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101 fixed
1. a неподвижный; закреплённый2. a тех. стационарный, постоянный3. a постоянный, неменяющийся; твёрдо установленный4. a навязчивый, неотступныйfixed idea — навязчивая идея, идефикс
5. a назначенный, установленныйfixed time — назначенный срок; назначенное время
fixed facts — твердо установленные факты; голые факты
6. a амер. сл. подстроенный, фальсифицированныйfixed fight — бой, об исходе которого заранее договорились
7. a физ. хим. связанный; нелетучийfixed oil — нелетучее, жирное масло
8. a эвф. кастрированныйСинонимический ряд:1. definite (adj.) bounded; circumscribed; definite; determinate; limited; narrow; precise; restricted2. established (adj.) established; permanent; rigid; solid; unchanging3. fast (adj.) fast; secure; tenacious; tight4. firm (adj.) certain; firm; settled; stated; stipulated5. immovable (adj.) immobile; immotile; immotive; immovable; irremovable; stationary; steadfast; unmovable; unmoving6. inflexible (adj.) constant; immutable; inalterable; inflexible; invariable; ironclad; unalterable; unchangeable; unmodifiable7. repaired (adj.) corrected; in order; in working order; made up; mended; prepared; rebuilt; repaired8. rigged (adj.) bribed; corrupt; framed; fraudulent; in the bag; planned; precontrived; rigged; set-up9. set (adj.) bent; decided; determined; intent; resolute; set10. sure (adj.) abiding; enduring; never-failing; steady; sure; unfaltering; unqualified; unquestioning; unshakable; unshaken; unwavering; wholehearted11. whole (adj.) concentrated; exclusive; intensive; undistracted; undivided; unswerving; whole12. bribed (verb) bought; bought off; bribed; buy off; had; sopped; squared; tampered with13. coupled (verb) attached; clipped; connected; coupled14. fastened (verb) anchored; caught; concentrated; fastened; fixated; focused; moored; riveted; secured15. fixed (verb) engraved; etched; fixed; graved; impressed; imprinted; inscribed; stamped; tampered16. imposed (verb) decreed; dictated; imposed; lay down; ordained; prescribed17. mended (verb) did up/done up; doctored; mended; overhauled; patched; rebuilt; reconditioned; reconstructed; repaired; revamped; righted; vamped18. placed (verb) affixed; assigned; blamed; pin on; placed; saddled19. prepared (verb) fitted; got/got or gotten; made; made up; prepared; readied20. put (verb) laid; lodged; put; set; stuck21. rooted (verb) embedded; entrenched; ingrained; instilled; lodged; rooted22. seated (verb) established; installed; seated23. settled (verb) arranged; attend to; concluded; dispose of; negotiated; settled24. solved (verb) resolved; solved; worked or wrought; worked out or wrought out25. sterilized (verb) altered; castrated; changed; gelded; mutilated; neutered; sterilized26. tuned (verb) adjusted; attuned; regulated; tuned; tuned up -
102 gate
1. n ворота; калиткаan iron gate into the courtyard — железные ворота, ведущие во двор
2. n вход, выходgate five is now open for flight 509 to London, flight 509 to London now boarding at gate five — производится посадка на самолёт, следующий рейсом 509 в Лондон, просьба пройти к выходу номер пять
to pay at the gate — платить при входе, вход платный
3. n врата4. n застава, шлагбаум5. n горный проход6. n гидр. щит, затвор7. n гидр. шлюзные воротаheave gate — ворота, открываемые поднятием вверх
gate width — ширина ворот; ширина пропускания
8. n гидр. количество зрителейthere was a gate of 5,000 — на трибунах было 5 тысяч зрителей
9. n гидр. унив. жарг. часы, когда ворота колледжа запираются на ночь10. n гидр. тех. заслонка, задвижка11. n гидр. горн. штрек; откаточная выработка12. n гидр. кино кадровое окно13. n гидр. метал. литник14. n гидр. радио стробимпульс15. n элк. вентиль, вентильная схемаinverting gate — инвертирующий вентиль; инвертирующая схема
16. n элк. затвор17. v не выпускать студентов с территории колледжаdispersion gate — схема функции Шеффера; вентиль НЕ-И
18. v кино, радио стробировать19. n ист. путь, дорогаthis gate — этим путём, этой дорогой
opening the gate for — открывающий путь; открытие пути
20. n диал. образ действий; манера поведенияСинонимический ряд:1. booth (noun) booth; box office; turnstile2. entry (noun) access; door; doorway; entrance; entry; inlet; opening; passage; portal3. faucet (noun) cock; faucet; hydrant; petcock; spigot; stopcock; tap; valve4. means of access (noun) barrier; ingress; means of access; port; sluice; weir -
103 Engerth, Wilhelm
[br]b. 26 May 1814 Pless, Prussian Silesia (now Poland)d. 4 September 1884 Baden, Austria[br]German engineer, designer of the Engerth articulated locomotive.[br]Engerth was Chairman of the judges for the Semmering Locomotive Trials, held in 1851 to find locomotives suitable for working the sharply curved and steeply graded section of the Vienna-Trieste railway that was being built over the Semmering Pass, the first of the transalpine main lines. When none of the four locomotives entered proved suitable, Engerth designed his own. Six coupled wheels were at the fore part of the locomotive, with the connecting rods driving the rear pair: at the back of the locomotive the frames of the tender were extended forward on either side of the firebox, the front wheels of the tender were ahead of it, and the two parts were connected by a spherical pivot ahead of these. Part of the locomotive's weight was carried by the tender portion, and the two pairs of tender wheels were coupled by rods and powered by a geared drive from the axle of the rear driving-wheels. The powered drive to the tender wheels proved a failure, but the remaining characteristics of the locomotive, namely short rigid wheel-base, large firebox, flexibility and good tracking on curves (as drawbar pull was close behind the driving axle), were sufficient for the type to be a success. It was used on many railways in Europe and examples in modified form were built in Spain as recently as 1956. Engerth became General Manager of the Austro-Hungarian State Railway Company and designed successful flood-prevention works on the Danube at Vienna.[br]Principal Honours find DistinctionsKnighted as Ritter von Engerth 1861. Ennobled as Freiherr (Baron) von Engerth 1875.Further ReadingD.R.Carling, 1985, "Engerth and similar locomotives", Transactions of the Newcomen Society 57 (a good description).J.B.Snell, 1964, Early Railways, London: Weidenfeld \& Nicolson, pp. 68–73 (for Semmering Trials).PJGR -
104 column
1) колонна; стойка; столб ( жидкости)2) столбец (напр. таблицы); графа3) колонка4) устой; станина; боковая стойка ( строгального станка)5) вертикальная штанга, вертикальный шток•to restrain a column at one end — закреплять, защемлять колонну на одном конце
- column of built channels laced - column of ore - column of pump - column of water - absorbing column - adiabatic column - anchor column - annulate column - annulated column - attached column - axially-loaded column - barley-sugar column - batten-plate column - box column - built-up column - cased column - casing column - channel column - closed column - clustered column - combination column - combined steel and concrete column - composite column - concrete column - Corinthian column - corner column - coupled columns - crane runway column - cross-shaped column - crude-fractionating column - diminished column - distillation column - drill column - eccentrically loaded column - edge column - engaged column - erection column - explosive column - feigned column - fixed column - fluted column - fractional column - fuel-filling column - gantry column - half column - half-engaged column - hinged column - hingeless column - hooped column - I-beam column - integral column - intermediate column - Ionic column - lattice column - lattice column with separate legs - lift column - lighting column - manometric column - open column - outside column - packed column - pendular hinged column - pendulum column - pier column - pipe column - plain concrete column - portal column - pressure column - regular cross-section column - reinforced concrete column - rocking column - rostral column - rustic column - semi-column - short column - single-member column - slender column - soil column - solid column - spiral reinforced concrete column - starred column - steel column - steel core column - steel-pipe column - steering column - stepped column - stepped bracket column - stone column - swelled column - tapering column - tied column - traversing column - triumphal column - tubular column - Tuscan column - twisted column - two-member column - vacuum column - ventilating column - wall column - water column - wreathed columnat both ends — закреплять, защемлять колонну на двух концах
* * *1. колонна, стойка, сжатый стержневой элемент2. колонный технологический аппарат3. столб; уровень (напр. воды)4. колонна (буровых труб, штанг)5. столбец, графаcolumn in equilibrium in the bent position — колонна в состоянии криволинейной формы равновесия ( при продольном изгибе)
columns with … centers — колонны с расстояниями [интервалами] по осям …
- actual columncolumn with one end fixed and one end hinged [pinned] — колонна с одним защемлённым и другим шарнирно опёртым концом
- annulated columns
- applied column
- attached column
- axially loaded column
- banded column
- beam column
- box column
- built-up column
- cased column
- compacted sand column
- composite column
- concrete lighting column
- corner column
- cross-shaped column
- distillation column
- drill column
- eccentrically loaded column
- edge column
- embedded column
- engaged column
- erection column
- fixed column
- fluid-filled column
- fluted column
- fuel-filling column
- fuel column
- glulam column
- grouped columns
- half column
- hingeless column
- ideal column
- initial straight column
- integral column
- L column
- laced column
- lighting column with two brackets
- long column
- non-hinged column
- open column
- oxidation column
- pendulum column
- pin-base column
- pipe column
- pivoted end column
- rectification column
- ringed column
- rocking column
- rostral column
- short column
- side column
- slender column
- spandrel column
- spirally reinforced column
- steel column
- stub column
- tapering column
- tied column
- tubular column
- twin columns
- wall column
- water column
- water-filled column -
105 Braun, Karl Ferdinand
[br]b. 6 June 1850 Fulda, Hesse, Germanyd. 20 April 1918 New York City, New York, USA[br]German physicist who shared with Marconi the 1909 Nobel Prize for Physics for developments in wireless telegraphy; inventor of the cathode ray oscilloscope.[br]After obtaining degrees from the universities of Marburg and Berlin (PhD) and spending a short time as Headmaster of the Thomas School in Berlin, Braun successively held professorships in theoretical physics at the universities of Marburg (1876), Strasbourg (1880) and Karlsruhe (1883) before becoming Professor of Experimental Physics at Tübingen in 1885 and Director and Professor of Physics at Strasbourg in 1895.During this time he devised experimental apparatus to determine the dielectric constant of rock salt and developed the Braun high-tension electrometer. He also discovered that certain mineral sulphide crystals would only conduct electricity in one direction, a rectification effect that made it possible to detect and demodulate radio signals in a more reliable manner than was possible with the coherer. Primarily, however, he was concerned with improving Marconi's radio transmitter to increase its broadcasting range. By using a transmitter circuit comprising a capacitor and a spark-gap, coupled to an aerial without a spark-gap, he was able to obtain much greater oscillatory currents in the latter, and by tuning the transmitter so that the oscillations occupied only a narrow frequency band he reduced the interference with other transmitters. Other achievements include the development of a directional aerial and the first practical wavemeter, and the measurement in Strasbourg of the strength of radio waves received from the Eiffel Tower transmitter in Paris. For all this work he subsequently shared with Marconi the 1909 Nobel Prize for Physics.Around 1895 he carried out experiments using a torsion balance in order to measure the universal gravitational constant, g, but the work for which he is probably best known is the addition of deflecting plates and a fluorescent screen to the Crooke's tube in 1897 in order to study the characteristics of high-frequency currents. The oscilloscope, as it was called, was not only the basis of a now widely used and highly versatile test instrument but was the forerunner of the cathode ray tube, or CRT, used for the display of radar and television images.At the beginning of the First World War, while in New York to testify in a patent suit, he was trapped by the entry of the USA into the war and remained in Brooklyn with his son until his death.[br]Principal Honours and DistinctionsNobel Prize for Physics (jointly with Marconi) 1909.Bibliography1874, "Assymetrical conduction of certain metal sulphides", Pogg. Annal. 153:556 (provides an account of the discovery of the crystal rectifier).1897, "On a method for the demonstration and study of currents varying with time", Wiedemann's Annalen 60:552 (his description of the cathode ray oscilloscope as a measuring tool).Further ReadingK.Schlesinger \& E.G.Ramberg, 1962, "Beamdeflection and photo-devices", Proceedings of the Institute of Radio Engineers 50, 991.KF -
106 Parsons, Sir Charles Algernon
[br]b. 13 June 1854 London, Englandd. 11 February 1931 on board Duchess of Richmond, Kingston, Jamaica[br]English eingineer, inventor of the steam turbine and developer of the high-speed electric generator.[br]The youngest son of the Earl of Rosse, he came from a family well known in scientific circles, the six boys growing up in an intellectual atmosphere at Birr Castle, the ancestral home in Ireland, where a forge and large workshop were available to them. Charles, like his brothers, did not go to school but was educated by private tutors of the character of Sir Robert Ball, this type of education being interspersed with overseas holiday trips to France, Holland, Belgium and Spain in the family yacht. In 1871, at the age of 17, he went to Trinity College, Dublin, and after two years he went on to St John's College, Cambridge. This was before the Engineering School had opened, and Parsons studied mechanics and mathematics.In 1877 he was apprenticed to W.G.Armstrong \& Co. of Elswick, where he stayed for four years, developing an epicycloidal engine that he had designed while at Cambridge. He then moved to Kitson \& Co. of Leeds, where he went half shares in a small experimental shop working on rocket propulsion for torpedoes.In 1887 he married Katherine Bethell, who contracted rheumatic fever from early-morning outdoor vigils with her husband to watch his torpedo experiments while on their honeymoon! He then moved to a partnership in Clarke, Chapman \& Co. at Gateshead. There he joined the electrical department, initially working on the development of a small, steam-driven marine lighting set. This involved the development of either a low-speed dynamo, for direct coupling to a reciprocating engine, or a high-speed engine, and it was this requirement that started Parsons on the track of the steam turbine. This entailed many problems such as the running of shafts at speeds of up to 40,000 rpm and the design of a DC generator for 18,000 rpm. He took out patents for both the turbine and the generator on 23 April 1884. In 1888 he dissolved his partnership with Clarke, Chapman \& Co. to set up his own firm in Newcastle, leaving his patents with the company's owners. This denied him the use of the axial-flow turbine, so Parsons then designed a radial-flow layout; he later bought back his patents from Clarke, Chapman \& Co. His original patent had included the use of the steam turbine as a means of marine propulsion, and Parsons now set about realizing this possibility. He experimented with 2 ft (61 cm) and 6 ft (183 cm) long models, towed with a fishing line or, later, driven by a twisted rubber cord, through a single-reduction set of spiral gearing.The first trials of the Turbinia took place in 1894 but were disappointing due to cavitation, a little-understood phenomenon at the time. He used an axial-flow turbine of 2,000 shp running at 2,000 rpm. His work resulted in a far greater understanding of the phenomenon of cavitation than had hitherto existed. Land turbines of up to 350 kW (470 hp) had meanwhile been built. Experiments with the Turbinia culminated in a demonstration which took place at the great Naval Review of 1897 at Spithead, held to celebrate Queen Victoria's Diamond Jubilee. Here, the little Turbinia darted in and out of the lines of heavy warships and destroyers, attaining the unheard of speed of 34.5 knots. The following year the Admiralty placed their first order for a turbine-driven ship, and passenger vessels started operation soon after, the first in 1901. By 1906 the Admiralty had moved over to use turbines exclusively. These early turbines had almost all been direct-coupled to the ship's propeller shaft. For optimum performance of both turbine and propeller, Parsons realized that some form of reduction gearing was necessary, which would have to be extremely accurate because of the speeds involved. Parsons's Creep Mechanism of 1912 ensured that any errors in the master wheel would be distributed evenly around the wheel being cut.Parsons was also involved in optical work and had a controlling interest in the firm of Ross Ltd of London and, later, in Sir Howard Grubb \& Sons. He he was an enlightened employer, originating share schemes and other benefits for his employees.[br]Principal Honours and DistinctionsKnighted. Order of Merit 1927.Further ReadingA.T.Bowden, 1966, "Charles Parsons: Purveyor of power", in E.G.Semler (ed.), The Great Masters. Engineering Heritage, Vol. II, London: Institution of Mechanical Engineers/Heinemann.IMcNBiographical history of technology > Parsons, Sir Charles Algernon
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107 Watson-Watt, Sir Robert Alexander
[br]b. 13 April 1892 Brechin, Angus, Scotlandd. 6 December 1973 Inverness, Scotland[br]Scottish engineer and scientific adviser known for his work on radar.[br]Following education at Brechin High School, Watson-Watt entered University College, Dundee (then a part of the University of St Andrews), obtaining a BSc in engineering in 1912. From 1912 until 1921 he was Assistant to the Professor of Natural Philosophy at St Andrews, but during the First World War he also held various posts in the Meteorological Office. During. this time, in 1916 he proposed the use of cathode ray oscillographs for radio-direction-finding displays. He joined the newly formed Radio Research Station at Slough when it was opened in 1924, and 3 years later, when it amalgamated with the Radio Section of the National Physical Laboratory, he became Superintendent at Slough. At this time he proposed the name "ionosphere" for the ionized layer in the upper atmosphere. With E.V. Appleton and J.F.Herd he developed the "squegger" hard-valve transformer-coupled timebase and with the latter devised a direction-finding radio-goniometer.In 1933 he was asked to investigate possible aircraft counter-measures. He soon showed that it was impossible to make the wished-for radio "death-ray", but had the idea of using the detection of reflected radio-waves as a means of monitoring the approach of enemy aircraft. With six assistants he developed this idea and constructed an experimental system of radar (RAdio Detection And Ranging) in which arrays of aerials were used to detect the reflected signals and deduce the bearing and height. To realize a practical system, in September 1936 he was appointed Director of the Bawdsey Research Station near Felixstowe and carried out operational studies of radar. The result was that within two years the East Coast of the British Isles was equipped with a network of radar transmitters and receivers working in the 7–14 metre band—the so-called "chain-home" system—which did so much to assist the efficient deployment of RAF Fighter Command against German bombing raids on Britain in the early years of the Second World War.In 1938 he moved to the Air Ministry as Director of Communications Development, becoming Scientific Adviser to the Air Ministry and Ministry of Aircraft Production in 1940, then Deputy Chairman of the War Cabinet Radio Board in 1943. After the war he set up Sir Robert Watson-Watt \& Partners, an industrial consultant firm. He then spent some years in relative retirement in Canada, but returned to Scotland before his death.[br]Principal Honours and DistinctionsKnighted 1942. CBE 1941. FRS 1941. US Medal of Merit 1946. Royal Society Hughes Medal 1948. Franklin Institute Elliot Cresson Medal 1957. LLD St Andrews 1943. At various times: President, Royal Meteorological Society, Institute of Navigation and Institute of Professional Civil Servants; Vice-President, American Institute of Radio Engineers.Bibliography1923, with E.V.Appleton \& J.F.Herd, British patent no. 235,254 (for the "squegger"). 1926, with J.F.Herd, "An instantaneous direction reading radio goniometer", Journal ofthe Institution of Electrical Engineers 64:611.1933, The Cathode Ray Oscillograph in Radio Research.1935, Through the Weather Hours (autobiography).1936, "Polarisation errors in direction finders", Wireless Engineer 13:3. 1958, Three Steps to Victory.1959, The Pulse of Radar.1961, Man's Means to his End.Further ReadingS.S.Swords, 1986, Technical History of the Beginnings of Radar, Stevenage: Peter Peregrinus.KFBiographical history of technology > Watson-Watt, Sir Robert Alexander
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108 Lartigue, Charles François Marie-Thérèse
[br]b. 1834 Toulouse, France d. 1907[br]French engineer and businessman, inventor of the Lartigue monorail.[br]Lartigue worked as a civil engineer in Algeria and while there invented a simple monorail for industrial or agricultural use. It comprised a single rail carried on trestles; vehicles comprised a single wheel with two tubs suspended either side, like panniers. These were pushed or pulled by hand or, occasionally, hauled by mule. Such lines were used in Algerian esparto-grass plantations.In 1882 he patented a monorail system based on this arrangement, with important improvements: traction was to be mechanical; vehicles were to have two or four wheels and to be able to be coupled together; and the trestles were to have, on each side, a light guide rail upon which horizontal rollers beneath the vehicles would bear. Early in 1883 the Lartigue Railway Construction Company was formed in London and two experimental prototype monorails were subsequently demonstrated in public. One, at the Paris Agricultural Exhibition, had an electric locomotive that was built in two parts, one either side of the rail to maintain balance, hauling small wagons. The other prototype, in London, had a small, steam locomotive with two vertical boilers and was designed by Anatole Mallet. By now Lartigue had become associated with F.B. Behr. Behr was Managing Director of the construction company and of the Listowel \& Ballybunion Railway Company, which obtained an Act of Parliament in 1886 to built a Lartigue monorail railway in the South West of Ireland between those two places. Its further development and successful operation are described in the article on Behr in this volume.A much less successful attempt to establish a Lartigue monorail railway took place in France, in the départment of Loire. In 1888 the council of the département agreed to a proposal put forward by Lartigue for a 10 1/2 mile (17 km) long monorail between the towns of Feurs and Panissières: the agreement was reached on the casting vote of the Chairman, a contact of Lartigue. A concession was granted to successive companies with which Lartigue was closely involved, but construction of the line was attended by muddle, delay and perhaps fraud, although it was completed sufficiently for trial trains to operate. The locomotive had two horizontal boilers, one either side of the track. But the inspectors of the department found deficiencies in the completeness and probable safety of the railway; when they did eventually agree to opening on a limited scale, the company claimed to have insufficient funds to do so unless monies owed by the department were paid. In the end the concession was forfeited and the line dismantled. More successful was an electrically operated Lartigue mineral line built at mines in the eastern Pyrenees.It appears to have reused equipment from the electric demonstration line, with modifications, and included gradients as steep as 1 in 12. There was no generating station: descending trains generated the electricity to power ascending ones. This line is said to have operated for at least two years.[br]Bibliography1882, French patent no. 149,301 (monorail system). 1882, British patent no. 2,764 (monorail system).Further ReadingD.G.Tucker, 1984, "F.B.Behr's development of the Lartigue monorail", Transactions of the Newcomen Society 55 (describes Lartigue and his work).P.H.Chauffort and J.-L.Largier, 1981, "Le monorail de Feurs à Panissières", Chemin defer régionaux et urbains (magazine of the Fédération des Amis des Chemins de FerSecondaires) 164 (in French; describes Lartigue and his work).PJGRBiographical history of technology > Lartigue, Charles François Marie-Thérèse
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109 pipe
1. труба, трубка; трубопровод || оборудовать системой трубопроводов; пускать по трубам; транспортировать по трубопроводу2. геол. сужение рудного тела— air pipe— dip pipe— gas pipe— run pipe— tee pipe— T-pipe— U-pipe
* * *
1. труба; трубка2. трубопровод || подавать по трубопроводу, перекачивать по трубопроводу; транспортировать по трубопроводу3. оборудовать системой трубопроводов; пускать по трубамair-lift flanged drill pipe — водоподъёмная труба с фланцевым соединением для бурения с обратновсасывающей промывкой (ствола скважины)
drill pipe of double length — свеча из двух бурильных труб, двухтрубка
to break down drill pipes — развинчивать свечи бурильных труб на однотрубки;
to bring pipes into perfect alignment — точно сцентрировать трубы (перед сваркой);
to line pipes up end-to-end — укладывать трубы в нитку;
to stab drill pipe — производить наращивание бурильной колонны;
to stack drill pipes in the derrick — расставлять бурильные трубы в вышке;
to take a strain on pipe — натягивать колонну труб;
to tong the pipes — свинчивать трубы ключами;
to work pipes up and down — расхаживать колонну труб;
— gas pipe— run pipe— tee pipe— T-pipe— U-pipe— Y-pipe
* * *
труба; трубопровод
* * *
1) труба; трубка2) трубопровод || подавать по трубопроводу, перекачивать по трубопроводу; транспортировать по трубопроводу3) оборудовать системой трубопроводов; пускать по трубам•to add a length of drill pipe — наращивать бурильную колонну;
pipe becoming stuck — прихват бурильных труб в скважине;
to break drilling pipes down — раскреплять бурильные трубы;
to break out drilling pipes — раскреплять бурильные трубы;
to discard pipes — отбраковывать трубы;
to lay down pipes — отбраковывать трубы;
to line pipes up — центрировать трубы для сварки;
to line pipes up end-to-end — укладывать трубы в нитку;
to pick up the pipe — 1) затаскивать трубы ( на вышку) 2) давать небольшую натяжку ( инструмента) 3) подхватывать (/i]);
to rack a pipe — устанавливать (/i]) бурильную трубу ();
to release stuck pipe — освобождать прихваченную трубу;
to roll out pipes — выкатывать трубы;
to run pipes into well — опускать трубы в скважину;
to stab drill pipe — производить наращивание бурильной колонны;
to stack drilling pipes in derrick — расставлять бурильные трубы в буровой вышке;
to string pipes — укладывать трубы в нитку;
to strip pipes — извлекать трубы ( из скважины) сквозь закрытый универсальный противовыбросовый превентор;
to tail a pipe — заносить конец трубы в нужное положение;
to take a strain on pipe — натягивать колонну труб;
to tong the pipes — свинчивать трубы ключами;
to work pipes up and down — расхаживать колонну труб;
to wrinkle a pipe — нарезать соединительную резьбу на трубе;
- admitting pipepipe with string — бракованная труба;
- air pipe
- air inlet pipe
- airlift pipe
- airlift flanged drill pipe
- aluminum drilling pipe
- anchor pipe
- angle pipe
- anterior upset pipe
- asbestos-cement pipe
- ascending pipe
- atmospheric pipe
- bare pipe
- bent pipe
- bifurcated pipe
- big-diameter pipe
- bitumen-coated pipe
- blank pipe
- blank-flanged pipe
- bleeder pipe
- blind pipe
- blow-down pipe
- blow-off pipe
- bottom pipe
- box-end of drill pipe
- box-to-box pipe
- branch pipe
- branched pipe
- buffer connection pipe
- bulged-in pipe
- buried pipe
- button-screen pipe
- bypass pipe
- cargo pipe
- case pipe
- casing pipe
- circular pipe
- coated steel penstock pipe
- cold-drain pipe
- collapsed pipe
- collar bound pipe
- compensating pipe
- conduct pipe
- conductor pipe
- connecting pipe
- connection pipe
- control pipe
- conventional pipes
- cuttings pick-up pipe
- delivery pipe
- diamond pipe
- diamond-drill pipe
- dip pipe
- discharge pipe
- distributing pipe
- double extraheavy pipe
- double extrastrong pipe
- double reverse circulation pipe
- double-wall screwed drill pipe
- drain pipe
- drill pipe
- drill pipe before welding
- drill pipe of double length
- drill pipe unloaded
- drill pipe with screwed-on tool joints
- drill pipe with weld-on tool joints
- drive pipe
- eduction pipe
- elbow pipe
- electric-welded pipe
- electrodrill without drill pipe
- exhaust pipe
- extension pipe
- external upset drill pipe
- extraheavy pipe
- extrastrong pipe
- extruded pipe
- feed pipe
- ferromagnetic pipe
- filling pipe
- fitting pipe
- flanged pipe
- flexible pipe
- flexible armoured pipe
- flow pipe
- flush-joint pipe
- flush-joint drive pipe
- force pipe
- free-flow pipe
- freezing pipe
- frozen pipe
- fuel pipe
- gas pipe
- gas-service pipe
- gas-supply pipe
- grooved conductor pipe
- grout pipe
- header pipe
- heavy-end pipe
- heavy-wall pipe
- heavy-weight drill pipe
- helical-welded pipe
- high-pressure pipe
- high-pressure air-outlet pipe
- high-strength pipe
- high-strength laminar pipe
- hose pipe
- hot-rolled pipe
- induction pipe
- inlet pipe
- intake pipe
- integral joint drilling pipe
- interior-upset pipe
- internal-external upset drill pipe
- internal-flush drill pipe
- internal-upset drill pipe
- jet pipe
- junction pipe
- laminar pipe
- lance pipe
- lap-welded pipe
- large-diameter pipe
- lay down the pipe
- lead pipe
- light weight drill pipe
- line pipe
- liquid stand pipe
- little pipe
- long stand pipe
- longitudinally welded pipe
- loop expansion pipe
- looping pipe
- lost pipe
- low-head pipe
- lubrication pipe
- macaroni pipe
- main pipe
- male pipe
- manifold pipe
- marine riser pipe
- metal pipe
- module pipe
- multilayer pipe
- new drill pipe
- nonupset pipe
- nozzle pipe
- oil discharge pipe
- oriented drill pipe
- outlet pipe
- outside-coupled pipe
- outside-upset pipe
- overflow pipe
- oversize pipe
- perforated pipe
- pin-to-box pipe
- plain end pipe
- pressure relief pipe
- pressure water pipe
- protective pipe
- pulling big? pipe
- rathole pipe
- receiver pipe
- recovered pipe
- reducing pipe
- relief pipe
- return pipe
- rifled pipe
- riser pipe
- rising pipe
- river pipe
- rolled pipe
- rotary-drill pipe
- rotatable drill pipe
- rubbered pipe
- run pipe
- rundown pipe
- screen pipe
- screened pipe
- screwed drill pipe
- seamless drill pipe
- service pipe
- shop-perforated pipe
- single pipe
- slim hole drill pipe
- slip-joint pipe
- slotted pipe
- socket pipe
- soil pipe
- somastic-coated pipe
- sounding pipe
- spiral-welded pipe
- spiraled-wall casing pipe
- split pipe
- stand pipe
- standard pipe
- steel pipe
- stove pipe
- stuck casing pipe
- stuck drilling pipe
- suction pipe
- supply pipe
- surface pipe
- swing pipe
- swivel pipe
- T-pipe
- tail pipe
- tank filling pipe
- tapered pipe
- tee pipe
- thawing pipe
- thick-walled pipe
- thin-walled pipe
- threaded pipe
- threaded dual wall pipe
- threaded line pipe
- three-way pipe
- thrust-bore pipe
- U-pipe
- ultrahigh-test line pipe
- undersize pipe
- unsupported pipe
- unthreaded pipe
- upset drill pipe
- used drill pipe
- wall-stuck pipe
- wash pipe
- washover pipe
- water pipe
- welded pipe
- weldless pipe
- worm pipe
- Y-pipe* * *• усадочная мет. раковина слитка -
110 allied
see allytr['ælaɪd]1 SMALLPOLITICS/SMALL aliado,-a2 (related) relacionado,-a, afínadj.• aliado, -a adj.• coligado, -a adj.• conjunto, -a adj.'ælaɪd1) ( combined) (pred)allied with o to something — unido or sumado a algo
2)a) <nations/groups> aliadob) Allied ( of the Allies) aliado3) ( related) <subjects/industries> relacionado, afín['ælaɪd]to be allied to something — estar* relacionado con algo, ser* afín a algo
1. ADJ1) (Mil, Pol)a) (=united, in league) [troops, countries, parties] aliadoallied against sb/sth — aliado en contra de algn/algo
a group closely allied to General Pera's faction — un grupo estrechamente ligado a la facción del General Pera
allied with sth/sb — aliado con algo/algn
b)Allied — (Hist) [nations, tanks, operation, casualties] aliado
2) (=associated) [subjects, products, industries] relacionado, afínallied to sth — relacionado con algo, afín a algo
lectures on subjects allied to health — conferencias sobre temas relacionados con or afines a la salud
3) (=coupled)allied to or with sth — combinado con algo
his sense of humour allied to or with his clean-cut looks — su sentido del humor combinado con su cuidado aspecto
2.CPDallied health professional N — (US) profesional de la medicina o la enfermería que trabaja para una mutua
* * *['ælaɪd]1) ( combined) (pred)allied with o to something — unido or sumado a algo
2)a) <nations/groups> aliadob) Allied ( of the Allies) aliado3) ( related) <subjects/industries> relacionado, afínto be allied to something — estar* relacionado con algo, ser* afín a algo
-
111 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 -
112 valve
1) = float needle2) клапан (рис. 15,16)
; вентиль; задвижка; заслонка; золотник; кран; распределительный кран; створка (дверцы); электронная лампа; гидро- или пневмораспределитель; затвор (гидротехнический); (редко) форсунка; II подавать через клапан; питать через клапан; снабжать; обеспечивать
- time the valves
- valve acceleration
- valve-actuating gear
- valve adjusting screw
- valve arrangement
- valve base patch
- valve cock disk
- valve control mechanism
- valve diameter
- valve dust cap
- valve edge
- valve enclosure
- valve end
- valve extractor
- valve grinding
- valve gutter
- valve guttering
- valve head slot
- valve holder
- valve hole
- valve inside
- valve inside plunger pin
- valve knock
- valve lag
- valve lap
- valve lead
- valve lifter roller
- valve lifter roller pin
- valve lifting cam
- valve location
- valve manifold
- valve mechanism
- valve of tyre
- valve operating mechanism
- valve refacer
- valve refacing
- valve refacing machine
- valve regulation
- valve remover
- valve reseating
- valve retainer lock
- valve return
- valve rim
- valve rocker arm
- valve rocker lever
- valve rocker pedestal
- valve rocker roller
- valve rocker roller pin
- valve rocker shaft
- valve scaling
- valve scorching
- valve seal
- valve seat bore
- valve seat extractor
- valve seat grinder
- valve seating
- valve seating tool
- valve sinkage
- valve slot
- valve spring compressor
- valve spring damper
- valve spring holder
- valve spring key
- valve spring lifter
- valve spring remover
- valve spring retainer
- valve spring seat
- valve spring seat key
- valve spring seat pin
- valve spring surge
- valve spring tool
- valve spring washer
- valve stem end
- valve stem groove
- valve stem guide
- valve stem seal
- valve stripping
- valve surge damper
- valve system
- valve tab
- valve tappet clearance
- valve tappet roller pin
- valve tappet tube
- valve tension spring
- valve the gas
- valve thimble
- valve throat
- valve timing
- valve timing diagram
- valve tip
- valve train
- valve travel
- valve unit
- valve unloader assembly
- valve velocity
- valve wrench
- supplementary air valve
- clapper swing-check valve
- closed-centre valve
- cross-feed valve
- compensation valve
- flapper-nozzle valve
- flow regulator valve
- large capacity brake valve
- metering valve
- multipurpose valve
- pilot valve
- programmable valve with 24 hour/7 day timer for closing and opening the compressed air ringmain
- programmable valve with line-to-valve-connection and 1 BSP
- quick-closing valve
- quick-opening valve
- single-stage valve
- slide valve collar
- sliding-sleeve valve
- sliding throttle valve
- spool valve
- spring turn
- spring-and-ball valve
- stainless steel padlockable decompressing valve
- T-valve- water check valve - water-cooled valve - zero-lap valve -
113 Reynolds, Edwin
[br]b. 1831 Mansfield, Connecticut, USAd. 1909 Milwaukee, Wisconsin, USA[br]American contributor to the development of the Corliss valve steam engine, including the "Manhattan" layout.[br]Edwin Reynolds grew up at a time when formal engineering education in America was almost unavailable, but through his genius and his experience working under such masters as G.H. Corliss and William Wright, he developed into one of the best mechanical engineers in the country. When he was Plant Superintendent for the Corliss Steam Engine Company, he built the giant Corliss valve steam engine displayed at the 1876 Centennial Exhibition. In July 1877 he left the Corliss Steam Engine Company to join Edward Allis at his Reliance Works, although he was offered a lower salary. In 1861 Allis had moved his business to the Menomonee Valley, where he had the largest foundry in the area. Immediately on his arrival with Allis, Reynolds began desig-ning and building the "Reliance-Corliss" engine, which becamea symbol of simplicity, economy and reliability. By early 1878 the new engine was so successful that the firm had a six-month backlog of orders. In 1888 he built the first triple-expansion waterworks-pumping engine in the United States for the city of Milwaukee, and in the same year he patented a new design of blowing engine for blast furnaces. He followed this in March 1892 with the first steam engine sets coupled directly to electric generators when Allis-Chalmers contracted to build two Corliss cross-compound engines for the Narragansett Light Company of Providence, Rhode Island. In 1893, one of the impressive attractions at the World's Columbian Exposition in Chicago was the 3,000 hp (2,200 kW) quadruple-expansion Reynolds-Corliss engine designed by Reynolds, who continued to make significant improvements and gained worldwide recognition of his outstanding achievements in engine building.Reynolds was asked to go to New York in 1898 for consultation about some high-horsepower engines for the Manhattan transport system. There, 225 railway locomotives were to be replaced by electric trains, which would be supplied from one generating station producing 60,000 hp (45,000 kW). Reynolds sketched out his ideas for 10,000 hp (7,500 kW) engines while on the train. Because space was limited, he suggested a four-cylinder design with two horizontal-high-pressure cylinders and two vertical, low-pressure ones. One cylinder of each type was placed on each side of the flywheel generator, which with cranks at 135° gave an exceptionally smooth-running compact engine known as the "Manhattan". A further nine similar engines that were superheated and generated three-phase current were supplied in 1902 to the New York Interborough Rapid Transit Company. These were the largest reciprocating steam engines built for use on land, and a few smaller ones with a similar layout were installed in British textile mills.[br]Further ReadingConcise Dictionary of American Biography, 1964, New York: C.Scribner's Sons (contains a brief biography).R.L.Hills, 1989, Power from Steam. A History of the Stationary Steam Engine, Cambridge University Press (provides a brief account of the Manhattan engines) Part of the information for this biography is derived from a typescript in the Smithsonian Institution, Washington, DC: T.H.Fehring, "Technological contributions of Milwaukee's Menomonee Valley industries".RLH -
114 field
1) поле (1. физическое поле (напр. электромагнитное) 2. величина, характеризующая физическое поле 3. (открытое) пространство; область; зона 4. тлв вчт полукадр (в системах отображения с чересстрочной развёрткой) 5. вчт поименованная группа данных; элемент данных; столбец данных 6. вчт обрабатываемая отдельно группа разрядов 7. вчт кольцо с ненулевыми элементами, образующими абелеву группу по операции умножения 8. сфера деятельности; область интересов) || полевой; относящийся к полю2) опт. поле зрения4) рлк карта местности ( на экране индикатора)5) полигон6) поле боя (напр. в компьютерных играх)•- fields of atom
- field of complex numbers
- field of events
- field of force
- field of functions
- field of order N-
- field of quotients
- field of relations
- field of search
- field of selection
- field of values
- field of view
- field of vision
- field without sources
- field without vortices
- field with sources
- field with vortices
- Abelian field
- ac field
- accelerating field
- acoustoelectric field
- address field
- affine field
- aiding drift field
- alphanumeric field
- alternate fields
- alternating-gradient field
- angular field of view
- anisotropy field
- antenna field
- aperture field
- applied field
- authentication field
- auxiliary field
- avalanche field
- axial field
- backscattered field
- backward field
- base field
- base sweeping field
- bias magnetic field
- biasing magnetic field
- biomagnetic fields
- bit field
- block information field
- blue field
- breakdown field
- built-in field
- calculated field
- canonical field
- card field
- caustic field
- central field
- chain field
- character field
- charge-separation field
- chiral field
- circuital field
- coercive field
- collapse field
- color field
- compressing field
- computed field
- confining field
- conservative field
- constant field
- containing field
- control field
- Coulomb field
- countable field
- counterrotating field
- coupled fields
- critical field
- CRC field
- crossed fields
- crystal field
- crystal lattice field
- crystalline field
- curl field
- curling field
- cusped magnetic field
- cutoff field
- cyclic redundancy check field
- cylinder number field
- data field
- dc field
- decelerating field
- deflection field
- degaussing field
- demagnetizing field
- derived field
- destination field
- diffracted field
- dipole field
- dipole sound field
- display field
- disturbed field
- disturbing field
- domain erasing field
- domain nucleation field
- drift field
- dynamic field
- dynamic threshold field
- E-field
- Earth's electric field
- Earth's magnetic field
- edge diffracted field
- effective field
- effective field of magnetic anisotropy
- electric field
- electromagnetic field
- electrostatic field
- EM field
- emit field
- entrance field
- equilibrium field
- erasure field
- even field
- evoked magnetic fields of brain
- exchange field
- extension field
- external field
- extraneous field
- far field
- far-radiated field
- far-scattered field
- far-zone field
- Fermat field
- file field
- finite field
- first field
- first critical field
- fixed-length field
- flag field
- focusing field
- force-free magnetic field
- forward field
- frame number field
- Fraunhofer field
- free field
- free-space field
- Fresnel field
- fringing field
- fringing field of junction
- frozen field
- gage field
- Galois field
- Galois field pn
- gate-to-drain field
- geometrical optics field
- gradient field
- gravitational field
- green field
- guide field
- guiding field
- H-field
- halaxy magnetic field
- Hall field
- Hall electric field
- harmonic field
- head number field
- heating field
- heating electric field
- helical field
- heliotron magnetic field
- high-frequency field
- holographically reconstructed field
- homogeneous field
- hyperfine field
- I-field
- ID field
- identifier field
- illuminating field
- impressed field
- incident field
- inducing field
- induction field
- infinite field
- information field
- inhomogeneous field
- in-plane field
- instruction field
- integer field
- interlaced field
- internal field
- interplanetary magnetic field
- irrotational field
- jack field
- junction field
- Kerr field
- key field
- label field
- lamellar field
- laser field
- lateral field
- leakage field
- local field
- localized field
- local receptive field
- macroscopic field
- magnetic field
- magnetic fields of eye
- magnetic bias field
- magnetic mirror field
- magnetization reversal field
- magnetizing field
- magnetostatic field
- magnetron critical field
- maximum permeability field
- Mersenne field
- message field
- microscopic field
- mirror field
- modulating field
- modulation field
- molecular field
- monochromatic field
- multibeam field
- multidimensional field
- near field
- near-zone field
- noise field
- noncircuital field
- nonstationary field
- nonuniform field
- normal-mode field
- nucleation field
- numeric field
- nutation field
- object field
- odd field
- orderable field
- ordered field
- operand field
- operation field
- particle switching field
- penumbra field
- periodic field
- perpendicular critical field
- perturbed field
- physical optics field
- piezoelectric field
- polarization field
- poloidal field
- potential field
- primary color field
- prime field
- privilege field
- proper field
- protected field
- pseudoscalar field
- pump field
- pumping field
- punched-card field
- quadrupolar field
- quadrupolar field with X neutral point
- quadrupolar field with X -type neutral point
- quantum field
- quasi-potential field
- quotent field
- radial field
- radiated field
- radiation field
- radio-frequency field
- radio influence field
- reactive field
- receptive field
- reconstructed field
- red field
- rediffracted field
- reference field
- reflected field
- repeating field
- reradiated field
- residual field
- residue class field
- resonance field
- retarding field
- RF field
- rotating field
- rotational field
- satellite's field of view
- scalar field
- scattered field
- second field
- second critical field
- sector number field
- seed field
- self-consistent field
- shadow field
- shaping field
- signal field
- skipped field
- solenoidal field
- sort field
- sound field
- source field
- source-to-drain field
- space-charge field
- spinor field
- spontaneous magnetic fields of brain
- starting field
- static field
- stationary field
- stochastic field
- stray field
- superposed field
- surface superconducting field
- sweeping field
- switching field
- symbol field
- tag field
- television field
- tensor field
- thermal field
- thermal radiation field
- third critical field
- threshold field
- topological field
- transient field
- transition field
- trapped field
- traveling field
- tunneling field
- two-turn field
- uniform field
- unit electric field
- unperturbed field
- vanishing field
- variable field
- variable-length field
- variant field
- vector field
- visual field
- vortex field
- wall creation field
- wave field
- waveguide field
- write field
- zero-approximation field -
115 field
1) поле (1. физическое поле (напр. электромагнитное) 2. величина, характеризующая физическое поле 3. (открытое) пространство; область: зона 4. тлв.; вчт. полукадр (в системах отображения с чересстрочной развёрткой) 5. вчт. поименованная группа данных; элемент данных; столбец данных 6. вчт. обрабатываемая отдельно группа разрядов 7. вчт. кольцо с ненулевыми элементами, образующими абелеву группу по операции умножения 8. сфера деятельности; область интересов) || полевой; относящийся к полю2) опт. поле зрения4) рлк. карта местности ( на экране индикатора)5) полигон6) поле боя (напр. в компьютерных играх)•- ac field
- accelerating field
- acoustoelectric field
- address field
- affine field
- aiding drift field
- alphanumeric field
- alternate fields
- alternating-gradient field
- angular field of view
- anisotropy field
- antenna field
- aperture field
- applied field
- authentication field
- auxiliary field
- avalanche field
- axial field
- backscattered field
- backward field
- base field
- base sweeping field
- bias magnetic field
- biasing magnetic field
- biomagnetic fields
- bit field
- block information field
- blue field
- breakdown field
- built-in field
- calculated field
- canonical field
- card field
- caustic field
- central field
- chain field
- character field
- charge-separation field
- chiral field
- circuital field
- coercive field
- collapse field
- color field
- compressing field
- computed field
- confining field
- conservative field
- constant field
- containing field
- control field
- Coulomb field
- countable field
- counterrotating field
- coupled fields
- CRC field
- critical field
- crossed fields
- crystal field
- crystal lattice field
- crystalline field
- curl field
- curling field
- cusped magnetic field
- cutoff field
- cyclic redundancy check field
- cylinder number field
- data field
- dc field
- decelerating field
- deflection field
- degaussing field
- demagnetizing field
- derived field
- destination field
- diffracted field
- dipole field
- dipole sound field
- display field
- disturbed field
- disturbing field
- domain erasing field
- domain nucleation field
- drift field
- dynamic field
- dynamic threshold field
- E field
- Earth's electric field
- Earth's magnetic field
- edge diffracted field
- effective field of magnetic anisotropy
- effective field
- electric field
- electromagnetic field
- electrostatic field
- EM field
- emit field
- entrance field
- equilibrium field
- erasure field
- even field
- evoked magnetic fields of brain
- exchange field
- extension field
- external field
- extraneous field
- far field
- far-radiated field
- far-scattered field
- far-zone field
- Fermat field
- field of algebraic numbers
- field of complex numbers
- field of events
- field of force
- field of functions
- field of order N
- field of quotients
- field of relations
- field of search
- field of selection
- field of values
- field of view
- field of vision
- field with sources
- field with vortices
- field without sources
- field without vortices
- fields of atom
- file field
- finite field
- first critical field
- first field
- fixed-length field
- flag field
- focusing field
- force-free magnetic field
- forward field
- frame number field
- Fraunhofer field
- free field
- free-space field
- Fresnel field
- fringing field of junction
- fringing field
- frozen field
- gage field
- Galois field pn
- Galois field
- gate-to-drain field
- geometrical optics field
- gradient field
- gravitational field
- green field
- guide field
- guiding field
- H field
- halaxy magnetic field
- Hall electric field
- Hall field
- harmonic field
- head number field
- heating electric field
- heating field
- helical field
- heliotron magnetic field
- high-frequency field
- holographically reconstructed field
- homogeneous field
- hyperfine field
- ID field
- identifier field
- I-field
- illuminating field
- impressed field
- incident field
- inducing field
- induction field
- infinite field
- information field
- inhomogeneous field
- in-plane field
- instruction field
- integer field
- interlaced field
- internal field
- interplanetary magnetic field
- irrotational field
- jack field
- junction field
- Kerr field
- key field
- label field
- lamellar field
- laser field
- lateral field
- leakage field
- local field
- local receptive field
- localized field
- macroscopic field
- magnetic bias field
- magnetic field
- magnetic fields of eye
- magnetic mirror field
- magnetization reversal field
- magnetizing field
- magnetostatic field
- magnetron critical field
- maximum permeability field
- Mersenne field
- message field
- microscopic field
- mirror field
- modulating field
- modulation field
- molecular field
- monochromatic field
- multibeam field
- multidimensional field
- near field
- near-zone field
- noise field
- noncircuital field
- nonstationary field
- nonuniform field
- normal-mode field
- nucleation field
- numeric field
- nutation field
- object field
- odd field
- operand field
- operation field
- orderable field
- ordered field
- particle switching field
- penumbra field
- periodic field
- perpendicular critical field
- perturbed field
- physical optics field
- piezoelectric field
- polarization field
- poloidal field
- potential field
- primary color field
- prime field
- privilege field
- proper field
- protected field
- pseudoscalar field
- pump field
- pumping field
- punched-card field
- quadrupolar field with X neutral point
- quadrupolar field with X-type neutral point
- quadrupolar field
- quantum field
- quasi-potential field
- quotent field
- radial field
- radiated field
- radiation field
- radio influence field
- radio-frequency field
- reactive field
- receptive field
- reconstructed field
- red field
- rediffracted field
- reference field
- reflected field
- repeating field
- reradiated field
- residual field
- residue class field
- resonance field
- retarding field
- RF field
- rotating field
- rotational field
- satellite's field of view
- scalar field
- scattered field
- second critical field
- second field
- sector number field
- seed field
- self-consistent field
- shadow field
- shaping field
- signal field
- skipped field
- solenoidal field
- sort field
- sound field
- source field
- source-to-drain field
- space-charge field
- spinor field
- spontaneous magnetic fields of brain
- starting field
- static field
- stationary field
- stochastic field
- stray field
- superposed field
- surface superconducting field
- sweeping field
- switching field
- symbol field
- tag field
- television field
- tensor field
- thermal field
- thermal radiation field
- third critical field
- threshold field
- topological field
- transient field
- transition field
- trapped field
- traveling field
- tunneling field
- two-turn field
- uniform field
- unit electric field
- unperturbed field
- vanishing field - variant field
- vector field
- visual field
- vortex field
- wall creation field
- wave field
- waveguide field
- write field
- zero-approximation fieldThe New English-Russian Dictionary of Radio-electronics > field
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116 double
1. n двойное количествоto take the double of what is due — взять вдвое больше, чем положено
2. n дубликат; дублет3. n уст. копия4. n прототип, прообраз5. n двойник6. n театр. актёр, исполняющий в пьесе две роли7. n театр. дублёр8. n кино дублёр, заменяющий основного исполнителя в некоторых сценах9. n дупель10. n дуплет; двойной удар11. n охот. дублет, дуплет12. n парная играdouble dummy — игра с двумя «болванами»
play a double game — двурушничать; вести двойную игру
13. n двойка14. n спорт. два выигрыша или два проигрыша подряд15. n беглый шагto advance at the double — продвигаться ускоренным шагом; наступать бегом
16. n увёртка, уловка, хитрость17. n петля, изгиб, поворот18. n складка; сгиб19. n комната на двоихdouble dagger — двойной крестик, знак ‡
double hyphen — знак переноса слов, пишущихся через дефис
20. n астр. двойная звезда21. a двойной, удвоенный; сдвоенный; состоящий из двух частейdouble exposure — кино двойная экспозиция; сочетание двух изображений в одном кинокадре
double consonants — геминаты, удвоенные согласные
double march! — ускоренным шагом марш!, бегом марш!
22. a парный23. a двойной, двоякий24. a двойной; вдвое больший; удвоенный; усиленный25. a двусмысленный26. a двуличный, двойственный; двойнойdouble game — двойная игра; лицемерие
to play a double game — вести двойную игру, лицемерить; двурушничать
double agent — двойной агент, «слуга двух господ»
27. a муз. звучащий на октаву ниже28. a муз. бот. махровый29. adv вдвое, вдвойнеto pay double the meter — заплатить вдвое больше, чем по показаниям счётчика
double up — сгибать, складывать вдвое
30. adv вдвоём; парой, попарно31. v удваивать; увеличивать вдвое32. v удваиваться; возрастать, увеличиваться вдвое33. v воен. сдваивать34. v быть вдвое больше, превосходить вдвое35. v театр. кино36. v исполнять две ролиdouble action door — дверь, открывающаяся в обе стороны
37. v выступать в той же роли, быть дублёромdouble quotes — кавычки в два штриха, двойные кавычки
38. v кино дублировать39. v замещать40. v бить шар дуплетом41. v сгибать, складывать вдвое42. v сгибаться, складываться43. v делать изгиб44. v мор. огибать, обходить45. v подбивать; подшивать или подкладывать ещё один слой; обшивать, делать обшивку46. v разг. вселять второго жильца, уплотнять; помещать второго пассажира в то же купе, в ту же каютуI was doubled with a sick passenger — ко мне поместили больного двигаться беглым шагом; бежать
47. v запутывать след, делать петли; сбивать со следа48. v уст. хитрить, обманывать, вилятьСинонимический ряд:1. insincere (adj.) ambidextrous; double-dealing; double-faced; doublehearted; double-minded; double-tongued; hypocritical; insincere; left-handed; mala fide2. twice (adj.) twice; two-fold3. twice as much (adj.) as much again; coupled; duplicated; paired; redoubled; second; twice as much; twin; two; two times4. twofold (adj.) bifold; binary; double-barreled; doubled; dual; dualistic; duple; duplex; duplicate; twofold5. alternate (noun) alternate; proxy; substitute; understudy6. image (noun) duplicate; image; picture; portrait; ringer; simulacrum; spit; spitting image; twin7. stand in (noun) clone; companion; coordinate; counterpart; doppelganger; fellow; lookalike; match; mate; riciprocal; stand in8. turn (noun) bend; deflection; deviation; shift; tack; turn; yaw9. dualize (verb) dualize; dupe; duplicate; redouble10. dub (verb) dub11. escape (verb) avoid; bilk; duck; elude; escape; eschew; evade; shun; shy12. fold (verb) crease; fold; pleat13. make twice as much (verb) grow; increase; make twice as much; multiply; multiply by two14. reverse (verb) about-face; reverse15. substitute (verb) act for; fill in for; perform the duty of; stand in; substitute; substitute for; take the place ofАнтонимический ряд: -
117 engine
двигатель; мотор; машинаbuzz up an engine — жарг. запускать двигатель
clean the engine — прогазовывать [прочищать] двигатель (кратковременной даней газа)
engine of bypass ratio 10: 1 — двигатель с коэффициентом [степенью] двухконтурности 10:1
flight discarded jet engine — реактивный двигатель, отработавший лётный ресурс
kick the engine over — разг. запускать двигатель
lunar module ascent engine — подъёмный двигатель лунного модуля [отсека]
monofuel rocket engine — ЖРД на однокомпонентном [унитарном] топливе
open the engine up — давать газ, увеличивать тягу или мощность двигателя
prepackaged liquid propellant engine — ЖРД на топливе длительного хранения; заранее снаряжаемый ЖРД
production(-standard, -type) engine — серийный двигатель, двигатель серийного образца [типа]
return and landing engine — ксм. двигатель для возвращения и посадки
reversed rocket engine — тормозной ракетный двигатель; ксм. тормозная двигательная установка
run up the engine — опробовать [«гонять»] двигатель
secure the engine — выключать [останавливать, глушить] двигатель
shut down the engine — выключать [останавливать, глушить] двигатель
shut off the engine — выключать [останавливать, глушить] двигатель
solid(-fuel, -grain) rocket engine — ракетный двигатель твёрдого топлива
turn the engine over — проворачивать [прокручивать] двигатель [вал двигателя]
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118 Barnack, Oskar
SUBJECT AREA: Photography, film and optics[br]b. 1879 Berlin, Germanyd. January 1936 Wetzlar, Germany[br]German camera designer who conceived the first Leica camera and many subsequent models.[br]Oskar Barnack was an optical engineer, introspective and in poor health, when in 1910 he was invited through the good offices of his friend the mechanical engineer Emil Mechau, who worked for Ernst Leitz, to join the company at Wetzlar to work on research into microscope design. He was engaged after a week's trial, and on 2 January 1911 he was put in charge of microscope research. He was an enthusiastic photographer, but excursions with his large and heavy plate camera equipment taxed his strength. In 1912, Mechau was working on a revolutionary film projector design and needed film to test it. Barnack suggested that it was not necessary to buy an expensive commercial machine— why not make one? Leitz agreed, and Barnack constructed a 35 mm movie camera, which he used to cover events in and around Wetzlar.The exposure problems he encountered with the variable sensitivity of the cine film led him to consider the design of a still camera in which short lengths of film could be tested before shooting—a kind of exposure-meter camera. Dissatisfied with the poor picture quality of his first model, which took the standard cine frame of 18×24 mm, he built a new model in which the frame size was doubled to 36×24 mm. It used a simple focal-plane shutter adjustable to 1/500 of a second, and a Zeiss Milar lens of 42 mm focal length. This is what is now known as the UR-Leica. Using his new camera, 1/250 of the weight of his plate equipment, Barnack made many photographs around Wetzlar, giving postcard-sized prints of good quality.Ernst Leitz Junior was lent the camera for his trip in June 1914 to America, where he was urged to put it into production. Visiting George Eastman in Rochester, Leitz passed on Barnack's requests for film of finer grain and better quality. The First World War put an end to the chances of developing the design at that time. As Germany emerged from the postwar chaos, Leitz Junior, then in charge of the firm, took Barnack off microscope work to design prototypes for a commercial model. Leitz's Chief Optician, Max Berek, designed a new lens, the f3.5 Elmax, for the new camera. They settled on the name Leica, and the first production models went on show at the Leipzig Spring Fair in 1925. By the end of the year, 1,000 cameras had been shipped, despite costing about two months' good wages.The Leica camera established 35 mm still photography as a practical proposition, and film manufacturers began to create the special fine-grain films that Barnack had longed for. He continued to improve the design, and a succession of new Leica models appeared with new features, such as interchangeable lenses, coupled range-finders, 250 exposures. By the time of his sudden death in 1936, Barnack's life's work had forever transformed the nature of photography.[br]Further ReadingJ.Borgé and G.Borgé, 1977, Prestige de la, photographie.BC -
119 Duddell, William du Bois
SUBJECT AREA: Electricity[br]b. 1872 Kensington, London, Englandd. 4 November 1917 London, England[br]English engineer, inventor of the first practical oscillograph.[br]After an education at the College of Stanislas, Cannes, Duddell served an apprenticeship with Davy Paxman of Colchester. Studying under Ayrton and Mather at the Central Technical College in South Kensington, he found the facilities for experimental work of exceptional value to him and remained there for some years. In 1897 Duddell produced a galvanometer which was sufficiently responsive to display an alternating-current wave-form. This instrument, with a coil carrying a mirror in the air gap of a powerful electromagnet, had a small periodic time. An oscillating mirror driven by a synchronous motor spread out the deflection on a time-scale. This development became the first commercial oscillograph and brought Duddell into prominence as a first-rate designer of special instruments. The Duddell oscillograph remained in use until after the Second World War, examples being used for recording short-circuit tests on high-power switchgear and other rapidly varying or transient phenomena. His next important work was to collaborate with Professor Marchant at Liverpool University to investigate the characteristics of the electric arc. This led to the suggestion that, coupled to a resonant circuit, the electric arc could form a generator of high-frequency currents. This arrangement was later developed by Poulson for wireless telegraphy. Duddell spent the last years of his life on government research as a member of the Admiralty Board of Inventions and Research and also of the Inventions Board of the Ministry of Munitions.[br]Principal Honours and DistinctionsCBE 1916. FRS 1907. Royal Society Hughes Medal 1912. President, Institution of Electrical Engineers 1912 and 1913.Bibliography1897, Electrician, 39:636–8 (describes his oscillograph). 5 March 1898, British patent no. 5,449 (the oscillograph).1899, with E.W.Marchant, "Experiments on alternate current arcs by aid of oscillograph", Journal of the Institution of Electrical Engineers 28: 1–107.Further ReadingV.J.Phillips, 1987, Waveforms, Bristol (a comprehensive account).1945, "50 years of scientific instrument manufacture", Engineering, 159:461.GWBiographical history of technology > Duddell, William du Bois
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120 Mallet, Jules Théodore Anatole
[br]b. 1837 Geneva, Switzerlandd. November 1919 Nice, France[br]Swiss engineer, inventor of the compound steam locomotive and the Mallet articulated locomotive.[br]Mallet's family moved to Normandy while he was still a child. After working as a civil engineer, in 1867 he turned to machinery, particularly to compound steam engines. He designed the first true compound steam locomotives, which were built for the Bayonne- Biarritz Railway in 1876. They were 0–4–2 tank locomotives with one high-pressure and one low-pressure cylinder. A starting valve controlled by the driver admitted high-pressure steam to the low-pressure cylinder while the high-pressure cylinder exhausted to the atmosphere. At that time it was thought impracticable in a narrow-gauge locomotive to have more than three coupled axles in rigid frames. Mallet patented his system of articulation in 1884 and the first locomotives were built to that design in 1888: they were 0–4–4–0 tanks with two sets of frames. The two rear pairs of wheels carried the rear set of frames and were driven by two high-pressure cylinders; the two front pairs, which were driven by the high-pressure cylinders, carried a separate set of frames that was allowed sideplay, with a centre of rotation between the low-pressure cylinders. In contrast to the patent locomotive of Robert Fairlie, no flexible connections were required to carry steam at boiler pressure. The first Mallet articulated locomotives were small, built to 60 cm (23.6 in.) gauge: the first standard-gauge Mallets were built in 1890, for the St Gotthard Railway, and it was only after the type was adopted by American railways in 1904 that large Mallet locomotives were built, with sizes increasing rapidly to culminate in some of the largest steam locomotives ever produced. In the late 1880s Mallet also designed monorail locomotives, which were built for the system developed by C.F.M.-T. Lartigue.[br]Bibliography1884, French patent no. 162,876 (articulated locomotive).Further ReadingJ.T.van Riemsdijk, 1970, "The compound locomotive, Part I", Transactions of the Newcomen Society 43 (describes Mallet's work on compounding).L.Wiener, 1930, Articulated Locomotives, London: Constable (describes his articulated locomotives).For the Mallet family, see Historisch-Biographisches Lexikon der Schweiz.PJGRBiographical history of technology > Mallet, Jules Théodore Anatole
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power coupled with an interest — see power 2b Merriam Webster’s Dictionary of Law. Merriam Webster. 1996 … Law dictionary
agency coupled with an interest — See power coupled with an interest … Ballentine's law dictionary
power coupled with an interest — A power conferred by a writing which vests in the agent an interest or property in the subject of the agency, not merely an interest in the proceeds or results of the exercise of the agency. Cox v Freeman, 204 Okla 138, 227 P2d 670, 28 ALR2d 430 … Ballentine's law dictionary
coupled with an interest — This phrase, in the law of agency, has reference to a writing creating, conveying to, or vesting in the agent an interest in the estate or property which is the subject of the agency, as distinguished from the proceeds or profits resulting from… … Black's law dictionary
coupled with an interest — This phrase, in the law of agency, has reference to a writing creating, conveying to, or vesting in the agent an interest in the estate or property which is the subject of the agency, as distinguished from the proceeds or profits resulting from… … Black's law dictionary
with — Synonyms and related words: about, added to, along with, amid, amidst, among, amongst, as well as, at, at all costs, at any cost, attended by, by, by dint of, by means of, by use of, by virtue of, by way of, coupled with, despite, even with, for … Moby Thesaurus
license coupled with an interest — A license in real property which confers the right, not the mere permission, to perform an act or acts upon the property, thereby being irrevocable and constituting an interest in the land itself. 33 Am J1st Lic § 101 … Ballentine's law dictionary