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首页> 外文期刊>International journal of air-conditioning and refrigeration >Design and Analysis of Thermoacoustic Refrigerators Using Air as Working Substance
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Design and Analysis of Thermoacoustic Refrigerators Using Air as Working Substance

机译:以空气为工作物质的热声冰箱的设计与分析

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摘要

In this paper, the design of 50 W thermoacoustic refrigerators operating with air as working substance at 10 bar pressure and 3% drive ratio for a temperature difference of 28 K is described. The design strategies discussed in this paper help in design and development of low cost thermoacoustic coolers compared to helium as the working substance. The design and optimization of spiral stack and heat exchangers, and the promising 0.2λ and 0.15λ resonator design with taper and divergent section with hemispherical end are discussed. The surface area, volume, length and power density of the hemispherical end design with air as working substance is found better compared to the published 10 and 50 W coolers using helium as the working substance. The theoretical design results are validated using DeltaEC software simulation results. The DeltaEC predicts 51.4% improvement in COP (1.273) at the cold heat exchanger temperature of -2.7℃ with air as working substance for the 50 W 0.15λTDH resonator design compared to the published 50 W 0.25λTDH resonator design with helium as working substance.
机译:在本文中,描述了一种50 W热声制冷机的设计,该制冷机以空气作为工作物质,在10 bar的压力和3%的驱动比下,温度差为28K。与氦气作为工作物质相比,本文讨论的设计策略有助于设计和开发低成本的热声冷却器。讨论了螺旋烟囱和换热器的设计和优化,以及有希望的具有半球形端部渐缩截面的0.2λ和0.15λ谐振器设计。与以氦气为工作物质的已发布的10和50 W冷却器相比,发现以空气为工作物质的半球形端部设计的表面积,体积,长度和功率密度更好。使用DeltaEC软件仿真结果验证了理论设计结果。 DeltaEC预测,与以氦气为工作物质的50 W0.25λTDH谐振器设计相比,在以空气为工作物质的空气为-2.7℃的冷热交换器温度为-2.7℃的情况下,COP(1.273)改善51.4%。

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