Transfert thermiquevignette|alt=Autour d'un feu, des mains reçoivent sa chaleur par rayonnement (sur le côté), par convection (au-dessus de ses flammes) et par conduction (à travers un ustensile en métal).|Les modes de transfert thermique ( en anglais pour « rayonnement »). Un transfert thermique, appelé plus communément chaleur, est l'un des modes d'échange d'énergie interne entre deux systèmes, l'autre étant le travail : c'est un transfert d'énergie thermique qui s'effectue hors de l'équilibre thermodynamique.
Nucleate boilingIn fluid thermodynamics, nucleate boiling is a type of boiling that takes place when the surface temperature is hotter than the saturated fluid temperature by a certain amount but where the heat flux is below the critical heat flux. For water, as shown in the graph below, nucleate boiling occurs when the surface temperature is higher than the saturation temperature (TS) by between . The critical heat flux is the peak on the curve between nucleate boiling and transition boiling.
Thermal emittanceThermal emittance or thermal emissivity () is the ratio of the radiant emittance of heat of a specific object or surface to that of a standard black body. Emissivity and emittivity are both dimensionless quantities given in the range of 0 to 1, representing the comparative/relative emittance with respect to a blackbody operating in similar conditions, but emissivity refers to a material property (of a homogeneous material), while emittivity refers to specific samples or objects.
Kilocalorie per moleThe kilocalorie per mole is a unit to measure an amount of energy per number of molecules, atoms, or other similar particles. It is defined as one kilocalorie of energy (1000 thermochemical gram calories) per one mole of substance. The unit symbol is written kcal/mol or kcal⋅mol−1. As typically measured, one kcal/mol represents a temperature increase of one degree Celsius in one liter of water (with a mass of 1 kg) resulting from the reaction of one mole of reagents. In SI units, one kilocalorie per mole is equal to 4.
Rayonnement thermiqueLe rayonnement thermique est un rayonnement électromagnétique généré par l'agitation thermique de particules dans la matière quel que soit l'état de celle-ci : solide, liquide ou gaz. Le spectre de ce rayonnement s'étend du domaine micro-ondes à l'ultra-violet. L'expression est également utilisée pour des phénomènes beaucoup plus énergétiques tels que rencontrés dans les plasmas, qui sont la source de rayonnement X. Ce phénomène conduit au rayonnement du corps noir lorsque l'interaction matière - rayonnement est réversible et importante.
Radiative equilibriumRadiative equilibrium is the condition where the total thermal radiation leaving an object is equal to the total thermal radiation entering it. It is one of the several requirements for thermodynamic equilibrium, but it can occur in the absence of thermodynamic equilibrium. There are various types of radiative equilibrium, which is itself a kind of dynamic equilibrium. Equilibrium, in general, is a state in which opposing forces are balanced, and hence a system does not change in time.
Critical heat fluxIn the study of heat transfer, critical heat flux (CHF) is the heat flux at which boiling ceases to be an effective form of transferring heat from a solid surface to a liquid. Boiling systems are those in which liquid coolant absorbs energy from a heated solid surface and undergoes a change in phase. In flow boiling systems, the saturated fluid progresses through a series of flow regimes as vapor quality is increased. In systems that utilize boiling, the heat transfer rate is significantly higher than if the fluid were a single phase (i.
PhonovoltaicA phonovoltaic (pV) cell converts vibrational (phonons) energy into a direct current much like the photovoltaic effect in a photovoltaic (PV) cell converts light (photon) into power. That is, it uses a p-n junction to separate the electrons and holes generated as valence electrons absorb optical phonons more energetic than the band gap, and then collects them in the metallic contacts for use in a circuit. The pV cell is an application of heat transfer physics and competes with other thermal energy harvesting devices like the thermoelectric generator.
Loi de refroidissement de Newtonvignette|250px|Graphe de refroidissement (). La loi de refroidissement de Newton, formulée par Isaac Newton, énonce que le taux de perte de chaleur d'un corps est proportionnel à la différence de température entre le corps et le milieu environnant. Cette formulation n'est pas très précise et présuppose un milieu et un corps homogènes ainsi qu'un milieu à température constante. On peut dériver cette loi d'après une décroissance exponentielle. Si est la température du corps, elle vérifie l'équation différentielle : avec une constante positive dépendante du milieu environnant.
Passive daytime radiative coolingPassive daytime radiative cooling (PDRC) is a renewable cooling method proposed as a solution to global warming of enhancing terrestrial heat flow to outer space through the installation of thermally-emissive surfaces on Earth that require zero energy consumption or pollution. Because all materials in nature absorb more heat during the day than at night, PDRC surfaces are designed to be high in solar reflectance (to minimize heat gain) and strong in longwave infrared (LWIR) thermal radiation heat transfer through the atmosphere's infrared window (8–13 μm) to cool temperatures during the daytime.