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1 lineare Umsetzung
линейное преобразование
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[IEV number 314-02-04]EN
linear conversion
conversion for which the quotient of each change in the output value by the corresponding change in the input value is intended to be constant
[IEV number 314-02-04]FR
conversion linéaire
conversion telle que le quotient de chaque changement de la valeur de sortie par le changement correspondant de la valeur d'entrée soit constant
[IEV number 314-02-04]Тематики
- измерение электр. величин в целом
EN
DE
FR
Немецко-русский словарь нормативно-технической терминологии > lineare Umsetzung
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2 nichtlineare Umsetzung
нелинейное преобразование
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[IEV number 314-02-05]EN
non-linear conversion
conversion for which the quotient of each change in the output value to the corresponding change in the input value is not constant
[IEV number 314-02-05]FR
conversion non linéaire
conversion telle que le quotient de chaque changement de la valeur de sortie par le changement correspondant de la valeur d'entrée n'est pas constant
[IEV number 314-02-05]Тематики
- измерение электр. величин в целом
EN
DE
FR
Немецко-русский словарь нормативно-технической терминологии > nichtlineare Umsetzung
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3 Umformungskoeffizient
коэффициент преобразования
Модуль передаточной функции преобразователя
[Система неразрушающего контроля. Виды (методы) и технология неразрушающего контроля. Термины и определения (справочное пособие). Москва 2003 г.]
коэффициент преобразования
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[IEV number 314-04-02]EN
conversion coefficient
relationship of the value of the measurand to the corresponding value of the output signal
[IEV number 314-04-02]FR
rapport de conversion
relation de la valeur du mesurande à la valeur correspondante du signal de sortie
[IEV number 314-04-02]Тематики
- измерение электр. величин в целом
EN
DE
FR
Немецко-русский словарь нормативно-технической терминологии > Umformungskoeffizient
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4 Umsetzungskoeffizient
коэффициент преобразования
Модуль передаточной функции преобразователя
[Система неразрушающего контроля. Виды (методы) и технология неразрушающего контроля. Термины и определения (справочное пособие). Москва 2003 г.]
коэффициент преобразования
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[IEV number 314-04-02]EN
conversion coefficient
relationship of the value of the measurand to the corresponding value of the output signal
[IEV number 314-04-02]FR
rapport de conversion
relation de la valeur du mesurande à la valeur correspondante du signal de sortie
[IEV number 314-04-02]Тематики
- измерение электр. величин в целом
EN
DE
FR
Немецко-русский словарь нормативно-технической терминологии > Umsetzungskoeffizient
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5 Ölförderung
производство нефти
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[ http://www.eionet.europa.eu/gemet/alphabetic?langcode=en]EN
oil production (chain)
The petroleum industry is a complex industry utilizing complex combination of interdependent operations engaged in the storage and transportation, separation of crude molecular constituents, molecular cracking, molecular rebuilding and solvent finishing to produce petrochemical products. Treatment may involve oil separation, precipitation, adsorption, and biological treatment. The refining operations can be divided into four major steps: separation, conversion, treating, and blending. The crude oil is first separated into selected fractions (gasoline, kerosine, fuel oil, etc.). Some of the less valuable products such as heavy naphtha, are converted to products with a greater sale value such as gasoline. The final step is the blending of the refined base stocks with each other and various additive to meet final product specifications. The major pollutants emitted are sulphur oxides, nitrogen oxides, hydrocarbons, carbon monoxide, and malodorous materials. (Source: PZ)
[http://www.eionet.europa.eu/gemet/alphabetic?langcode=en]Тематики
EN
DE
FR
Немецко-русский словарь нормативно-технической терминологии > Ölförderung
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6 hydroelektrische Energie
энергия ГЭС
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[ http://www.eionet.europa.eu/gemet/alphabetic?langcode=en]EN
hydroelectric energy
The free renewable source of energy provided by falling water that drives the turbines. Hydropower is the most important of the regenerable energy sources because of its highest efficiency at the energy conversion. There are two types of hydroelectric power plants: a) run-of-river power plants for the use of affluent water; b) storage power plants (power stations with reservoir) where the influx can be regulated with the help of a reservoir. Mostly greater differences in altitudes are being used, like mountain creeks. Power stations with reservoirs are generally marked by barrages with earth fill dam or concrete dams. Though hydropower generally can be called environmentally acceptable, there exist also some problems: a) change of groundwater level and fill up of the river bed with rubble. b) Risk of dam breaks. c) Great demand for land space for the reservoir. d) Diminution, but partly also increase of value of recreation areas. As the hydropowers of the world are limited, the world energy demand however is rising, finally the share of hydropower will decrease. (Source: PORT / PHC / PZ)
[http://www.eionet.europa.eu/gemet/alphabetic?langcode=en]Тематики
EN
DE
FR
Немецко-русский словарь нормативно-технической терминологии > hydroelektrische Energie
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