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Performance optimization for two-stage thermoelectric refrigerator system driven by two-stage thermoelectric generator

机译:由两级热电发电机驱动的两级热电制冷系统的性能优化

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摘要

A new configuration of combined thermoelectric device, two-stage thermoelectric refrigerator driven by two-stage thermoelectric generator, is proposed in this paper. The thermodynamic model of the combined device is built by using non-equilibrium thermodynamic theory. The analytical formulae for the stable working electrical current, the cooling load versus the working electrical current, and the coefficient of performance (COP) versus the working electrical current of the combined device are derived. For the fixed total number of thermoelectric elements of the combined device, the allocations of the thermoelectric element pairs among the two thermoelectric generators and the two thermoelectric refrigerators are optimized for maximum cooling load and COP, respectively. The influences of the heat source temperature of the two-stage thermoelectric generator and the heat source (cooling space) temperature of the two-stage thermoelectric refrigerator on the optimal performance of the combined thermoelectric device are analyzed by detailed numerical examples.
机译:提出了一种新型的组合式热电装置,即由两级热电发电机驱动的两级热电制冷机。利用非平衡热力学理论建立了组合装置的热力学模型。推导了组合设备的稳定工作电流,冷却负荷与工作电流的关系以及性能系数(COP)与工作电流的关系的分析公式。对于组合设备中固定数量的热电元件,两个热电发电机和两个热电致冷器之间的热电元件对的分配分别针对最大冷却负载和COP进行了优化。通过详细的数值算例分析了两级热电发生器的热源温度和两级热电制冷器的热源(冷却空间)温度对组合式热电装置的最佳性能的影响。

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