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1 plant flexibility
маневренность электростанций
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[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва]Тематики
- электротехника, основные понятия
EN
управляемость электростанций
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
управляемость энергоблока
манёвренность энергоблока
управляемость электростанции
манёвренность электростанции
—
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
Синонимы
EN
Англо-русский словарь нормативно-технической терминологии > plant flexibility
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2 plant flexibility
Электротехника: манёвренность электростанций, управляемость электростанций -
3 plant flexibility
< prod> ■ Anlagenflexibilität f -
4 plant flexibility
Англо-русский словарь по электроэнергетике > plant flexibility
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5 power plant flexibility
Техника: манёвренность электростанцийУниверсальный англо-русский словарь > power plant flexibility
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6 pipe rack/ tracks within the plant are classified up to battery limit to cater for flexibility in location of flanges and valves
Универсальный англо-русский словарь > pipe rack/ tracks within the plant are classified up to battery limit to cater for flexibility in location of flanges and valves
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7 facility
объект имя существительное: -
8 jobbing shop
эк. (предприятие или цех, работающие по специальным заказам; в том числе, различные ремонтные мастерские)The jobbing shop is noted for its flexibility in being established to carry out a wide range of tasks.
Since the patterns of demand for a jobbing shop are unpredictable and the size of any one order relatively small, the layout of the plant cannot be adapted to form produt-related flow lines.
Syn: -
9 engine
двигатель (внутреннего сгорания); машина; мотор- engine analyzer - engine and gearbox unit - engine area - engine assembly - engine assembly shop - engine bonnet - engine braking force - engine breathing - engine-building - engine capacity - engine cleansing agents - engine column - engine component - engine conk - engine control - engine-cooling - engine-cooling thermometer - engine cowl flap - engine cross-drive casing - engine cutoff - engine cycle - engine data - engine deck - engine department - engine details - engine diagnostic connector - engine-driven air compressor - engine-driven industrial shop truck - engine dry weight - engine efficiency - engine failure - engine fan pulley - engine flameout - engine flywheel - engine for different fuels - engine frame - engine front - engine front area - engine front support bracket - engine fuel - engine gearbox - engine-gearbox unit - engine-generator - engine-governed speed - engine governor - engine gum - engine hatch - engine hoist - engine hood - engine house - engine idles rough - engine in situ - engine installation - engine is smooth - engine is tractable - engine knock - engine lacquer - engine life - engine lifetime pecypc - engine lifting bracket - engine lifting fixture - engine lifting hook - engine location - engine lubrication system - engine lug - engine management - engine management system - engine map - engine misfires - engine model - engine motoring - engine mount - engine-mounted - engine mounted longitudinally - engine mounted transversally - engine mounting - engine-mounting bracket - engine nameplate - engine noise - engine number - engine off - engine oil - engine oil capacity - engine oil filler cap - engine oil filling cap - engine oil tank - engine on - engine operating temperature - engine out of work - engine output - engine overhaul - engine pan - engine peak speed - engine performance - engine picks up - engine pings - engine piston - engine plant - engine power - engine pressure - engine primer - engine rating - engine rear support - engine reconditioning - engine renovation - engine repair stand - engine retarder - engine revolution counter - engine rig test - engine room - engine roughness - engine rpm indicator - engine run-in - engine runs rough - engine runs roughly - engine shaft - engine shed - engine shield - engine shop - engine shorting-out - engine shutdown - engine sludge - engine snubber - engine speed - engine speed sensor - engine stability - engine stalls - engine start - engine starting system - engine starts per day - engine stroke - engine subframe - engine sump - engine sump well - engine support - engine temperature sensor - engine test stand - engine testing room - engine throttle - engine timing case - engine-to-cabin passthrough aperture - engine-transmission unit - engine torque - engine trends - engine trouble - engine tune-up - engine turning at peak revolution - engine under seat - engine unit - engine vacuum checking gauge - engine valve - engine varnish - engine vibration - engine wash - engine water inlet - engine water outlet - engine wear - engine weight - engine weight per horsepower - engine winterization system - engine with supercharger - engine wobble - engine works - engine yard - engine's flexibility - aero-engine - atmospheric engine - atmospheric steam engine - atomic engine - augmented engine - AV-1 engine - aviation engine - back-up engine - birotary engine - blast-injection diesel engine - blower-cooled engine - bored-out engine - boxer engine - bull engine - car engine - charge-cooled engine - crank engine - crankcase-scavenged engine - crude engine - crude-oil engine - diaphragm engine - diesel-electric engine - Diesel engine - Diesel engine with air cell - Diesel engine with antechamber - Diesel engine with direct injection - Diesel engine with mechanical injection - direct injection engine - divided-chamber engine - double-flow engine - double-overhead camshaft engine - drilling engine - driving engine - drop-valve engine - ducted-fan engine - duofuel engine - emergency engine - explosion engine - external combustion engine - external-internal combustion engine - F-head engine - failed engine - fan engine - federal engine - field engine - fire-engine - five-cylinder engine - fixed engine - flame engine - flat engine - flat-four engine - flat twin engine - flexibly mounted engine - forced-induction engine - four-cycle engine - four-cylinder engine - four-stroke engine - free-piston engine - free-piston gas generator engine - front-mounted engine - free-turbine engine - fuel-injection engine - full-load engine - gas engine - gas blowing engine - gas-power engine - gas-turbine engine - gasoline engine - geared engine - heat engine - heavy-duty engine - heavy-oil engine - high-by-pass-ratio turbofan engine - high-compression engine - high-efficiency engine - high-performance engine - high-power engine - high-speed engine - hoisting engine - hopped-up engine - horizontal engine - horizontally opposed engine - hot engine - hot-air engine - hot-bulb engine - hydrogen engine - I-head engine - in-line engine - inclined engine - indirect injection engine - individual-cylinder engine - industrial engine - inhibited engine - injection oil engine - injection-type engine - intercooled diesel engine - intermittent-cycle engine - internal combustion engine - inverted engine - inverted Vee-engine - jet engine - jet-propulsion engine - kerosene engine - knock test engine - L-head engine - launch engine - lean-burn engine - left-hand engine - lift engine - light engine - liquid-cooled engine - liquid propane engine - locomotive engine - longitudinal engine - long-stroke engine - low-compression engine - low-consumption engine - low-emission engine - low-performance engine - low-speed engine - marine engine - modular engine - monosoupape engine - motor engine - motor an engine round - motor-boat engine - motor-fire engine - motorcycle engine - motored engine - multibank engine - multicarburetor engine - multicrank engine - multicylinder engine - multifuel engine - multirow engine - naturally aspirated engine - non-compression engine - non-condensing engine - non-exhaust valve engine - non-poppet valve engine - non-reversible engine - nuclear engine - oil engine - oil-electric engine - oil well drilling engine - one-cylinder engine - operating engine - opposed engine - opposed cylinders engine - Otto engine - out-board engine - overcooled engine - overhead valve engine - oversquare engine - overstroke engine - pancake engine - paraffin engine - paraffine engine - petrol engine - Petter AV-1 Diesel engine - pilot engine - piston engine - piston blast engine - port engine - precombustion chamber engine - prime an engine - producer-gas engine - production engine - prototype engine - pumping engine - pushrod engine - quadruple-expansion engine - qual-cam engine - racing engine - radial engine - radial cylinder engine - radial second motion engine - railway engine - ram induction engine - ram-jet engine - reaction engine - rear-mounted engine - rebuilt engine - reciprocating engine - reciprocating piston engine - reconditioned engine - regenerative engine - regular engine - reheat engine - research-cylinder engine - reversible engine - reversing engine - right-hand engine - rocket engine - rotary engine - rough engine - row engine - run in an engine - scavenged gasoline engine - scavenging engine - sea-level engine - second-motion engine - self-ignition engine - semidiesel engine - series-wound engine - servo-engine - short-life engine - short-stroke engine - shorted-out engine - shunting engine - shunt-wound engine - side-by-side engine - side-valve engine - simple-expansion engine - single-acting engine - single-chamber rocket engine - single-cylinder engine - single-cylinder test engine - single-row engine - six-cylinder engine - skid engine - slanted engine - sleeve-valve engine - sleeveless engine - slide-valve engine - slope engine - slow-running engine - slow-speed engine - small-bore engine - small-displacement engine - solid-injection engine - spark-ignition engine - spark-ignition fuel-injection engine - split-compressor engine - square engine - square stroke engine - stalled engine - stand-by engine - start the engine cold - start the engine light - start the engine warm- hot- starting engine - static engine - stationary engine - steam engine - steering engine - Stirling engine - straight-eight engine - straight-line engine - straight-type engine - stratified charge engine - stripped engine - submersible engine - suction gas engine - supercharged engine - supercompression engine - supplementary engine - swash-plate engine - switching engine - tandem engine - tank engine - thermal engine - three-cylinder engine - traction engine - triple-expansion engine - tractor engine - transversally-mounted engine - truck engine - trunk-piston Diesel engine - turbine engine - turbo-jet engine - turbo-charged engine - turbo-compound engine - turbo-prop engine - turbo-ramjet engine - turbo-supercharged engine - turbocharged-and-aftercooled engine - turbofan engine - turboprop engine - twin engine - twin cam engine - twin crankshaft engine - twin six engine - two-bank engine - two-cycle engine - two-cylinder engine - two-spool engine - two-stroke engine - unblown engine - uncooled engine - underfloor engine - undersquare engine - uniflow engine - unsupercharged engine - uprated engine - V-engine - V-type engine - valve-in-the-head engine - valveless engine - vaporizer engine - vaporizing-oil engine - variable compression engine - variable-stroke engine - variable valve-timing engine - vee engine - vertical engine - vertical turn engine - vertical vortex engine - W-type engine - Wankel engine - warm engine - waste-heat engine - water-cooled engine - winding engine - windshield wiper engine - woolly-type engine - worn engine - X-engine - Y-engine - yard engine -
10 development
1. n развитие, рост; совершенствование2. n биол. эволюция3. n изложение; раскрытие4. n результат5. n преим. событие6. n предприятие7. n обрабатываемый участок земли8. n разработкаnew development — новшество; новая разработка
9. n производство10. n лог. развёртывание, разъяснение; экспликация понятия11. n с. -х. выведение12. n с. -х. мелиорацияland ripe for development — земля, подготовленная для мелиорации
13. n с. -х. преобразование14. n с. -х. разложение15. n с. -х. шахм. вывод; развитие16. n с. -х. фото проявление17. n с. -х. горн. подготовка или вскрытие месторождения18. n с. -х. воен. расчленение, организация позицийСинонимический ряд:1. community (noun) community; project2. growth (noun) developing; disclosure; enlargement; evolution; growth; maturation; maturing; opening; unfolding3. increase (noun) accretion; accumulation; amassment; build-up; increase; increment; multiplication; proliferation4. news (noun) circumstance; episode; event; happening; incident; news; occasion; occurrence5. progress (noun) amelioration; betterment; elaboration; evolution; evolvement; expansion; flowering; gain; improvement; melioration; outgrowth; progress; progression; rise; unfolding; upgrowthАнтонимический ряд:decline; degeneration; deterioration -
11 Bodolee Sutta
This plant, a native of India, produces a fibre of great strength and flexibility, and with a silk-like appearance, and is adapted to the finest textile purposes in India. It also possesses remarkable durability. The process of obtaining the fibres are carried on by the natives' handwork, and are too slow, laborious and costly for commercial use. -
12 matrix
1. матрица <в математике, металлообработке, материаловедении>2. связующее4х4 matrixaerodynamic matrixaerodynamic damping matrixaerodynamic influence coefficient matrixaerodynamic stiffness matrixaerodynamics matrixaeroelastic matrixbanded matrixblock gain matrixcarbonised matrixcirculatory aerodynamic matrixclosed-loop matrixcoefficient matrixcolumn matrixcomplex matrixcompliance matrixcondensed matrixconfiguration matrixconsistent matrixconstant matrixconstitutive matrixcontrol matrixcontrol derivative matrixcontrol effectiveness matrixcontroller matrixCoriolis matrixcost matrixcovariance matrixdamping matrixdense matrixderivative matrixdiagonal matrixdifferentiating matrixdirection cosine matrixdownwash matrixdynamics matrixeigenvalue matrixeigenvector matrixepoxy matrixerror matrixfeed forward matrixfeedback matrixFisher's information matrixflexibility matrixFloquet transition matrixforce matrixfrequency matrixgain matrixgeneralized matrixgeneralized stiffness matrixgeneric configuration matrixHessenberg matrixHessian matrixidentity matrixinertia matrixinfluence matrixinfluence coefficient matrixinformation matrixinput matrixintegrating matrixinterelement compatible matrixinverse matrixJacobian matrixlateral-directional matrixlogic matrixmass matrixmeasurement matrixmeasurement noise covariance matrixmodal matrixmoment of inertia matrixnegative semidefinite matrixnoise intensity matrixnoncirculatory aerodynamic matrixnondiagonal matrixobservation matrixoutput matrixpentadiagonal matrixperiodic matrixperturbation matrixpilot transfer matrixplant matrixpositive semidefinite matrixpositive-definite matrixreal matrixresidual matrixreturn difference matrixrow matrixsensitivity matrixsequence-free transformation matrixsilicon carbide matrixskew symmetric matrixsolution matrixsparse matrixsquare matrixstability matrixstability derivative matrixstate matrixstate transition matrixstiffness matrixstress matrixstructural damping matrixstructure matrixsuperelement matrixsymmetric matrixsystem matrixtest matrixtime separation matrixtransfer matrixtransfer function matrixtransformation matrixtransition matrixtransmission matrixtransposed matrixtridiagonal matrixunitary matrixVandermonde matrixweightage matrixweighting matrix -
13 Kaplan, Viktor
[br]b. 27 November 1876 Mutz, Austriad. 23 August 1834 Unterach, Austria[br]Austrian engineer, inventor of the Kaplan turbine.[br]Kaplan was educated at the Realschule in Vienna and went on to the Technische Hochschule to study machine construction, gaining his engineer's diploma in 1900. He spent a year in voluntary service in the Navy before entering Ganz \& Co. at Lebersdorf, where he was engaged in the manufacture of diesel engines. In 1903 he turned to an academic career, first with a professorship in kinematics, theoretical machine studies and machine construction at the Technische Hochschule in Brunn (now Brno). In 1918 he became Professor of Water Turbine Construction, remaining as such until his early retirement for health reasons in 1931.Kaplan's first publication on turbines, in 1908, was an extension of work carried out for his doctorate at the Technische Hochschule in Vienna and concerned the Francis-type turbine. Kaplan went on to develop and patent the form of water turbine that came to bear his name. It is a reaction turbine which uses a large flow on a low head and which is made like a ship's propeller with variable-pitch vanes running in a close-fitting casing. Its application was neglected at first, but since the 1920s it has become the basic turbine for most high-powered hydroelectric plant: the turbines have been capable of around 85 per cent efficiency and modern developments have raised this figure still further. Perhaps the most impressive application of the Kaplan turbine and its derivatives is the great tidal-power scheme in the estuary of the Rance by St-Malo in France, completed in 1966. The turbines probably have to meet a greater demand for flexibility than any others, for they must operate at constant speed with variable head, as the tide ebbs and flows.LRD
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маневренность электростанций — — [Я.Н.Лугинский, М.С.Фези Жилинская, Ю.С.Кабиров. Англо русский словарь по электротехнике и электроэнергетике, Москва] Тематики электротехника, основные понятия EN plant flexibility … Справочник технического переводчика
управляемость электростанций — — [Я.Н.Лугинский, М.С.Фези Жилинская, Ю.С.Кабиров. Англо русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.] Тематики электротехника, основные понятия EN plant flexibility … Справочник технического переводчика
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