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Experimental investigation of thermal performance of random stack materials for use in standing wave thermoacoustic refrigerators

机译:用于驻波热声制冷机的随机堆叠材料热性能的实验研究

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摘要

In a standing wave thermoacoustic refrigerator, heat transport from the “cold” to the “ambient” end of a stack is achieved by means of an oscillatory motion of a compressible fluid undergoing cyclic compression and expansion. However, the stacks can be both costly and impractical to fabricate due to material and assembly costs, which limits the cost benefits of thermoacoustic systems. Some of these problems could be solved by the application of stacks that have irregular geometries, for instance stacks made of “random” materials from metal machining (swarf), which are often considered as waste. In this paper, the thermal performance of stacks made of a few selected materials is determined by carrying out experiments in a standing wave thermoacoustic refrigerator. The reported results will be beneficial for developing low-cost thermoacoustic refrigerators or heat pumps for both domestic and commercial applications.
机译:在驻波热声制冷机中,通过经历循环压缩和膨胀的可压缩流体的振荡运动,实现了从堆叠的“冷”到“环境”端的热传递。然而,由于材料和组装成本,堆叠可能既昂贵又不切实际,这限制了热声系统的成本优势。这些问题中的一些可以通过应用具有不规则几何形状的堆栈来解决,例如,由金属加工(切屑)制成的“随机”材料制成的堆栈通常被认为是废物。在本文中,由几种选定材料制成的烟囱的热性能是通过在驻波热声冰箱中进行实验来确定的。报告的结果将有利于开发适用于家庭和商业应用的低成本热声冰箱或热泵。

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