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Thermoacoustic Refrigerator's Stack Optimization

机译:热声冰箱的堆栈优化

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The standing wave thermoacoustic refrigerator, which uses sound generation to transfer heat, was developed rapidly during the past four decades. It was regarded as a new, promising and environmentally benign alternative to conventional compression vapor refrigerators, although it was not competitive regarding the coefficient of perfonnance (COP) yet. Thus the aim of this paper is to enhance thermoacoustic refrigerator's stack performance through optimization. A computational optimization procedure of thermoacoustic stack design was fully developed. The procedure was designed to achieve optimal coefficient of performance based on most of the design and operating parameters. Cooling load and acoustic power governing equations were set assuming the linear thermoacoustic theory. Lagrange multipliers method was used as an optimization technique tool to solve the governing equations. Numerical analyses results of the developed design procedure are presented. The results showed that the stack design parameters are the most significant parameters for the optimal overall performance. The coefficient of performance obtained increases by about 488% from the published experimental optimization methods. The results are in good agreement with past established studies.
机译:在过去的四十年中,使用声音产生热量传递热量的常设波热声冰箱。它被认为是传统压缩蒸汽冰箱的新的,有前途和环境良性的替代品,尽管它对尚未竞争的是仍然存在竞争性的系数(COP)。因此,本文的目的是通过优化提高热声冰箱的堆栈性能。热声堆叠设计的计算优化过程完全开发。该过程旨在基于大多数设计和操作参数来实现最佳性能系数。假设线性热声学理论设定了冷却负载和声学功率控制方程。拉格朗日乘法器方法用作解决控制方程的优化技术工具。提出了开发设计程序的数值分析结果。结果表明,堆栈设计参数是最佳整体性能的最重要参数。从已发表的实验优化方法获得的性能系数增加约488%。结果与过去建立的研究有关。

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