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Miniaturized Traveling-Wave Thermoacoustic Refrigerator Driven by Loudspeaker: Numerical Design

机译:由扬声器驱动的小型化旅行波热声冰箱:数值设计

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摘要

Ordinary refrigeration systems such as vapor-compression refrigerators are the commonly used devices in industry, mostly for their high efficiencies. However, they make a significant contribution to the depletion of Ozone and global warming due to their operational refrigerants. Hence, thermoacoustic refrigeration can be a great alternative candidate which uses inert gases such as air, helium and nitrogen as the primary refrigerant. Thermoacoustic refrigerators convert the acoustic power (sound waves) into a thermal effect (cooling power). Thermoacoustics can be counted as a new technology that has a strong potential toward the development of the thermal applications. This study aims to design and fabricate miniaturized traveling wave thermoacoustic refrigerator which can be driven by an ordinary loudspeaker. The optimized numerical design of the refrigerator shows an overall efficiency (cooling power over input electricity) of nearly 66% at a temperature difference of 25 K (between cold and ambient heat exchangers). The maximum estimated cooling power is 65 W at coefficient of performance (COP) of 2.65.
机译:普通制冷系统,如蒸气压缩冰箱是工业中常用的设备,主要是为了它们的高效性。然而,由于其运营制冷剂,它们对臭氧消耗和全球变暖作出了重大贡献。因此,热声制冷可以是一种伟大的替代候选者,其使用惰性气体,例如空气,氦气和氮作为初级制冷剂。热声冰箱将声电(声波)转换为热效果(冷却功率)。热声学可以计数为具有强大潜力的新技术,旨在发展热应用。本研究旨在设计和制造小型化的行波热声冰箱,其可以由普通扬声器驱动。冰箱的优化数值设计显示了25k(冷和环境热交换器之间)的温差近66%的整体效率(冷却功率超过输入电力)。在2.65的性能系数(COP)的情况下,最大估计的冷却功率为65W。

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