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81 MCSE
1) Шутливое выражение: Microsoft Certified Shutdown Engineer, Microsoft Certified Solitaire Engineer, Minesweeper Consultant And Solitaire Engineer, Minesweeper Consultant And Solitaire Expert, Moose Cock Slapping Everyone, Must Call Someone Else, Must Consult Someone Experienced2) Биржевой термин: Moscow Central Stock Exchange3) Грубое выражение: Monopolize Copulation For Self Esteem4) Физиология: Must Consult Someone Else5) Вычислительная техника: Microsoft Certified Systems Engineer, Microsoft Certified System Engineer (MS, ATEC)6) Экология: Minimum Critical Size of Ecosystems Project7) Образование: Multiple Choice Selection Expert8) Расширение файла: Microsoft Certified Systems Engineer (Microsoft)9) Должность: Microsoft Certified System Engineer -
82 consulente
m f consultantconsulente legale legal adviserconsulente tributario tax consultant* * *◆ s.m. e f. consultant, adviser, advisor, counsel, expert: consulente finanziario, financial advisor (o financial consultant o investment adviser); consulente economico, economic consultant; consulente aziendale, corporate adviser; consulente di direzione e organizzazione, management consultant; consulente di relazioni pubbliche, public relations consultant // (trib.) consulente fiscale, fiscal advisor (o tax consultant) // (dir.): consulente legale, legal adviser (o legal counsel); consulente tecnico, ( nel processo) expert witness.* * *[konsu'lɛnte]1. agg2. sm/f(tecnico, amministrativo) consultant* * *[konsu'lɛnte]sostantivo maschile e sostantivo femminile consultant, adviser, advisorconsulente legale — legal consultant, counsel
* * *consulente/konsu'lεnte/ ⇒ 18m. e f.consultant, adviser, advisor\consulente aziendale management consultant; consulente fiscale tax consultant; consulente legale legal consultant, counsel; consulente matrimoniale marriage guidance counsellor. -
83 Berater
Berater m 1. GEN advisor, aide, consultant, (BE) counsellor, (AE) counselor; 2. MGT consultant; 3. PERS advisor, counsellor, consultant; 4. POL aide • als Berater GEN in an advisory capacity* * *Berater
consultant, adviser, counsel, counsellor, guide, assessor, pilot;
• fachmännischer Berater [specialist] consultant;
• juristischer Berater legal adviser, counsel(l)or (US, Ireland);
• landwirtschaftlicher Berater country agent;
• technischer Berater consulting engineer, technical adviser;
• sachkundiger Berater specialist adviser;
• umweltpolitischer Berater environmental policy adviser;
• versicherungstechnischer Berater actuarial consultant;
• wirtschaftspolitischer Berater economic adviser, outside economist;
• freiberuflicher Berater in Absatzfragen marketing consultant;
• Berater auf dem Gebiet der Steuervermeidung adviser on tax avoidance;
• Berater der Geschäftsführung (Geschäftsleitung) management adviser, consultant on business policy;
• Berater in Gewerkschaftsfragen labo(u)r-relations consultant;
• Berater für Konjunkturfragen economic adviser;
• Berater in Fragen der Öffentlichkeitsarbeit public-relations consultant;
• sachkundige Berater der europäischen Institutionen specialist advisers to the European institutions;
• Berater des Personalchefs personnel counsellor;
• Berater für regionale Planungsvorhaben regional planning consultant;
• Berater für Sparanlagen savings specialist;
• Berater in Steuerfragen tax consultant;
• Berater in Verkehrsfragen transportation consultant;
• Berater des Vorstands staff officer, outside director (US);
• sich von einem unbequemen Berater trennen to drop a pilot;
• j. als Berater zuziehen to consult s. o.;
• Beraterbank personal-service bank. -
84 по
автомат загрузки по скоростному напоруQ-feel systemавтомат имитации усилий по числу МMach-feel systemавтоматическое сопровождение по дальностиautomatic range trackingавтоматическое флюгирование по отрицательной тягеdrag-actuated autofeatheringавтоматическое флюгирование по предельным оборотамoverspeed-actuated autofeatheringавтомат стабилизации автопилота по числу Мautopilot Mach lockавтомат устойчивости по тангажуpitch autostabilizerагент по грузовым перевозкамcargo agentагент по оформлениюhanding agentагент по оформлению туристических перевозокtravel agentагент по продаже билетовticket mediumагентство по отправке грузов воздушным транспортомair freight forwarderАгентство по пропорциональным тарифамProrate Agencyанализатор с интегрированием по времениtime-integrating analyserАфриканская конференция по авиационным тарифамAfrican Air Tariff Conferenceаэропортовый комитет по разработке и утверждению расписанияairport scheduling committeeбалансировать по тангажуtrim in pitchбалансировка по тангажуlongitudinal trimбилет по основному тарифуnormal fare ticketблок контроля скорости пробега по землеground run monitorвесовая отдача по полезной нагрузкеuseful-to-takeoff load ratioвзлетать по ветруtakeoff downwindвзлет по вертолетномуno-run takeoffвзлет по ветруdownwind takeoffвзлет по приборамinstrument takeoffвзлет по самолетному1. forward takeoff2. running takeoff визуальная посадка по наземным ориентирамvisually judged landingвизуальный заход на посадку по упрощенной схемеabbreviated visual approachвизуальный полет по кругуvisual circlingвоздушная перевозка по наймуair operation for hireвоздушное судно, загруженное не по установленной схемеimproperly loaded aircraftвоздушное судно, не сертифицированное по шумуnonnoise certificate aircraftвоздушное судно по обменуinterchanged aircraftвосстановление по кренуbank erectionвосстановление по тангажуpitch erectionВПП, не оборудованная для посадки по приборамnoninstrument runwayВПП, оборудованная для посадки по приборамinstrument runwayвращаться по инерцииrun downвращение по инерцииrundownвремя вылета по расписаниюscheduled departure timeвремя наземной тренировки по приборамinstrument ground timeвремя налета по приборамinstrument flying timeвремя налета по приборам на тренажереinstrument flying simulated timeвремя полета по внешнему контуруoutbound timeвремя полета по маршрутуtrip timeвремя по расписаниюdue timeвыдерживание курса по курсовому радиомаякуlocalizer holdвыдерживать курс по компасуhold the heading on the compassвыдерживать направление по лучуfollow the beamвыполнять доработку по бюллетенюperform the service bulletinвыполнять полет по курсуfly the headingвысота по давлениюpressure altitudeвысота полета по маршрутуen-route altitudeвысота по радиовысотомеруradio heightГенеральная конференция по мерам и весамGeneral Conference of Weights and Measureгенеральный агент по продажеgeneral sales agentгодность по состоянию здоровьяmedical fitnessгодность по уровню шумаnoiseworthinessградус по шкале Цельсияdegree Celsiusгруппа, выполняющая полет по туруtour groupдальность видимости по наклонной прямойoblique visibilityдальность видимости по прямой1. line-of-sight distance2. line-of-sight range дальность полета по замкнутому маршрутуclosed-circuit rangeдальность полета по прямойdirect rangeдатчик рассогласования по кренуroll synchro transmitterдатчик усилий по кренуroll control force sensorдвижение по землеground runдвижение по тангажуpitching motionдежурный по посадкеboarding clerkдействия по аэродрому при объявлении тревогиaerodrome alert measuresдействия по обнаружению и уходуsee and avoid operationsдействующий технологический стандарт по шумуcurrent noise technology standardдеятельность по координации тарифовtariff coordinating activityдиспетчер по загрузкеload controllerдиспетчер по загрузке и центровкеweight and balance controlledдиспетчер по планированиюplannerдиспетчер по планированию полетовflight plannerдлина разбега по водеwater run lengthдозаправлять топливом на промежуточной посадке по маршрутуrefuel en-routeдоставка грузов по воздухуaerial cargo deliveryдоставлять по воздухуfly inдоступ, регламентированный по времениtime-ordered accessдоход по контрактуcontract revenueЕвропейская конференция по вопросам гражданской авиацииEuropean Civil Aviation Conferenceзагрузочный механизм по скоростному напоруQ-feel mechanismзагрузочный механизм по числу МMach-feel mechanismзакрылок по всему размахуfull-span flapзанимать эшелон по нулямbe on the level on the hourзапас по оборотам несущего винтаrotor speed marginзапас по помпажуsurging marginзапас по сваливаниюstall marginзапас по ускорениюacceleration marginзаход на посадку, нормированный по времениtimed approachзаход на посадку по командам наземных станцийadvisory approachзаход на посадку по коробочкеrectangular traffic pattern approachзаход на посадку по криволинейной траекторииcurved approachзаход на посадку по кругуcircling approachзаход на посадку по крутой траекторииsteep approachзаход на посадку по курсовому маякуlocalizer approachзаход на посадку по маякуbeam approachзаход на посадку по обзорному радиолокаторуsurveillance radar approachзаход на посадку по обычной схемеnormal approachзаход на посадку по осевой линииcenter line approachзаход на посадку по полной схемеlong approachзаход на посадку по пологой траекторииflat approachзаход на посадку по приборам1. instrument approach landing2. instrument landing approach заход на посадку по прямому курсуfront course approachзаход на посадку по радиолокаторуradar approachзаход на посадку по сегментно-криволинейной схемеsegmented approachзаход на посадку после полета по кругуcircle-to-landзаход на посадку по укороченной схемеshort approachзаход на посадку по упрощенной схемеsimple approachзаход на посадку с прямой по приборамstraight-in ILS-type approachзвездное время по гринвичскому меридиануGreenwich sideral timeзона захода на посадку по кругуcircling approach areaзона обзора по азимутуazimuth coverageизменение маршрута по желанию пассажираvoluntary reroutingимитируемый полет по приборамsimulated instrument flightинженер по навигационным средствамnavaids engineerинженер по радиоэлектронному оборудованиюradio engineerинженер по техническому обслуживанию воздушных судовaircraft maintenance engineerинженер по электронному оборудованиюelectronics engineerинспектор по летной годностиairworthiness inspectorинспектор по производству полетовoperations inspectorинспекция по расследованию авиационных происшествийinvestigating authorityинструктаж по условиям полета по маршрутуroute briefingинструктор по навигационным средствамnavaids instructorинструктор по производству полетовflight operations instructorинструкция по загрузке воздушного суднаaircraft loading instructionинструкция по консервации и хранению воздушного суднаaircraft storage instructionинструкция по обеспечению безопасности полетовair safety rulesинструкция по производству полетовoperation instructionинструкция по техническому обслуживаниюmaintenance instructionинструкция по эксплуатации воздушного суднаaircraft operating instructionинформация по воздушной трассеairway informationинформация по условиям посадкиlanding instructionиспытание по уходу на второй кругgo-around testиспытания по замеру нагрузки в полетеflight stress measurement testsиспытания по полной программеfull-scale testsИсследовательская группа по безопасности полетовAviation Security Study Groupистинное время по ГринвичуGreenwich apparent timeисходные условия сертификации по шумуnoise certification reference conditionsкалибровка чувствительности по звуковому давлениюsound pressure sensitivity calibrationкатегория ИКАО по обеспечению полетаfacility performance ICAO categoryклассификация воздушных судов по типамaircraft category ratingкодирование по опорному времениtime reference codingКомиссия по авиационной метеорологииCommission for aeronautical MeteorologyКомиссия по нарушению тарифовBreachers CommissionКомиссия по основным системамCommission for basic SystemsКомитет по авиационному шумуCommittee on Aircraft NoiseКомитет по безопасности полетовSafety Investigation BoardКомитет по воздушным перевозкам1. Air Transport Committee2. Air Transportation Board Комитет по исследованиям звуковых ударовSonic Boom CommitteeКомитет по координации частотFrequency Coordinating BodyКомитет по незаконному вмешательствуCommittee on Unlawful InterferenceКомитет по охране окружающей среды от воздействия авиацииCommittee on Aviation Environmental ProtectionКомитет по поощрительным тарифамCreative Fares BoardКомитет по рассмотрению авиационных вопросовAviation Review CommitteeКомитет по расходамCost CommitteeКомитет по специальным грузовым тарифамSpecific Commodity Rates Boardкоммерческая загрузка, ограниченная по массеweight limited payloadкоммерческая загрузка, ограниченная по объемуspace limited payloadкомпрессор по помпажуcompressor surge marginконвенция по вопросам деятельности международной гражданской авиацииconvention on international civil aviationконвенция по управлению воздушным движениемair traffic conventionконсультант по вопросам обученияtraining consultantконсультант по тренажерамtrainers consultantКонсультативная группа по метеообеспечениюMeteorological Advisory Groupконсультативное сообщение по устранению конфликтной ситуацииresolution advisoryКонсультативный комитет по управлению воздушным движениемAir Traffic Control Advisory CommitteeКонсультативный комитет по упрощению формальностейFacilitation Advisory Committeeконтролируемое воздушное пространство предназначенное для полетов по приборамinstrument restricted airspaceконтроль состояния посевов по пути выполнения основного заданияassociated crop control operationКонференция агентства по грузовым перевозкамCargo Agency ConferenceКонференция агентств по пассажирским перевозкамPassenger Agency ConferenceКонференция по валютным вопросамCurrency ConferenceКонференция по вопросам обслуживания пассажировPassenger Services ConferenceКонференция по координации тарифовTariff Co-ordinating Conferenceкоординационный центр по спасаниюrescue coordination centerкоррекция траектории по полученной информацииreply-to-track correlationкресло, расположенное по направлению полетаforward facing seatкурс захода на посадку по приборамinstrument approach courseкурс подготовки по утвержденной программеapproved training courseкурс по локсодромииrhumb-line courseкурс по маякуbeacon courseкурс по радиомаякуlocalizer courseкурсы подготовки пилотов к полетам по приборамinstrument pilot schoolлетать по ветруfly downwindлетать по глиссадному лучуfly the glide-slope beamлетать по кругу1. circularize2. fly round 3. fly the circle летать по кругу над аэродромомcircle the aerodromeлетать по курсу1. fly on the heading2. fly on the course летать по локсодромииfly the rhumb lineлетать по маршрутуfly en-routeлетать по ортодромииfly the great circleлетать по приборам1. fly on instruments2. fly by instruments летать по приборам в процессе тренировокfly under screenлетать по прямойfly straightлететь по лучуfly the beamлетная полоса, оборудованная для полетов по приборамinstrument stripлиния полета по курсуon-course lineлиния пути по локсодромииrhumb-line trackлиния пути по схеме с двумя спаренными разворотамиrace trackМеждународная комиссия по аэронавигацииInternational commission for Air NavigationМеждународная комиссия по освещениюCommission on Illuminationмеждународное сотрудничество по вопросам летной годностиinternational collaboration in airworthinessмеры по обеспечению безопасностиsafety control measuresмеры по предупреждению пожараfire precautionsмеры по снижению шумаnoise abatement measuresметеоданные по аэродромуaerodrome forecast materialметеосводка по трассе полетаairway climatic dataметодика сертификации по шумуnoise certification procedureметод продажи по наличию свободных местspace available policyмеханизм триммерного эффекта по тангажуpitch trim actuatorмеханизм усилий по скоростному напоруQ-feel unitминимальная высота полета по кругуminimum circling procedure heightминимальная высота по маршрутуminimum en-route altitudeминимум для полетов по кругуcircling minimaнабирать высоту при полете по курсуclimb on the courseнабор высоты по крутой траекторииsteep climbнабор высоты по установившейся схемеproper climbнаведение по азимутуazimuth guidanceнаведение по азимуту при заходе на посадкуapproach azimuth guidanceнаведение по глиссадеglide-slope guidanceнаведение по глиссаде при заходе на посадкуapproach slope guidanceнаведение по клиренсуclearance guidanceнаведение по лучу1. beam homing2. beam follow guidance 3. beam riding наведение по лучу радиолокационной станцииradar beam ridingнаведение по отраженному лучуback beam track guidanceнаведение по углуangle guidanceнавигация по визуальным ориентирамcontact navigationнавигация по заданным путевым угламangle navigationнавигация по линии равных азимутовconstant-bearing navigationнавигация по наземным ориентирам1. landmark navigation2. terrestrial navigation 3. ground reference navigation навигация по ортодромииwaypoint navigationнавигация по условным координатамgrid navigationнаставление по управлению воздушным движениемair traffic guideне по курсуoff-courseнеустойчивость по кренуroll instabilityнеустойчивость по тангажуpitch instabilityоблако, напоминающее по виду наковальнюanvil cloudобобщенные характеристики по шумуgeneralized noise characteristicsоборудование для полетов по приборамblind flight equipmentобслуживание по смешанному классуmixed serviceобслуживание по туристическому классу1. economy class service2. coach service 3. no frills service обтекать по потокуstreamwiseобтекать хорду по потокуstream-wise chordОбъединенная конференция по грузовым тарифамComposite cargo Traffic ConferenceОбъединенная конференция по координации грузовым перевозкамComposite cargo Tariff Coordinating ConferenceОбъединенная конференция по координации пассажирских тарифовComposite Passenger Tariff Co-ordinating ConferenceОбъединенная конференция по пассажирским перевозкамComposite Passenger Conferenceогни по требованиюlights on requestограничение по боковому ветруcross-wind limitограничение по времениtime limitограничение по массеweight limitationограничение по скорости полетаair-speed limitationограничения по загрузкеloading restrictionsограничения по летной годностиairworthiness limitationsограничивать по состоянию здоровьяdecrease in medical fitnessоперации по подготовке рейса к вылетуdeparture operationsоперации по спасениюrescue operationsоперация по рассеиванию туманаfog dispersal operationоперация по спасениюrescue missionопережение по фазеphase advanceопределение местонахождения воздушного судна по звездамastrofixопределение местоположения по наземным ориентирамvisual ground fixingопределение местоположения по пеленгу одной станцииone-station fixingопределение местоположения по пройденному пути и курсуrange-bearing fixingориентировка ВПП по магнитному меридиануmagnetic orientation of runwayориентировка по радиомаякуradio-range orientationостановка по расписаниюsheduled stoppingОтдел по соблюдению тарифовCompliance Departmentотклонение по дальностиrange deviationотклонение по кренуbank displacementотставание по времениtime lagотставание по фазеphase lagошибка по дальностиrange errorпараметр потока, критический по шумуnoise-critical flow parameterпассажир по полному тарифуadultпеленг по гироприборуgyro bearingперевозка грузов по воздухуair freight liftперевозка пассажиров по контрактуcontract tourперевозка по специальному тарифуunit toll transportationперевозки по тарифу туристического классаcoach trafficперсонал по обеспечению полетовflight operations personnelперсонал по оформлению билетовticketing personnelпикирование по спиралиspiral diveпилотировать по приборамpilot by reference to instrumentsпланирование воздушного судна по спиралиaircraft spiral glideплан полета по приборамinstrument flight planпо азимутуin azimuthповерхность управления по всему размахуfull-span control surface(напр. крыла) по ветруdownwindпо всему размахуtipпогода по метеосводкеreported weatherпогрешность отсчета по углу местаelevation errorподводить по трубопроводуdeliver by pipeподготовка для полетов по приборамinstrument flight trainingподготовка по утвержденной программеapproved trainingпо запросу1. on-request2. on request полет по дополнительному маршрутуextra section flightполет по заданной траекторииdesired path flightполет по заданному маршрутуdesired track flightполет по замкнутому кругуclosed-circuit flightполет по замкнутому маршрутуround-tripполет по индикации на стеклеhead-up flightполет по инерции1. coasting flight2. coast полет по коробочкеbox-pattern flightполет по круговому маршруту1. round-trip flight2. circling полет по кругуcircuit-circlingполет по кругу в районе аэродромаaerodrome traffic circuit operationполет по кругу над аэродромом1. aerodrome circling2. aerodrome circuit-circling полет по курсуflight on headingполет по локсодромииrhumb-line flightполет по маршруту1. en-route operation2. en-route flight полет по маякам ВОРVOR course flightполет по наземным ориентирамvisual navigation flightполет по наземным ориентирам или по командам наземных станцийreference flightполет по полному маршрутуentire flightполет по приборам1. instrument flight rules operation2. instrument flight 3. blind flight 4. head-down flight полет по приборам, обязательный для данной зоныcompulsory IFR flightполет по размеченному маршрутуpoint-to-point flightполет по расписанию1. scheduled flight2. regular flight полет по сигналам с землиdirected reference flightполет по условным меридианамgrid flightполет по установленным правиламflight under the rulesполеты по воздушным трассамairways flyingполеты по изобареpressure flyingполеты по контрольным точкамfix-to-fix flyingполеты по кругуcircuit flyingполеты по наземным естественным ориентирамterrain flyполеты по низким метеоминимумамlow weather operationsполеты по обратному лучуback beam flyingполеты по ортодромииgreat-circle flyingполеты по прямому лучуfront beam flyingполеты по радиолучуradio-beam flyположение, определенное по радиолокаторуradar track positionположение по направлению трассыalong-track positionположение по тангажуpitch attitudeпо оси воздушного суднаon aircraft center lineпо полетуlooking forwardпо размахуspanwiseпорядок действий по тревоге на аэродромеaerodrome alerting procedureпосадка по вертолетному типуhelicopter-type landingпосадка по ветруdownwind landingпосадка по командам с земли1. ground-controlled landing2. talk-down landing посадка по приборам1. instrument landing2. blind landing посадка по техническим причинамtechnical stopПостоянный комитет по летно-техническим характеристикамStanding Committee of Performanceпо часовой стрелкеclockwiseправила полета по кругуcircuit rulesправила полетов по приборамinstrument flight rulesпревышение по высотеgain in altitudeпредварительные меры по обеспечению безопасности полетовadvance arrangementsпредкрылок по всему размахуfull-span slat(крыла) предоставляется по запросуavailable on requestпредполетный инструктаж по метеообстановкеflight weather briefingпредпочтительная по уровню шума ВППnoise preferential runwayпредпочтительный по уровню шума маршрутnoise preferential routeпредупреждение по аэродромуaerodrome warningпреобразователь сигнала по тангажуpitch transformerпробегать по полному маршрутуcover the routeпроведение работ по снижению высоты препятствий для полетовobstacle clearingпроверка прилегания по краскеtransferred markingпрогноз по авиатрассеairway forecastпрогноз по аэродромуaerodrome forecastпрогноз по высотеheight forecastпрогноз по маршрутуair route forecastпрогноз по регионуregional forecastпрограмма сертификации по шумуnoise certification schemeпродажа билетов по принципу наличия свободных местspace available basisпродолжительность по запасу топливаfuel enduranceпрокладка маршрута по угловым координатамangle trackingпропускная способность по числу посадокlanding capacityпротивопожарное патрулирование по пути выполнения основного заданияassociated fire control operationпульт управления по радиоradio control boardработы по техническому обслуживаниюmaintenance operationsРабочая группа по разработке основных эксплуатационных требованийBasic Operational Requirements Groupразвертка по дальностиrange scanningразворачивать по ветруturn downwindразворот по приборамinstrument turnразворот по стандартной схемеstandard rate turnразворот по установленной схемеprocedure turnразница в тарифах по классамclass differentialразрешающая способность по дальностиrange resolutionразрешение в процессе полета по маршрутуen-route clearanceразрешение на полет по приборамinstrument clearanceраспределение давления по крылуwing pressure plottingраспределение по размаху крылаspanwise distributionраспределение по хордеchordwise distributionраспределение расходов по маршрутамcost allocation to routesрасстояние по ортодромииgreat-circle distanceреакция по кренуroll responseрегламентирование по времениtimingрегулировать по высотеadjust for heightрежим работы автопилота по заданному курсуautopilot heading modeрейс с обслуживанием по первому классуfirst-class flightрекомендации по обеспечению безопасности полетовsafety recommendationsрекомендации по стандартам, практике и правиламrecommendations for standards, practices and proceduresруководство по обеспечению безопасностиsafety regulationsруководство по полетам воздушных судов гражданской авиацииcivil air regulationsруководство по предупреждению столкновений над моремregulations for preventing collisions over seaруководство по производству полетов в зоне аэродромаaerodrome rulesруководство по технической эксплуатации воздушного суднаaircraft maintenance guideруководство по управлению полетамиflight control fundamentalsруководство по упрощению формальностейguide to facilitationруление по аэродромуground taxi operationруление по воздухуair taxiingруление по воздуху к месту взлетаaerial taxiing to takeoffрыскание по курсуhuntingсбор за услуги по оценкеvaluation chargeсводка по аэродромуaerodrome reportсводка погоды по данным радиолокационного наблюденияradar weather reportсвязь по запросу с бортаair-initiated communicationсвязь по обеспечению регулярности полетовflight regularity communicationсдвиг по фазеphase shiftсектор наведения по клиренсуclearance guidance sectorСекция расчетов по вопросам технической помощиTechnical Assistance Accounts section(ИКАО) Секция расчетов по регулярной программеRegular Programme Accounts section(ИКАО) сертификат воздушного судна по шумуaircraft noise certificateсертификационный стандарт по шумуnoise certification standardсертификация по шуму на взлетном режимеtake-off noiseсигнал полета по курсуon-course signalсигнал синхронизации по времениsynchronized time signalсистема балансировки по числу МMach trim systemсистема блокировки управления по положению реверсаthrust reverser interlock systemсистема наведения по лучу1. beam-rider system2. guide beam system система наведения по приборамinstrument guidance systemсистема наведения по сканирующему лучуscanning beam guidance systemсистема наведения по углуangle guidance systemсистема навигации по наземным ориентирамground-referenced navigation systemсистема посадки по лучу маякаbeam approach beacon systemсистема посадки по приборамinstrument landing systemсистема сборов по фактической массеweight system(багажа или груза) скольжение по водеequaplaningскорость набора высоты при полете по маршрутуen-route climb speedскорость по тангажуrate of pitchследовать по заданному курсуpursueслужба обеспечения прогнозами по маршрутуroute forecast serviceслужба по изучению рынкаmarketing service(воздушных перевозок) снижение по спиралиspiral descentснос определенный по радиолокаторуradar driftсоветник по авиационным вопросамaviation adviserсоветник по вопросам гражданской авиацииcivil aviation adviserсоветник по проектированию и строительству аэродромовaerodrome engineering instructorСовет по авиационным спутникамAeronautical Satellite CouncilСовместный комитет по специальным грузовым тарифамJoint service Commodity Rates Boardсоглашение по вопросам летной годностиarrangement for airworthinessсоглашение по пассажирским и грузовым тарифамfares and rates agreementсоглашение по прямому транзитуdirect transit agreementсоглашение по тарифамtariff agreementсостояние готовности аэродрома по тревогеaerodrome alert status(состояние готовности служб аэродрома по тревоге) специализированный отдел по расследованию происшествийaccident investigation divisionспециалист по ремонтуrepairmanспециалист по ремонту воздушных судовaircraft repairmanспециалист по сборкеriggerсправочник по аэродромамaerodrome directoryсправочник по аэропортамairport directoryсредства обеспечения полетов по приборамnonvisual aidsстандартная система управления заходом на посадку по лучуstandard beam approach systemстандартная схема вылета по приборамstandard instrument departureстандартная схема посадки по приборамstandard instrument arrivalстандарт по шуму для дозвуковых самолетовsubsonic noise standardстепень помех по отношению к несущей частотеcarrier-to-noise ratioстроить по лицензииconstruct under licenseсхема визуального полета по кругуvisual circling procedureсхема захода на посадку по командам с землиground-controlled approach procedureсхема захода на посадку по коробочкеrectangular approach traffic patternсхема захода на посадку по приборам1. instrument approach chart2. instrument approach procedure схема полета по кругу1. circuit pattern2. circling procedure схема полета по маршрутуen-route procedureсхема полета по приборамinstrument flight procedureсхема полета по приборам в зоне ожиданияinstrument holding procedureсхема полетов по кругуtraffic circuitсхема руления по аэродромуaerodrome taxi circuitтарировка по времениtime calibrationтарировка по дальностиrange calibrationтарировка по числу МMach number calibrationтариф на полет по замкнутому кругуround trip fareтариф по контрактуcontract rateтариф по незамкнутому круговому маршрутуopen-jaw fareтемпература по шкале ЦельсияCelsius temperatureточность ориентировки по точечному ориентируpinpoint accuracyтраектория взлета, сертифицированная по шумуnoise certification takeoff flight pathтраектория захода на посадку по азимутуazimuth approach pathтраектория захода на посадку по лучу курсового маякаlocalizer approach trackтраектория захода на посадку, сертифицированная по шумуnoise certification approach pathтраектория полета по маршрутуen-route flight pathтраектория полетов по низким минимумам погодыlow weather minima pathтранспортировка по воздухуshipment by airтрансформатор сигнала по кренуroll transformerтрансформатор сигнала по курсуyaw transformerтрафарет с инструкцией по применениюinstruction plateтребования по метеоусловиямmeteorological requirementsтребования по ограничению высоты препятствийobstacle limitation requirementsтребования по снижению шумаnoise reduction requirementsтренажер для подготовки к полетам по приборамinstrument flight trainerтяга, регулируемая по величине и направлениюvectored thrustугол рассогласования по кренуbank synchro error angleудостоверение на право полета по авиалинииairline certificateудостоверение на право полета по приборамinstrument certificateуказания по выполнению руленияtaxi instructionуказания по порядку ожиданияholding instructionуказания по управлению воздушным движениемair-traffic control instructionуказания по условиям эксплуатации в полетеinflight operational instructionsуказатель отклонения от курса по радиомаякуlocalizer deviation pointerуполномоченный по расследованиюinvestigator-in-chargeуправление по крену1. roll guidance2. roll control управление по угловому отклонениюangular position controlуправление по углу рысканияyaw controlуправляемый по радиоradio-controlledусловия по заданному маршрутуconditions on the routeусловия, по сложности превосходящие квалификацию пилотаconditions beyond the experienceусловия сертификационных испытаний по шумуnoise certification test conditionsустанавливать воздушное судно по осиalign the aircraft with the center lineустанавливать воздушное судно по оси ВППalign the aircraft with the runwayустановленная схема вылета по приборамstandard instrument departure chartустановленная схема полета по кругуfixed circuitустановленная схема ухода на второй круг по приборамinstrument missed procedureустойчивость по крену1. rolling stability2. lateral stability устойчивость по скоростиspeed stabilityустойчивость по тангажу1. pitching stability2. pitch stability устойчивость по углу атакиangle-of-attack stabilityуточнение плана полета по сведениям, полученным в полетеinflight operational planningуходить на второй круг по заданной схемеtake a missed-approach procedureуход платформы по курсуplatform drift in azimuthфирма по производству воздушных судовaircraft companyфлюгирование по отрицательному крутящему моментуnegative torque featheringхарактеристика набора высоты при полете по маршрутуen-route climb performanceхарактеристика по наддувуmanifold pressure characteristicхарактеристики наведения по линии путиtrack-defining characteristicsхарактеристики по шумуnoise characteristicsчартерный рейс по заказу отдельной организацииsingle-entity charterчартерный рейс по незамкнутому маршрутуopen-jaw charterчартерный рейс по объявленной программеprogrammed charterчартерный рейс по установленному маршрутуon-route charterчувствительность к отклонению по сигналам курсового маякаlokalizer displacement sensitivityчувствительность по давлениюpressure sensitivityчувствительность по курсуcourse sensitivityшкала корректировки по тангажуpitch trim scaleшкала отклонения от курса по радиомаякуlocalizer deviation scaleшкола подготовки специалистов по управлению воздушным движениемair traffic schoolэкзамен по летной подготовкеflight examinationэкспедитор по отправке грузовfreight consolidatorэксперт по вопросам ведения документацииprocedures document expertэксперт по контролю за качествомquality control expertэксперт по летной годностиairworthiness expertэксперт по обслуживанию воздушного движенияair traffic services expertэксперт по обучению пилотовpilot training expertэксперт по производству налетовflight operations expertэксперт по радиолокаторамradar expertэксперт по техническому обслуживаниюmaintenance expertэтап полета по маршрутуen-route flight phaseэшелонирование по курсуtrack separationэшелонирование по усмотрению пилотаown separationэшелонировать по высотеstack up -
85 Preece, Sir William Henry
[br]b. 15 February 1834 Bryn Helen, Gwynedd, Walesd. 6 November 1913 Penrhos, Gwynedd, Wales[br]Welsh electrical engineer who greatly furthered the development and use of wireless telegraphy and the telephone in Britain, dominating British Post Office engineering during the last two decades of the nineteenth century.[br]After education at King's College, London, in 1852 Preece entered the office of Edwin Clark with the intention of becoming a civil engineer, but graduate studies at the Royal Institution under Faraday fired his enthusiasm for things electrical. His earliest work, as connected with telegraphy and in particular its application for securing the safe working of railways; in 1853 he obtained an appointment with the Electric and National Telegraph Company. In 1856 he became Superintendent of that company's southern district, but four years later he moved to telegraph work with the London and South West Railway. From 1858 to 1862 he was also Engineer to the Channel Islands Telegraph Company. When the various telegraph companies in Britain were transferred to the State in 1870, Preece became a Divisional Engineer in the General Post Office (GPO). Promotion followed in 1877, when he was appointed Chief Electrician to the Post Office. One of the first specimens of Bell's telephone was brought to England by Preece and exhibited at the British Association meeting in 1877. From 1892 to 1899 he served as Engineer-in-Chief to the Post Office. During this time he made a number of important contributions to telegraphy, including the use of water as part of telegraph circuits across the Solent (1882) and the Bristol Channel (1888). He also discovered the existence of inductive effects between parallel wires, and with Fleming showed that a current (thermionic) flowed between the hot filament and a cold conductor in an incandescent lamp.Preece was distinguished by his administrative ability, some scientific insight, considerable engineering intuition and immense energy. He held erroneous views about telephone transmission and, not accepting the work of Oliver Heaviside, made many errors when planning trunk circuits. Prior to the successful use of Hertzian waves for wireless communication Preece carried out experiments, often on a large scale, in attempts at wireless communication by inductive methods. These became of historic interest only when the work of Maxwell and Hertz was developed by Guglielmo Marconi. It is to Preece that credit should be given for encouraging Marconi in 1896 and collaborating with him in his early experimental work on radio telegraphy.While still employed by the Post Office, Preece contributed to the development of numerous early public electricity schemes, acting as Consultant and often supervising their construction. At Worcester he was responsible for Britain's largest nineteenth-century public hydro-electric station. He received a knighthood on his retirement in 1899, after which he continued his consulting practice in association with his two sons and Major Philip Cardew. Preece contributed some 136 papers and printed lectures to scientific journals, ninety-nine during the period 1877 to 1894.[br]Principal Honours and DistinctionsCB 1894. Knighted (KCB) 1899. FRS 1881. President, Society of Telegraph Engineers, 1880. President, Institution of Electrical Engineers 1880, 1893. President, Institution of Civil Engineers 1898–9. Chairman, Royal Society of Arts 1901–2.BibliographyPreece produced numerous papers on telegraphy and telephony that were presented as Royal Institution Lectures (see Royal Institution Library of Science, 1974) or as British Association reports.1862–3, "Railway telegraphs and the application of electricity to the signaling and working of trains", Proceedings of the ICE 22:167–93.Eleven editions of Telegraphy (with J.Sivewright), London, 1870, were published by 1895.1883, "Molecular radiation in incandescent lamps", Proceedings of the Physical Society 5: 283.1885. "Molecular shadows in incandescent lamps". Proceedings of the Physical Society 7: 178.1886. "Electric induction between wires and wires", British Association Report. 1889, with J.Maier, The Telephone.1894, "Electric signalling without wires", RSA Journal.1898, "Aetheric telegraphy", Proceedings of the Institution of Electrical Engineers.Further ReadingJ.J.Fahie, 1899, History of Wireless Telegraphy 1838–1899, Edinburgh: Blackwood. E.Hawkes, 1927, Pioneers of Wireless, London: Methuen.E.C.Baker, 1976, Sir William Preece, F.R.S. Victorian Engineer Extraordinary, London (a detailed biography with an appended list of his patents, principal lectures and publications).D.G.Tucker, 1981–2, "Sir William Preece (1834–1913)", Transactions of the Newcomen Society 53:119–36 (a critical review with a summary of his consultancies).GW / KFBiographical history of technology > Preece, Sir William Henry
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86 Chapelon, André
[br]b. 26 October 1892 Saint-Paul-en-Cornillon, Loire, Franced. 29 June 1978 Paris, France[br]French locomotive engineer who developed high-performance steam locomotives.[br]Chapelon's technical education at the Ecole Centrale des Arts et Manufactures, Paris, was interrupted by extended military service during the First World War. From experience of observing artillery from the basket of a captive balloon, he developed a method of artillery fire control which was more accurate than that in use and which was adopted by the French army.In 1925 he joined the motive-power and rolling-stock department of the Paris-Orléans Railway under Chief Mechanical Engineer Maurice Lacoin and was given the task of improving the performance of its main-line 4–6–2 locomotives, most of them compounds. He had already made an intensive study of steam locomotive design and in 1926 introduced his Kylchap exhaust system, based in part on the earlier work of the Finnish engineer Kyläla. Chapelon improved the entrainment of the hot gases in the smokebox by the exhaust steam and so minimized back pressure in the cylinders, increasing the power of a locomotive substantially. He also greatly increased the cross-sectional area of steam passages, used poppet valves instead of piston valves and increased superheating of steam. PO (Paris-Orléans) 4–6–2s rebuilt on these principles from 1929 onwards proved able to haul 800-ton trains, in place of the previous 500-ton trains, and to do so to accelerated schedules with reduced coal consumption. Commencing in 1932, some were converted, at the time of rebuilding, into 4–8–0s to increase adhesive weight for hauling heavy trains over the steeply graded Paris-Toulouse line.Chapelon's principles were quickly adopted on other French railways and elsewhere.H.N. Gresley was particularly influenced by them. After formation of the French National Railways (SNCF) in 1938, Chapelon produced in 1941 a prototype rebuilt PO 2–10–0 freight locomotive as a six-cylinder compound, with four low-pressure cylinders to maximize expansive use of steam and with all cylinders steam-jacketed to minimize heat loss by condensation and radiation. War conditions delayed extended testing until 1948–52. Meanwhile Chapelon had, by rebuilding, produced in 1946 a high-powered, three-cylinder, compound 4–8–4 intended as a stage in development of a proposed range of powerful and thermally efficient steam locomotives for the postwar SNCF: a high-speed 4–6–4 in this range was to run at sustained speeds of 125 mph (200 km/h). However, plans for improved steam locomotives were then overtaken in France by electriflcation and dieselization, though the performance of the 4–8–4, which produced 4,000 hp (3,000 kW) at the drawbar for the first time in Europe, prompted modification of electric locomotives, already on order, to increase their power.Chapelon retired from the SNCF in 1953, but continued to act as a consultant. His principles were incorporated into steam locomotives built in France for export to South America, and even after the energy crisis of 1973 he was consulted on projects to build improved, high-powered steam locomotives for countries with reserves of cheap coal. The eventual fall in oil prices brought these to an end.[br]Bibliography1938, La Locomotive à vapeur, Paris: J.B.Bailière (a comprehensive summary of contemporary knowledge of every function of the locomotive).Further ReadingH.C.B.Rogers, 1972, Chapelon, Genius of French Steam, Shepperton: Ian Allan.1986, "André Chapelon, locomotive engineer: a survey of his work", Transactions of the Newcomen Society 58 (a symposium on Chapelon's work).Obituary, 1978, Railway Engineer (September/October) (makes reference to the technical significance of Chapelon's work).PJGR -
87 Stephenson, Robert
[br]b. 16 October 1803 Willington Quay, Northumberland, Englandd. 12 October 1859 London, England[br]English engineer who built the locomotive Rocket and constructed many important early trunk railways.[br]Robert Stephenson's father was George Stephenson, who ensured that his son was educated to obtain the theoretical knowledge he lacked himself. In 1821 Robert Stephenson assisted his father in his survey of the Stockton \& Darlington Railway and in 1822 he assisted William James in the first survey of the Liverpool \& Manchester Railway. He then went to Edinburgh University for six months, and the following year Robert Stephenson \& Co. was named after him as Managing Partner when it was formed by himself, his father and others. The firm was to build stationary engines, locomotives and railway rolling stock; in its early years it also built paper-making machinery and did general engineering.In 1824, however, Robert Stephenson accepted, perhaps in reaction to an excess of parental control, an invitation by a group of London speculators called the Colombian Mining Association to lead an expedition to South America to use steam power to reopen gold and silver mines. He subsequently visited North America before returning to England in 1827 to rejoin his father as an equal and again take charge of Robert Stephenson \& Co. There he set about altering the design of steam locomotives to improve both their riding and their steam-generating capacity. Lancashire Witch, completed in July 1828, was the first locomotive mounted on steel springs and had twin furnace tubes through the boiler to produce a large heating surface. Later that year Robert Stephenson \& Co. supplied the Stockton \& Darlington Railway with a wagon, mounted for the first time on springs and with outside bearings. It was to be the prototype of the standard British railway wagon. Between April and September 1829 Robert Stephenson built, not without difficulty, a multi-tubular boiler, as suggested by Henry Booth to George Stephenson, and incorporated it into the locomotive Rocket which the three men entered in the Liverpool \& Manchester Railway's Rainhill Trials in October. Rocket, was outstandingly successful and demonstrated that the long-distance steam railway was practicable.Robert Stephenson continued to develop the locomotive. Northumbrian, built in 1830, had for the first time, a smokebox at the front of the boiler and also the firebox built integrally with the rear of the boiler. Then in Planet, built later the same year, he adopted a layout for the working parts used earlier by steam road-coach pioneer Goldsworthy Gurney, placing the cylinders, for the first time, in a nearly horizontal position beneath the smokebox, with the connecting rods driving a cranked axle. He had evolved the definitive form for the steam locomotive.Also in 1830, Robert Stephenson surveyed the London \& Birmingham Railway, which was authorized by Act of Parliament in 1833. Stephenson became Engineer for construction of the 112-mile (180 km) railway, probably at that date the greatest task ever undertaken in of civil engineering. In this he was greatly assisted by G.P.Bidder, who as a child prodigy had been known as "The Calculating Boy", and the two men were to be associated in many subsequent projects. On the London \& Birmingham Railway there were long and deep cuttings to be excavated and difficult tunnels to be bored, notoriously at Kilsby. The line was opened in 1838.In 1837 Stephenson provided facilities for W.F. Cooke to make an experimental electrictelegraph installation at London Euston. The directors of the London \& Birmingham Railway company, however, did not accept his recommendation that they should adopt the electric telegraph and it was left to I.K. Brunel to instigate the first permanent installation, alongside the Great Western Railway. After Cooke formed the Electric Telegraph Company, Stephenson became a shareholder and was Chairman during 1857–8.Earlier, in the 1830s, Robert Stephenson assisted his father in advising on railways in Belgium and came to be increasingly in demand as a consultant. In 1840, however, he was almost ruined financially as a result of the collapse of the Stanhope \& Tyne Rail Road; in return for acting as Engineer-in-Chief he had unwisely accepted shares, with unlimited liability, instead of a fee.During the late 1840s Stephenson's greatest achievements were the design and construction of four great bridges, as part of railways for which he was responsible. The High Level Bridge over the Tyne at Newcastle and the Royal Border Bridge over the Tweed at Berwick were the links needed to complete the East Coast Route from London to Scotland. For the Chester \& Holyhead Railway to cross the Menai Strait, a bridge with spans as long-as 460 ft (140 m) was needed: Stephenson designed them as wrought-iron tubes of rectangular cross-section, through which the trains would pass, and eventually joined the spans together into a tube 1,511 ft (460 m) long from shore to shore. Extensive testing was done beforehand by shipbuilder William Fairbairn to prove the method, and as a preliminary it was first used for a 400 ft (122 m) span bridge at Conway.In 1847 Robert Stephenson was elected MP for Whitby, a position he held until his death, and he was one of the exhibition commissioners for the Great Exhibition of 1851. In the early 1850s he was Engineer-in-Chief for the Norwegian Trunk Railway, the first railway in Norway, and he also built the Alexandria \& Cairo Railway, the first railway in Africa. This included two tubular bridges with the railway running on top of the tubes. The railway was extended to Suez in 1858 and for several years provided a link in the route from Britain to India, until superseded by the Suez Canal, which Stephenson had opposed in Parliament. The greatest of all his tubular bridges was the Victoria Bridge across the River St Lawrence at Montreal: after inspecting the site in 1852 he was appointed Engineer-in-Chief for the bridge, which was 1 1/2 miles (2 km) long and was designed in his London offices. Sadly he, like Brunel, died young from self-imposed overwork, before the bridge was completed in 1859.[br]Principal Honours and DistinctionsFRS 1849. President, Institution of Mechanical Engineers 1849. President, Institution of Civil Engineers 1856. Order of St Olaf (Norway). Order of Leopold (Belgium). Like his father, Robert Stephenson refused a knighthood.Further ReadingL.T.C.Rolt, 1960, George and Robert Stephenson, London: Longman (a good modern biography).J.C.Jeaffreson, 1864, The Life of Robert Stephenson, London: Longman (the standard nine-teenth-century biography).M.R.Bailey, 1979, "Robert Stephenson \& Co. 1823–1829", Transactions of the Newcomen Society 50 (provides details of the early products of that company).J.Kieve, 1973, The Electric Telegraph, Newton Abbot: David \& Charles.PJGR -
88 konsulent
adviser, consultant* * *subst. executive officer subst. adviser, consultant, principal (juridisk konsulent) legal adviser [ markeds-] marketing consultant (teknisk konsulent) consulting engineer -
89 Bacon, Francis Thomas
SUBJECT AREA: Aerospace[br]b. 21 December 1904 Billericay, Englandd. 24 May 1992 Little Shelford, Cambridge, England[br]English mechanical engineer, a pioneer in the modern phase of fuel-cell development.[br]After receiving his education at Eton and Trinity College, Cambridge, Bacon served with C.A. Parsons at Newcastle upon Tyne from 1925 to 1940. From 1946 to 1956 he carried out research on Hydrox fuel cells at Cambridge University and was a consultant on fuel-cell design to a number of organizations throughout the rest of his life.Sir William Grove was the first to observe that when oxygen and hydrogen were supplied to platinum electrodes immersed in sulphuric acid a current was produced in an external circuit, but he did not envisage this as a practical source of electrical energy. In the 1930s Bacon started work to develop a hydrogen-oxygen fuel cell that operated at moderate temperatures and pressures using an alkaline electrolyte. In 1940 he was appointed to a post at King's College, London, and there, with the support of the Admiralty, he started full-time experimental work on fuel cells. His brief was to produce a power source for the propulsion of submarines. The following year he was posted as a temporary experimental officer to the Anti-Submarine Experimental Establishment at Fairlie, Ayrshire, and he remained there until the end of the Second World War.In 1946 he joined the Department of Chemical Engineering at Cambridge, receiving a small amount of money from the Electrical Research Association. Backing came six years later from the National Research and Development Corporation (NRDC), the development of the fuel cell being transferred to Marshalls of Cambridge, where Bacon was appointed Consultant.By 1959, after almost twenty years of individual effort, he was able to demonstrate a 6 kW (8 hp) power unit capable of driving a small truck. Bacon appreciated that when substantial power was required over long periods the hydrogen-oxygen fuel cell associated with high-pressure gas storage would be more compact than conventional secondary batteries.The development of the fuel-cell system pioneered by Bacon was stimulated by a particular need for a compact, lightweight source of power in the United States space programme. Electro-chemical generators using hydrogen-oxygen cells were chosen to provide the main supplies on the Apollo spacecraft for landing on the surface of the moon in 1969. An added advantage of the cells was that they simultaneously provided water. NRDC was largely responsible for the forma-tion of Energy Conversion Ltd, a company that was set up to exploit Bacon's patents and to manufacture fuel cells, and which was supported by British Ropes Ltd, British Petroleum and Guest, Keen \& Nettlefold Ltd at Basingstoke. Bacon was their full-time consultant. In 1971 Energy Conversion's operation was moved to the UK Atomic Energy Research Establishment at Harwell, as Fuel Cells Ltd. Bacon remained with them until he retired in 1973.[br]Principal Honours and DistinctionsOBE 1967. FRS 1972. Royal Society S.G. Brown Medal 1965. Royal Aeronautical Society British Silver Medal 1969.Bibliography27 February 1952, British patent no. 667,298 (hydrogen-oxygen fuel cell). 1963, contribution in W.Mitchell (ed.), Fuel Cells, New York, pp. 130–92.1965, contribution in B.S.Baker (ed.), Hydrocarbon Fuel Cell Technology, New York, pp. 1–7.Further ReadingObituary, 1992, Daily Telegraph (8 June).A.McDougal, 1976, Fuel Cells, London (makes an acknowledgement of Bacon's contribution to the design and application of fuel cells).D.P.Gregory, 1972, Fuel Cells, London (a concise introduction to fuel-cell technology).GW -
90 technisch
technisch I adj GEN technical technisch II adv GEN technically • technisch ausgereift IND high-tech • technisch fortgeschritten IND, WIWI technologically advanced • technisch möglich IND technically feasible* * *adv < Geschäft> technically ■ technisch ausgereift < Ind> high-tech ■ technisch fortgeschritten <Ind, Vw> technologically advanced ■ technisch möglich < Ind> technically feasible* * *technisch
technical, engineering;
• technisch bewandert techno-savvy;
• technische Abteilung engineering department;
• technisch bedingte Arbeitslosigkeit technological unemployment;
• großer technischer Aufwand major engineering;
• technische Ausbildung technical training;
• technische Ausführung technique;
• technischer Außendienst customer engineering;
• technischer Berater technical consultant (adviser);
• technischer Beruf technical profession;
• technische Beschaffenheit technicality;
• technische Betriebsabteilung technical (engineering) department;
• technischer Betriebsleiter chief engineer;
• technisches Büro engineering department, technical office;
• technische Daten engineering data;
• technische Einrichtungen engineering facilities;
• technische Einzelheiten technicalities, technical details;
• technische Errungenschaft technical feat;
• technische Formalitäten legal formalities;
• technischer Fortschritt technological progress (advance);
• technische Herausforderung engineering challenge;
• technische Hilfeleistungen technical aid;
• technischer Kaufmann sales engineer;
• technischer Leiter technical manager (director);
• technische Messe engineering fair;
• technische Neuerungen technical innovations;
• technische Normenvorschriften engineering standards;
• technische Nothilfe Organization for the Maintenance of Supplies (Br.), Office of Emergency Preparedness (US);
• technisches Personal engineering (technical) staff;
• technische Produktionsanlagen production facilities;
• technischer Rückstand technological gap;
• technischer Stab engineering force (staff);
• technischer Überwachungsverein (TÜV) technical control board;
• technische Unterlagen technical data;
• technische Unterstützung engineering support;
• technische Verbesserung technical improvement;
• technischer Verkäufer salesman engineer;
• technisches Versagen breakdown;
• technische Versicherung engineering insurance;
• technischer Zeichner tracer, draughtsman, draftsman;
• technische Zusammenarbeit technical collaboration;
• technischer Zustand technicality;
• technische Zuverlässigkeitsbescheinigung roadworthiness test certificate.
ausgefeilt, technisch
sophisticated. -
91 ingénieur-conseil
pl ingénieurs-conseils ɛ̃ʒenjœʀkɔ̃sɛj nom masculin consulting engineer* * *[ɛ̃ʒenjɶrkɔ̃sɛj] ( pluriel ingénieurs-conseils) nom masculin -
92 architect
1. n архитектор, зодчий2. n творец, создатель3. v строить, планировать, конструироватьthe house was architected to harmonize with the landscape — дом был архитектурно привязан к ландшафту
Синонимический ряд:1. designer (noun) architectural engineer; builder; building consultant; designer; director of building; draftsman; master builder; planner of structures; structural engineer2. father (noun) author; creator; engineer; father; founder; generator; inventor; maker; mastermind; originator; parent; patriarch; planner; prime mover; sire -
93 Smeaton, John
SUBJECT AREA: Civil engineering, Mechanical, pneumatic and hydraulic engineering, Steam and internal combustion engines[br]b. 8 June 1724 Austhorpe, near Leeds, Yorkshire, Englandd. 28 October 1792 Austhorpe, near Leeds, Yorkshire, England[br]English mechanical and civil engineer.[br]As a boy, Smeaton showed mechanical ability, making for himself a number of tools and models. This practical skill was backed by a sound education, probably at Leeds Grammar School. At the age of 16 he entered his father's office; he seemed set to follow his father's profession in the law. In 1742 he went to London to continue his legal studies, but he preferred instead, with his father's reluctant permission, to set up as a scientific instrument maker and dealer and opened a shop of his own in 1748. About this time he began attending meetings of the Royal Society and presented several papers on instruments and mechanical subjects, being elected a Fellow in 1753. His interests were turning towards engineering but were informed by scientific principles grounded in careful and accurate observation.In 1755 the second Eddystone lighthouse, on a reef some 14 miles (23 km) off the English coast at Plymouth, was destroyed by fire. The President of the Royal Society was consulted as to a suitable engineer to undertake the task of constructing a new one, and he unhesitatingly suggested Smeaton. Work began in 1756 and was completed in three years to produce the first great wave-swept stone lighthouse. It was constructed of Portland stone blocks, shaped and pegged both together and to the base rock, and bonded by hydraulic cement, scientifically developed by Smeaton. It withstood the storms of the English Channel for over a century, but by 1876 erosion of the rock had weakened the structure and a replacement had to be built. The upper portion of Smeaton's lighthouse was re-erected on a suitable base on Plymouth Hoe, leaving the original base portion on the reef as a memorial to the engineer.The Eddystone lighthouse made Smeaton's reputation and from then on he was constantly in demand as a consultant in all kinds of engineering projects. He carried out a number himself, notably the 38 mile (61 km) long Forth and Clyde canal with thirty-nine locks, begun in 1768 but for financial reasons not completed until 1790. In 1774 he took charge of the Ramsgate Harbour works.On the mechanical side, Smeaton undertook a systematic study of water-and windmills, to determine the design and construction to achieve the greatest power output. This work issued forth as the paper "An experimental enquiry concerning the natural powers of water and wind to turn mills" and exerted a considerable influence on mill design during the early part of the Industrial Revolution. Between 1753 and 1790 Smeaton constructed no fewer than forty-four mills.Meanwhile, in 1756 he had returned to Austhorpe, which continued to be his home base for the rest of his life. In 1767, as a result of the disappointing performance of an engine he had been involved with at New River Head, Islington, London, Smeaton began his important study of the steam-engine. Smeaton was the first to apply scientific principles to the steam-engine and achieved the most notable improvements in its efficiency since its invention by Newcomen, until its radical overhaul by James Watt. To compare the performance of engines quantitatively, he introduced the concept of "duty", i.e. the weight of water that could be raised 1 ft (30 cm) while burning one bushel (84 lb or 38 kg) of coal. The first engine to embody his improvements was erected at Long Benton colliery in Northumberland in 1772, with a duty of 9.45 million pounds, compared to the best figure obtained previously of 7.44 million pounds. One source of heat loss he attributed to inaccurate boring of the cylinder, which he was able to improve through his close association with Carron Ironworks near Falkirk, Scotland.[br]Principal Honours and DistinctionsFRS 1753.Bibliography1759, "An experimental enquiry concerning the natural powers of water and wind to turn mills", Philosophical Transactions of the Royal Society.Towards the end of his life, Smeaton intended to write accounts of his many works but only completed A Narrative of the Eddystone Lighthouse, 1791, London.Further ReadingS.Smiles, 1874, Lives of the Engineers: Smeaton and Rennie, London. A.W.Skempton, (ed.), 1981, John Smeaton FRS, London: Thomas Telford. L.T.C.Rolt and J.S.Allen, 1977, The Steam Engine of Thomas Newcomen, 2nd edn, Hartington: Moorland Publishing, esp. pp. 108–18 (gives a good description of his work on the steam-engine).LRD -
94 Vermuyden, Sir Cornelius
SUBJECT AREA: Civil engineering[br]b. c. 1590 St Maartensdijk, Zeeland, the Netherlandsd. 4 February 1656 probably London, England[br]Dutch/British civil engineer responsible for many of the drainage and flood-protection schemes in low-lying areas of England in the seventeenth century.[br]At the beginning of the seventeenth century, several wealthy men in England joined forces as "adventurers" to put their money into land ventures. One such group was responsible for the draining of the Fens. The first need was to find engineers who were versed in the processes of land drainage, particularly when that land was at, or below, sea level. It was natural, therefore, to turn to the Netherlands to find these skilled men. Joachim Liens was one of the first of the Dutch engineers to go to England, and he started work on the Great Level; however, no real progress was made until 1621, when Cornelius Vermuyden was brought to England to assist in the work.Vermuyden had grown up in a district where he could see for himself the techniques of embanking and reclaiming land from the sea. He acquired a reputation of expertise in this field, and by 1621 his fame had spread to England. In that year the Thames had flooded and breached its banks near Havering and Dagenham in Essex. Vermuyden was commissioned to repair the breach and drain neighbouring marshland, with what he claimed as complete success. The Commissioners of Sewers for Essex disputed this claim and whthheld his fee, but King Charles I granted him a portion of the reclaimed land as compensation.In 1626 Vermuyden carried out his first scheme for drainage works as a consultant. This was the drainage of Hatfield Chase in South Yorkshire. Charles I was, in fact, Vermuyden's employer in the drainage of the Chase, and the work was undertaken as a means of raising additional rents for the Royal Exchequer. Vermuyden was himself an "adventurer" in the undertaking, putting capital into the venture and receiving the title to a considerable proportion of the drained lands. One of the important elements of his drainage designs was the principal of "washes", which were flat areas between the protective dykes and the rivers to carry flood waters, to prevent them spreading on to nearby land. Vermuyden faced bitter opposition from those whose livelihoods depended on the marshlands and who resorted to sabotage of the embankments and violence against his imported Dutch workmen to defend their rights. The work could not be completed until arbiters had ruled out on the respective rights of the parties involved. Disagreements and criticism of his engineering practices continued and he gave up his interest in Hatfield Chase. The Hatfield Chase undertaking was not a great success, although the land is now rich farmland around the river Don in Doncaster. However, the involved financial and land-ownership arrangements were the key to the granting of a knighthood to Cornelius Vermuyden in January 1628, and in 1630 he purchased 4,000 acres of low-lying land on Sedgemoor in Somerset.In 1629 Vermuyden embarked on his most important work, that of draining the Great Level in the fenlands of East Anglia. Francis Russell, 4th Earl of Bedford, was given charge of the work, with Vermuyden as Engineer; in this venture they were speculators and partners and were recompensed by a grant of land. The area which contains the Cambridgeshire tributaries of the Great Ouse were subject to severe and usually annual flooding. The works to contain the rivers in their flood period were important. Whilst the rivers were contained with the enclosed flood plain, the land beyond became highly sought-after because of the quality of the soil. The fourteen "adventurers" who eventually came into partnership with the Earl of Bedford and Vermuyden were the financiers of the scheme and also received land in accordance with their input into the scheme. In 1637 the work was claimed to be complete, but this was disputed, with Vermuyden defending himself against criticism in a pamphlet entitled Discourse Touching the Great Fennes (1638; 1642, London). In fact, much remained to be done, and after an interruption due to the Civil War the scheme was finished in 1652. Whilst the process of the Great Level works had closely involved the King, Oliver Cromwell was equally concerned over the success of the scheme. By 1655 Cornelius Vermuyden had ceased to have anything to do with the Great Level. At that stage he was asked to account for large sums granted to him to expedite the work but was unable to do so; most of his assets were seized to cover the deficiency, and from then on he subsided into obscurity and poverty.While Cornelius Vermuyden, as a Dutchman, was well versed in the drainage needs of his own country, he developed his skills as a hydraulic engineer in England and drained acres of derelict flooded land.[br]Principal Honours and DistinctionsKnighted 1628.Further ReadingL.E.Harris, 1953, Vermuyden and the Fens, London: Cleaver Hume Press. J.Korthals-Altes, 1977, Sir Cornelius Vermuyden: The Lifework of a Great Anglo-Dutchman in Land-Reclamation and Drainage, New York: Alto Press.KM / LRDBiographical history of technology > Vermuyden, Sir Cornelius
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95 Lanchester, Frederick William
[br]b. 28 October 1868 Lewisham, London, Englandd. 8 March 1946 Birmingham, England[br]English designer and builder of the first all-British motor car.[br]The fourth of eight children of an architect, he spent his childhood in Hove and attended a private preparatory school, from where, aged 14, he went to the Hartley Institution (the forerunner of Southampton University). He was then granted a scholarship to the Royal College of Science, South Kensington, and also studied practical engineering at Finsbury Technical College, London. He worked first for a draughtsman and pseudo-patent agent, and was then appointed Assistant Works Manager of the Forward Gas Engine Company of Birmingham, with sixty men and a salary of £1 per week. He was then aged 21. His younger brother, George, was apprenticed to the same company. In 1889 and 1890 he invented a pendulum governor and an engine starter which earned him royalties. He built a flat-bottomed river craft with a stern paddle-wheel and a vertical single-cylinder engine with a wick carburettor of his own design. From 1892 he performed a number of garden experiments on model gliders relating to problems of lift and drag, which led him to postulate vortices from the wingtips trailing behind, much of his work lying behind the theory of modern aerodynamics. The need to develop a light engine for aircraft led him to car design.In February 1896 his first experimental car took the road. It had a torsionally rigid chassis, a perfectly balanced and almost noiseless engine, dynamically stable steering, epicyclic gear for low speed and reverse with direct drive for high speed. It turned out to be underpowered and was therefore redesigned. Two years later an 8 hp, two-cylinder flat twin appeared which retained the principle of balancing by reverse rotation, had new Lanchester valve-gear and a new method of ignition based on a magneto generator. For the first time a worm and wheel replaced chain-drive or bevel-gear transmission. Lanchester also designed the machinery to make it. The car was capable of about 18 mph (29 km/h): future cars of his travelled at twice that speed. From 1899 to 1904 cars were produced for sale by the Lanchester Engine Company, which was formed in 1898. The company had to make every component except the tyres. Lanchester gave up the managership but remained as Chief Designer, and he remained in this post until 1914.In 1907–8 his two-volume treatise Aerial Flight was published; it included consideration of skin friction, boundary-layer theory and the theory of stability. In 1909 he was appointed to the Government's Committee for Aeronautics and also became a consultant to the Daimler Company. At the age of 51 he married Dorothea Cooper. He remained a consultant to Daimler and worked also for Wolseley and Beardmore until 1929 when he started Lanchester Laboratories, working on sound reproduction. He also wrote books on relativity and on the theory of dimensions.[br]Principal Honours and DistinctionsFRS.Bibliographybht=1907–8, Aerial Flight, 2 vols.Further ReadingP.W.Kingsford, 1966, F.W.Lanchester, Automobile Engineer.E.G.Semler (ed.), 1966, The Great Masters. Engineering Heritage, Vol. II, London: Institution of Mechanical Engineers/Heinemann.IMcNBiographical history of technology > Lanchester, Frederick William
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96 technische Beraterin
f1. consulting engineer [female]2. engineering consultant [female]3. technical consultant [female] -
97 ingénieur-conseil
Dictionnaire d'ingénierie, d'architecture et de construction > ingénieur-conseil
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98 builder
1. n строитель2. n строительный рабочий; плотник; каменщик3. n подрядчикСинонимический ряд:1. designer (noun) architect; architectural engineer; building consultant; designer; director of building; draftsman; master builder; planner of structures; structural engineer2. manufacturer (noun) constructor; erector; maker; manufacturer3. pioneer (noun) contributor; creator; developer; pioneer -
99 draftsman
1. n составитель; автор2. n чертёжник, конструктор3. n рисовальщикСинонимический ряд:designer (noun) architect; architectural engineer; builder; building consultant; designer; director of building; master builder; planner of structures; structural engineer -
100 Juran, Joseph Moses
(b. 1904) Gen MgtRomanian-born engineer and consultant. Introduced ideas on total quality management to Japan and later, like W. Edwards Deming, to the West. Juran’s methods, first published in Quality Control Handbook (1951), center on building a customerfocused organization through planning, control and improvement, and good people management.Juran trained as an electrical engineer, worked for Western Electric in the 1920s, becoming quality manager at their Chicago plant, and later went to work for AT&T. In 1953, he made his first visit to Japan, where he spent two months observing Japanese practices and training managers and engineers in what he called managing for quality. For the next quarter of a century, Juran continued to give seminars on the subject of quality throughout the world. In 1979 he founded the Juran Institute to spread and facilitate the implementation of quality management programs worldwide.
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