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Effects of the Optimized Resonator Dimensions on the Performance of the Standing-wave Thermoacoustic Refrigerator

机译:优化谐振器尺寸对常设波热声冰箱性能的影响

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Thermoacoustic refrigerator is an alternative cooling system, which is environmentally safe due to the absence of any refrigerants. The resonator tube of the system is of great importance; its design and dimensions influence the design and performance of the entire refrigerator. The central component of the resonator is the stack. So this work describes the design of the stack and the resonator along with the influence of its dimensions on the performance of the standing-wave thermoacoustic refrigerator. The resonator consists of two tubes, one larger than the other, characterized by the diameter ratio of the small over the larger diameter. A Lagrange multiplier method is used as a technique to optimize the coefficient of performance (COP) of the system. The computational analyses show that the resonator small diameter tube dissipates minimum acoustic power at a diameter ratio of 0.46, which is about 17 percent (at least) less than the published values. Moreover, the results show that the resonator length increases gradually with the increase of the mean design temperature. The increase of the resonator length leads to increase of the total acoustic power dissipated by the resonator, which reduces the COP of the standing-wave thermoacoustic refrigerator.
机译:热声冰箱是一种替代的冷却系统,由于没有任何制冷剂而导致的环保。该系统的谐振管非常重要;其设计和尺寸会影响整个冰箱的设计和性能。谐振器的中心部件是堆叠。因此,这项工作描述了堆叠和谐振器的设计以及其尺寸对常设波热声冰箱性能的影响。谐振器由两个管组成,一个大于另一个管,其特征在于小于较大直径的小的直径比。拉格朗日乘法器方法用作优化系统的性能系数(COP)的技术。计算分析表明,谐振器小直径管的直径比为0.46的最小声功率,其约为17%(至少)小于公布的值。此外,结果表明,随着平均设计温度的增加,谐振器长度逐渐增加。谐振器长度的增加导致谐振器散发的总声学功率的增加,这减小了常设波热声冰箱的COP。

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