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Multiobjective analyses of physical dimension on the performance of a TEG–TEC system

机译:物理尺寸对TEG-TEC系统性能的多目标分析

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The influence of physical dimension of thermocouples on the performance of a thermoelectric cooler (TEC) driven by a thermoelectric generator (TEG) is investigated. The physical dimension parameters include the length and the cross-sectional area of thermocouples. The multiobjective analyses include stable electrical current, cooling capacity, coefficient of performance, maximum cooling capacity and maximum cooling temperature difference. A characteristic parameter, area length ratio, is adopted to describe the physical dimension of thermocouples, based on which the influences of the parameter are analyzed in three cases by detailed numerical examples. A practical example is proposed to show how to select appropriate thermoelectric modules (TEMs) to construct a high-performance TEG–TEC system satisfying different requests. The results show that an improvement in its performance is possible by optimizing internal physical dimension of thermocouples. The conclusion obtained could be used for the selection of TEMs and the design of TEG–TEC systems.
机译:研究了热电偶的物理尺寸对由热电发电机(TEG)驱动的热电冷却器(TEC)的性能的影响。物理尺寸参数包括热电偶的长度和横截面积。多目标分析包括稳定电流,冷却能力,性能系数,最大冷却能力和最大冷却温度差。采用面积长度比的特征参数来描述热电偶的物理尺寸,并在此基础上通过详细的数值示例分析了三种情况下该参数的影响。提出了一个实际的例子来说明如何选择合适的热电模块(TEM)来构建满足不同要求的高性能TEG-TEC系统。结果表明,通过优化热电偶的内部物理尺寸可以改善其性能。得到的结论可用于TEM的选择和TEG-TEC系统的设计。

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