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首页> 外文期刊>Applied Physics Letters >Thermoacoustically driven refrigerator with double thermoacoustic-Stirling cycles
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Thermoacoustically driven refrigerator with double thermoacoustic-Stirling cycles

机译:具有双热声-斯特林循环的热声驱动冰箱

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Recently, considerable research efforts have been made to search substitution technologies for chlorofluorocarbon-based vapor compression cycles due to the concern over environmental issues. This letter introduces a helium-based thermoacoustic refrigeration system, which is a thermoacoustic-Stirling refrigerator driven by a thermoacoustic-Stirling heat engine, for domestic refrigeration purpose. In the regenerators of both the refrigerator and the prime mover, helium gas experiences near to reversible high efficiency Stirling process. At the operating point with 3.0 MPa mean pressure, 57.7 Hz frequency, and 2.2 kW heat input, the experimental cooler provides a lowest temperature of -64.4℃ and 250 W cooling power at -22.1℃. These results show good potential of the system to be an alternative in near future for domestic refrigeration with advantages of environment-friendliness, no moving parts, and heat driven mechanism.
机译:近来,由于对环境问题的关注,已经进行了大量的研究努力来寻找基于氯氟烃的蒸气压缩循环的替代技术。这封信介绍了一种基于氦的热声制冷系统,该系统是一种由热声斯特林热机驱动的热声斯特林制冷机,用于家用制冷。在冰箱和原动机的蓄热器中,氦气都经历了可逆的高效斯特林过程。在平均压力为3.0 MPa,频率为57.7 Hz,输入热量为2.2 kW的工作点上,实验冷却器在-62.1℃的最低温度和-22.1℃的250 W的冷却功率。这些结果表明,该系统具有很大的潜力,在不久的将来可以替代家用制冷系统,具有环保,无活动部件和热驱动机构的优点。

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