CombustionLa combustion est une réaction exothermique d'oxydoréduction. Lorsque la combustion est vive, elle se traduit par une flamme ou par une explosion (déflagration, voire détonation si le front de flamme dépasse la vitesse du son). La combustion de la biomasse et des carburants est la principale source de pollution de l'air, avec des effets cancérigènes, reprotoxiques et cardiovasculaires notamment. vignette|upright|Combustion du bois : vive avec flammes et lente avec braises incandescentes.
Cycle combinéUn cycle combiné (CC), expression déclinée en CCPP (de l'anglais combined cycle power plant) ou CCGT (de l'anglais combined cycle gas turbine), est un mode combiné de production d'énergie ou, par métonymie, une centrale électrique utilisant plus d'un cycle thermodynamique. Une turbine à combustion transforme une partie de l’énergie fournie par le combustible en énergie mécanique pouvant ensuite être convertie en électricité au moyen d'un générateur électrique.
Adiabatic flame temperatureIn the study of combustion, the adiabatic flame temperature is the temperature reached by a flame under ideal conditions. It is an upper bound of the temperature that is reached in actual processes. There are two types adiabatic flame temperature: constant volume and constant pressure, depending on how the process is completed. The constant volume adiabatic flame temperature is the temperature that results from a complete combustion process that occurs without any work, heat transfer or changes in kinetic or potential energy.
Stirling cycleThe Stirling cycle is a thermodynamic cycle that describes the general class of Stirling devices. This includes the original Stirling engine that was invented, developed and patented in 1816 by Robert Stirling with help from his brother, an engineer. The ideal Otto and Diesel cycles are not totally reversible because they involve heat transfer through a finite temperature difference during the irreversible isochoric/isobaric heat-addition and heat-rejection processes.
Second soundSecond sound is a quantum mechanical phenomenon in which heat transfer occurs by wave-like motion, rather than by the more usual mechanism of diffusion. Its presence leads to a very high thermal conductivity. It is known as "second sound" because the wave motion of entropy and temperature is similar to the propagation of pressure waves in air (sound). The phenomenon of second sound was first described by Lev Landau in 1941.