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Optimum design on the performance parameters of a two-stage combined semiconductor thermoelectric heat pump

机译:两级组合式半导体热电热泵性能参数的优化设计

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摘要

A new cycle model of a two-stage combined semiconductor thermoelectric device that is used as a heat pump is established. The influence of Joule heating due to the electric current and heat leak due to the temperature difference between the hot and the cold junctions on the performance of the system is investigated. The general expressions of three important performance parameters, the coefficient of performance (COP), the rate of heat pumping and the power input, are derived. The maximum COP and the corresponding parameters are calculated. The internal structure parameter of the thermoelectric device is optimized. The reasonable range of the electric current is determined. The results obtained here are compared with those of a single-stage semiconductor thermoelectric heat pump. The advantages of two-stage combined thermoelectric heat pumps are expounded. Moreover, it is shown that when the range of the temperatures between the heated space and the low-temperature heat reservoir is large, a single-stage thermoelectric heat pump will lose its function, so a two-stage combined thermoelectric heat pump must be used.
机译:建立了用作热泵的两级组合半导体热电器件的新循环模型。研究了由于电流引起的焦耳热以及由于冷端和热端之间的温差导致的热泄漏对系统性能的影响。推导了三个重要性能参数(性能系数(COP),热泵抽速和功率输入)的一般表达式。计算最大COP和相应的参数。优化了热电装置的内部结构参数。确定电流的合理范围。将此处获得的结果与单级半导体热电热泵的结果进行比较。阐述了两级组合式热电热泵的优点。而且,显示出当加热空间与低温储热器之间的温度范围较大时,单级热电热泵将失去其功能,因此必须使用两级组合热电热泵。 。

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