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Effect of the blockage ratios of circular stack on the performance of the air-based standing wave thermoacoustic refrigerator using heat pipe

机译:圆形叠层堵塞比对空气 - 驻华热声冰箱使用热管性能的影响

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摘要

In this study, the coeffcient of performance (COP) and relative coeffcient of performance (COPR) of an air-based standing wave thermoacoustic refrigerator (ASWTAR) was investigated. All relevant components of the thermoacoustic refrigerator were fully available in the system. Heat pipes with a total heating power of 30W were installed into the cold-side and hot-side heat exchangers. The circular stacks with plugging ratios of 0.67, 0.71 and 0.74 and the spiral stacks with plugging ratio of 0.74 were tested and compared. The results show that the circular stack is the optimum stack geometry for ASWTAR. Similarly, a circular stack with a blockage ratio of 0.71 has the best performance, producing the lowest cold side temperature (Tc) and the highest temperature difference (ΔTm). Under no cooling load and 2W cooling load, Tc, ΔTm, COP and COPR were 22.4 °C, 30.5 °C, 0.93 and 9.57%, respectively. Finally, it is clear that due to the use of more suitable materials, the COP and COPR of a circular stack are greater than those of a spiral stack.
机译:在该研究中,研究了对空气基驻波热声冰箱(ASWTAR)的性能(COP)和性能(COPR)的相对系数的系数进行研究。热声冰箱的所有相关组件都在系统中完全可用。具有30W的总加热功率的热管安装在冷侧和热侧热交换器中。测试的圆形叠层为0.67,0.71和0.74,螺旋堆叠,并进行比较。结果表明,圆形堆叠是ASWTAR的最佳堆叠几何形状。类似地,具有堵塞比为0.71的圆形堆叠具有最佳性能,产生最低的冷侧温度(Tc)和最高温差(Δtm)。在无冷却负载和2W冷却负载下,TC,ΔTM,COP和COPR分别为22.4℃,30.5℃,0.93和9.57%。最后,很清楚,由于使用更合适的材料,圆形叠层的COP和FOPR大于螺旋叠层的COP和FOPR。

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