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Studies on Gas-Stack Heat Transfer for Research and Development of the Thermoacoustic Refrigerating System

机译:用于热声制冷系统研究的气体烟囱传热研究

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Thermoacoustic refrigeration is an environmentally safe technology that uses sound energy to pump heat. It offers several benefits, which include use of environmentally safe working fluids, no significant moving parts, and continuous capacity control. The thermoacoustic process results from thermal interactions between the oscillating gas and the stack surfaces in the system. This paper reports on studies involving design, construction, operation, and experiments on the gas-stack heat transfer in the system. The results show that the heat transfer and Streaming Reynolds number increase with drive ratio and that the stack plate losses significantly dominate the total energy loss. It was also found that for the parallel plate stack arrangement, the use of an advanced engineering thermoplastic stack material would significantly reduce the energy loss in the system compared to the stainless steel that has been favored in many studies.
机译:热声制冷是一种环境安全的技术,它利用声能来吸收热量。它具有几个优点,包括使用对环境安全的工作流体,无明显的活动部件以及连续的容量控制。热声过程是由振荡气体与系统中烟囱表面之间的热相互作用导致的。本文报告了有关系统中烟囱热传递的设计,构造,运行和实验的研究。结果表明,传热和流雷诺数随传动比的增加而增加,并且堆板的损失明显占总能量损失的比重。还发现,对于平行板堆垛布置,与许多研究中偏爱的不锈钢相比,使用先进的工程热塑性堆垛材料将显着减少系统中的能量损失。

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