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Effects of Non-Uniform Hot Junction Temperature Distribution on the Outputs of Thermoelectric Power Generation System

机译:非均匀热结温度分布对热电发电系统输出的影响

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摘要

Besides the material property and dimensional optimization of the thermoelectric module, temperature distribution uniformity on the hot junction of the module surface highly affects the outputs of the thermoelectric power generation system. This paper reports the findings on the effects of non-uniform input temperature distribution on the performance of thermoelectric power generation system. To assure the investigation, heat transfer model and finite element formulation of thermoelectric module having non-linear material property have been developed. In addition to the experimental data from a real thermoelectric device, thermoelectric power generation system modeling and simulation using finite element packaging ANSYS software was carried out. For the simulation, temperature dependent thermoelectric material properties such as the Seebeck coefficient, thermal and electrical conductivity have been considered. The experimental and simulation results indicate that keeping the temperature distribution uniform on the hot junction of the thermoelectric module results higher efficiency, higher power, voltage and current outputs than the non-uniform temperature distribution.
机译:除了热电模块的材料性能和尺寸优化之外,模块表面的热插拔的温度分布均匀性高度影响了热电发电系统的输出。本文报道了关于非均匀输入温度分布对热电发电系统性能的影响的研究结果。为了确保研究,已经开发了具有非线性材料性能的热电模块的传热模型和有限元制剂。除了来自真实热电装置的实验数据外,还进行了使用有限元包装ANSYS软件进行热电发电系统建模和仿真。对于模拟,已经考虑了温度相关的热电材料特性,例如塞贝克系数,热和导电性。实验性和仿真结果表明,在热电模块的热插拔上保持温度分布均匀,导致比非均匀温度分布更高的效率,更高的功率,电压和电流输出。

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