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CFD simulation of a miniature coaxial Stirling-type pulse tube cryocooler operating at 128 Hz

机译:CFD仿真在128Hz上运行的微型同轴旋转式脉冲管冷冻机的仿真

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摘要

A two-dimensional axis-symmetric CFD model of a miniature coaxial Stirling-type pulse tube cryocooler with an overall weight of 920 g operating at 128 Hz is established, and systematic simulations of the performance characteristics at different temperatures are conducted. Both thermal equilibrium and non equilibrium mechanisms for the porous matrix are considered, and the regenerator losses including the gas and solid conduction, the pressure drop and the imperfect interfacial heat transfer are calculated, respectively. The results indicate that the pressure drop loss is dominant during the first 85% and 78% of regenerator length for the thermal equilibrium and non-equilibrium models, respectively, and it decreases monotonously from warm to cold end due to the steadily decreasing Darcy and Forchheimer terms, whereas other entropy generations share similar changing tendencies, going up gradually near the warm end, increasing dramatically from about 60% of length and then decreasing sharply near the cold end. The reasons for these entropy variations are discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:建立了在128Hz下操作的920g的总重量的微型同轴旋转型脉冲管冷冻机的二维轴对称CFD模型,并进行了不同温度下的性能特性的系统模拟。考虑用于多孔基质的热平衡和非平衡机制,并且分别计算包括气体和固体传导的再生器损耗,压降和不完全界面传热。结果表明,由于稳定​​地减少达西和前摩尔,在前85%和78%的再生器长度的前85%和78%的再生器长度中,压降损失分别是显着的。术语,而其他熵几代共享类似的更改趋势,逐渐在温热端逐渐上升,从大约60%的长度逐渐增加,然后在冷端附近急剧下降。讨论了这些熵变异的原因。 (c)2015 Elsevier Ltd.保留所有权利。

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