半导体热电装置结构参数对发电特性影响的研究

Yan Chen, Wentao Wu, Chunyan Ma, Yinke Dou, Jinmeng Wu
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引用次数: 0

摘要

半导体热电技术越来越受到国内外研究者的关注。本文以半导体热电单元为研究对象,在温差(热源温度523K、冷源温度323K)不变的情况下,考虑到半导体材料性能的变化,利用ANSYS WORKBENCH数值模拟研究了结构参数(几何形状、热电偶的长度和截面边长对热电机组发电性能的影响。数值模拟结果表明:(1)峰值输出功率随热电偶长度的增加而先增大后减小,转换效率随热电偶长度的增加而减小;(ii)输出功率随截面边长的增加而增加,而转换效率下降缓慢;(iii)随着倒角的增大,输出功率减小,转换效率提高。研究结果可为热电发电机的负荷匹配、理论分析和结构优化设计提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Influence of Structural Parameters of Semiconductor Thermoelectric Units on Power Generation Characteristics
Semiconductor thermoelectric technology has received increasing attention from researchers at home and abroad. In this paper, the semiconductor thermoelectric unit is taken as the research object, when the temperature difference (heat source temperature 523K and cold source temperature 323K) remains unchanged, considering the variable properties of semiconductor materials, ANSYS WORKBENCH numerical simulation is used to study the influence of structural parameters (geometrical shape, length and cross-sectional side length) of thermoelectric couple on the power generation performance of the thermoelectric unit. The results of numerical simulation show that (i) The peak output power has the maximum value, which increases first and then decreases with the increase of the thermoelectric couple length, and the conversion efficiency decreases with the increase of the thermoelectric couple length; (ii) The output power increases with the increase of cross-sectional side length, while the conversion efficiency decreases slowly; (iii) With the increase of chamfer, the output power decreases and the conversion efficiency increases. The findings of this work may provide a guide to the load matching, theoretical analysis and configuration optimization design of thermoelectric generators.
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