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Study of a Liquid-Piston Travelling-Wave Thermoacoustic Heat Engine with Different Working Gases

机译:不同工作气体的液体活塞行波热声热机研究

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摘要

Thermoacoustic technology is becoming increasingly attractive because of its high reliability and environmental friendliness.The double-acting travelling-wave thermoacoustic heat engine using liquid pistons,proposed by our group,can improve the thermoacoustic conversion efficiency further and yield a more compact engine.In this study,three different environmentally friendly working gases,helium,nitrogen and carbon dioxide,were studied experimentally,primarily in terms of thermoacoustic conversion parameters,including the onset temperature,the resonant frequency,and the pressure ratio,under different working mean pressures.Results show that the working gas significantly influences thermoacoustic performance.They also suggest a very encouraging application prospect for this novel thermoacoustic heat engine.Finally,we performed theoretical analysis to better understand thermoacoustic conversion with the different working gases.
机译:热声技术由于其高可靠性和环境友好性而变得越来越有吸引力。我们小组提出的使用液体活塞的双作用行波热声热机可以进一步提高热声转换效率并生产出更紧凑的发动机。研究中,主要从热声转化参数,包括起始温度,共振频率和压力比,在不同的工作平均压力下,对三种不同的环保工作气体氦,氮和二氧化碳进行了实验研究。结果表明最后,我们进行了理论分析,以更好地理解不同工作气体的热声转化。我们还对这种新型的热声热机提出了令人鼓舞的应用前景。

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