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1 холодильный коэффициент
1) Engineering: coefficient of performance, refrigerating factor, refrigeration efficiency2) Construction: performance energy ratio3) Coolers: coefficient of performance (компрессионной холодильной машины), cooling factor, performance energy rate (напр. для установок с обратным тепловым циклом), reciprocal thermal efficiency (напр. для установок с обратным тепловым циклом), COP4) Makarov: coefficient of performance (в компрессионной холодильной машине), coefficient of performance of a refrigerating machineУниверсальный русско-английский словарь > холодильный коэффициент
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2 Kältefaktor
m < hlk> ■ coefficient of performance; refrigeration efficiency -
3 холодильный коэффициент
( в компрессионной холодильной машине) coefficient of performance, refrigeration efficiency, refrigerating factorРусско-английский политехнический словарь > холодильный коэффициент
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4 холодопроизводительность
- refrigeration performance
- refrigeration output
- refrigerating power
- refrigerating duty
- refrigerating capacity
- puissance frigorifique
- cooling power
- cooling performance
- cooling efficiency
- cooling effect
холодопроизводительность
Количество теплоты, отводимое в единицу времени искусственным охлаждением.
[ ГОСТ 24393-80]Тематики
EN
3.2 холодопроизводительность (refrigerating capacity, puissance frigorifique*): Произведение массового расхода хладагента через компрессор и разности между удельной энтальпией хладагента на входе в компрессор и удельной энтальпией хладагента на линии насыщенной жидкости.
Примечание - Хладагент на входе в компрессор находится в состоянии пара, перегретого по отношению к температуре насыщения (точка росы) при давлении всасывания на величину, указанную в таблице 1. Энтальпию хладагента на линии насыщенной жидкости определяют при давлении, соответствующем давлению нагнетания компрессора.
Источник: ГОСТ Р 54381-2011: Компрессоры холодильные. Условия испытаний по определению основных характеристик, допуски и представление данных производителями оригинал документа
Русско-английский словарь нормативно-технической терминологии > холодопроизводительность
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5 кпд холодильной установки или холодильной машины
Русско-английский словарь по пищевой промышленности > кпд холодильной установки или холодильной машины
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6 холодильный коэффициент цикла
Универсальный русско-английский словарь > холодильный коэффициент цикла
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7 холодопроизводительность
1) Engineering: cooling effect, cooling efficiency, cooling performance, refrigerating capacity, refrigerating duty, refrigerating effect, refrigerating power, refrigeration output, refrigeration performance2) Construction: cooling capacity, cooling power, refrigerating cantilevering3) Mining: cold capacity (замораживающей станции), refrigerating capacity (замораживающей станции или установки), refrigeration output (замораживающей станции или установки)4) Coolers: cooling duty, tonnage output5) Makarov: cold consumptionУниверсальный русско-английский словарь > холодопроизводительность
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8 холодопроизводительность
refrigerating capacity, refrigerating duty, cooling effect, cooling efficiency, refrigeration output, cooling performance, refrigeration performance, refrigerating power* * *холодопроизводи́тельность ж.
refrigerating capacity, refrigerating [cooling] power, refrigeration output, refrigerating [cooling] effectРусско-английский политехнический словарь > холодопроизводительность
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9 кпд холодильной установки или холодильной машины
Food industry: refrigeration system efficiencyУниверсальный русско-английский словарь > кпд холодильной установки или холодильной машины
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10 Diesel, Rudolph Christian Karl
SUBJECT AREA: Steam and internal combustion engines[br]b. 1858 Paris, Franced. 1913 at sea, in the English Channel[br]German inventor of the Diesel or Compression Ignition engine.[br]A German born in Paris, he was educated in Augsburg and later in Munich, where he graduated first in his class. There he took some courses under Professor Karl von Linde, pioneer of mechanical refrigeration and an authority on thermodynamics, who pointed out the low efficiency of the steam engine. He went to work for the Linde Ice Machine Company as an engineer and later as Manager; there he conceived a new basic cycle and worked out its thermodynamics, which he published in 1893 as "The theory and construction of a rational heat motor". Compressing air adiabatically to one-sixteenth of its volume caused the temperature to rise to 1,000°F (540°C). Injected fuel would then ignite automatically without any electrical system. He obtained permission to use the laboratories of the Augsburg-Nuremburg Engine Works to build a single-cylinder prototype. On test it blew up, nearly killing Diesel. He proved his principle, however, and obtained financial support from the firm of Alfred Krupp. The design was refined until successful and in 1898 an engine was put on display in Munich with the result that many business people invested in Diesel and his engine and its worldwide production. Diesel made over a million dollars out of the invention. The heart of the engine is the fuel-injection pump, which operates at a pressure of c.500 psi (35 kg/cm). The first English patent for the engine was in 1892. The firms in Augsburg sent him abroad to sell his engine; he persuaded the French to adopt it for submarines, Germany having refused this. Diesel died in 1913 in mysterious circumstances, vanishing from the Harwich-Antwerp ferry.[br]Further ReadingE.Diesel, 1937, Diesel, derMensch, das Werk, das Schicksal, Hamburg. J.S.Crowther, 1959, Six Great Engineers, London.John F.Sandfort, 1964, Heat Engines.IMcNBiographical history of technology > Diesel, Rudolph Christian Karl
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11 опытный инженер
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12 опытный инженер
Русско-английский новый политехнический словарь > опытный инженер
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13 инженер
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14 главный инженер
Русско-английский словарь по информационным технологиям > главный инженер
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