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首页> 外文期刊>Journal of Electronic Materials >Optimum Design, Heat Transfer and Performance Analysis for Thermoelectric Energy Recovery from the Engine Exhaust System
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Optimum Design, Heat Transfer and Performance Analysis for Thermoelectric Energy Recovery from the Engine Exhaust System

机译:从发动机排气系统中热电能量回收的最佳设计,传热和性能分析

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摘要

Thermoelectric waste heat recovery can improve the thermal efficiency of internal combustion engines and reduce CO2 emissions. In this study, a mathematical optimization using a genetic algorithm method is applied to obtain the optimal fin parameters of a rectangular offset-strip fin heat exchanger, used with an automotive thermoelectric generator (TEG) system. Three fin parameters are considered (fin spacing, fin thickness and fin height). Their effect on the exhaust pumping power, the exhaust heat transfer coefficient and the system performance is explored. The main goal is to maximize the net power output of the system. Results show that fin spacing has the most significant effect on the system performance. Moreover, when fin spacing is reduced below 0.5mm, a negative net power output is obtained. By comparing the performance of stainless-steel (SS) and copper heat exchangers, it was found that the SS heat exchanger requires smaller fin spacing and fin height, which induces a higher pressure drop. TEGs with higher maximum operating temperature will allow further utilization of the exhaust heat, without a decline in performance due to overheating. Finally, a maximum net power output of 553.3W is achieved using the copper heat exchanger and commercial bismuth-telluride (Bi2Te3) thermoelectric modules.
机译:热电废热回收可以提高内燃机的热效率,减少二氧化碳排放。在该研究中,应用了使用遗传算法方法的数学优化来获得与汽车热电发电机(TEG)系统一起使用的矩形偏移条翅片热交换器的最佳翅片参数。考虑三个鳍片参数(鳍间距,翅片厚度和翅片高度)。探讨了对排气泵浦功率,排气传热系数和系统性能的影响。主要目标是最大化系统的净功率输出。结果表明,鳍间距对系统性能产生最大的影响。此外,当翅片间距降低0.5mm时,获得负净功率输出。通过比较不锈钢(SS)和铜热交换器的性能,发现SS热交换器需要较小的翅片间距和翅片高度,这引起更高的压降。具有较高工作温度的TEGS将允许进一​​步利用废热,而不会因过热而导致的性能下降。最后,使用铜热交换器和商业铋 - 碲化物(Bi2Te3)热电模块实现了553WW的最大净功率输出。

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