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An experimental investigation of a thermoelectric power generation system with different cold-side heat dissipation

机译:具有不同冷侧散热的热电发电系统的实验研究

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Thermoelectric generation technology has attracted increasing attention because of its promising applications. In this work, the heat transfer characteristics and the performance of a thermoelectric generator (TEG) with different cold-side heat dissipation intensity has been studied. By fixing the hot-side temperature of TEG, the effects of various external conditions including the flow rate and the inlet temperature of the cooling water flowing through the cold-sided heat sink have been investigated detailedly. It was showed that the output power and the efficiency of TEG increased with temperature different enlarged, whereas the efficiency of TEG reduced with flow rate increased. It is proposed that more heat taken by the cooling water is attributed to the efficiency decrease when the flow rate of the cooling water is increased. This study would provide fundamental understanding for the design of more refined thermoelectric generation systems.
机译:由于其有前途的应用,热电发电技术引起了越来越多的关注。在这项工作中,研究了具有不同冷侧散热强度的热传递特性和热电发电机(TEG)的性能。通过固定TEG的热侧温度,详细研究了包括流过冷散热水槽的冷却水的流速和入口温度的各种外部条件的影响。结果表明,TEG的输出功率和效率随温度的增大而增加,而TEG的效率随流速的增加而增加。提出,当冷却水的流速增加时,冷却水采取的更多热量归因于效率降低。本研究将为更精细的热电发电系统设计提供基础知识。

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