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A multi-stage traveling-wave thermoacoustically-driven refrigeration system operating at liquefied natural gas temperature

机译:在液化天然气温度下运行的多级行进波热声学驱动制冷系统

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This study proposes a multi-stage travelling-wave thermoacoustically refrigeration system (TAD-RS) operating at liquefied natural gas temperature, which consists of two thermoacoustic engines (TAE) and one thermoacoustic refrigerator (TAR) in a closed-loop configuration. Three thermoacoustic units connect each other through a resonance tube of small cross-sectional area, achieving "self-matching" for efficient thermoacoustic conversion. Based on the linear thermoacoustic theory, a model of the proposed system has been built by using DeltaEC program to show the acoustic field characteristics and performance. It is shown that with pressurized 5 MPa helium as working gas, the TAEs are able to build a stable and strong acoustic field with a frequency of about 85 Hz. When hot end temperature reaches 923 K, this system can provide about 1410 W cooling power at 110 K with an overall exergy efficiency of 15.5%. This study indicates a great application prospect of TAD-RS in the field of natural gas liquefaction with a large cooling capacity and simple structure.
机译:本研究提出了一种在液化天然气温度下运行的多级行进波热声学制冷系统(TAD-RS),其由两个热声发动机(TAE)和一个热声冰箱(Tar)组成,以闭环配置。三个热声单元通过小横截面积的共振管互相连接,实现“自匹配”,以实现有效的热声转换。基于线性热声理论,通过使用Deltaec程序来构建建议系统的模型,以显示声场特征和性能。结果表明,通过加压5MPa氦作为工作气体,TAE能够构建频率为约85Hz的稳定和强的声场。当热端温度达到923 k时,该系统可以在110 k下提供约1410W的冷却功率,整体高出效率为15.5%。本研究表明,具有大冷却能力和结构简单的天然气液化领域的TAD-RS的巨大应用前景。

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