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CFD analysis of high frequency miniature pulse tube refrigerators for space applications with thermal non-equilibrium model

机译:具有热非平衡模型的空间应用高频微型脉冲管制冷机的CFD分析

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摘要

High frequency, miniature, pulse tube cryocoolers are extensively used in space applications because of their simplicity. Parametric studies of inertance type pulse tube cooler are performed with different length-to-diameter ratios of the pulse tube with the help of the FLUENT package. The local thermal non-equilibrium of the gas and the matrix is taken into account for the modeling of porous zones, in addition to the wall thickness of the components. Dynamic characteristics and the actual mechanism of energy transfer in pulse are examined with the help of the pulse tube wall time constant. The heat interaction between pulse tube wall and the oscillating gas, leading to surface heat pumping, is quantified. The axial heat conduction is found to reduce the performance of the pulse tube refrigerator. The thermal non-equilibrium predicts a higher cold heat exchanger temperature compared to thermal equilibrium. The pressure drop through the porous medium has a strong non-linear effect due to the dominating influence of Forchheimer term over that of the linear Darcy term at high operating frequencies. The phase angle relationships among the pressure, temperature and the mass flow rate in the porous zones are also important in determining the performance of pulse tube refrigerator.
机译:高频,微型脉冲管低温冷却器由于其简单性而广泛用于空间应用。惯性型脉冲管冷却器的参数研究是在FLUENT软件包的帮助下以不同的脉冲管长径比进行的。除了对组件壁的厚度进行建模外,还考虑了气体和基体的局部热不平衡。借助于脉冲管壁时间常数,检查了脉冲中的动态特性和能量转移的实际机理。量化了脉冲管壁与振荡气体之间的热相互作用,导致表面热泵。发现轴向导热降低了脉冲管制冷机的性能。与热平衡相比,热非平衡预测了较高的冷热交换器温度。由于在高工作频率下,Forchheimer项相对于线性Darcy项的主要影响,通过多孔介质的压降具有很强的非线性效应。多孔区域中压力,温度和质量流率之间的相角关系对于确定脉冲管制冷机的性能也很重要。

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