首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Performance of a looped thermoacoustic engine with multiple loads capable of utilizing heat source below 200 degrees C
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Performance of a looped thermoacoustic engine with multiple loads capable of utilizing heat source below 200 degrees C

机译:具有多个负载的环状热声发动机的性能,能够利用低于200摄氏度的热源

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摘要

Thermoacoustic engine is a promising approach to low-grade heat recovery with the outstanding characteristics of high reliability and environmental friendliness. In this work, systematic experiments were conducted on a three-stage looped thermoacoustic engine to drive one to five loads, with the hot temperatures below 200 degrees C. The R-C load method was adopted to measure the output acoustic power. In the experiments, the highest thermal efficiency achieved is 9.6% at the hot temperature of 195 degrees C when five loads are installed, and the corresponding relative Carnot efficiency is 25.6%. The highest relative Carnot efficiency is 26.4%, achieved at the hot temperature of 173 degrees C in the case with four loads. The thermoacoustic engine was also modeled to discuss the mechanism for the efficiency gain by adding the quantity of loads. The results show that the increased quantity of loads can reduce the proportion of acoustic power loss and increase the proportion of output acoustic power. This work will be instructive for increasing the thermal efficiency of the low-grade heat driven thermoacoustic engine systems.
机译:热声发动机是一种有希望的低级热回收方法,具有高可靠性和环境友好性的出色特性。在这项工作中,在三级环状热声发动机上进行系统实验,以驱动一到五个负载,热温低于200℃。采用R-C负荷法测量输出声电源。在实验中,当安装五个载荷时,在195摄氏度的热温下实现的最高热效率为9.6%,相应的相对圆形效率为25.6%。最高的相对圆形效率为26.4%,在具有四个载荷的情况下在173摄氏度的热温度下实现。热声发动机还建模以通过增加负载量来讨论效率增益的机制。结果表明,增加的负载量可以减少声功率损耗的比例,并增加输出声功率的比例。这项工作将是提高低级热驱动热声发动机系统的热效率的有益效率。

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