Heat engine
A heat engine performs the conversion of heat energy to work by exploiting the temperature gradient between a hot "source" and a cold "sink". Heat is transferred to the sink from the source, and in this process some of the heat is converted into work. The theoretical maximum efficiency of any heat engine is defined by the Carnot Cycle. The carnot heat engine (the ideal imaginary heat engine) has an efficiency equal to (T1 - T2)/T1 where T1 is the absolute temperature of the hot source and T2 that of the cold sink. Examples of everyday heat engines include: the steam engine, the diesel engine, and the gasoline (petrol) engine in an automobile. All of these familiar heat engines are powered by the expansion of heated gases. The general surroundings are the heat sink, providing relatively cool gases which when heated, expand rapidly to drive the mechanical motion of the engine. Examples of heat engines:
- Vapor power cycles. In these cycles and engines the working fluids are gases and liquids:
- *Carnot cycle (Carnot heat engine)
- *Rankine cycle (steam engine)
- *Regenerative cycle Are more efficient than Rankine cycle.
- Gas power cycles. In these cycles and engines the working fluid are always like gas:
- *Brayton cycle or Joule cycle (gas turbine)
- *Ericsson Cycle
- *Stirling cycle (Stirling engine)
- *Internal combustion engine (ICE):
- **Otto cycle (eg. Gasoline/Petrol engine, high-speed diesel engine)
- **Diesel cycle (eg. low-speed diesel engine)
- **Atkinson Cycle
- **Lenoir cycle (eg pulse jet engine)
- Direct Conversion
- * thermoelectric (Peltier-Seebeck effect)
- * thermionic emission
- Refrigeration
- *Carnot refrigerator
- *Vuilleumier refrigerator
- *Absorption refrigerator
- *Heat pump
See also
External links
- Heat Engine
- Webarchive backup: Refrigeration Cycle Citat: "...The refrigeration cycle is basically the Rankine cycle run in reverse..."
- Red Rock Energy Solar Heliostats: Heat Engine Projects Citat: "...Choosing a Heat Engine..."
eat engine
Hat engine
Het engine
Hea engine
Heatengine
Heat ngine
Heat egine
Heat enine
Heat engne
Heat engie
Heat engin
eHat engine
Haet engine
Heta engine
Hea tengine
Heate ngine
Heat negine
Heat egnine
Heat enigne
Heat engnie
Heat engien
Heat engin
HHeat engine
Heeat engine
Heaat engine
Heatt engine
Heat engine
Heat eengine
Heat enngine
Heat enggine
Heat engiine
Heat enginne
Heat enginee
eat engine
hat engine
het engine
hea engine
heatengine
heat ngine
heat egine
heat enine
heat engne
heat engie
heat engin
ehat engine
haet engine
heta engine
hea tengine
heate ngine
heat negine
heat egnine
heat enigne
heat engnie
heat engien
heat engin
hheat engine
heeat engine
heaat engine
heatt engine
heat engine
heat eengine
heat enngine
heat enggine
heat engiine
heat enginne
heat enginee