thermal efficiency - перевод на русский
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thermal efficiency - перевод на русский

PERFORMANCE MEASURE OF A DEVICE THAT USES THERMAL ENERGY, EXPRESSED AS THE RATIO OF WORK DONE OVER THERMAL ENERGY USED
Thermodynamic efficiency; Thermal efficiencies; Ηth
  • Output (mechanical) energy is always lower than input energy

thermal efficiency         

строительное дело

термический кпд, кпд тепловой машины

нефтегазовая промышленность

тепловой коэффициент полезного действия

thermal efficiency         
термический кпд, кпд тепловой машины
spectrum efficiency         
INFORMATION RATE THAT CAN BE TRANSMITTED OVER A GIVEN BANDWIDTH
Spectrum efficiency; System spectrum efficiency; System spectral efficiency; Link spectral efficiency; Bandwidth efficiency; BandWidth efficiency; Area spectral efficiency; Spectral efficiency comparison table; Bit/s/Hz; Bits/s/Hz; (bit/s)/Hz; (bit/s)/Hertz; Modulation efficiency; Channel spectral efficiency
спектральная эффективность (PLMN)

Определение

thermal efficiency
¦ noun the efficiency of a heat engine measured by the ratio of the work done by it to the heat supplied to it.

Википедия

Thermal efficiency

In thermodynamics, the thermal efficiency ( η t h {\displaystyle \eta _{\rm {th}}} ) is a dimensionless performance measure of a device that uses thermal energy, such as an internal combustion engine, steam turbine, steam engine, boiler, furnace, refrigerator, ACs etc.

For a heat engine, thermal efficiency is the ratio of the net work output to the heat input; in the case of a heat pump, thermal efficiency (known as the coefficient of performance) is the ratio of net heat output (for heating), or the net heat removed (for cooling) to the energy input (external work). The efficiency of a heat engine is fractional as the output is always less than the input while the COP of a heat pump is more than 1. These values are further restricted by the Carnot theorem.

Примеры употребления для thermal efficiency
1. The IGCC technology, which converts coal into gas to firepower plants, gives higher thermal efficiency than conventional plants, he added.
2. These include moving ahead faster with the extraction of carbon from coal (with the prospect of a vast market for this technology in China and India); expanding the small–scale generation of electricity, thus doubling thermal efficiency by making use of the waste heat and avoiding transmission losses; and fixing a much larger objective than 5 per cent for the use of biofuels in petrol.
3. June 6 2006 03:00 ×Energy demand patterns will change as summers become hotter, leading to more demand for air conditioning, and winters become milder, reducing demand for heating ×Plant availability may be affected as routine maintenance, currently done in low–demand summer months, is scheduled in periods of higher demand ×Fossil fuel plants, particularly gas turbines, will operate less efficiently as average temperatures increase, because their thermal efficiency is adversely affected by both lower air density and higher temperatures ×Infrastructure may be affected as patterns of subsidence, flooding, icing damage and strong winds change ×Coastal power stations will become more vulnerable to sea–level rise and storm surges ×Cooling systems may be adversely affected by reduced rainfall and the reduction in river and stream flow
Как переводится thermal efficiency на Русский язык