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Experimental study on the influence of porous foam metal filled in the core flow region on the performance of thermoelectric generators

机译:堆芯流动区填充多孔泡沫金属对热电发电机性能影响的实验研究

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Semiconductor thermoelectric generator technology is a new type of power generation technology. The use of semiconductor thermoelectric power generation technology for automobile exhaust heat recovery and utilization can effectively improve energy efficiency. In this study, a test system is set up to simulate the automobile exhaust, and the effect of core flow heat-transfer enhancement on the performance of the thermoelectric generator is investigated using thermoelectric module Bi2Te3 to recover the waste heat from automobile exhaust and convert it into electrical energy. The results show that filling foam metal can significantly improve the performance of the generator. The convective heat-transfer coefficient of the channel increases by four times, and the output power of the thermoelectric generator is doubled when the intake flow rate is 120 m(3)/h, the inlet temperature is 300 degrees C, the pore density of the foam metal is 20 pores per inch, and the filling rate of the foam metal is 75%. In addition, the improvement in the performance of the generator is different under different intake air flows, different foam-metal filling rates, and different pore densities. (C) 2017 Elsevier Ltd. All rights reserved.
机译:半导体热电发电机技术是一种新型的发电技术。将半导体热电发电技术用于汽车尾气的回收利用可以有效提高能源效率。在这项研究中,建立了一个模拟汽车尾气的测试系统,并使用热电模块Bi2Te3从汽车尾气中回收废热并将其转化,从而研究了核心流传热增强对热电发电机性能的影响。转化为电能。结果表明,填充泡沫金属可以显着提高发电机的性能。当入口流速为120 m(3)/ h,入口温度为300摄氏度,孔密度为时,通道的对流传热系数增加四倍,热电发电机的输出功率增加一倍。泡沫金属为每英寸20个孔,泡沫金属的填充率为75%。另外,在不同的进气流量,不同的泡沫金属填充率和不同的孔密度下,发生器性能的提高也不同。 (C)2017 Elsevier Ltd.保留所有权利。

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