectified airspeed информация о скоростиrate informationисправленная воздушная скоростьcorrected airspeedисправленная скоростьbasic speed(с учетом погрешности измерения) истинная воздушная скоростьtrue airspeedкомбинированный указатель скоростиcombination airspeed indicatorкоммерческая скоростьblock speedкрейсерская скоростьcruising speedкрейсерская скорость для полета максимальной дальностиlong-range cruise speedкритическая скоростьhump speedлинейная скорость1. linear velocity2. linear speed максимальная скорость порываgust peak speed(воздушной массы) максимально допустимая скорость1. maximum limit speed2. never-exceed speed максимально допустимая скорость прохождения порога ВППmaximum threshold speedмгновенная вертикальная скоростьinstantaneous vertical speed(полета) минимальная безопасная скорость взлетаminimum takeoff safety speedминимальная посадочная скоростьminimum landing speedминимальная скорость отрываminimum unstick speedминимальная скорость полетаminimum flying speedминимально допустимая скорость прохождения порога ВППminimum threshold speedнабирать заданную скорость полетаobtain the flying speedнаименьшая начальная скоростьslowest initial speed(полета) на полной скоростиat full speedнаращивать скоростьgather the speedна скорости1. at a speed of2. on the speed ограничение по скорости полетаair-speed limitationоколозвуковая скорость1. transonic speed2. near-sonic speed окружная скоростьcircumferential speedокружная скорость законцовки воздушного винтаpropeller tip speedокружная скорость лопасти воздушного винтаairscrew blade speedокружная скорость лопатки вентилятораfan tip speedотносительная воздушная скоростьrelative airspeedотносительная скоростьrelative velocityпереходить к скорости набора высотыtransit to the climb speedполет на малой скоростиlow-speed flightполет с уменьшением скоростиdecelerating flightпоправка на воздушную скоростьairspeed compensationпосадочная скоростьlanding speedпоступательная скоростьforward speedпредел скоростей на крейсерском режимеcruising speeds rangeпредел скорости ветраwind limitпредельная скоростьtop speedприборная воздушная скорость1. indicated airspeed2. basic airspeed продольная составляющая скоростиlongitudinal velocityпутевая скорость1. ground speed(скорость воздушного судна относительно земли) 2. ground velocity 3. actual speed равнодействующий вектор скоростиresultant velocity vectorразвивать заданную скорость1. gain the speed2. attain the speed 3. pick up the speed разгонять до скоростиaccelerate to the speedрасчетная воздушная скоростьdesign airspeedрасчетная скоростьdesign speedрасчетная скорость полетаreference flight speedрасчетная скорость сходаexit design speed(с ВПП) регистратор воздушной скоростиair-speed recorderрегулируемая скоростьgoverned speedреле максимальной скоростиspeed warning relayсамопроизвольное восстановление скоростиfree speed returnсверхзвуковая скорость1. supersonic speed2. ultrasonic speed сигнализатор достижения предельной скоростиlimit speed switchсистема привода с постоянной скоростьюconstant speed drive systemсистема управления скоростьюspeed control system(полета) скорость аварийного слива топливаfuel dumping rateскорость балансировкиrate of trimскорость бокового движенияsideward flight speed(вертолета) скорость бокового скольжения1. lateral velocity2. rate of sideslip скорость вертикального порываvertical gust speed(воздушной массы) скорость ветраwind speedскорость ветра у поверхностиsurface wind speed(земли) скорость взлетаtakeoff speedскорость воздушного суднаaircraft speedскорость возникновения бафтингаbuffeting onset speedскорость возникновения флаттераflutter onset speedскорость вращенияrotational speedскорость встречного ветраheadwind speedскорость в условиях турбулентности1. rough airspeed2. rough-air speed скорость выпуска - уборки шассиlanding gear operating speedскорость газового потокаgas flow velocityскорость горизонтального полетаlevel-flight speedскорость движения воздушной массыair velocityскорость, заданная подвижным индексомbug speed(прибора) скорость замедленияdecreasing speedскорость заправки топливных баковfuel tank filling rateскорость затуханияdegeneration speed(звукового удара) скорость захода на посадку1. landing approach speed2. approach speed скорость захода на посадку с убранной механизацией крылаno-flap - no-slat approach speedскорость захода на посадку с убранными закрылкамиno-flap approach speedскорость захода на посадку с убранными предкрылкамиno-slat approach speedскорость звука1. sonic speed2. velocity of sound 3. sound velocity скорость изменения бокового отклоненияcrosstrack distance change rateскорость изменения высотыaltitude rateскорость изменения шага винтаpitch-change rateскорость истечения выхлопных газовexhaust velocityскорость истечения выходящих газов на срезе реактивного соплаnozzle exhaust velocityскорость истечения газовexit velocityскорость кренаrate of rollскорость маневрированияmanoeuvring speedскорость набора высотыascensional rateскорость набора высоты при выходе из зоныclimb-out speedскорость набора высоты при полете по маршрутуen-route climb speedскорость набора высоты с убранными закрылками1. flaps-up climbing speed2. flaps-up climb speed 3. no-flap climb speed скорость на начальном участке набора высоты при взлетеspeed at takeoff climbскорость начала торможенияbrake application speedскорость обгонаovertaking speed(воздушного судна) скорость отклонения закрылковrate of flaps motionскорость отработкиfollow-up rateскорость отрываliftoff speed(при разбеге) скорость отрыва носового колесаrotation speed(при взлете) скорость отрыва при взлетеunstick speedскорость парашютированияsink speed(при посадке) скорость первоначального этапа набора высотыinitial climb speedскорость перед сваливаниемprestall speed(на крыло) скорость пикированияdive speedскорость планированияgliding speedскорость полетаflight speedскорость полета на малом газеflight idle speedскорость попутного ветраtailwind speedскорость порываgust velocityскорость по тангажуrate of pitchскорость прецессииprecession rateскорость при аварийном сниженииemergency descent speedскорость при взлетнойspeed in takeoff configuration(конфигурации воздушного судна) скорость при всех работающих двигателяхall engines speedскорость при выпуске закрылковflaps speedскорость при выпущенных интерцепторахspoiler extended speedскорость при касанииtouchdown speed(ВПП) скорость принятия решенияdecision speed(пилотом) скорость при отказе критического двигателяcritical engine failure speedскорость при полностью убранных закрылкахzero flaps speedскорость при посадочнойspeed in landing configuration(конфигурации воздушного судна) скорость протяжки лентыtape speed(бортового регистратора) скорость прохождения порога ВППthreshold speedскорость разворотаrate of turnскорость раскрытияopening speed(парашюта) скорость рассогласованияrate of disagreementскорость реакцииreaction rateскорость руленияtaxiing speedскорость рысканияrate of yawскорость сближения1. closing speed(воздушных судов) 2. rate of closure скорость сваливанияstalling speed(на крыло) скорость скоса потока внизdownwash velocityскорость слива топливаfuel off-load rateскорость снижения1. descent velocity2. rate of descent скорость снижения перед касаниемsink rateскорость снижения при заходе на посадкуapproach rate of descentскорость сносаdrift rateскорость согласованияslaving rateскорость схода с ВППturnoff speedскорость таможенной пошлиныrate of dutyскорость установившегося полетаsteady flight speedскорость установившегося разворотаsustained turn rateскорость ухода гироскопаgyro drift rateснижать скорость воздушного судна доdecelerate the aircraft toсоставляющая скоростиvelocity componentсредняя скоростьmean speedтаблица поправок воздушной скоростиair-speed calibration cardтарировка указателя воздушной скоростиair-speed indicator calibrationтерять заданную скоростьlose the speedточно выдерживать скоростьhold the speed accuratelyтрафарет ограничения воздушной скоростиairspeed placardтреугольник скоростейtriangle of velocitiesувеличение скоростиspeed increaseувеличивать скоростьincrease the speedугловая скорость1. angular speed2. angular velocity 3. angular rate указатель воздушной скорости1. airspeed indicator2. airspeed instrument указатель индикаторной воздушной скоростиcalibrated airspeed indicatorуказатель путевой скоростиground speed indicatorуказатель скоростиspeed pointerуказатель скорости ветраwind speed indicatorуказатель скорости кренаrate-of-roll indicatorуказатель скорости набора высотыvariometerуказатель скорости разворотаrate-of-turn indicatorуказатель скорости рысканияrate-of-yaw indicatorуказатель скорости снижения на ВППrising runway indicatorуказатель скорости сносаspeed-and-drift meterуказатель сноса и скоростиdrift-speed indicatorуменьшать скоростьdecrease the speedуменьшение скоростиdecelerationуменьшение скорости за счет лобового сопротивленияdeceleration due to dragустановившаяся скорость набора высотыsteady rate of climbустойчивость по скоростиspeed stabilityфактическая воздушная скоростьactual airspeedфактическая скоростьdemonstrated speedфактическая скорость истечения выходящих газовactual exhaust velocityэволютивная скоростьcontrol speedМинимально допустимая скорость при сохранении управляемости. эквивалентная воздушная скоростьequivalent airspeedэкономическая скоростьeconomic speed(при минимальном расходе топлива) эксплуатационная скоростьoperating speedэффект скорости поступательного движенияforward speed effect -
4 датчик
transmitter, sensor, pickup,
pick-off, transducer
первичный механизм, воспринимающий измеряемую величину в той или иной форме, чаще всего механичеекой, и передающий эту величину указателю в виде электрических импульсов. — а device used for generation of signals of any type and form which are to be transmitted.
- (преобразователь) — transducer
устройство, служащее для преобразования сигнала или физической величины одного вида в соответствующую физическую величину др. вида, — а device used for converting а signal or physical quantity of one kind into a corresponding physical quantity of another kind.
- (общий термин для датчиков сельсинов и скт) — control transmitter
- автомата торможения (рис. 32) — skid detector
- автоматики (топливомера) — level switch
- акселерометра (акселерометер) — accelerometer
-, аналоговый — analog sensor
-, антиюзовый — skid detector
- аэродинамических углов (дау) — airflow-angle sensor, airflowdirection sensor
-, барометрический (типа kb-11) — pressure altitude sensor
- барометрической высоты (системы мсрп) — (pressure) altitude sensor
-, безконтактный — contactless sensor
- ветра — wind unit
- вибрации — vibration pickup
- вибрации (вибрационный), вертикальный — vertical vibration pickup
- вибрации (вибрационный), горизонтальный — horizontal vibration pickup
- вибрации двигателя — engine vibration pickup
- вибрации, магнитный — magnetic vibration pickup
-, вибрационный — vibration pickup
- водности (системы сигнализации обледенения) — water-content sensor
- воздушной скорости (двс) — airspeed transmitter (sensor)
двс предназначен для измерения воздушной скорости и выдачи соответствующего сигнала в систему автоматического управления полетом, — the purpose of the airspeed transmitter is to sense airspeed and provide a signal representing the sensed airspeed to an automatic flight control system for continuous gain changing.
- воздушных параметров (систем мсрп) — air data sensor (ads)
- воздушных сигналов — air data sensor
двс преобразует величины полного и статического давлений в электрические сигналы для работы системы в режимах высота, ивс и верт. скорость — ads converts pitot and static pressure to electrical signals for alt, ias, and vs modes
- воздушной коррекции — altitude transmitter
двк служит для измерения статического давления и выдачи соответствующих эл. сигналов с потенциометра — the altitude transmitter senses static pressure (altitude) and provides appropriate potentiometer output signals.
- высоты (дискретный, пороговый) — altitude switch
прибор, в котором происходит замыкание или размыкадатчик — an instrument in which electrical contacts are made or
ние контактов при достижении заданной высоты — broken at а predetermined height.
- высоты (пропорциональный) — altitude transmitter
- давления — pressure transmitter
датчик, выдающий электрический сигнал пропорциональный измеряемому давлению, — а transducer for providing an electrical signal proportional to the pressure to be measured.
- давления, индуктивный — induction pressure transmitter
- давления, манометрический — pressure transmitter,
- давления масла — oil pressure transmitter
- давления, приемный (сигнализатора обледенения) — pressure sensing probe
- давления, пьезоэлектрический — piezoelectric pressure transmitter
- давления топлива — fuel pressure transmitter
- давления топлива перед насосом-регулятором — fcu inlet fuel pressure transmitter
- давления, эталонный (сигнализатора обледения) — reference pressure probe
-, дифференциальный — differential transmitter
- замыкающего скачка уплотнения — terminal shock sensor
- заправки (топливных) кессонов — fuel quantity transmitter
- изменения высоты (высотный корректор автопилота) — altitude controller
- измерителя крутящего момента (икм) — torque pressure transmitter
-, индуктивный (манометра) — induction pressure transmitter
- индукционного манометра — induction pressure transmitter
-, индукционный (ид, из комплекта гидроиндукционного компаса) ид выдает эл. сигнал пропорциональный вепичине магнитного поля земли, действующего вдоль оси датчика. — flux-gate (detector) /valve/ flux-gate detector gives the electrical signal proportional to the intensity of the external magnetic field acting along its axis.
-, индукционный (сельсин-датчик) — linear synchro transmitter
-, инерциальный (противоюзовый) — (inertial) skid detector
срабатывает при определенной угловой скорости вращения тормозного колеса.
- интенсивности обледенения (до) — icing rate detector
- истинной воздушной скорости — true airspeed transmitter (ias xmtr)
- компенсирующего момента (датчика линейных ускорений) — acceleration sensor/accelerometer/torquer
-, контактный — contact pick-off
датчик, в котором относительное перемещение (подвижного элемента) замыкает или разрывает электрическую цепь. — а pick-off in which relative displacement makes and/or breaks an electric circuit.
- крена (сельсин) — roll (signal) transmitting synchro
- крена, кренов (дк, автопилота для выдачи сигналов крена и тангажа) — vertical gyro (vg)
- крена, гироскопический — roll gyro
- крена гировертикали — vertical gyro roll pick-up, roll pick-up of remote vertical gyro
- крена и тангажа (гироплатформы) — pitch and roll gyro
- крена и тангажа (курсовертикали) — vertical gyro (vg)
- критических углов атаки — stall sensor
- курса (гироплатформы) — azimuth gyro
- курса (курсовертикали) — directional gyro
- курсового угла гироплатфомы — stable platform azimuth gyro
- курсовых углов (дку, астрокомпаса) — star tracker unit
- линейных ускорений (дпу) — linear acceleration sensor, linear accelerometer
- магнитного курса (индукционный, ид) — flux gate detector
-, магнитный (в системе дгмк) " — magnetic detector
- мановакууметра (пд) — manifold pressure transmitter
- манометра — pressure(gage)transmitter
- манометра масла — oil pressure transmitter
- манометра топлива — fuel pressure transmitter
- масломера (в баке) — oil quantity/level/transmitter
- мгновенного расходомера — rate-of-flow transmitter/metering unit/
- (сигнализатор) минимального давления масла — minimum oil pressure switch
- момента акселерометра — accelerometer torquer
(дмаx, дмау, дмаz - относительно соответствующих осей) — the torquer coils restore the pendulum to null.
- момента (моментов) гироскопа — gyro torquer
(дмwх, дмwу относительно соответствующих осей) — electromagnetic torquer is provided so that а calibrated torque can be applied to the gyro wheel at the known rate.
-, моментный (гироскопа) — qyro torquer
-, моментный (датчик компенсирующего момента датчика линейных ускорений) — acceleration sensor/accelerometer/torquer
- моментов, момента, моментный (в сельсинной передаче) — torque transmitter. control transmitters are often made identical to torque transmitters.
- обледенения (до) — ice detector
- обнаружения пожара — fire detector
- оборотов (регулятор) — speed governor
- оборотов (тахометра) — tachometer generator
- оборотов (чувствительный элемент регулятора) — speed sensor
- оборотов колеса — wheel speed transducer
- обратной связи (дос) — feedback (position) transducer
- (поворота) оси крена (гироплатформы) — roll-axis pickout
- (поворота) оси курса (гироплатформы) — azimuth-axis pickoff
- (поворота) оси тангажа (гироплатформы) — pitch-axis pickoff
- отклонения от заданной скорости (в указателе скорости) — speed deviation transmitter (in airspeed indicator)
- отклонение руля (поверхно сти управления) (дор) — control surface position transmitter
- отклонения руля, сельсинный — control surface position synchro
- относительного направления воздушного потока — airflow-direction sensor
- отношения давлений — pressure ratio transmitter
- отрицательного крутящего момента — negative torque pickup
- отрицательной тяги (твд) — propeller-drag pickup
- перегрева (двигателя) (дп). срабатывает при повышении температуры во внутренней полости двигателя до 550ё150 ос. — engine overheat detector (ovht det)
- перегрева (сигнализатор пожара) — fire detector
- перегрева (термосигнализатор) — thermal switch
- перегрева, термопарный (дп) — thermocouple-type overheat detector
- перегрузок — acceleration sensor, accelerometer
- перегрузок (системы мсрп) — acceleration sensor
- переменной индуктивности, безконтактный — contactless variable inductance (type) sensor
- перемещений (дп) — position transmitter
- поворота — rate-of-trun sensor
гироскопический датчик сигналов на указатель поворота командного прибора директорного управления. — а gyro-operated device that puts out electrical signals to operate the rate-of-turn indicator of the fd indicator.
- поворота оси крена (курса, тангажа) (гироплатформы) — roll (azimuth, pitch) - axis pickoff
- пожарной сигнализации (дпс) — fire detector
-, потенциометрической (потенциометр) — potentiometer
-, потенциометрический — potentiometer transmitter/pickoff/
датчик, в котором перемещение его двух элементов изменяет расстояние между ползунком и неподвижным выводом потенциометра, находящегося под током. — а pick-off in which relative displacement of its two components varies the distance between а sliding contact and fixed tapping point on a potentiometer energized by an applied voltage.
- предельных оборотов — top speed transmitter
- (-) преобразователь — transducer
- приборной скорости (системы мсрп) — ias sensor
- приведенных оборотов — engine speed sensing unit
- противопожарный (дп) — fire detector
-, пьезоэлектрический — piezoelectric/ceramic, crystal/ transducer
- рамы: рамки (гироскопа) — gimbal pickoff
- рассогласования (в следящей системе стабилизации гироплатформы) — error sensor. angle-measuring gyres are used as error sensors stabilization servo loops.
- расходомера воздуха (урвк) — venturi/venturi/tube
- расходомера топлива — fuel flow transmitter/metering unit/
- режимов (др) — throttle (valve) position transmitter
датчик положения рычага насоса-регулятора.
- рыскания (флюгерный) — yaw vane
-, сельсинный — synchro control transmitter (сх)
сельсин, ротор которого поворачивается механически для выдачи эл. сигналов, соответствующих угловому попожению ротора. — а synchro, the rotor of which is mechanically positioned, for transmitting electrical information corresponding to angular positions of the rotor.
-, сельсинный, дифференциальный — synchro control differential transmitter (cdx)
обычно используется для выдачи сигналов на сельсины приемника (ckt). — normally used to supply control transformers or other control differential transmitters.
- (-) сигнализатор времени — time switch
-(-) сигнализатор с магнитоуправляемым, контактом (дмск, топливомера) — fuel quantity transmitter with magnet-operated level switch
- (-) сигнализатор углов атаки (дсу) — contacting angle-of-attack transmitter /sensor/
- (-) сигнализатор уровня (топпива) — (fuel) level switch
- сигнализатора льда (длс) — ice detector
- сигнализации положения (опоры) шасси — landing gear position transmitter
- (синусно-косинусный трансформатор) — resolver control transmitter (rx)
resolver-type component (fourwire synehro) may be modified for service as fourwire transmitter (rx).
системы сигнализации пожаpa — fire detector
- скорости вращения турбины — turbine tachometer generator
- скорости, доплеровской — doppler velocity sensor
для выдачи сигналов путевой скорости и угла сноса — ground speed and drift angle are supplied from a doppler velocity sensor.
- скорости и плотности (воздуха) (дсп) — airspeed and density transmitter
- ckt (синусно-косинусный трансформатор) — resolver (type) control transmitter (rx)
- суммирующего расходомера — total flow transmitter /metering unit/
- t4 (температуры газов за турбиной) — egt/tgt/probe
- тангажа (сельсин) — pitch (signal) transmitting synchro
- тангажа гировертикали — vertical gyro pitch pick-up, pitch pick-up of remote verti
- тангажа, гироскопический — pitch gyro
- тангажа и рыскания, флюгерный (на штанге в носовой части фюзеляжа) — probe with pitch and yaw vanes
- тахометра — tachometer generator
- тахометрической аппаратуры, индукционный (дта) — (induction) speed transducer
- температуры — temperature sensor /probe/
- температуры (выходящих) газов за турбиной (термопарный) — turbine gas temperature (thermocouple-type) probe, tgt probe
- температуры заторможенноro потока (температуры полного торможения) — total temperature sensor
- температуры наружного воздуха (типа п-5) — outside air temperature probe, oat probe
- температуры полного торможения (возд. потока) — total temperature sensor /probe/
- температуры торможения возд. потока (на входе в гтд) — (engine inlet) total /stagnation, ram/ temperature probe
- термометра выходящих газов (термопарный) — exhaust gas thermocouple (probe)
- термометра сопротивления — temperature bulb
- топливомера — fuel quantity transmitter, tank unit
- топливомера, емкостный — capacitance-type fuel quantity transmitter
работает на принципе изменения своей электрической емкости в зависимости от уровня топлива в баке. — the capacitance-type fuel quantity transmitter is a tank unit which serves as a probe whose capacitance depends upon the fuel quantity.
- топливомера, поплавковый — float-type fuel quantuty transmitter
- топливомера e сигнализатором кровня — fuel quantity transmitter with level switch
- угла — angle transducer
служит для выдачи угловой информации в систему воздушных сигналов. — angle transducer transmits angle information to the airdata computer.
- угла (синусно-косинусный трансформатор) — resolver (control transmitter), resolver's control transmitter
- угла (w, v, y) — (w, v, y) angle pickoff, (azimuth pitch, roll) angle pickoff
- угла акселерометра (дуаx, дуау, дуаz, относительно соответствующих осей) — accelerometer (pendulum) angle /rotation/ pickoff.
- угла (углов) атаки (дуа) — angle of attack sensor /transmitter/, alpha sensor, airflow angle sensor
датчик для замера угла набегающего потока относительно произвольной линии отсчета (местный угол атаки или скольжения) — the angle of attack trnasmitter is designed to measure angles of airflow with respect to an arbitrary reference line (local angle of attack or slideslip).
- угла атаки (однофлюгерный) — angle of attack sensor, alpha sensor
- угла атаки (флюгерный) — angle-of-attack vane
- угла атаки и приемник пвд, комбинированный — combined pitot-static-flow angle sensor
- угла атаки и скольжения — angle of attack and slideslip sensor /transmitter/
- угла атаки флюгерного типа — vane-driven angle of attack sensor /transmitter/
- угла гироскопа (дуx, дуу, дуz по соответствующим — gyro (gimbal) angle pickoff /transducer/
осям) — if the gyro case rotates the gimbal angles change and the pick off detects the rotation.
the gimbal angles are measured by transducers.
- yrлa гироскопа (типа скт) — gyro (gimbal) angle resolver
the gimbal angles are measured by transducers usually resolvers.
- угла, гироскопический (крена, направления (курса), тангажа. общий термин) — displacement gyro
- угла (поворота) инерционной массы (маятника) акселерометра — accelerometer pendulum angle/rotation/ pickoff the pickoff coils detect rotation (angle) of the pendulum from the null position.
- угла карданной рамы гироскопа — gyro gimbal angle pickoff /transducer/
- угла крена (гироскопа) — roll gyro
- угла крена (сельсин-датчик на оси крена агд-1) — roll (signal) transmitting synchro
- угла крена и тангажа (агд) — vertical gyro
- угла кренов (крена и тан — vertical gyro
- угла курса (гироскопический) — directional gyro
в качестве д.у.к. применяется гироагрегат курсовертикали
- угла маневра (сельсин-датчик системы курсовертикали — attitude change angle (signal) transmitting synchro
- угла маневра (cкт-датчик инерциальной системы) — attitude change angle resolver (control transmitter)
- угла направления (курса) — directional gyro (dg), azimuth gyro
- угла отклонения поверхности управления — control surface position /angle/ transmitter
- угла (курса, крена, тангажа) поворота оси гироплатформы (синусно-косинусные трансформаторы скт) — (azimuth, roll, pitch) resolver (control transmitter)
- угла рамы (рамки) гироскопа) — gyro gimbal angle pickoff
- угла тангажа (гироскопа) — pitch gyro
- угла тангажа (сельсин-датчик на оси тангажа агд-1) — pitch (signal) transmitting synchro
- угловой скорости (гироскопический, дус) — rate gyro/sensor/
дус - двухстепенный гироскоп с ограниченной пружиной степенью свободы рамки таким образом, что отклонение оси вращения является величиной угловой скорости корпуса прибора. — rate gyro has one degree of freedom other than spinning one and so constrained that deflection of the spin axis relative to the case is the measure of angular velocity of the case.
- угловой скорости крена — roll rate gyro /sensor/
- угловой скорости крена и тангажа — pitch and roll rate gyro /sensor/
- угловой скорости рыскания — yaw rate gyro /sensor/
- угловой скорости тангажа — pitch rate gyro /sensor/
- угловых перемещений — angular displacement transmitter, position transmitter
- угловых положений поверхностей управления (рулей) — control surface position /angle/ transmitter
- указателя оборотов (тахометра) — tachometer generator, rpm indicator generator
- указателя положения закрылков — flap position transmitter
- указателя положения заслойки (клапана) — valve position transmitter
- указателя положения шасси — landing gear position transmitter
- указателя положения элементов самолета (узп) — position transmitter
- уровня (жидкости в баке) — fluid quantity transmitter
- уровня масла в маслобаке — oil quantity transmitter
- уровня масла (в маслобаке для включения сигнальной лампы или табло) — oil level switch
- усилий (ду, в проводке управления) — control force sensor
- усилий по крену (ду-к) — roll control force sensor
- усилий по тангажу (ду-т) — pitch control force sensor
- ускорений — acceleration sensor, accelerometer
- усталостных трещин — fatigue crack probe
- флюгирования (возд. винта) по крутящему моменту — torque-actuated autofeather pickup /sensor/
- флюгирования (возд. винта) по отрицательной тяге — drag-actuated /activated/ autofeather pickup /sensor/
-, центробежный (противоюзовый, тормозного колеса) — (centrifugal) skid detector
срабатывает при определенной угловой скорости вращения колеса.
-, центробежный (датчика приведенных оборотов) — centrifugal flyweights assembly
- часового расходомера — rate-of-flow transmitter /metering unit/
- частоты вращения (дчв) — tachometer generator
- частоты вращения (числа оборотов) второго (ii) или первого (i) каскада компрессора — hp (or lp) rotor tachometer generator
-, четырехобмоточный (типа скт) — four-wire transmitter (of resolver-type (rx))
- числа оборотов — tachometer generator
-, электроемкостный (топливомера) — capacitance-type fuel quantity transmitter, capacitance-type fuel tank unit
- юза (инерциальный) (рис. 32) — skid detector
- a руд (датчик режимов) — throttle position transmitterРусско-английский сборник авиационно-технических терминов > датчик
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5 циклический сдвиг
1. barrel shiftиспытывать сдвиг во времени на … — be shifted in time by …
2. ring shiftсдвиговый регистр; регистр со сдвигами — shift register
3. rotate4. rotation5. circular shift6. cycle shift7. cyclic shift8. end-around carry shift9. end-around shiftсдвиг фазы; фазовый сдвиг; сдвиг по фазе — phase shift
10. nonarithmetic shiftсдвигающая обмотка; обмотка сдвига — shift winding
11. nonarithmetical shiftток сдвига; ток сдвигающей цепи — shift current
Русско-английский большой базовый словарь > циклический сдвиг
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6 угол
angle, corner* * *у́гол м.1. (фигура, образованная двумя сторонами) мат. angleу́гол в, напр. 65° — an angle of, e. g., 65°дели́ть у́гол попола́м — bisect an angleу́гол, заключё́нный ме́жду … — the angle contained by …образо́вывать у́гол — form an angleдве стороны́ образу́ют у́гол — two sides form an angleобразо́вывать у́гол с … — make an angle with …у́гол опира́ется на хо́рду — the angle is subtended by the chordоткла́дывать у́гол — lay off an angleповернуть(ся) на у́гол … — turn [rotate] through [by] an angle of …под угло́м … гра́дусов к о́си — at an angle of … degrees with an axisпроводи́ть [стро́ить] у́гол, напр. по транспорти́ру — draw an angle, e. g., with a protractorсоставля́ть у́гол — make an angle of … withу́гол стя́гивается дуго́й — the angle is sustended by the arc2. (место пересечения двух предметов, двух сторон, стык двух стен и т. п.) cornerаперту́рный у́гол — angular aperture, aperture angleу́гол ата́ки аргд. — angle of attack, angle of incidenceу́гол ата́ки ди́сковой бороны́ с.-х. — angle of harrowу́гол ата́ки, докрити́ческий — angle of incidence below stallingу́гол ата́ки, закрити́ческий — angle of incidence beyond stallingу́гол ата́ки, крити́ческий — angle of attack of maximum lift, angle of stallбрэ́гговский у́гол — Bragg angleвале́нтный у́гол — valence angleве́кторный у́гол — vectorial angleвертика́льный у́гол — vertical angleу́гол взма́ха ло́пасти ( несущего винта) ав. — flapping angleу́гол визи́рования — angle of sight, angle of viewу́гол внедре́ния ( ковша экскаватора) — angle of dig (of an excavator bucket)вне́шний у́гол — exterior angleвну́тренний у́гол — interior angleу́гол возмуще́ний аргд. — Mach angleвпи́санный у́гол — inscribed angleу́гол враще́ния — angle of rotationвспомога́тельный у́гол (резца, в плане) — side cut angleу́гол вхо́да — entrance [inlet] angleу́гол вхо́да ватерли́нии — angle of entrance of a water-lineвходя́щий у́гол геод. — reentering (reentrant) angleу́гол вы́хода — outlet [exit] angleу́гол вы́хода ватерли́нии — angle of run of the water-lineу́гол вы́хода (волны́) — angle of departure of a waveу́гол галопи́рования ( наземного транспорта) — angle of pitchгеоцентри́ческий у́гол — geocentric(al) angleгла́вный у́гол (резца, в плане) — plan approach angleу́гол глисса́ды — glide slopeу́гол голо́вки зу́ба ( конической шестерни) — addendum angleу́гол давле́ния ( в зубчатом зацеплении) — pressure angleдвугра́нный у́гол — dihedron, dihedral angleу́гол дели́тельного ко́нуса — pitch cone angleдиастимометри́ческий у́гол геод., опт. — deviating [stadia] wedgeдирекцио́нный у́гол картогр. — direction [position] angle; grid azimuth, y-azimuthу́гол диффере́нта мор. — trim angleу́гол диэлектри́ческих поте́рь — dielectric loss angleдополни́тельный у́гол — (дополняет до 90°) complementary angle; (дополняет до 180°) supplementary angle; (дополняет до 360°) conjugate angleу́гол 35° явля́ется дополни́тельным к углу́ 55° — 35° is complementary to 55°, 55° is complementary to 35°у́гол дре́йфа мор. — drift [leeway] angleу́гол есте́ственного отко́са — angle [slope] of reposeза́дний у́гол — ( резца) end-clearance angle; ( сверла) lip-relief angle; ( рыхлителя) heel clearanceза́дний, вспомога́тельный у́гол — end rake angleза́дний, гла́вный у́гол — side rake angleу́гол зажига́ния ( тиратрона) — firing angleу́гол зазо́ра — clearance angleу́гол зака́та диагра́ммы стати́ческой осто́йчивости мор. — angle of vanishing stabilityу́гол закру́чивания — twist [torsion] angleу́гол запа́здывания по фа́зе — lag angleу́гол засе́чки геод. — angle of crossing, intersection angleуглы́ зато́чки резца́ — tool anglesу́гол захва́та — ( валков) прок. angle of bite; ( щековой дробилки) nip angleзащи́тный у́гол ( троса заземления ЛЭП) — shielding angleу́гол зе́ва ( валков) прок. — angle of biteу́гол зре́ния — angle of viewу́гол зубча́того зацепле́ния — pressure angleу́гол изги́ба — bend angleу́гол килева́тости мор. — deadrise [rise-of-floor] angleу́гол конверге́нции — angle of convergenceу́гол ко́нусности — taper [cone, included-cone] angleкоордина́тный у́гол — quadrantal angle, quadrantу́гол кре́на1. ав. ( при развороте) angle of bank; ( в прямолинейном полёте) angle of roll2. авто roll [lean] angleу́гол кривизны́ — angle of curvatureкрити́ческий у́гол — critical angleкурсово́й у́гол навиг. — relative bearingкурсово́й у́гол радиоста́нции [КУР] навиг. — radio bearingу́гол Ма́ха — Mach angleмежплоскостно́й у́гол ( кристалла) — interfacial angleмё́ртвый у́гол авто — dead angleу́гол ме́ста — (angle of) elevationу́гол ме́стности — angle of siteу́гол наблюде́ния — observation [viewing] angleу́гол наиме́ньшего отклоне́ния ( призмы) — angle of minimum deflectionу́гол накло́на (кривой, траектории и т. п.) — slopeу́гол накло́на винтово́й кана́вки ( сверла) — angle of flute helixу́гол накло́на о́си обо́ймы щёткодержа́теля эл. — contact bevel angleу́гол накло́на судово́го тра́па — angle of attackу́гол накло́на траекто́рии полё́та — slope of the flight pathувели́чивать у́гол накло́на траекто́рии полё́та — steepen the slope of the flight pathна́крест лежа́щий у́гол — alternate angleу́гла напластова́ния горн. — bedding angleнаправля́ющий у́гол — direction angleу́гол напыле́ния ( между осью струи и покрываемой поверхностью) — spraying angleу́гол насыще́ния ( дросселя с насыщением) — firing angleу́гол но́жки зу́ба — dedendum angleу́гол обзо́ра — angle of aspect, angle of view, angle of sightу́гол обруше́ния горн. — inbreak angleу́гол обхва́та ( шкива ремнём) — angle of contact, wrapping angleу́гол опереже́ния — angle of lead, advance angle, angle of advanceо́стрый у́гол — acute angleу́гол отки́дки ло́пасти ( гребного винта) — rake angleу́гол отклоне́ния руля́ высоты́ — elevator angleу́гол отклоне́ния руля́ направле́ния — rudder angleу́гол отклоне́ния элеро́на — aileron angleу́гол отко́са — angle of slope, angle of reposeу́гол отсе́чки — элк. брит. angle of (anode) current flow; амер. operating angleу́гол отсе́чки составля́ет 90° — the angle of current flow [operating angle] is 180° (Примечание. При переводе величина угла умножается на два.)у́гол отстава́ния — angle of lagу́гол паде́ния1. (света, волны и т. п) angle of incidence2. горн. pitch angle, angle of dipпере́дний у́гол ( резца) — rakeпло́ский у́гол — plane [flat] angleу́гол поворо́та ( транспортного средства) — turning angleу́гол поворо́та стрелы́ ( крана) — angle of swing of a boomу́гол подъё́ма ( линии витка) — helix angleу́гол по́лного вну́треннего отраже́ния — critical angle for total reflectionу́гол по́лной поляриза́ции — angle of polarization, Brewster angleпо́лный у́гол (360°) — perigon, round angleу́гол положе́ния — position angle, angle of situation, angle of siteполя́рный у́гол ( в системе полярных координат) — vectorial angleпополни́тельный у́гол (до 180°) — supplementary angleу́гол ABC и у́гол CBD явля́ются пополни́тельными — angle CBD and angle CBD are supplementary to each otherу́гол в 135° явля́ется пополни́тельным для угла́ 45° — 135° is supplementary to 45°у́гол поса́дки ( рессоры) — seat angleу́гол по́ступи ( гребного винта) — advance angleу́гол пота́птывания ( наземного транспорта) — angle of rollу́гол поте́рь эл [m2]. — loss angleу́гол поте́рь диэле́ктрика — dielectric loss angleпреде́льный у́гол опт. — critical angleу́гол приведе́ния — related [reference] angleу́гол при верши́не — apex [apical, vertex] angleу́гол при верши́не в пла́не ( резца) — nose angleу́гол привя́зки геод. — angle of connectionу́гол при́змы, отклоня́ющий — angle of a prism, prism angleприлежа́щий у́гол — adjacent angleу́гол при обра́тной засе́чке геод. — back [reciprocal] angle, back bearingу́гол при основа́нии — base angleу́гол притека́ния аргд. — flow incidenceу́гол пролё́та ( электрона) — transit angleпростра́нственный у́гол — solid angleпротиволежа́щий у́гол — opposite angleу́гол проходи́мости, за́дний — angle of departureу́гол проходи́мости, пере́дний — angle of approachпрямо́й у́гол (90°) — right angleпутево́й у́гол навиг. — courseпутево́й, за́данный у́гол — course set, course required, Co. Req.путево́й, и́стинный у́гол — true courseпутево́й, факти́ческий у́гол — брит. course made goodу́гол рабо́чего ко́нуса воло́кон — drawing taperу́гол разва́ла бло́ков — included angle of cylindersу́гол разва́ла борто́в су́дна — angle of flareу́гол разва́ла кла́панов — included angle of valvesу́гол разва́ла колё́с — angle of camberразвё́рнутый у́гол — straight [flat] angleу́гол разворо́та — angle of turnу́гол разде́лки кро́мок свар. — groove [bevel] angleу́гол разно́са ( факела) — divergence angleу́гол раскры́ва ЭЛТ — bulb angle of a CRTу́гол распыле́ния струи́ — spray-cone angleу́гол рассе́яния — angle of deflection, scattering angleу́гол рассогласова́ния автмт. — error angleу́гол раство́ра анте́нны — beamwidth of the antennaу́гол раство́ра диагра́ммы напра́вленности анте́нны на у́ровне полови́нной мо́щности — beamwidth at [between] halfpower pointsу́гол раство́ра ко́нуса — opening of a coneу́гол раство́ра пучка́ элк. — beam angleра́стровый у́гол полигр. — screen angleу́гол растру́ба — angle of flareу́гол расхожде́ния — divergence angleу́гол расхожде́ния электро́нного пучка́, полови́нный ( в ЭЛТ) — half-angle subtended by the beamу́гол ре́зания ( резца) — cutting angleу́гол ре́зания, за́дний — relief angle, clearanceу́гол ре́зания, пере́дний — hock angleу́гол рыхле́ния с.-х. — ripping angleу́гол сближе́ния меридиа́нов — angle of convergence, convergent [mapping] thetal angleу́гол сва́ливания ( самолета) — angle of stallу́гол сви́вки кана́та — lay angle of a ropeу́гол сдви́га фаз — phase shiftу́гол скольже́ния — ( по наклонной плоскости) angle of slide; ( гребного винта) slip angleу́гол скольже́ния волны́ ( между падающим лучом и поверхностью) — grazing angle of a waveу́гол ско́са кро́мки — bevel angleсме́жный у́гол — adjacent angleу́гол сно́са — angle of driftсоотве́тственный у́гол — corresponding angleсре́занный у́гол ( дефект формы листа) прок. — cut angleу́гол сры́ва пото́ка аргд. — angle of stallтеле́сный у́гол — solid angleтупо́й у́гол — obtuse angleу́гол упрежде́ния — lead angleу́гол упрежде́ния сно́са ав. — crab angleустраня́ть у́гол упрежде́ния сно́са — decrab, kick off driftу́гол устано́вки, нивелиро́вочный (крыла, хвостового оперения и т. п.) — брит. rigging angle of incidence; амер. incidenceфа́зовый у́гол — phase angleцентра́льный у́гол — central angleчасово́й у́гол астр. — hour angleша́говый у́гол ( гребного винта) — pitch angleуглы́ Э́йлера — Eulerian anglesэкваториа́льный у́гол — equator angle* * * -
7 κυκλικός
A circular, moving in a circle, ,κίνησις Placit.2.7.5
;περίοδος D.S.2.36
: metaph., Procl.Inst.33. Adv. -κῶς, κινεῖσθαι Arist.Cael. 272b24
.2 of a circle,λόγος Iamb. in Nic.p.61
P.; κ. ἀριθμός a number which ends in the same digit when squared, Nicom.Ar.2.17.3 Astrol., subordinate, ruling in rotation, Vett.Val.175.17.b - κὰ ἔτη the minimum duration of life corresponding to a planet, Balbill. in Cat.Cod.Astr.8(4).236, 237.4 - κός (sc. πούς), ὁ, a form of anapaest in which the long syllable is shorter than a normal long, D.H.Comp.17.II κυκλικοί, οἱ, the poets of the Epic cycle (cf. κύκλος), Sch.Il.3.242, al.; alsoἡ κ. Θηβαΐς Ath.11.465e
; but τὸ ποίημα τὸ κ. commonplace, conventional poem (cf.IV), Call.Epigr.30.1.III f.l. for κύκλιος 11,χορός Lys.21.2
; τῶν κυκλικῶν (v.l. κυκλίων)αὐλητῶν Luc.Salt.2
.IV in common use, ἡ κ. (sc. ἔκδοσις ) the vulgate, Sch.Od.16.195, 17.25: but Adv. - κῶς conventionally, οὐ κ. τὰ ἐπίθετα προσέρριπται ib.7.115.Greek-English dictionary (Αγγλικά Ελληνικά-λεξικό) > κυκλικός
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8 клапан
valve
- аварийного останова, (электромагнитный) (двигателя) — emergency fuel shut-off (solenoid) valve
- аварийного сброса двления (гермокабины) — pressure relief valve
- аварийного слива топлива — fuel dump /jettison/ valve
-, автоматический — automatic valve, automaticallyactuated /operated/ valve
- блокировки (напр., системы реверса) — interlock valve
клапан срабатывает при neремещении створок реверса в положение реверсивной тяги. — the valve is mechanically actuated by reverser buckets as they move into reverse position.
-, боковой (ранца парашюта) — side flap
-, бортовой (нагнетания или всасывания, гидросистемы) — external (hydraulic pressure or suction) valve
- вдоха (кислородной маски) — inhalation valve
-, вентиляционный — vent valve
- впрыска — injection valve
- впуска (пд) — intake valve
клапан, открывающийся для впуска рабочей смеси в ципиндр поршневого двигателя — the inlet valve which permits the inflow of fuel-air mixture to the cylinder or cylinders of an internal combustion engine.
-, вспомогательный — sub-valve
- встречной заправки маслом (двигателя через сливной штуцер) — oil pressure filling valve
- выдоха (кислородной маски) — exhalation valve
- выключения (поврежденной части тормозной магистрали) (см. дозатор) — lockout valve
-, выпускной (пд) — exhaust valve
клапан, открывающийся для отвода выхлопных газов, продуктов сгорания после рабочего хода поршневого двигателя. — the outlet valve which permits the burnt gases to be discharged from the cylinder of an internal combustion engine after the power stroke has been completed.
- выпускной (системы кондиционирования воздуха) — outflow valve, pressure relief valve
operate the outflow valve manual control switch to increase cabin altitude.
- высотного корректора (пд) — mixture-control valve
-, выхлопной — exhaust valve
-, главный (ранца парашюта) — main flap
-, грибовидный — mushroom valve
- давления (топливных контуров двигателя) — pressurizing valve
- (-) датчик (напр. давления) — (pressure) sensing valve
the piston is sensitive to pressure difference across the sensing valve.
- двойного действия — double-acting valve
- двойного действия (у главных клапанов заправки топливом) — two-way valve
- двойного действия, разгрузочный — double-acting pressure relief valve
-, двухпозиционный — two-position valve
-, двухсторонний — dual valve
-, двухступенчатый — two-stage valve
-, двухходовой — two-way valve
-, демпфирующий — damping valve
-, дифференциальный (носаca-регулятора) — proportional /proportioning/ valve
-, дозирующий — (flow) metering valve
- дренажа (слива) топливного контура — fuel manifold drain /dump/ valve
- дренажирования (стравливания воздуха при заполнении топливной системы двигателя) — bleeder valve
-, дренажный (воздушный) — vent valve
-, дренажный (сливной) — drain valve
-, дроссельный — throttle valve
-, дроссельный (в отличие от дроссельного крана) — throttling valve
-, дроссельный, вспомогатепьный (насоса высокого давления топлива) — auxiliary throttling valve
- закрыт — valve closed (valve clsd)
-, заливной (заливочный, пд) — priming valve
-, запорный — shut-oft valve
-, запорный (прекращающий подачу топлива в основной топливный контур при уменьшенном расходе топлива, напр., при запуске) — pressurizing valve the valve prevents fuel from entering and pressurizing the main manifold when fuel flow is low (as during engine starting).
- заправка водобака — water tank fill valve
-, заправочный — fill valve
-, заправочный (бака) — tank fill valve
-, заправочный (топливный) — fueling valve, fuel entry valve
-, запуска (возд. стартера) — engine air start valve
- запуска двигателя (воздушный) — engine start valve
установлен в трубопроводе подвода воздуха к воздушному стартеру. — the valve is located in the air duct leading from the aircraft pneumatic manifold to the starter.
-, зарядный — charging valve
-, зарядный (амортизатора шасси) (рис. 31) — shock strut (air) charging valve
-, зарядный (пневматика колеса) (рис. 35) — tire inflation valve
-, золотниковый — slide valve
-, игольчатый — needle valve
-, исполнительный — servo valve
-, кинетический — kinetic valve
-, комбинированный — combined valve
-, лепестковый (кислородной маски) — flap valve, flapper
-, контрольный — check valve
-, магистральный (системы заправки топливом) — (cross-ship) isolation valve
- малого газа — idling valve
- минимального расхода (насоса-регулятора топлива) — minimum flow valve
-, нагнетательный pressure — valve
- нагнетания — pressure valve
-, нагнетающий — pressure valve
-, обеспечивающий подачу давления в к-л. магистраль — pressurizing valve
- обратного торможения (амортстойки шасси) (рис. 29) — snubber valve
-, обратный — check valve (сша), non-return valve (англ.)
клапан, устанавливаемый в трубопроводах или арматурах и пропускающий жидкость или газ только в одном заданном направлении, закрывается при изменении направления движения жидкости. — а valve fitted in pipes and fittings.that automatically seals the return passage of a fluid or а gas because of fluid pressure (back pressure) acting on the valve, i.e., it stops (or checks) reverse flow.
-, обратный калиброванный — orifice check valve
-, общий (системы заправки топливом) — (cross-ship) isolation valve
- ограничения давления пускового топлива — starting fuel pressure limiting valve
- ограничения предельных оборотов (двигателя) — maximum speed limiting /limiter/ valve
- ограничения предельных оборотов ротора квд — hp rotor /shaft/ speed limiter valve
- ограничения расхода (игольчатый) — flow restrictor (needle) valve
- останова (гтд) — hp fuel shut-off valve /cock/
- отбора воздуха от компрессора — compressor air bleed valve
- отбора воздуха за квд — hp compressor air bleed valve
-, отжимной (разъемный) — disconnect /non-spill/ valve
- открыт (трафарет) — valve open(ed)
- отрицательных перегрузок — negative acceleration valve
-, отсечный — cutoff /cutout, shutoff/ valve
- перезаливки — overflow valve
-, переключающий — selector valve
- переключения, челночный (гидросистем бустера) — selector shuttle valve
- перелома характеристики приемистости — acceleration time control valve
- перепада (в топливном регуляторе) — differential pressure regulator valve
- перепуска (обводной) — bypass /by-pass/ valve
- перепуска (из одной полости в другую, напр. для выравнивания давления) — spill valve
- перепуска воздуха (из компрессора) при запуске двигателя клапаны открыты, при достижении определенных оборотов - закрываются, и при снижении режима - открываются. (рис. 49) — compressor bleed valve the compressor bleed valve has two positions: fully open (during starting and acceleration) and fully closed (during normal operating thrust), during deceleration the valve opens.
- перепуска воздуха (с входа кнд на выход квд) — p1/p3 air transfer valve
- перепуска воздуха за v и vi ступенями квд — hp compressor stage 5 and 6 bleed valve
- перепуска, поворотный (компрессора гтд) — rotary-action compressor bleed valve
-, перепускной (поршневого компрессора) — transfer valve
-, перепускной (с термостатическим управлением) — (thermostatically controlled) by-pass valve
-, перепускной (топливомасляного радиатора) — (oil cooler) pressure differential by-pass valve
- подачи топлива при отрицательных перегрузках (в перевернутом полете) — inverted-flight fuel valve
- поддавливания — pressurizing valve
- поддержания (постоянного перепада давления (на дроссельном клапане - дозирующей игле) — proportional /proportioning/ valve. regulates automatically pressure diffrential across throttle valve.
- подпитки (в гидро- или маcляной системе) — replenishment valve
- подпитки (в системе топливной автоматики двигателя) — enrichment valve
-, подпиточный (в гидросистемe) — replenishment valve
-, подпорный (в гидравлической системе уборки и выпуска шасси) (см. усилитель-мультипликатор) — intensifier
-, подпружиненный на закрытие — valve spring-loaded into closed position
-, подпружиненный на открытие — valve spring-loaded into open position
- подсоса воздуха кислороднаго прибора — oxygen regulator diluter valve
-, подтормаживания (колес шасси после уборки) — wheel stopping valve то stop the lg wheel rotation after retraction.
- полной срезки топлива (двиг.) — fuel cutoff /shut-off/ valve
- поплавковой камеры, игольчатый — float needle valve
-, поплавковый — float valve
- последовательного включения — sequence valve
- постоянного давления (кпд, насоса-регулятора или кта) — constant pressure valve
- постоянного (пропорционального) перепада давления (насоса-регулятора или кта) — proportional /proportioning/ valve
клапан поддерживает постаянное давление в каналах подвода топлива к дозирующей игле. работает совместно с высотным корректором. — the proportional valve (works together with an altitude sensing unit) regulates automatically the pressure differentiaf across the throttle valve.
- предельного давления — maximum pressure valve
-, предохранительный — safety valve
-, предохранительный (перепускной) — by-pass valve
-, предохранительный (предотвращающий возникновение отрицательного перепада в гермокабине) — reverse pressure differential relief valve. pressurized cabins must have reverse pressure differential relief valves to automatically prevent a negative pressure differential that would damage the structure.
-, предохранительный (предохраняющий от превышения положительного перепада давлений в гермокабине) — positive pressure relief valve pressurized cabins must have pressure relief valves to automatically limit the positive pressure differential to a predetermined value.
-, предохранительный (разгрузочный) — pressure relief valve
-, предохранительный (регулятора давления гермокабины) — relief valve, pressure safety геlief valve
-, предохранительный (ранца парашюта) — protector flap
-, предохранительный, для вытяжного парашюта — pilot chute protector flap
-, предохранительный, для вытяжного троса (парашюта) — ripcord protector flap
- приемистости (двигателя) — acceleration control valve
- продувки (стравливания) — (air) bleeder valve
-, продувочный — blow-off valve
- проливки маслосистемы (для стравливания воздуха при заполнении системы маслом) — (air) bleeder valve
- пропорционального давления (постоянного перепада) — proportional /proportioning/ valve
- пропорционального расхода — proportional valve
- противодавления (в топливном насосе-регуляторе) — back pressure valve
- противообпеденительного трубопровода, перекрывной — anti-icing shut-off valve (antiice valve)
- противообледенительной системы (двигателя, лобового капота, крыла, оперения) — (engine, nose cowl, wing, сиpennage) anti-icing valve
- пускового топлива (электромагнитный) — (solenoid) starting fuel valve
-, пусковой — starting valve
- разгрузки насоса — pump relief valve
-, разгрузочный — relief valve
-, разгрузочный (системы кондиционирования воздуха) — pressure relief valve pressurized cabin must have pressure relief valve to limit positive pressure differential.
-, разгрузочный аварийный — emergency relief valve
-, разгрузочный основной (в маслосистеме двигателя за фильтром) — (oil system) main pressure relief valve (located downstream of oil filter)
-, разделительный (заправки) — isolating valve
-, разделительный (межбаковый) — intertank valve
-, разделительный (порционер — flow-ratio valve
- разжижения масла (пд) — oil-dilution valve
-, разъемный (не допускающий утечки при отсоединении трубопровода под давлением) — disconnect valve, non-spill valve
- ранца (парашюта) — pack flap
-, распределительный — distributor valve
-, распределительный (гидроусилителя) — servo valve
- регулирования — control valve
- регулирования смеси — mixture-control valve
- регулирования степени повышения давления двигателем (насоса-регулятора) — pressure ratio control valve
-, регулировочный — control valve
- регулятора повышенных оборотов, дозирующий — overspeed governor metering valve
- регулятора пониженных оборотов, дозирующий — underspeed governor metering valve
-, редукционный (редуктор) — (pressure) reducing valve
клапан, понижающий подводимое давление и поддерживающий постоянное давление на выходе. — а pressure reducing valve in the pump outlet ensures that the predetermined outlet pressure is not exceeded.
-, редукционный, кислородный (редуктор) — oxygen pressure reducer
- режимный (термовоздушной противообледенительной системы) (срабатывает в зависимости от режима работы двигателей) — (hot air anti-icing) control valve
- с полым штоком — hollow-stem valve
- с пружиной, действующей на закрытие — valve spring-loaded into closed position
- с пружиной, действующей на открытие — valve spring-loaded into open position
- сброса давления — pressure relief valve
- сброса кислорода в атмосферу — oxygen overboard discharge valve
-, селекторный — selector valve
- слива (дренажный) — drain valve
- слива (возврата жидкости из полости высокого в полость низкого давления) — return valve
- слива (в насосе-регуляторе, для отвода топлива на вход насоса высокого давления) — spill valve operates as safety or relief valve.
- слива топлива (для опорожления баков на земле) — defueling valve, fuel offload valve
- слива топлива из коллектора — fuel manifold drain /dump/ valve
- слива топлива из контуров форсунок — fuel nozzle manifold drain valve
-, сливной (возврата из полости высокого в полость низкого давления) — return valve return valve permits fluid to return from the power cylinder to the hydraulic tank.
-, сливной (дренажный) — drain valve
-, сливной (санузла) — waste valve
- согласования последовательности срабатывания — sequence /sequencing/ valve
- согласования последовательности срабатывания створок реверса вентилятора и основной тяги — fan cascade and primary thrust reverser buckets sequence valve
согласования последовательности срабатывания створок реверсивного устройства — thrust reverser door /bucket/ sequence /sequencing/ valve
-, согласующий (управляющий последовательностью срабатывания) — sequence /sequencing/ valve
-, согласующий шасси (управляющей последовательностью срабатывания-открытия/закрытия створок шасси) — landing gear door operation sequence valve
- спинки (ранца парашюта) — pack pad flap
- срезки топлива — fuel sflutoff /cutoff/ valve
- стравливания воздуха (в маслоагрегате) — air bleeder valve
- стравливания воздуха (отвода) — air discharge valve
- стравливания давления (в баках при заправке топливом под давлением) — blow-off valve the valves prevent build-up of excessive pressures in tanks, when refuelling.
-, стравливающий (давление из амортизатора шасси) — (shock strut) bleeder) valve
-, тарельчатый — plate valve
-, терморазгрузочный — thermal relief valve
-, термостатический (топливомасляного агрегата) — fuel temperature regulator valve
-, топливодозирующий — fuel metering valve
-, торможения (амортизатора шасси) (рис. 29) — shock strut snubber valve
- торможения обратного хода плавающего поршня (амортизатора шасси) — floating piston recovery stroke snubber valve
-, тормозной (тормоза колес) — brake control valve
-, тормозов, разъемный (гидропроводки тормоза) — brake line disconnect valve
-, торцовый (ранца парашюта) — end flap
-, треугольный (ранца парашюта) — triangular flap
-, угловой (ранца парашюта) — corner flap
- управления — control valve
-, управляющий — control valve
- ускоренного слива топлива из топливного коллектора (обычно срабатывает при остановке двигателя) — dump valve. an automatic valve which rapidly drains the fuel manifold when the fuel pressure falls below the predetermined valve.
-, челночный — shuttle valve
-, шариковый — ball valve
-, шаровой — ball-type valve
-, эпектровоздушный — electro-pneumatic valve
-, электрогидравлический — electro-hydraulic valve
-, электромагнитный — solenoid valve
высота подъема к. — valve travel
зависание к. — valve sticking
заедание к. — valve sticking
закрытие к. — valve closing
открытие к. — valve opening
перекрытие к. — valve lap
подсос в к. — valve leaking
отгибать к. (ранца) назад — fold (pack) flap back
притирать к. — grind in /lap/ the valve
расправлять к. (ранца) — straighten (pack) flapРусско-английский сборник авиационно-технических терминов > клапан
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9 колесо
колесо сущwheelбаза колесwheel baseбарабан колесаwheel hubблокировка ориентирующегося колесаcastor lockingвилка колесаwheel forkвнешнее колесо основной опорыouter main wheelвыдерживание перед касанием колес при посадкеholding-offвыдерживать перед касанием колес при посадкеhold offвыемка для ниши колесаwheel well cavityвынос оси колесаwheel axle offsetгидроцилиндр подъема колесаwheel cylinderглиссирование колесаwheel aquaplaningдомкрат для замены колесаwheel jackдопустимый запас высоты от колес до порога ВППthreshold wheel clearanceкасание основными колесамиmainwheels touchdownколесо опоры шассиlanding gear wheelколесо передней опорыnose wheelколесо подъемникаjack wheelколесо штурвала управленияcontrol wheel rimкрепление колеса на штоке амортизатораwheel-to-shock strut suspension(шасси) минимально допускаемое удаление колесаminimum wheel clearanceнагрузка на колесоwheel loadниша для колеса1. whell recess2. wheel well носовое колесоnosewheelносовое колесо, убирающееся впередforward-retracting nosewheelобжатие шины колесаtire deflectionобод колесаwheel rimопорное колесоoutrigger wheelопускать носовое колесоlower the nose wheelориентирование колесаcastoringориентирующееся колесоcastorпакет тормозных дисков колеса шассиbrake rotor and stator assemblyперестановка местами колесrewheelingплавкий термоуказатель перегрева колесаwheel fusible insertплавкий термоуказатель перегрева тормозного колесаfusible plug assemblyполурычажная подвеска колесаwheel semilevered suspension(шасси) приспособление для установки колесаwheel installation deviceпромежуточное кольцо между рабочими колесами турбиныturbine wheels spacerрабочее колесо1. blade wheel2. impeller рабочее колесо двигателяengine impellerрабочее колесо компрессораcompressor rotor wheelрабочее колесо турбиныturbine wheelразъемный барабан колесаsplit wheel hubраскрутка колесаwheel spinup(перед касанием ВПП) раскрутка колес перед посадкойwheel prespinningраспорная втулка колесаwheel spacer ringрычажная подвеска колесаwheel levered suspension(шасси) самоориентирующееся колесоcastoring wheelсервоуправляемое носовое колесоpower-steered nosewheelсистема обратной связи управления разворотом колес передней опоры шассиnosewheel steering follow-up systemскорость отрыва носового колесаrotation speed(при взлете) спаренное носовое колесоdual nosewheelспаренные колеса1. dual wheels2. twin wheels средняя нагрузка на одно колесоequivalent wheel loadступица барабана колесаwheel hub webсцепление колес с поверхностью ВППrunway surface frictionсъемник колесаwheel pullerтормозное колесоbrake wheelтраверса подвески колесаwheel suspension leverугол разворота колесаwheel steering angleудельное давление колеса на грунтwheel specific pressureузел хвостового колесаtailwheel assemblyуправляемое колесоsteerable wheelуправляемое носовое колесоsteerable nosewheelуровень положения глаз над колесами шассиeye-to-wheel heightустройство для замера сцепления колес с поверхностьюsurface friction testerхвостовое колесоtail wheelцилиндр разворота переднего колесаnosewheel steering cylinderшарнир разворота колеса шассиcastoring hingeшасси с ориентирующими колесамиcastor landing gearштурвал, рулевое колесоhandwheelэффективность торможения колесwheel-braking capacity -
10 отрыв
отрыв сущ1. breakaway2. unstick зона отрываliftoff areaминимальная скорость отрываminimum unstick speedотрыв двигателяengine tearwayпреждевременный отрыв от землиpremature liftoffскорость отрываliftoff speed(при разбеге) скорость отрыва носового колесаrotation speed(при взлете) скорость отрыва при взлетеunstick speedточка отрыва при взлетеunstick pointустановленная точка отрыва при взлетеtakeoff fix
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