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dry+cycle

  • 101 rod drilling

    English-Russian big polytechnic dictionary > rod drilling

  • 102 sensitometric development

    English-Russian big polytechnic dictionary > sensitometric development

  • 103 short-hole drilling

    English-Russian big polytechnic dictionary > short-hole drilling

  • 104 spray development

    English-Russian big polytechnic dictionary > spray development

  • 105 thermal drilling

    English-Russian big polytechnic dictionary > thermal drilling

  • 106 thermic development

    English-Russian big polytechnic dictionary > thermic development

  • 107 toner development

    English-Russian big polytechnic dictionary > toner development

  • 108 trial drilling

    English-Russian big polytechnic dictionary > trial drilling

  • 109 capability

    1. возможность; способность
    4-D capability
    9-g capability
    accel-decel capability
    acceleration-deceleration capability
    acoustic processing capability
    aft-loading cargo capability
    air-defence capability
    air-superiority capability
    air-to-air capability
    air-to-air combat capability
    aircraft design capability
    airdrop capability
    all-aspect capability
    all-altitude penetration capability
    all-weather capability
    altitude reporting capability
    anti-g capability
    antihelicopter capability
    antisubmarine capability
    area navigation capability
    autolanding capability
    autonomous landing capability
    baseline capability
    beyond-visual-range capability
    birdstrike capability
    bump absorption capability
    Cat I capability
    climb capability
    CLmax capability
    computational capability
    continued takeoff capability
    cost-effective capability
    counter-countermeasures capability
    crossfeed capability
    crosswind capability
    decoupling capability
    degraded mode capability
    design capability
    diagnostic capability
    direct force capability
    dry-run capability
    dual-role capability
    endurance capability
    energy absorbing capability
    energy absorption capability
    engine-out capability
    enhanced capability
    fail-operational capability
    failure mode capability
    first-look capability
    first-shoot capability
    first-shot capability
    flutter prediction capability
    forward field capability
    full-aerobatic capability
    full-envelope 9-g load factor capability
    full-envelope escape capability
    full-lift capability
    full-envelope capability
    functional capability
    G capability
    g onset rate capability
    go-around capability
    gross weight capability
    hands-off landing capability
    hard-turning capability
    high-alpha capability
    high-g maneuver capability
    high-lift capability
    high-payload/long-range capability
    high-speed cruise capability
    hover capability
    IFR capability
    incidence capability
    independent capability
    inspection capability
    instantaneous maneuver capability
    instantaneous turn capability
    instantaneous turning capability
    instrument flight rule capability
    launch-and-leave capability
    lift capability
    limited all-weather capability
    load factor capability
    load-carrying capability
    loaded capability
    lock-on after launch capability
    look-ahead capability
    look-down shoot-down capability
    look-into-turn capability
    Mach 1.8 capability
    Mach number capability
    maneuver capability
    maneuvering capability
    moving-base capability
    multidesign-point capability
    multimission capability
    multiple-frequency capability
    multipoint tanker capability
    nap-of-the-earth capability
    naval attack capability
    negative-g capability
    night fighting capability
    nozzle vector capability
    off-airfield capability
    off-axis capability
    off-boresight capability
    off-boresight angle capability
    paradrop capability
    payload capability
    payload-carrying capability
    payload/range capability
    pilot-aircraft capability
    pitch rate capability
    pitch-snatch capability
    point-and-shoot capability
    post-stall capability
    probe-and-drogue capability
    PST capability
    range capability
    rate of climb capability
    real-time capability
    reduced-field-length capability
    rotor overspeed capability
    rough airfield capability
    rough field capability
    rough ground capability
    rough surface capability
    rugged-terrain capability
    see-through capability
    self-diagnostic capability
    short-field capability
    short-landing capability
    short-takeoff capability
    simulation capability
    sink-rate capability
    six degree-of-freedom capability
    snap/shoot attack capability
    sortie generation capability
    speed capability
    standoff capability
    stealth capability
    sustained turn capability
    sustained-g capability
    swing capability
    swing-role capability
    temperature capability
    terrain-clearance capability
    tolerance capability
    touchscreen capability
    tracking capability
    trim capability
    turn capability
    two-fail-operate capability
    unimproved-field capability
    variable-cycle capability
    vector capability
    vertical capability
    vertical landing capability
    zero altitude zero speed escape capability

    Авиасловарь > capability

  • 110 Evans, Oliver

    [br]
    b. 13 September 1755 Newport, Delaware, USA
    d. 15 April 1819 New York, USA
    [br]
    American millwright and inventor of the first automatic corn mill.
    [br]
    He was the fifth child of Charles and Ann Stalcrop Evans, and by the age of 15 he had four sisters and seven brothers. Nothing is known of his schooling, but at the age of 17 he was apprenticed to a Newport wheelwright and wagon-maker. At 19 he was enrolled in a Delaware Militia Company in the Revolutionary War but did not see active service. About this time he invented a machine for bending and cutting off the wires in textile carding combs. In July 1782, with his younger brother, Joseph, he moved to Tuckahoe on the eastern shore of the Delaware River, where he had the basic idea of the automatic flour mill. In July 1782, with his elder brothers John and Theophilus, he bought part of his father's Newport farm, on Red Clay Creek, and planned to build a mill there. In 1793 he married Sarah Tomlinson, daughter of a Delaware farmer, and joined his brothers at Red Clay Creek. He worked there for some seven years on his automatic mill, from about 1783 to 1790.
    His system for the automatic flour mill consisted of bucket elevators to raise the grain, a horizontal screw conveyor, other conveying devices and a "hopper boy" to cool and dry the meal before gathering it into a hopper feeding the bolting cylinder. Together these components formed the automatic process, from incoming wheat to outgoing flour packed in barrels. At that time the idea of such automation had not been applied to any manufacturing process in America. The mill opened, on a non-automatic cycle, in 1785. In January 1786 Evans applied to the Delaware legislature for a twenty-five-year patent, which was granted on 30 January 1787 although there was much opposition from the Quaker millers of Wilmington and elsewhere. He also applied for patents in Pennsylvania, Maryland and New Hampshire. In May 1789 he went to see the mill of the four Ellicot brothers, near Baltimore, where he was impressed by the design of a horizontal screw conveyor by Jonathan Ellicot and exchanged the rights to his own elevator for those of this machine. After six years' work on his automatic mill, it was completed in 1790. In the autumn of that year a miller in Brandywine ordered a set of Evans's machinery, which set the trend toward its general adoption. A model of it was shown in the Market Street shop window of Robert Leslie, a watch-and clockmaker in Philadelphia, who also took it to England but was unsuccessful in selling the idea there.
    In 1790 the Federal Plant Laws were passed; Evans's patent was the third to come within the new legislation. A detailed description with a plate was published in a Philadelphia newspaper in January 1791, the first of a proposed series, but the paper closed and the series came to nothing. His brother Joseph went on a series of sales trips, with the result that some machinery of Evans's design was adopted. By 1792 over one hundred mills had been equipped with Evans's machinery, the millers paying a royalty of $40 for each pair of millstones in use. The series of articles that had been cut short formed the basis of Evans's The Young Millwright and Miller's Guide, published first in 1795 after Evans had moved to Philadelphia to set up a store selling milling supplies; it was 440 pages long and ran to fifteen editions between 1795 and 1860.
    Evans was fairly successful as a merchant. He patented a method of making millstones as well as a means of packing flour in barrels, the latter having a disc pressed down by a toggle-joint arrangement. In 1801 he started to build a steam carriage. He rejected the idea of a steam wheel and of a low-pressure or atmospheric engine. By 1803 his first engine was running at his store, driving a screw-mill working on plaster of Paris for making millstones. The engine had a 6 in. (15 cm) diameter cylinder with a stroke of 18 in. (45 cm) and also drove twelve saws mounted in a frame and cutting marble slabs at a rate of 100 ft (30 m) in twelve hours. He was granted a patent in the spring of 1804. He became involved in a number of lawsuits following the extension of his patent, particularly as he increased the licence fee, sometimes as much as sixfold. The case of Evans v. Samuel Robinson, which Evans won, became famous and was one of these. Patent Right Oppression Exposed, or Knavery Detected, a 200-page book with poems and prose included, was published soon after this case and was probably written by Oliver Evans. The steam engine patent was also extended for a further seven years, but in this case the licence fee was to remain at a fixed level. Evans anticipated Edison in his proposal for an "Experimental Company" or "Mechanical Bureau" with a capital of thirty shares of $100 each. It came to nothing, however, as there were no takers. His first wife, Sarah, died in 1816 and he remarried, to Hetty Ward, the daughter of a New York innkeeper. He was buried in the Bowery, on Lower Manhattan; the church was sold in 1854 and again in 1890, and when no relative claimed his body he was reburied in an unmarked grave in Trinity Cemetery, 57th Street, Broadway.
    [br]
    Further Reading
    E.S.Ferguson, 1980, Oliver Evans: Inventive Genius of the American Industrial Revolution, Hagley Museum.
    G.Bathe and D.Bathe, 1935, Oliver Evans: Chronicle of Early American Engineering, Philadelphia, Pa.
    IMcN

    Biographical history of technology > Evans, Oliver

  • 111 engine

    engine n
    двигатель
    adjust the engine
    регулировать двигатель до заданных параметров
    air-cooled engine
    авиационный двигатель воздушного охлаждения
    all engines speed
    скорость при всех работающих двигателях
    altitude engine
    высотный двигатель
    asymmetric engines power
    асимметричная тяга двигателей
    axial-flow итьбю.gas turbine engine
    газотурбинный двигатель с осевым компрессором
    blow down an engine
    выполнять холодный запуск двигателя
    boost engine
    форсажный двигатель
    bypass engine
    двухконтурный двигатель
    center engine
    средний двигатель
    close down an engine
    останавливать двигатель
    combustion engine
    двигатель внутреннего сгорания
    critical engine failure speed
    скорость при отказе критического двигателя
    cut-off engine operation
    порядок выключения двигателя
    dead engine
    отказавший двигатель
    decelerate an engine
    убирать обороты двигателя
    definitive engine
    окончательный вариант двигателя
    derated engine
    двигатель с пониженной тягой
    digital engine control
    цифровой электронный регулятор режимов работы двигателя
    double-flow engine
    двухконтурный турбореактивный двигатель
    double-row radial engine
    двигатель типа двухрядная звезда
    dual-flow turbojet engine
    двухконтурный турбореактивный двигатель
    duct burning bypass engine
    двухконтурный турбореактивный двигатель с дожиганием топлива во втором контуре
    ducted-fan engine
    двухконтурный турбовентиляторный двигатель
    electronic engine control system
    электронная система управления двигателем
    engine accessory gear box
    кулачковый механизм
    engine acoustic performance
    акустическая характеристика двигателя
    engine adapter
    приставка двигателя
    engine adjustment
    регулировка двигателя
    engine air bleed flange
    фланец отбора воздуха от двигателя
    engine airflow
    расход воздуха через двигатель
    engine altitude performances
    высотные характеристики двигателя
    engine anti-icing system
    противообледенительная система двигателей
    (постоянного действия) engine attach fitting
    узел подвески двигателя
    engine attachment pilot
    шкворень крепления двигателя
    engine backup ring
    опорное кольцо вала двигателя
    engine baffle
    дефлектор двигателя
    engine bay
    двигательный отсек
    engine bellcrank
    качалка системы управления
    engine blast
    струя двигателя
    engine breather system
    система суфлирования двигателя
    engine bulkhead
    перегородка двигателя
    engine check pad
    отбойный щит для опробования двигателей
    engine compartment
    отсек двигателя
    engine control system
    система управления двигателем
    engine cooling
    охлаждение двигателя
    engine core
    внутренний контур двигателя
    engine cowl
    капот двигателя
    engine cowl flap
    створка капота двигателя
    engine cranking
    раскрутка двигателя
    engine critical altitude
    высотность двигателя
    engine cycle
    цикл двигателя
    engine cylinder
    цилиндр двигателя
    engine deicing system
    противообледенительная система двигателей
    (переменного действия) engine detuner
    глушитель двигателя
    engine development
    доводка двигателя
    engine dolly
    тележка для транспортировки двигателей
    engine drive shaft
    главный вал двигателя
    engine dry starting
    холодная прокрутка двигателя
    engine duct treatment
    облицовка каналов двигателя
    engine emission
    эмиссия от двигателей
    engine failure
    отказ двигателя
    engine false starting
    ложный запуск двигателя
    engine fan
    вентилятор двигателя
    engine fire shield
    противопожарный экран двигателя
    engine fuel system
    топливная система двигателя
    engine gasket
    прокладка в системе двигателя
    engine generator cooling
    обдув генератора двигателя
    engine ground test time
    время опробования двигателя на земле
    engine hot starting
    запуск двигателя с забросом температуры
    (выше допустимой) engine impeller
    рабочее колесо двигателя
    engine installation
    установка двигателя
    engine internal fine
    пожар внутри двигателя
    engine jacket
    кожух двигателя
    engine lifting beam
    балка крепления двигателя
    engine lifting device
    приспособление для подъема двигателя
    engine limit governor
    регулятор предельных оборотов двигателя
    engine module
    модуль двигателя
    engine module construction
    модульная конструкция
    engine mount
    рама крепления двигателя
    engine mount beam
    балка крепления двигателя
    engine mounting attachment
    узел крепления двигателя
    engine mounting rails
    рельсы закатки двигателя
    engine mounting trunnion
    цапфа подвески двигателя
    engine mount strut
    стойка подмоторной рамы
    engine nacelle
    гондола двигателя
    engine off
    выключенный двигатель
    engine on
    работающий двигатель
    engine operating time
    наработка двигателя
    engine out
    отказавший двигатель
    engine overspeed
    заброс оборотов двигателя
    engine performances
    характеристики двигателя
    engine pylon
    пилон двигателя
    engine relight
    встречный запуск двигателя
    engine retainer
    проставка двигателя
    engine roll-in fitting
    узел закатки двигателя
    engine rundown
    выбег двигателя
    engine runin time
    время обкатки двигателя
    engine running
    работа двигателя
    engine run-up operation
    опробование двигателя
    engine screen
    фильтр двигателя
    engine seizure
    заклинивание двигателя
    engine setting-up
    отладка двигателя
    engine speed holdup
    зависание оборотов двигателя
    engine speed loss
    падение оборотов двигателя
    engine starter
    стартер двигателя
    engine starter button
    кнопка запуска двигателя
    engine starting
    запуск двигателя
    engine starting procedure
    порядок запуска двигателя
    engine starting system
    система запуска двигателей
    engine start mode
    работа в режиме запуска двигателя
    engine start system
    система запуска двигателей
    engine start valve
    клапан запуска двигателя
    engines trend monitoring
    контроль состояния двигателей
    engine tachometer indicator
    указатель оборотов двигателя
    engine takeoff speed
    число оборотов двигателя на взлетном режиме
    engine tearway
    отрыв двигателя
    engine test base
    испытательная станция
    engine test bench
    стенд для испытания двигателей
    engine throttle
    сектор газа двигателя
    engine throttle control lever
    рычаг раздельного управления газом двигателя
    engine throttle interlock system
    система блокировки управления двигателем
    engine thrust
    тяга двигателя
    engine thrust margin
    избыток тяги двигателя
    engine timing
    регулирование зажигания двигателя
    engine torque
    крутящий момент
    engine torquemeter mechanism
    механизм измерителя крутящего момента на валу двигателя
    engine trouble
    перебои в работе двигателя
    engine vent system
    дренажная система двигателей
    engine vibration
    тряска двигателя
    engine vibration indicating system
    система индикации виброперегрузок двигателя
    engine vibration indicator
    указатель вибрации двигателя
    engine wet starting
    ложный запуск двигателя
    fan-type engine
    турбовентиляторный двигатель
    fire an engine
    запускать двигатель
    free-turbine engine
    двигатель со свободной турбиной
    gas turbine engine
    газотурбинный двигатель
    high bypass ratio engine
    двигатель с высокой степенью двухконтурности
    high compression ratio engine
    двигатель с высокой степенью сжатия
    idling engine
    двигатель на режиме малого газа
    idling engine operation
    работа двигателя на режиме малого газа
    in-board engine
    двигатель, установленный в фюзеляже
    inflight engine test
    испытание двигателя в полете
    install an engine
    устанавливать двигатель
    jet engine
    реактивный двигатель
    left-hand engine
    двигатель с левым вращением ротора
    lift jet engine
    подъемный реактивный двигатель
    light an engine
    запускать двигатель
    longer-lived engine
    двигатель с большим ресурсом
    low bypass ratio engine
    двигатель с низкой степенью двухконтурности
    maximum engine overspeed
    максимально допустимый заброс оборотов двигателя
    modular engine
    модульный двигатель
    modular engine design
    модульная конструкция двигателя
    naccele-mounted engine
    двигатель, установленный в мотогондоле
    on-wing mounted engine
    двигатель, установленный на крыле
    open up an engine
    давать двигателю полный газ
    outboard engine
    двигатель, установленный вне фюзеляжа
    piston engine
    поршневой двигатель
    podded engine
    двигатель, установленный в отдельной гондоле
    port-outer engine
    левый крайний двигатель
    port-side engine
    левый внешний двигатель
    preflight engine run
    предполетное опробование двигателя
    pylon-mounted engine
    двигатель, установленный на пилоне
    quiet engine
    бесшумный двигатель
    radial engine
    звездообразный двигатель
    ramjet engine
    прямоточный воздушно-реактивный двигатель
    reciprocating engine
    поршневой двигатель
    restart the engine in flight
    запускать двигатель в полете
    right-hand engine
    двигатель с правым вращением ротора
    rough engine
    разрегулированный двигатель
    rough engine operations
    перебои в работе двигателя
    run-down engine operation
    выбег двигателя
    run in an engine
    обкатывать двигатель
    run up an engine
    опробовать двигатель
    selection of engine mode
    выбор режима работы двигателя
    self-aspirating engine
    двигатель без наддува
    shut down an engine
    останавливать двигатель
    side engine
    боковой двигатель
    side engine nacelle
    гондола двигателя на пилоне
    simulated engine failure
    имитированный отказ двигателя
    single-rotor engine
    однокаскадный двигатель
    single-shaft turbine engine
    одновальный газотурбинный двигатель
    slow down an engine
    снижать режим работы двигателя
    starboard engine
    правый внешний двигатель
    start an engine
    запускать двигатель
    starting engine
    пусковой двигатель
    starting engine operation
    запуск двигателя
    starting from an operating engine
    перекрестный запуск
    subsonic engine
    дозвуковой двигатель
    three-flow turbojet engine
    трехконтурный турбореактивный двигатель
    three-pointer engine gage
    трехстрелочный указатель двигателя
    three-pointer engine gage unit
    трехстрелочный указатель
    three-rotor turbofan engine
    трехвальный турбовентиляторный двигатель
    turbine engine
    газотурбинный двигатель
    turbofan engine
    турбовентиляторный двигатель
    turbojet engine
    турбореактивный двигатель
    turboprop engine
    турбовинтовой двигатель
    turboshaft engine
    турбовальный двигатель
    two-rotor engine
    двухроторный двигатель
    two-shaft turbine engine
    двухвальный газотурбинный двигатель
    two-spool engine
    двухкаскадный двигатель
    under any kind of engine failure
    при любом отказе двигателя
    underwing engine
    подкрыльевой двигатель
    unreverse an engine
    выводить двигатель из режима реверса
    uprated engine
    форсированный двигатель
    warmed-up engine
    прогретый двигатель
    warm up an engine
    прогревать двигатель
    water-cooled engine
    двигатель водяного охлаждения
    winding engine
    лебедка
    wing engine
    крыльевой двигатель
    with an engine suddenly failed
    при внезапном отказе двигателя

    English-Russian aviation dictionary > engine

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  • Nuclear fuel cycle — The nuclear fuel cycle, also called nuclear fuel chain, is the progression of nuclear fuel through a series of differing stages. It consists of steps in the front end, which are the preparation of the fuel, steps in the service period in which… …   Wikipedia

  • Variable Cycle Engine — In a Variable Cycle Engine (VCE) the engine cycle is deliberately modified from that which would occur under normal circumstances.The next generation of Supersonic transport (SST) may require some form of VCE. SST engines require a high Specific… …   Wikipedia

  • Rankine cycle — The Rankine cycle is a thermodynamic cycle which converts heat into work. The heat is supplied externally to a closed loop, which usually uses water as the working fluid. This cycle generates about 80% of all electric power used throughout the… …   Wikipedia

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