Economic efficiencyIn microeconomics, economic efficiency, depending on the context, is usually one of the following two related concepts: Allocative or Pareto efficiency: any changes made to assist one person would harm another. Productive efficiency: no additional output of one good can be obtained without decreasing the output of another good, and production proceeds at the lowest possible average total cost. These definitions are not equivalent: a market or other economic system may be allocatively but not productively efficient, or productively but not allocatively efficient.
Seasonal energy efficiency ratioIn the United States, the efficiency of air conditioners is often rated by the seasonal energy efficiency ratio (SEER) which is defined by the Air Conditioning, Heating, and Refrigeration Institute, a trade association, in its 2008 standard AHRI 210/240, Performance Rating of Unitary Air-Conditioning and Air-Source Heat Pump Equipment. A similar standard is the European seasonal energy efficiency ratio (ESEER). The SEER rating of a unit is the cooling output during a typical cooling-season divided by the total electric energy input during the same period.
Turbine à gaz à cycle fermévignette|redresse|Schéma d'une turbine à gaz à cycle ferméEnsemble compresseur C et turbine Téchangeur de chaleur haute température wéchangeur de chaleur basse température ʍcharge mécanique ~, par exemple générateur électrique Une turbine à gaz à cycle fermé (en anglais: Closed-cycle gas turbine, ou CCGT) est une turbine qui utilise un gaz (par exemple de l'air, de l'azote, de l'hélium, de l'argon, etc.) comme fluide de travail dans le cadre d'un système thermodynamique fermé. La chaleur est fournie par une source externe.
Turbinevignette|alt=|Rotors de turbines à vapeur de la centrale nucléaire de Philippsburg. Une turbine est un dispositif rotatif convertissant partiellement l'énergie interne d'un fluide, liquide (comme l'eau) ou gazeux (vapeur, air, gaz de combustion), en énergie mécanique au moyen d'aubes disposées sur un arbre tournant à grande vitesse. L'énergie entrante du fluide est caractérisée notamment par sa vitesse, sa pression, son enthalpie.
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.
Fuel efficiencyFuel efficiency is a form of thermal efficiency, meaning the ratio of effort to result of a process that converts chemical potential energy contained in a carrier (fuel) into kinetic energy or work. Overall fuel efficiency may vary per device, which in turn may vary per application, and this spectrum of variance is often illustrated as a continuous . Non-transportation applications, such as industry, benefit from increased fuel efficiency, especially fossil fuel power plants or industries dealing with combustion, such as ammonia production during the Haber process.
Flash evaporationFlash evaporation (or partial evaporation) is the partial vapor that occurs when a saturated liquid stream undergoes a reduction in pressure by passing through a throttling valve or other throttling device. This process is one of the simplest unit operations. If the throttling valve or device is located at the entry into a pressure vessel so that the flash evaporation occurs within the vessel, then the vessel is often referred to as a flash drum.
Chaleur de récupérationLa chaleur de récupération, ou chaleur fatale, est l'énergie thermique émise par un procédé dont elle n'est pas la finalité. Son exploitation demande le développement d'une technologie complémentaire. Il s'agit généralement d'améliorer à la fois l'efficacité énergétique et l'impact environnemental d'un système produisant, de manière annexe, de la chaleur. La chaleur de récupération, ou chaleur fatale, est la (définition retenue en France par la Programmation pluriannuelle de l'énergie).
Working fluid selectionHeat engines, refrigeration cycles and heat pumps usually involve a fluid to and from which heat is transferred while undergoing a thermodynamic cycle. This fluid is called the working fluid. Refrigeration and heat pump technologies often refer to working fluids as refrigerants. Most thermodynamic cycles make use of the latent heat (advantages of phase change) of the working fluid. In case of other cycles the working fluid remains in gaseous phase while undergoing all the processes of the cycle.
Échangeur de chaleur coque et tubedroite|vignette|260x260px|Simulation de circulation de fluide dans un échangeur à tubes et calandre. L'entrée de la calandre est au fond en haut et la sortie au premier plan en bas. Un échangeur de chaleur coque et tube, ou échangeur thermique à tubes et à calandre (en anglais shell and tube heat exchanger), est un type d'échangeurs de chaleur. Ce type d'échangeur de chaleur consiste en une coque (ou calandre, un grand récipient sous pression) renfermant un faisceau de tubes.