基于热电和蒸汽室技术相结合的热系统设计

A. Gurevich, Isaac Steiner, Enhui Huang
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引用次数: 3

摘要

热电系统效率较低是制约热电技术应用领域拓展的主要因素。提出并分析了热电和蒸汽室热技术相结合的效率提高途径。选择铝气室技术进行评价是因为它具有导热系数高、重量轻、工作温度范围宽等重要优点。为了确定铝气室与热电模块的有效导热系数,进行了一系列的实验和计算机模拟。结果表明,铝气室的有效导热系数为8363 W/m/K。对含蒸汽室的热电空调的性能进行了估计。结果表明,在相同的工作条件下,热电和蒸汽室技术(TVC系统)的组合使用显著提高了制冷量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of thermal systems based on combination of Thermoelectric and Vapor Chamber technologies
Relatively low efficiency of thermoelectric systems is a main limiting factor for extension of the Thermoelectric technology application fields. A prospective way of efficiency improvement based on combination of Thermoelectric and Vapor Chamber thermal technologies is shown and analyzed in the paper. Aluminum Vapor Chamber technology has been chosen for evaluations because of its important advantages: high thermal conductivity, light weight, wide working temperature range. A series of experiments and computer simulations has been performed to define effective thermal conductivity of Aluminum Vapor Chamber in conjunction with thermoelectric modules. It was found that Aluminum Vapor Chamber performs thermally like isotropic material with effective thermal conductivity of 8363 W/m/K. Performance of the thermoelectric air conditioners containing Vapor Chamber have been estimated. It was shown that use of combination of Thermoelectric and Vapor Chamber Technologies (TVC systems) provides significant improvement of cooling capacity at the same working conditions.
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