Optimized performance of a thermoelectric heat pump with surface heat transfer and finite fins

L.J. Ybarrondo , J.E. Sunderland
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引用次数: 1

Abstract

Equations are presented for the steady-state temperature distribution, optimum heat pumping capacity, optimum coefficient of performance, and maximum no-load temperature difference for a single element thermoelectric heat pump with constant properties. Part of the longitudinal surface of the thermoelement is convectively cooled; fins of varying size exist at the hot and cold junctions and three different surface heat transfer coefficients can be arbitrarily selected, one for the hot junction fins, one for the fins at the cold junction, and one for the surface of the thermoelement. It is shown that surface heat transfer can be used to substantially increase the heat pumping capacity and, in some cases, the coefficient of performance is improved. The effect of fin size at the junctions of the thermoelement on performance is shown. An example is presented in which optimized performance curves are compared for devices using fins with infinite and finite conductance and where the thermoelements have varying amounts of surface heat transfer. The results given are presented in dimensionless form so that they apply for many different conditions. The results show that gains in heat pumping capacity of the order of 300–400 per cent are possible.

有限翅片表面传热热电热泵的优化性能
给出了具有恒定性能的单元件热电热泵稳态温度分布、最佳热泵容量、最佳性能系数和最大空载温差的方程。热元件的部分纵面对流冷却;热结和冷结处存在不同尺寸的翅片,可以任意选择三种不同的表面传热系数,一个用于热结鳍片,一个用于冷结鳍片,一个用于热元件表面。结果表明,表面换热可以大大增加热泵能力,在某些情况下,性能系数得到改善。给出了热敏元件连接处翅片尺寸对性能的影响。给出了一个优化性能曲线的例子,其中比较了使用具有无限和有限电导的鳍的器件,其中热元件具有不同的表面传热量。所给出的结果以无量纲形式呈现,因此它们适用于许多不同的情况。结果表明,热泵能力的提高有可能达到300 - 400%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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