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  2. Heat sink - Wikipedia

    en.wikipedia.org/wiki/Heat_sink

    A heat sink (also commonly spelled heatsink, [1]) is a passive heat exchanger that transfers the heat generated by an electronic or a mechanical device to a fluid medium, often air or a liquid coolant, where it is dissipated away from the device, thereby allowing regulation of the device's temperature.

  3. Fin (extended surface) - Wikipedia

    en.wikipedia.org/wiki/Fin_(extended_surface)

    One-piece finned heat sinks are produced by ... to have a heat flux of zero. Therefore, ... throughout the fin is at the base temperature would increase the heat ...

  4. Second law of thermodynamics - Wikipedia

    en.wikipedia.org/wiki/Second_law_of_thermodynamics

    Here, the engine 1 is the one cycle engine, and the engines 2 and 3 make the two cycle engine where there is the intermediate reservoir at T 2. We also have used the fact that the heat q 2 {\displaystyle q_{2}} passes through the intermediate thermal reservoir at T 2 {\displaystyle T_{2}} without losing its energy.

  5. Heat pump and refrigeration cycle - Wikipedia

    en.wikipedia.org/wiki/Heat_pump_and...

    Thermodynamic heat pump cycles or refrigeration cycles are the conceptual and mathematical models for heat pump, air conditioning and refrigeration systems. [1] A heat pump is a mechanical system that transmits heat from one location (the "source") at a certain temperature to another location (the "sink" or "heat sink") at a higher temperature. [2]

  6. Thermal management (electronics) - Wikipedia

    en.wikipedia.org/wiki/Thermal_management...

    Heat sinks function by efficiently transferring thermal energy ("heat") from an object at high temperature to a second object at a lower temperature with a much greater heat capacity. This rapid transfer of thermal energy quickly brings the first object into thermal equilibrium with the second, lowering the temperature of the first object ...

  7. Heat equation - Wikipedia

    en.wikipedia.org/wiki/Heat_equation

    Following this observation, one may interpret the heat equation as imposing an infinitesimal averaging of a function. Given a solution of the heat equation, the value of u(x, t + τ) for a small positive value of τ may be approximated as ⁠ 1 / 2n ⁠ times the average value of the function u(⋅, t) over a sphere of very small radius ...

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  9. Heat capacity rate - Wikipedia

    en.wikipedia.org/wiki/Heat_capacity_rate

    A hot fluid's heat capacity rate can be much greater than, equal to, or much less than the heat capacity rate of the same fluid when cold. In practice, it is most important in specifying heat-exchanger systems, wherein one fluid usually of dissimilar nature is used to cool another fluid such as the hot gases or steam cooled in a power plant by a heat sink from a water source—a case of ...