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1 line of pumps
Англо-русский словарь нормативно-технической терминологии > line of pumps
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2 line of pumps
Большой англо-русский и русско-английский словарь > line of pumps
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3 line of pumps
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* * *Англо-русский словарь нефтегазовой промышленности > line of pumps
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4 line of pumps
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5 line of pumps
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6 line
1. линия ( в разных значениях)2. черта, штрих3. кривая ( на диаграмме)4. очертания, контур5. граница, предел6. талевый канат, струна талевой оснастки; трос7. путь; линия; дорога8. магистраль; трубопровод9. обкладка; облицовка; футеровка || обкладывать; облицовывать; футеровать10. устанавливать точно; устанавливать соосно; устанавливать в одну линиюcoil type kill and choke flexible steel lines — спиральные стальные трубы линий штуцерной и для глушения скважины (предназначенные для компенсации поворотов морского стояка)
dash and dot line — пунктирная линия, состоящая из чёрточек и точек
integral choke and kill lines — линии штуцерная и глушения скважины (изготовленные заодно с секциями водоотделяющей колонны)
riser joint integral kill and choke line — секция линий глушения скважины и штуцерной, выполненная заодно с секцией водоотделяющей колонны
— gas line— in line— line in— line up— mud return line— oil line— on line— pod line— red line— rig line— rod line— rotary drill line— sea line
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1. трубопровод; нитка трубопровода || прокладывать трубопровод, тянуть нитку трубопроводаriser joint integral kill and choke line — секция линии глушения скважины и штуцерной линии, выполненная заодно с секцией водоотделяющей колонны
— gas line— oil line— pod line— rig line— sea line
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1. талевый канат; струна талевой оснастки2. линия, профиль3. ряд, отрасль4. трубопровод5. проводить линию, устанавливать в линию
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1. линия; профиль2. канал ( аппаратуры)3. провод
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1) трубопровод; нитка трубопровода || прокладывать трубопровод, тянуть нитку трубопровода3) талевый канат; струна талевой оснастки4) линия, кривая5) ряд6) отрасль•on line — 1) выровненный, соосный () 2) прямолинейный ();
to blank off a line — заглушать трубопровод;
to blind off a line — заглушать трубопровод;
to block a line — заглушать трубопровод;
to feed off a line from drum — сматывать талевый канат с барабана;
to flush a line through — промывать трубопровод;
to line in — выверять положение ();
to reeve a line — натягивать канат перед подъёмом; пропускать талевый канат через кронблочный шкив (/i]);
to spool the drilling line on drum — наматывать талевый канат на барабан;
to line the hole — крепить скважину обсадной колонной;
to turn into the line — начинать перекачивание из промысловых резервуаров по трубопроводу;
to line up — 1) выравнивать 2) устанавливать на одной прямой;
to valve off a line — перекрывать трубопровод задвижкой;
- line of correlationto line with casing — крепить скважину обсадными трубами;
- line of deflection
- line of dip
- line of etch
- line of geophone
- line of least resistance
- line of pumps
- line of shooting
- line of tackle system
- line of welding
- admission line
- air line
- anchor line
- anchoring line
- back-pressure line
- backup line
- backwash line
- bailer line
- bailing line
- bare line
- base line of sands
- bed contour line
- big-inch line
- bleed line
- bleeder line
- bleed-off line
- blooie line
- blowing line
- booster line
- borehole line
- bozo line
- branch line
- branch main line
- branched line
- buried pipe line
- bypass line
- cable line
- calf line
- casing line
- catalyst transfer line
- cathead line
- cementing line
- choke line
- circular main line
- circulation booster line
- coated pipe line
- coil choke flexible steel line
- coil kill flexible steel line
- condensate line
- condensate-water line
- conductor line
- connecting line
- contact line
- coseismal line
- cracker line
- cracking case vapor line
- crest line
- crossover line
- crude oil line
- dead line
- delivery line
- derrick line
- discharge line
- discharge line of compressor
- disposal line
- distributing main line
- district heating line
- diverter line
- double line
- downstream line
- drain line
- drawworks line of tackle system
- drill line
- drilling line
- drilling mud line
- drilling mud flow line
- drilling rope fast line
- drill-water line
- drop-out line
- edge water line
- emergency drain line
- encroachment line
- etch line
- exhaust line
- expansion line
- fast line
- feed line
- fill line
- filling line
- fillup line
- firing line
- first-break line
- flare line
- flexible production line
- floor line
- flow line
- forked line
- fuel line
- gage line
- gas line
- gas blowoff line
- gas equalizing line
- gas gathering line
- gas inlet line
- gas main line
- gas outlet line
- gas pipe line
- gasoline line
- gathering line
- geophone line
- grade line
- gravity line
- guy lines
- Hallburton line
- heating-gas line
- high-pressure line
- hoisting line
- homoseismal line
- incoming gas line
- injection line
- inlet line
- insulated pipe line
- integral choke and kill line
- isoseismal line
- jerk line
- jetting line
- jug line
- kill line
- lang-lay line
- lateral gas line
- lead line
- life line
- lift line
- live line
- loading line
- long-distance pipe line
- long-lay line
- low-pressure pipe line
- main line
- main trunk line
- mandrel line
- manifold line
- marine conductor line
- marine riser choke line
- marine riser kill line
- mast line
- master guide line
- mazout line
- mooring line
- mud line
- mud-return line
- multiple lines
- off-stream pipe line
- oil line
- oil-drainage line
- oil-gathering line
- oil-pipe line
- operation line
- original water line
- outgoing gas line
- outlet transfer line
- overflow line
- overhead line
- pilot line
- pilot igniting line
- pipe line
- pod line
- pod lock line
- pressure line
- priming line
- production flow line
- products pipe line
- pull line
- pump suction line
- pump warm-up line
- pumping-out line
- rag line
- reflux line
- refraction line
- release line
- reserve flow line
- retrieving line
- reverse circulation line
- rig line
- ring main line
- riser choke line
- riser joint integral kill and choke line
- riser kill line
- riser tensioning line
- rod line
- rotary-drill line
- rotary-wire line
- run-down line
- safety line
- sand wire line
- sea line
- seagoing pipe line
- seismic line
- shale base line
- shale deflection line
- shore pipe line
- shot line
- shot-moment line
- shot-point line
- single line
- sling line
- snake line
- soft line
- source line
- split line
- spontaneous potential base line
- spur line
- stabilizing guy line
- steam line
- steam return line
- sucker-rod line
- suction line
- supply line
- surface line of circulation system
- suspension line
- swing line
- swinging core line
- tag line
- takeoff line
- tank flow line
- tank heating line
- tank shipping line
- tapered drilling line
- tie line
- time-distance line
- tool injection line
- tow line
- tracer line
- transmission line
- triple line
- triple gas pipe line
- trough line
- trunk line
- tubing line
- TV guide line
- twin pipe line
- uncovered line
- unloading line
- uphill line
- upstream line
- vapor line
- vent line
- vibrator line
- water line
- water-disposal line
- water-encroachment line
- water-flood line
- water-supply line
- well flow line
- wirerope measuring line* * *• дорога• канат• нитка• обкладка• струна• трос -
7 line
1. n иск. линия; линии, контур2. n черта, штрихline style — тип линии; тип штриха литеры
draw a line — подвести черту; положить предел
3. n муз. линейка4. n черта, особенность, штрих5. n верёвка, бечёвка6. n проводline communication, line transmission — проводная связь; передача сообщений по проводам
7. n лесаto be clever with rod and line, to throw a good line — быть хорошим рыболовом
fishing line — леса, леска
8. n мор. линь9. n поэт. нитьrubber band line — отрезок типа "резиновая нить"
10. n граница, пограничная линия; предел11. n морщина, складкаface covered with deep lines — лицо, изборождённое глубокими морщинами
12. n линия ладони13. n l14. n контур, очертания; обводыwave line — линия волн; волнообразный обвод
15. n план, теоретический чертёжline plan — контурный план; ситуационный план
16. n ряд, линияsingle-wire line — однопроводная линия; несимметричная линия
17. n строй, ряд18. n воен. развёрнутый строй19. n мор. строй фронтаto go up the line — идти, уходить на фронт
20. n очередь, хвост21. n тех. конвейер, поточная линия22. n тех. трубопровод23. n тех. линия связиparty line — спаренные телефоны; общий провод у нескольких абонентов
24. n тех. линия сообщения25. n тех. линия электросетиline bar — контактный рельс; собирательная шина
in line — входящая линия; входная шина
26. n тех. ж. -д. рельсовый путь27. n тех. экватор28. n тех. редк. меридиан или параллель29. n тех. направление; курс, путьline of march — маршрут, путь следования
party line — политический курс; линия партии
30. n тех. направление, ходline of argument — последовательность доводов; ход доказательства
31. n тех. образ действий; линия поведения32. n тех. полит. линия; курс33. n тех. происхождение, родословная, линия; генеалогия, семья34. n тех. очерёдность; перспектива35. n тех. с. -х. генеалогическая линия36. n тех. короткая запискаjust a line to say that all goes well — несколько слов, чтобы только сказать, что всё благополучно
37. n тех. стих, строчка стиха38. n тех. стихи, стихотворение39. n тех. школ. «строчки», дополнительное задание40. n тех. театр. роль, слова роли41. n тех. разг. свидетельство о браке42. n тех. медицинское свидетельство43. n тех. род занятий, род деятельности; специальность; область интересовin line of duty — при исполнении служебных обязанностей; на посту
line of profession — профессия; специальность
44. n тех. ком. ассортимент; партия товаров; серия изделийline cologne — одеколон, входящий в парфюмерную серию
45. n тех. судьба46. n воен. линия фронта; оборонительный рубежlp/mm line pairs per millimetre — количество пар линий на мм
47. n воен. укреплённая линия48. n воен. сведения, информация49. n воен. нападающие50. n воен. пехотные части51. n воен. амер. строевые войска52. n воен. тлв. строкаin line with — в согласии, в соответствии с
to act out of line — грубить; скандалить; вести себя вызывающе
by line and level, by rule and line — очень точно; аккуратно, методично
all along the line — во всём, во всех отношениях
to draw a line — подвести черту, положить предел ;
line advance — перевод строки; переход на следующую строку
continuation line — строка продолжения; строка-продолжение
line overset — излишек букв в строке, переполнение строки
53. v проводить линии; линоватьcolumn line — линия столбца; линия графы; вертикальная шина
54. v строить, выстраивать в ряд, в линию; устанавливать в ряд55. v стоять, тянуться вдольline wells — скважины, расположенные вдоль границ участка
56. v тех. центрировать, выравнивать, правильно устанавливать57. v редк. завязывать, обвязывать бечёвкой, проволокой58. v амер. редк. удить59. v класть на подкладку, подбивать60. v служить подкладкой61. v обивать, обшивать изнутри; выстилать62. v покрывать; служить обивкойtapestries lined the walls — гобелены покрывали все стены; стены были обиты гобеленами
63. v тех. обкладывать, облицовывать64. v тех. прокладывать65. v метал. футеровать66. v разг. наполнять, набиватьСинонимический ряд:1. border (noun) border; edge; margin2. cord (noun) cord; rope; twine; wire3. course (noun) approach; attack; course; method; passage; path; plan; policy; polity; procedure; program; road; route; tack; technique; way4. dash (noun) band; dash; streak; stripe; stroke5. family (noun) ancestry; birth; blood; bloodline; descent; extraction; family; genealogy; lineage; origin; parentage; pedigree; relative; seed6. furrow (noun) crease; crinkle; furrow; wrinkle7. lie (noun) lie; story8. merchandise (noun) commodities; goods; merchandise; produce; stock; vendibles; wares9. occupation (noun) business; calling; discipline; employment; job; occupation; pursuit; racket; trade; vocation; work10. outline (noun) contour; delineation; figuration; lineament; lineation; outline; profile; silhouette11. programme (noun) policy; procedure; programme12. row (noun) column; echelon; file; queue; rank; row; sequence; string; tier13. adjoin (verb) abut; adjoin; border; butt against; butt on; communicate; join; march; neighbor; touch; verge14. line up (verb) align; allineate; arrange; line up; marshal; order; range15. outline (verb) outline; rule; trace16. pad (verb) embroider; face; pad; panel; paper; quiltАнтонимический ряд:contents; deviation; disarrange; discontinuance; interruption; solution; space; strip; variation -
8 line out
1. phr v вычёркивать2. phr v набросать контур, общие очертания3. phr v наметить в общих чертах4. phr v с. -х. пересаживать, пикировать5. phr v выстраивать в ряд, в шеренгу6. phr v бежать; мчаться7. phr v петь или играть громко и пронзительно -
9 computer line
1. серия вычислительных машин2. ряд компьютеров -
10 limiting characteristic line
<tech.gen> (e.g. of motors, pumps) ■ Begrenzungskennlinie fEnglish-german technical dictionary > limiting characteristic line
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11 нормальный ряд насосов
Большой англо-русский и русско-английский словарь > нормальный ряд насосов
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12 pump
насос || качать, накачивать; откачивать; перекачивать; выкачивать ( насосом), нагнетатьfree-type subsurface hydraulic pump — гидропоршневой погружной насос, приводимый в действие жидкостью, подаваемой с поверхности
pump set at... — насос установлен на глубине...; глубина подвески насоса...
— air pump— jet pump— mud pump— oil pump— pump off— pump out— pump up— ram pump— rig pump— rod pump
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tubing pump with automatic coupling device — скважинный штанговый невставной нефтяной насос с автосцепом
— gas pump— jet pump— mud pump— oil pump— rod pump
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||насос || качать, накачивать, перекачивать насосом
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насос || подавать насосом, нагнетать насосом; прокачивать ( буровой раствор по замкнутой системе)pump on beam — насосная добыча с помощью станка-качалки;
to pump off — откачивать;
to pump out — выкачивать; откачивать;
to pump over — перекачивать;
to port the pump — подсоединять линию к насосу;
to put on pump — 1) устанавливать насос у устья скважины 2) начинать насосную эксплуатацию;
to start a pump — включать насос;
to sunk a subsurface pump — устанавливать глубинный насос;
to turn on a pump — включать насос;
- aeration jet pumpto pump up — накачивать; нагнетать;
- air pump
- air-chamber pump
- air-driven pump
- air-operated sump pump
- airlift pump
- American pump
- aspirator pump
- bilge pump
- boost pump
- booster pump
- borehole pump
- boring pump
- bottomhole pump
- Butterworth pump
- cargo pump
- casing sucker rod pump
- cementing pump
- cementing piston pump
- centrifugal pump
- charging pump
- chemical injection pump
- chemical proportioning pump
- circulating pump
- circulation pump
- cold pump
- compounded pumps
- compressed-air-driven pump
- compression pump
- concrete pump
- condensate pump
- constant displacement pump
- controlled capacity plunger pump
- controlled volume pump
- crude pump
- deep well pump
- delivery pump
- diaphragm pump
- direct current motor driven pump
- dispensing pump
- displacement pump
- dosing pump
- double-acting pump
- double-displacement pump
- double-suction pump
- downhole pump
- drawoff pump
- dredge pump
- drill pump
- drilling mud transfer pump
- drum pump
- duplex pump
- ejector pump
- electrical pump
- electrical centrifugal pump
- electrical centrifugal pump for tubingless well operation
- end suction pump
- explosive pump
- extraction pump
- feed pump
- field pump
- fire extinguishing pump
- fixed pump
- fixed-delivery pump
- fixed-displacement pump
- fluid-operated pump
- fluid-packed pump
- flushing pump
- flywheel pump
- force pump
- free hydraulic downhole pump
- free-type subsurface hydraulic pump
- fresh feed pump
- fuel pump
- fuel backup pump
- fuel feed pump
- fuel injection pump
- fuel lift pump
- fuel oil pump
- fuel priming pump
- fuel transfer pump
- gas pump
- gasoline pump
- gear pump
- grouting pump
- hand force pump
- high-pressure pump
- high-pressure concrete pump
- hot oil pump
- hydraulic pump
- hydraulic core pump
- hydraulic downhole pump
- immersed pump
- immersible pump
- insert pump with bottom hold-down
- insert oil-well pump
- inserted pump
- jack pump
- jerk pump
- jerker pump
- jet pump
- jet aspirator pump
- jet slurry pump
- lift pump
- line pump
- liner pump
- liquid ring pump
- long-stroke pump
- lorry-mounted concrete pump
- low-down pump
- metering pump
- monoblock pump
- motor pump
- motor-driven slush pump
- mud pump
- multicylinder pump
- multistage pump
- noninserted pump
- oil pump
- oil-line pump
- oil-transfer pump
- oil-well pump
- oil-well sucker-rod pump with bottom hold-down
- parallel pump s
- piston pump
- plunger pump
- pneumatic sump pump
- portable pump
- portable utility pump
- positive displacement pump
- power driven pump
- pressure pump
- priming pump
- propeller pump
- push pump
- ram pump
- raw oil pump
- reciprocating pump
- recirculating pump
- Reda pump
- reflux pump
- rig pump
- rod pump
- rod traveling barrel pump
- rodless pump
- rod-line pump
- rotary pump
- rough pump
- sand pump
- scavenge pump
- scavenging pump
- screw pump
- shell pump
- simplex pump
- single-acting pump
- single-vane pump
- sinking pump
- sliding-vane pump
- sludge pump
- slurry pump
- slush pump
- slush-fitted pump
- soil pump
- solids pump
- standby pump
- stationary pump
- steam pump
- stripping pump
- submerged pump
- submersible pump
- subsurface pump
- sucker-rod pump
- suction pump
- sump pump
- supply pump
- surge pump
- tail pump
- tank-cleaning pump
- test pump
- three-throw pump
- transfer pump
- transporting pump
- traveling barrel pump
- triplex pump
- tubing pump
- tubing pump with automatic coupling device
- tubing oil-well pump
- twin pump
- twin single pump
- vacuum pump
- variable displacement pump
- variable stroke plunger pump
- volume pump
- washing pump
- washover pump
- water pump
- water injection pump
- water jet pump
- well pump
- well-service pump
- wireline pump* * *• накачка -
13 pump
2) насос; помпа; накачивание; нагнетание; выкачивание; откачивание (процесс действия насоса); II качать насосом; нагнетать; работать насосом; закачивать (воздух и пр.); накачивать (шины и пр.); откачивать; выкачивать; опорожнять- pump adjustment screw - pump-and-accumulator station - pump and injector unit filter - pump and injector unit follower - pump and injector unit nut - pump and injector unit plunger - pump basket - pump beam - pump blade - pump block - pump body - pump bonnet - pump bowl - pump box - pump braking - pump bucket - pump capacity per revolution - pump cavitation - pump cell - pumping circuit - pump circulation - pump control console - pump cradle- pump cup- pump current - pumping current - pump diameter - pump discharge - pump discharge pressure - pump discharge valve - pump disk - pump displacement - pump distribution gear unit - pump-down - pump-down time - pump duty - pump element - pump end thrust - pump-fed rocket - pump filter - pump flow - pump outputflow - pump for gas transporting - pump for injection of mortar - pump frequency - pumping frequency - pump fuel feed - pump governor - pump gun - pump-handle - pump head - pump house - pump housing - pump injection - pump-injector - pump inlet - pump inlet capability - pump inlet pressure - pump installation - pump intake - pump intake pressure - pump jet propeller - pump jet propulsion system - pump-jet propulsion unit - pump jig - pump kettle - pump leak - pump lift - pump line - pump liner - pump-lubricated - pump lubrication - pump main - pump manifold - pump mechanized - pump mode - pump motor - pump-motor - pump-motor unit - pump noise - pump off - pump open sliding side door - pump out - pump output - pump output flow - pump over - pump performance - pump pipelining - pump piping - pump plunger - pump power end - pump pressure - pump price - pump priming - pump priming characteristic - pump pulsation damper - pump ram - pump rate - pump rating - pump recirculation system - pump riser - pump rod - pump rod joint - pump room - pump runner - pump screen - pump seat - pump seating - pump shaft - pump shell - pump slippage - pump specifications - pump speed - pump speed indicator - pump spindle - pump-starving filter condition - pump station - pump stock reserve - pump strainer - pump stripping - pump stroke counter - pump stroke rate - pump suction - pump suction head - pump suction line - pump suction tube - pump suction-valve cage - pump-system water cooling - pump thrust - pump thrust plate - pump traveling valve cage - pump turbine - pump-type circulation lubrication - pump unit - pump unloading - pump unloading hydraulic circuit - pump up - pump vacuum rating - pump volume - pump volume indicator - pump warm-up line - pump water feed - pumped water feed - pump wheel - pump with external bearing - pump with internal bearing - pump with overhung impeller - pump withdrawal - pump working barrel valve seat - pump works - adsorption pump - adsorption vacuum pump - aeration jet pump- air pump- air-driven pump - air-operated pump - air-operated grouting pump- air pump- ammonia pump - annular casing pump - armored pump - aspirator pump - aspiring pump - axial flow pump - axial flow turbine pump - axially split pump - axial piston pump - axial-piston distribution pump - axial piston pump of the rotary cylinder-type - axial suction pump - backing vacuum pump - barrel insert pump - beam pump - blower pump - boom concrete pump - bore-hole pump - brine-circulating pump - canned pump - canned motor pump - cargo pump - cementing piston pump - centrifugal pump with shrouded impeller - circular casing pump - chain pump - combined vacuum pump - Common-Rail high-pressure pump - condensation pump - condensation return pump - constant discharge pump - constant volume pump - continuous-pressure pump - controlled capacity plunger pump - controlled-volume pump - coolant pump - cooled pump - cooling-water pump - corrosion-resistant water pump - cutter lubricant pump - deep-well pump - differential pump - discharge pump - disintegrating pump - dispensing pump - displacement pump - distributor fuel injection pump - donkey pump - dosing pump - double-acting pump - double-diaphragm pump - double-displacement pump - double-entry pump - double-plunger pump - double-suction pump - double-volute pump - Downton pump - drainline pump - dredge pump - dredging pump - drowned pump - ejector jet pump - electrically driven pump - electrical centrifugal pump - electromagnetic pump - electropneumatic tyre pump - electrosubmersible pump - elevator pump - emergency pump - end suction pump - entrapment pump - epitrochoidal pump - excavating pump - external gear pump - extraction pump - fixed pump - fixed-delivery pump - fixed displacement pump - fixed volume pump - flexible tube pump - flexible tubes for grease pump - flow-type pump - flow-type fuel pump - fluid pump - fluid-packed pump - flywheel pump - force pump - fractionating diffusion pump - fuel booster pump- gas pump- gas jet pump - gear-driven pump - gear-type pump - gear wheel pump - hand desoldering pump with antistatic teflon tip - hand-operated grouting pump - hand-priming pump - hand suction pump for battery liquid - hand vacuum-pressure pump for checking vacuum advance in conjunction and timing light - turbo wastengate control valve and etc. - heat pump - heated pump - helical rotor pump - high duty pump - high-flow pump - high-lift pump - high-low pressure pump - high-pressure pump - high-pressure fuel pump - high-vacuum pump - hot-oil pump - house service pump - impeller pump - in-line pump - in-line fuel injection pump - internal gear pump - internal spur gear pump - irrigating pump - jacketed pump- jet pump- jet vacuum pump - jury pump - kinetic pump - liquid jet pump - liquid-packed ring pump - liquid ring vacuum pump - liquid-sealed vacuum pump - lobular pump - low-lift pump - lubrication pump - main pump - make-up pump - manual pump - manual pump for injector testing - marine pump - mechanical pump - membrane pump - mine pump - monocylindrical fuel injection pump - motor pump - mud pump - multicellular pump - multicylinder pump - multicylinder fuel injection pump - multijet vacuum pump - multiple-piston pump - multiplunger pump - multiscrew pump- oil pump- oil-line pump - oil-refinery pump - oil scavenge pump - oil-sealed vacuum pump - oil suction pump - oil supply pump - oil-vapor vacuum pump - oscillating displacement pump - papermill pump - peripheral pump - peristaltic pump - port the pump - portable pump - positive-displacement pump - positive-displacement fuel pump - power-steering pump - power take-off mounted pump - precharge pump - press pump - pressure test pump - pressurizing pump - prime a pump - PTO-mounted pump - pulse-free pump - pusher pump - radial flow turbine pump - radial piston pump - radially split pump - rapid approach pump - rayon pump - reactor coolant pump - reciprocating pump - reciprocating fuel injection pump - reciprocating vacuum pump - recirculating pump - reciprocation pump - refrigerant pump - regulator pump - reversible pump - reversing pump - roller-cell pump - roller vane pump - roots vacuum pump - rotary pump - rotary air pump - rotary-displacement pump - rotary fuel injection pump - rotary gear pump - rotary lobe pump - rotary piston lobe-type pump - rotary plunger pump - rotary vane-type pump - rotodynamic pump - roughing-down pump - roughing vacuum pump - rough vacuum pump - sand pump - scavenge pump - scavenging pump - scoop pump - screw pump - scrum pump - self-bleeding pump - self-priming pump - self-purifying diffusion pump - semirotary pump - servo pump - service pump - sewage pump - sewage water pump - shallow well pump - side channel pump - side suction pump - simplex pump - single-acting pump - single-acting hand pump - single-acting piston pump - single-cylinder pump - single-stage pump - sinking pump - sliding vane pump - sliding vane rotary pump - slime pump - sludge pump - sluice pump - slush pump - small capacity pump - sorption pump - sorption vacuum pump - spur gear pump - sputter ion pump - stage chamber pump - stand-by pump - start a pump - stationary pump - stationary concrete pump - steam pump - steering pump - stripping pump - sublimation pump - sublimation vacuum pump - submerged pump - submersible pump - subsurface pump - sucking pump - suction pump - suds pump - supercharging pump - supply pump - surge pump - swash-plate pump - swash-plate operated pump - tank pump - tar-and-residuum pump - test pump - thermal pump - three-cylinder pump - three-screw pump - tire pump - truck-mounted concrete pump - torque flow pump - transfer pump - trim pump - triplex pump - triplex plunger pump - trochoid pump - turbine pump - turbine-driven pump - turn on a pump - tyre pump - twin pump - two-cylinder pump - two-screw pump - two-stage pump - two-volume pump - unbalanced pump - unit construction pump - V-type pump - V-type piston pump - vacuum pump - valveless pump - vane pump - vane-type pump - vapor jet pump - variable capacity pump - variable-delivery pump - variable displacement pump - variable speed pump - variable volume pump - vee fuel injection pump - volute pump - water pump - water-jet pump - well pump - wet-air pump - wet motor pump - wet-pit pump - wide-spray fire pump - windmill pump - windshield washer pump - wing pump - work a pump -
14 Bollée, Ernest-Sylvain
[br]b. 19 July 1814 Clefmont (Haute-Marne), Franced. 11 September 1891 Le Mans, France[br]French inventor of the rotor-stator wind engine and founder of the Bollée manufacturing industry.[br]Ernest-Sylvain Bollée was the founder of an extensive dynasty of bellfounders based in Le Mans and in Orléans. He and his three sons, Amédée (1844–1917), Ernest-Sylvain fils (1846–1917) and Auguste (1847-?), were involved in work and patents on steam-and petrol-driven cars, on wind engines and on hydraulic rams. The presence of the Bollées' car industry in Le Mans was a factor in the establishment of the car races that are held there.In 1868 Ernest-Sylvain Bollée père took out a patent for a wind engine, which at that time was well established in America and in England. In both these countries, variable-shuttered as well as fixed-blade wind engines were in production and patented, but the Ernest-Sylvain Bollée patent was for a type of wind engine that had not been seen before and is more akin to the water-driven turbine of the Jonval type, with its basic principle being parallel to the "rotor" and "stator". The wind drives through a fixed ring of blades on to a rotating ring that has a slightly greater number of blades. The blades of the fixed ring are curved in the opposite direction to those on the rotating blades and thus the air is directed onto the latter, causing it to rotate at a considerable speed: this is the "rotor". For greater efficiency a cuff of sheet iron can be attached to the "stator", giving a tunnel effect and driving more air at the "rotor". The head of this wind engine is turned to the wind by means of a wind-driven vane mounted in front of the blades. The wind vane adjusts the wind angle to enable the wind engine to run at a constant speed.The fact that this wind engine was invented by the owner of a brass foundry, with all the gear trains between the wind vane and the head of the tower being of the highest-quality brass and, therefore, small in scale, lay behind its success. Also, it was of prefabricated construction, so that fixed lengths of cast-iron pillar were delivered, complete with twelve treads of cast-iron staircase fixed to the outside and wrought-iron stays. The drive from the wind engine was taken down the inside of the pillar to pumps at ground level.Whilst the wind engines were being built for wealthy owners or communes, the work of the foundry continued. The three sons joined the family firm as partners and produced several steam-driven vehicles. These vehicles were the work of Amédée père and were l'Obéissante (1873); the Autobus (1880–3), of which some were built in Berlin under licence; the tram Bollée-Dalifol (1876); and the private car La Mancelle (1878). Another important line, in parallel with the pumping mechanism required for the wind engines, was the development of hydraulic rams, following the Montgolfier patent. In accordance with French practice, the firm was split three ways when Ernest-Sylvain Bollée père died. Amédée père inherited the car side of the business, but it is due to Amédée fils (1867– 1926) that the principal developments in car manufacture came into being. He developed the petrol-driven car after the impetus given by his grandfather, his father and his uncle Ernest-Sylvain fils. In 1887 he designed a four-stroke single-cylinder engine, although he also used engines designed by others such as Peugeot. He produced two luxurious saloon cars before putting Torpilleur on the road in 1898; this car competed in the Tour de France in 1899. Whilst designing other cars, Amédée's son Léon (1870–1913) developed the Voiturette, in 1896, and then began general manufacture of small cars on factory lines. The firm ceased work after a merger with the English firm of Morris in 1926. Auguste inherited the Eolienne or wind-engine side of the business; however, attracted to the artistic life, he sold out to Ernest Lebert in 1898 and settled in the Paris of the Impressionists. Lebert developed the wind-engine business and retained the basic "stator-rotor" form with a conventional lattice tower. He remained in Le Mans, carrying on the business of the manufacture of wind engines, pumps and hydraulic machinery, describing himself as a "Civil Engineer".The hydraulic-ram business fell to Ernest-Sylvain fils and continued to thrive from a solid base of design and production. The foundry in Le Mans is still there but, more importantly, the bell foundry of Dominique Bollée in Saint-Jean-de-Braye in Orléans is still at work casting bells in the old way.[br]Further ReadingAndré Gaucheron and J.Kenneth Major, 1985, The Eolienne Bollée, The International Molinological Society.Cénomane (Le Mans), 11, 12 and 13 (1983 and 1984).KM -
15 method
1) метод; способ; средство2) система; порядок3) технология4) методика•- method of applying liquid lubrication - method of calculation - method of column analogy - method of comparison - method of connecting - method of determining bending moments by fixed points - method of directions - method of elastic arch - method of elastic weights - method of electric needles - method of exchange of members - method of firing - method of fixed points - method of images - method of initial parameters - method of joints - method of least squares - method of least work - method of limit equilibrium - method of minimum strain energy - method of moments - method of movement - method of operation - method of payment - method of planning - method of production - method of redundant reactions - method of rotations - method of sections - method of separate joint displacement - method of slopes - method of stowage - method of strain measurement method - method of substitute redundant members - method of successive approximations - method of successive corrections - method of training - method of transportation - method of working - method of zero moment points - methods of network planning and control - ad hoc method - advertising method - aero-projection method - air-permeability method - airslide method - approximation method - arbitrary proportions method - area moment method - artificial islands method - ball method of testing - bench method - bidding methods - brush method of treatment timber - building methods - caisson method - cantilever method of design - cassette method of production of thin-slab structures - central mixing method - centre drift method - centrifuge method - centroidal method of design - change-in-stress method - chemical injection method - closed building method - column analogy method of design - compressed-air method of tunnelling - concrete testing method - cone method - construction works quality control method - core-drill method - correlation method - cut-and-cover method - cut-and-try method - cylinder method - deflection method - design methods - development method - dip method - dipping method of treatment timber - effective method - electrolytic method - emulsified-asphalt penetration method - energy method - equal load increments method - equal strain method - error method - fabrication method - fixing method - float and chains method - flow-line conveyer method - force method - graphical method - heading method of tunnelling - hot-air heating standpipe method - hot penetration method - hydraulic fill method - impact method - kinematic method - lacquer film method - land-assembly methods - lift-slab method - limit equilibrium method - limit stage design method - line production method - loading method - magnaflux method - mechanical method by pumps - membrane method of waterproofing - mixed-in-place method - mock-up methods of design - modular ratio method - moire fringe method - moment area method - moment-distribution method - moment-of-inertia method of designing - mud-jack method - mulch method - near end moment distribution method - neutral-points method - non-destructive testing methods - normal method - packing methods - patented method of construction - penetration method - percussive pneumatic method of riveting - photo-elastic method of stress-determination - photo-elasticity method - pilot method - pilot tunnel method - pin-and-string method - pipe-bridge method - plastic method of design - plastic theory method - polarized light method - portal method of design - pounding method of curing concrete - production line method of construction - qualitative methods - quantitative methods - relaxation method - ring-and-ball method - rolled-on method - safe method of heat insulation - safety methods - sampling method - sand-bearing method of testing clay pipes - sand-island method - scheduling method - seismic method of prospecting - simultaneous construction method - slope deflection method - spatial self-fixation erection method - statistical analysis method - stovepipe pipe-laying method - strain-energy method - successive construction method - surface-coating method of waterproofing - synthetic method of restoration - thixotropic liquid method - tilt-up method - top-heading method - transfiguration method - trial-load method - turnover method - ultimate-strength method - ultrasonic pulse velocity method - void method of proportioning - volume method of concrete mix design - volumetric method - water-jet method of pile-driving - weight method - well-point method of excavation - work method - working stress method of design* * *метод, способ; система; порядок; методика; технология- method of analysis
- method of application
- method of attack
- method of bearing and distances
- method of bipolar coordinates
- method of calculation
- method of design
- method of detail survey
- method of elastic weights
- method of electric needles
- method of expansion into series
- method of fixed points
- method of intersection
- method of joint isolation
- method of least work
- methods of manufacture
- method of minimum strain energy
- method of moment distribution
- method of radiation
- method of redistribution of pressure
- method of sections
- method of steam jet
- methods of structural analysis
- method of successive approximations
- methods of testing
- method of water needles
- accepted method of building
- accepted method of house construction
- accurate method of analysis
- adhesive nail-on method
- admittance method
- advanced methods of concreting
- advance slope method
- aggregate exposure method
- air permeability method
- alternate methods
- American method
- analytical method of determining reactions
- API method of pile design
- approximate method
- approximation method
- area method
- area-moment method
- assembly methods
- Austrian method
- autogenous curing method
- balanced cantilever method
- Belgian method
- Benoto method
- bentonite method
- Billner method
- "bin" method
- boiling water method
- boom placement concreting method
- bricklaying methods
- building method
- building block module method
- cable method of rock stressing
- calculation method
- cantilever method
- Chicago method
- circular-arc method
- Coast-Survey method
- collapse method of structural design
- combined finite strip-finite element method
- compaction methods of clays
- conjugate beam method
- consistency measurement method
- construction methods
- construction and erection methods
- contiguous pile method
- continuous-flight augers method
- continuous-sample method of advance
- convergence method
- critical method
- critical path method
- Cross moment distribution method
- Cross method
- cross-section method
- current design methods
- cut-and-cover method
- dampproofing methods
- displacement method
- displacement method of advance
- dual-rail method
- dummy unit-load method
- dust-spot method
- Dutch cone method
- earth pressure balanced tunneling method
- elastic center method
- elastic weights method
- electric analogy method
- electric resisting method
- energy method
- equal friction method of duct sizing
- equal friction method
- equivalent load method
- erection method
- fast track construction methods
- fatigue test method
- finite difference method
- finite element method
- finite strip method
- flight auger method
- flotation caisson method
- flue loss method
- folded plate method of analysis
- force method
- free cantilever method of construction
- general method of analysis
- Glotzl hydraulic cell method
- Gow method
- Hardy Cross method
- housing appraisal method
- in-duct method
- industrialized methods of construction
- iterative method
- jack method
- jacking method
- lacquer curtain coating method
- laser beam method
- leap-frog method
- limit equilibrium method
- limit state method
- listening methods
- load factor design method
- mandrel method
- mathematical method of design
- matrix method of structural analysis
- maturity method
- measuring method
- mixed-mode method
- mix-in-place method
- modern building methods
- modular ratio method
- moiré fringe method
- moment-balance method
- nondestructive methods of tests
- normal method of quality control
- null method
- numerical method
- one-rail method
- optical square method
- permissible stress method
- phototheodolite method
- plastic methods of structural analysis
- plate count method
- precast concrete manufacturing methods
- pressuremeter method
- proven construction methods
- p-y method of pile design
- rapid test method
- ratio method of balancing
- rebound hammer method
- reference point method
- relaxation method
- reproducible methods
- resistivity method
- resonant-frequency method
- reverberant field method
- Rockwell method of hardness testing
- safe method
- safe working methods
- secant interlocking pile method
- secant pile method
- seismic method of surveying
- seismic reflection method
- seismic refraction method
- semiprobabilistic design method
- shear transfer method
- shock response method of pile testing
- sliding-wedge method
- slope deflection method
- solar radiation method
- sonic method
- special method of quality control
- standard test method
- static regain method of duct sizing
- static regain method
- statistical design method
- step-by-step method
- strength design method
- strength evaluation method
- successive approximations method
- suspended cantilever method
- swamp shooting method
- Tagg method
- tangent modulus method
- test methods
- Theis method
- thixotropic liquid method
- three-point method
- tilt-up method
- time-saving method of construction
- TNO method of analysis
- TNO method of pile testing
- transit and stadia method
- tremie method
- truss analogy method
- turn-of-nut method
- ultrasonic pulse velocity method
- vacuum concrete method of bridge construction
- valveless pulse-jet method
- vane shear method
- velocity reduction method of duct sizing
- velocity reduction method
- vibratory method
- Vickers method of hardness testing
- volume method of measuring aggregates
- warm water method
- water fog spray method
- western bricklaying method
- western method
- working-stress design method -
16 Reichenbach, Georg Friedrich von
SUBJECT AREA: Mechanical, pneumatic and hydraulic engineering, Photography, film and optics, Public utilities[br]b. 24 August 1772 Durlach, Baden, Germanyd. 21 May 1826 Munich, Germany[br]German engineer.[br]While he was attending the Military School at Mannheim, Reichenbach drew attention to himself due to the mathematical instruments that he had designed. On the recommendation of Count Rumford in Munich, the Bavarian government financed a two-year stay in Britain so that Reichenbach could become acquainted with modern mechanical engineering. He returned to Mannheim in 1793, and during the Napoleonic Wars he was involved in the manufacture of arms. In Munich, where he was in the service of the Bavarian state from 1796, he started producing precision instruments in his own time. His basic invention was the design of a dividing machine for circles, produced at the end of the eighteenth century. The astronomic and geodetic instruments he produced excelled all the others for their precision. His telescopes in particular, being perfect in use and of solid construction, soon brought him an international reputation. They were manufactured at the MathematicMechanical Institute, which he had jointly founded with Joseph Utzschneider and Joseph Liebherr in 1804 and which became a renowned training establishment. The glasses and lenses were produced by Joseph Fraunhofer who joined the company in 1807.In the same year he was put in charge of the technical reorganization of the salt-works at Reichenhall. After he had finished the brine-transport line from Reichenhall to Traunstein in 1810, he started on the one from Berchtesgaden to Reichenhall which was an extremely difficult task because of the mountainous area that had to be crossed. As water was the only source of energy available he decided to use water-column engines for pumping the brine in the pipes of both lines. Such devices had been in use for pumping purposes in different mining areas since the middle of the eighteenth century. Reichenbach knew about the one constructed by Joseph Karl Hell in Slovakia, which in principle had just been a simple piston-pump driven by water which did not work satisfactorily. Instead he constructed a really effective double-action water-column engine; this was a short time after Richard Trevithick had constructed a similar machine in England. For the second line he improved the system and built a single-action pump. All the parts of it were made of metal, which made them easy to produce, and the pumps proved to be extremely reliable, working for over 100 years.At the official opening of the line in 1817 the Bavarian king rewarded him generously. He remained in the state's service, becoming head of the department for roads and waterways in 1820, and he contributed to the development of Bavarian industry as well as the public infrastructure in many ways as a result of his mechanical skill and his innovative engineering mind.[br]Further ReadingBauernfeind, "Georg von Reichenbach" Allgemeine deutsche Biographie 27:656–67 (a reliable nineteenth-century account).W.Dyck, 1912, Georg v. Reichenbach, Munich.K.Matschoss, 1941, Grosse Ingenieure, Munich and Berlin, 3rd edn. 121–32 (a concise description of his achievements in the development of optical instruments and engineering).WKBiographical history of technology > Reichenbach, Georg Friedrich von
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17 pump
1. n насос, помпа2. n накачивание3. n откачивание, выкачивание4. n выведывание; «выкачивание»5. n груб. тяжелодум, тугодум6. n разг. сердце7. v работать насосом, качать8. v выкачивать, откачивать9. v нагнетать, накачиватьpump up — накачивать; накачать
10. v всаживать, вгонять11. v вдалбливать, «накачивать»12. v выталкивать, выбрасывать; выделять13. v фонтанировать14. v выведывать, выспрашивать, допытываться15. v высасывать16. v обыкн. изнурять, приводить в изнеможение17. v пульсировать, колотиться, стучать18. v подвергаться резким колебаниям19. v физ. накачивать лазер20. v непрерывно работать; «пыхтеть»21. n туфля-лодочка22. n мужская бальная туфляСинонимический ряд:1. cross-examine (verb) cross-examine; grill; interrogate; question2. draw (verb) draft; drain; draw; draw off; draw out; draw up; drive; force; let out; push; siphon; tap3. pump up (verb) enlarge; expand; inflate; pump up; swellАнтонимический ряд:deflate; fill -
18 Sorocold, George
SUBJECT AREA: Public utilities[br]b. probably Ashton-in-Makerfield, England fl. c. 1685–1715[br]English civil engineer who set up numerous water-driven pumping plants.[br]He began to practise in Derbyshire and South Yorkshire and later moved to London, where his most important work was carried out. Little is known of his birth or, indeed, of the date of his death, although it is thought that he may have been born in Ashton-in- Makerfield.His first known work was a water-driven pumping plant in Derby erected in 1693 to supply water to houses and to points in the town through pipes from the pumps by the river Derwent. These water-driven pumping plants and the delivery of water to various towns were the result of entrepreneurial development by groups of "adventurers". Sorocold went on to set up many more pumping plants, including those at Leeds Bridge (1694–5), Macclesfield, Wirksworth, Yarmouth, Portsmouth, Norwich and King's Lynn.His best-known work was the installation of a pumping plant at the north end of London Bridge to replace a sixteenth-century plant. This consisted of four water-wheels placed between the starlings of the bridge. As the bridge is situated on the tidal Thames, the water-wheels were contrived so that their shafts could be raised or lowered to meet the state of the tidal flow. Whilst the waterworks designed by Sorocold are well known, it is clear that he had come to be regarded as a consulting engineer. One scheme that was carried through was the creation of a navigation between the river Trent and Derby on the line of the river Derwent. He appeared as a witness for the Derwent Navigation Act in 1703. He also held a patent for "A new machine for cutting and sawing all sorts of boards, timber and stone, and twisting all kinds of ropes, cords and cables by the strength of horses of water": this illustrates that his knowledge of power sources was predominant in his practice.[br]Further ReadingR.Jenkins, 1936, "George Sorocold. A chapter in the history of public water supply", The Collected Papers of Rhys Jenkins, Newcomen Society.H.Beighton, 1731, article in The Philosophical Transactions (provides details of the London Bridge Waterworks).KM -
19 star-delta starting
пуск переключением со звезды на треугольник
-EN
star-delta starting
the process of starting a three-phase motor by connecting it to the supply with the primary winding initially connected in star, then reconnected in delta for the running condition
[IEV number 411-52-16]FR
démarrage étoile-triangle
mode de démarrage d'un moteur triphasé à tension réduite, consistant à relier à la source à tension constante les enroulements statoriques, d'abord en couplage étoile, puis à passer au couplage triangle pour le fonctionnement normal
[IEV number 411-52-16]Magnetic only circuit-breaker - Автоматический выключатель с электромагнитным расцепителем
Y/Δ changeover node - Узел переключения со звезды на треугольник
Contactor KL - Контактор KL
Thermal relay - Тепловое реле
Contactor KΔ - Контактор KΔ
Contactor KY- Контактор KY
Параллельные тексты EN-RU Star-delta Y/Δ starting
Star-delta starting is the best known system and perhaps the commonest starting system at reduced voltage; it is used to start the motor reducing the mechanical stresses and limiting the current values during starting; on the other hand, it makes available a reduced inrush torque.This system can be used for motors with terminal box with 6 terminals and double supply voltage.
It is particularly suitable for no-load starting or with low and constant load torque or lightly increasing load torque, such as in the case of fans or low power centrifugal pumps.
Making reference to the diagram of Figure 6, the starting modality foresees the initial phase with star-connection of the windings to be realized through the closing of the circuit-breaker, of the line contactor KL and of the star contactor KY.
After a suitable predetermined period of time, the opening of the contactor KY and the closing of KΔ allow switching to delta-connection, which is also the configuration of normal running position.
[ABB]Пуск переключением со звезды на треугольник
Пуск переключением со звезды на треугольник является самым известным способом и, возможно, самой распространенной схемой пуска на пониженном напряжении. С одной стороны, этот способ используется для снижения механических нагрузок и ограничения пускового тока, а с другой - обеспечивает уменьшение пускового момента.Такая возможность может быть реализована в двигателях с шестью зажимами в выводной коробке, что позволяет питать его от двух напряжений.
Особенно этот способ подходит для ненагруженного пуска и пуска с низким постоянным или немного увеличивающимся вращающим моментом, например, для пуска вентиляторов или маломощных центробежных насосов.
Схема пуска переключением со звезды на треугольник представлена на рисунке 6. В начальный момент пуска обмотки статора соединяют звездой путем замыкания контактов автоматического выключателя, линейного контактора KL и контактора KY со схемой "звезда".
По истечении заданного времени контакты контактора KY размыкаются и замыкаются контакты контактора КΔ со схемой треугольник.
В результате выполняется переключение обмоток статора со схемы «звезда» на схему «треугольник».
Обе схемы соединения обмоток являются схемами нормального рабочего режима.
[Перевод Интент]Тематики
Обобщающие термины
EN
- star-delta starting
- Y/Δ starting
DE
FR
Англо-русский словарь нормативно-технической терминологии > star-delta starting
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20 Y/Δ starting
пуск переключением со звезды на треугольник
-EN
star-delta starting
the process of starting a three-phase motor by connecting it to the supply with the primary winding initially connected in star, then reconnected in delta for the running condition
[IEV number 411-52-16]FR
démarrage étoile-triangle
mode de démarrage d'un moteur triphasé à tension réduite, consistant à relier à la source à tension constante les enroulements statoriques, d'abord en couplage étoile, puis à passer au couplage triangle pour le fonctionnement normal
[IEV number 411-52-16]Magnetic only circuit-breaker - Автоматический выключатель с электромагнитным расцепителем
Y/Δ changeover node - Узел переключения со звезды на треугольник
Contactor KL - Контактор KL
Thermal relay - Тепловое реле
Contactor KΔ - Контактор KΔ
Contactor KY- Контактор KY
Параллельные тексты EN-RU Star-delta Y/Δ starting
Star-delta starting is the best known system and perhaps the commonest starting system at reduced voltage; it is used to start the motor reducing the mechanical stresses and limiting the current values during starting; on the other hand, it makes available a reduced inrush torque.This system can be used for motors with terminal box with 6 terminals and double supply voltage.
It is particularly suitable for no-load starting or with low and constant load torque or lightly increasing load torque, such as in the case of fans or low power centrifugal pumps.
Making reference to the diagram of Figure 6, the starting modality foresees the initial phase with star-connection of the windings to be realized through the closing of the circuit-breaker, of the line contactor KL and of the star contactor KY.
After a suitable predetermined period of time, the opening of the contactor KY and the closing of KΔ allow switching to delta-connection, which is also the configuration of normal running position.
[ABB]Пуск переключением со звезды на треугольник
Пуск переключением со звезды на треугольник является самым известным способом и, возможно, самой распространенной схемой пуска на пониженном напряжении. С одной стороны, этот способ используется для снижения механических нагрузок и ограничения пускового тока, а с другой - обеспечивает уменьшение пускового момента.Такая возможность может быть реализована в двигателях с шестью зажимами в выводной коробке, что позволяет питать его от двух напряжений.
Особенно этот способ подходит для ненагруженного пуска и пуска с низким постоянным или немного увеличивающимся вращающим моментом, например, для пуска вентиляторов или маломощных центробежных насосов.
Схема пуска переключением со звезды на треугольник представлена на рисунке 6. В начальный момент пуска обмотки статора соединяют звездой путем замыкания контактов автоматического выключателя, линейного контактора KL и контактора KY со схемой "звезда".
По истечении заданного времени контакты контактора KY размыкаются и замыкаются контакты контактора КΔ со схемой треугольник.
В результате выполняется переключение обмоток статора со схемы «звезда» на схему «треугольник».
Обе схемы соединения обмоток являются схемами нормального рабочего режима.
[Перевод Интент]Тематики
Обобщающие термины
EN
- star-delta starting
- Y/Δ starting
DE
FR
Англо-русский словарь нормативно-технической терминологии > Y/Δ starting
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