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Influence of air heat sink geometry on the performance of thermoelectric cooling modules

Wanlie Zheng, Guheng Xu

Open publisher page 6 citations

Abstract

Maximizing the rate of heat removal from the hot side of thermoelectric cooling modules is necessary to obtain optimum performance for any thermoelectric cooling device. The thickness, shape, height of fins and number of fins per inch are all important variables in a finned heat sink design. The area and thickness of the heat sink base plate relative to the area of the thermoelectric module is also important. This paper provides a means to calculate the effectiveness of these variables as they affect heat dissipation from the hot side of a thermoelectric module operated in the cooling mode. Although the focus is on cooling devices, the results of this model should be equally useful in evaluating power-generating devices.

About this research paper

What this paper is about

Maximizing the rate of heat removal from the hot side of thermoelectric cooling modules is necessary to obtain optimum performance for any thermoelectric cooling device. The thickness, shape, height of fins and number of fins per inch are all important variables in a finned heat sink design. The area and thickness of the heat sink base plate relative to the area of the thermoelectric module is also important. This paper provides a means to calculate the effectiveness of these variables as they affect heat dissipation from the hot side of a thermoelectric module operated in the cooling mode. Although the focus is on cooling devices, the results of this model should be equally useful in evaluating power-generating devices.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Maximizing the rate of heat removal from the hot side of thermoelectric cooling modules is necessary to obtain optimum performance for any thermoelectric cooling device. The thickness, shape, height of fins and number of fins per inch are all important variables in a finned heat sink design. The area and thickness of the heat sink base plate relative to the area of the thermoelectric module is also important. This paper provides a means to calculate the effectiveness of these variables as they affect heat dissipation from the hot side of a thermoelectric module operated in the cooling mode. Although the focus is on cooling devices, the results of this model should be equally useful in evaluating power-generating devices.

Key concepts: Heat sink, Thermoelectric cooling, Thermoelectric effect, Materials science, Thermoelectric generator, Heat transfer, Air cooling, Mechanical engineering

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