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21 солнечная система получения пара
1) Engineering: solar steam generating system2) Solar energy: solar steam-generating systemУниверсальный русско-английский словарь > солнечная система получения пара
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22 солнечная система получения технологической теплоты
Универсальный русско-английский словарь > солнечная система получения технологической теплоты
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23 паропроизводящая установка
паропроизводящая установка
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[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
Русско-английский словарь нормативно-технической терминологии > паропроизводящая установка
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24 система генерирования пара с использованием солнечной энергии
система генерирования пара с использованием солнечной энергии
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[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
Русско-английский словарь нормативно-технической терминологии > система генерирования пара с использованием солнечной энергии
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25 система получения тепла для технологических нужд с использованием солнечной энергии
система получения тепла для технологических нужд с использованием солнечной энергии
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[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
Русско-английский словарь нормативно-технической терминологии > система получения тепла для технологических нужд с использованием солнечной энергии
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26 система производства электроэнергии с использованием фотоэлектрического источника
система производства электроэнергии с использованием фотоэлектрического источника
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[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
Русско-английский словарь нормативно-технической терминологии > система производства электроэнергии с использованием фотоэлектрического источника
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27 фотоэлектрическая система выработки электроэнергии
фотоэлектрическая система выработки электроэнергии
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[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
Русско-английский словарь нормативно-технической терминологии > фотоэлектрическая система выработки электроэнергии
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28 система электроснабжения
1) Aviation: electrical generating system2) Engineering: electricity supply system, power-supply system, supply system3) Construction: electrical power system, power supply4) Mining: reticulation (in the underground mine)5) Electronics: service (в зависимости от контекста)6) Astronautics: electric power supply system, power supply systemУниверсальный русско-английский словарь > система электроснабжения
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29 энергетическая установка
1) General subject: a power plant, propulsion, pulsion2) Naval: air-breathing plant, machinery plant, propulsion machinery3) Military: power system, power unit4) Engineering: electric power installation, electric power plant, power generation system, power installation, power module, power plant, power-plant, powerplant, propulsion plant5) Automation: power generating system, propulsion system, propulsive system6) Makarov: plant, power stationУниверсальный русско-английский словарь > энергетическая установка
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30 движение обката
Русско-английский новый политехнический словарь > движение обката
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31 система паропроводов вспомогательных механизмов
Русско-английский военно-политический словарь > система паропроводов вспомогательных механизмов
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32 генерирующая система
1) Engineering: generation system, power generation system2) Information technology: generating systemУниверсальный русско-английский словарь > генерирующая система
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33 система с дублирующими узлами
Русско-английский большой базовый словарь > система с дублирующими узлами
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34 Poulsen, Valdemar
[br]b. 23 November 1869 Copenhagen, Denmarkd. 23 July 1942 Gentofte, Denmark[br]Danish engineer who developed practical magnetic recording and the arc generator for continuous radio waves.[br]From an early age he was absorbed by phenomena of physics to the exclusion of all other subjects, including mathematics. When choosing his subjects for the final three years in Borgedydskolen in Christianshavn (Copenhagen) before university, he opted for languages and history. At the University of Copenhagen he embarked on the study of medicine in 1889, but broke it off and was apprenticed to the machine firm of A/S Frichs Eftf. in Aarhus. He was employed between 1893 and 1899 as a mechanic and assistant in the laboratory of the Copenhagen Telephone Company KTAS. Eventually he advanced to be Head of the line fault department. This suited his desire for experiment and measurement perfectly. After the invention of the telegraphone in 1898, he left the laboratory and with responsible business people he created Aktieselskabet Telegrafonen, Patent Poulsen in order to develop it further, together with Peder Oluf Pedersen (1874– 1941). Pedersen brought with him the mathematical background which eventually led to his professorship in electronic engineering in 1922.The telegraphone was the basis for multinational industrial endeavours after it was demonstrated at the 1900 World's Exhibition in Paris. It must be said that its strength was also its weakness, because the telegraphone was unique in bringing sound recording and reproduction to the telephone field, but the lack of electronic amplifiers delayed its use outside this and the dictation fields (where headphones could be used) until the 1920s. However, commercial interest was great enough to provoke a number of court cases concerning patent infringement, in which Poulsen frequently figured as a witness.In 1903–4 Poulsen and Pedersen developed the arc generator for continuous radio waves which was used worldwide for radio transmitters in competition with Marconi's spark-generating system. The inspiration for this work came from the research by William Duddell on the musical arc. Whereas Duddell had proposed the use of the oscillations generated in his electric arc for telegraphy in his 1901 UK patent, Poulsen contributed a chamber of hydrogen and a transverse magnetic field which increased the efficiency remarkably. He filed patent applications on these constructions from 1902 and the first publication in a scientific forum took place at the International Electrical Congress in St Louis, Missouri, in 1904.In order to use continuous waves efficiently (the high frequency constituted a carrier), Poulsen developed both a modulator for telegraphy and a detector for the carrier wave. The modulator was such that even the more primitive spark-communication receivers could be used. Later Poulsen and Pedersen developed frequency-shift keying.The Amalgamated Radio-Telegraph Company Ltd was launched in London in 1906, combining the developments of Poulsen and those of De Forest Wireless Telegraph Syndicate. Poulsen contributed his English and American patents. When this company was liquidated in 1908, its assets were taken over by Det Kontinentale Syndikat for Poulsen Radio Telegrafi, A/S in Copenhagen (liquidated 1930–1). Some of the patents had been sold to C.Lorenz AG in Berlin, which was very active.The arc transmitting system was in use worldwide from about 1910 to 1925, and the power increased from 12 kW to 1,000 kW. In 1921 an exceptional transmitter rated at 1,800 kW was erected on Java for communications with the Netherlands. More than one thousand installations had been in use worldwide. The competing systems were initially spark transmitters (Marconi) and later rotary converters ( Westinghouse). Similar power was available from valve transmitters only much later.From c. 1912 Poulsen did not contribute actively to further development. He led a life as a well-respected engineer and scientist and served on several committees. He had his private laboratory and made experiments in the composition of matter and certain resonance phenomena; however, nothing was published. It has recently been suggested that Poulsen could not have been unaware of Oberlin Smith's work and publication in 1888, but his extreme honesty in technical matters indicates that his development was indeed independent. In the case of the arc generator, Poulsen was always extremely frank about the inspiration he gained from earlier developers' work.[br]Bibliography1899, British patent no. 8,961 (the first British telegraphone patent). 1903, British patent no. 15,599 (the first British arc-genera tor patent).His scientific publications are few, but fundamental accounts of his contribution are: 1900, "Das Telegraphon", Ann. d. Physik 3:754–60; 1904, "System for producing continuous oscillations", Trans. Int. El. Congr. St. Louis, Vol. II, pp. 963–71.Further ReadingA.Larsen, 1950, Telegrafonen og den Traadløse, Ingeniørvidenskabelige Skrifter no. 2, Copenhagen (provides a very complete, although somewhat confusing, account of Poulsen's contributions; a list of his patents is given on pp. 285–93).F.K.Engel, 1990, Documents on the Invention of Magnetic Re cor ding in 1878, New York: Audio Engineering Society, reprint no. 2,914 (G2) (it is here that doubt is expressed about whether Poulsen's ideas were developed independently).GB-N -
35 система гидравлики
Русско-английский военно-политический словарь > система гидравлики
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36 система обеспечения устойчивости движения
Русско-английский военно-политический словарь > система обеспечения устойчивости движения
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37 изолированно работающая энергосистема
Engineering: isolated generating system, isolated power systemУниверсальный русско-английский словарь > изолированно работающая энергосистема
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38 система дымопуска
1) Military: smoke discharger system2) Engineering: smoke generating system -
39 система речеобразования
1) Aviation medicine: speech-generating system2) Psychoanalysis: speech systemУниверсальный русско-английский словарь > система речеобразования
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40 термодымовая аппаратура
1) Military: engine smoke generating system2) Armored vehicles: engine exhaust smoke systemУниверсальный русско-английский словарь > термодымовая аппаратура
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