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One-dimensional models for heat and mass transfer in pulse-tube refrigerators

机译:脉冲管制冷机中传热和传质的一维模型

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This paper studies systems of partial differential equations modeling pulse-tube refrigerators. Through a regular asymptotic expansion, the pressure is found to be a known function of time. Therefore, models for heat and mass transfer are derived neglecting the equation for conservation of momentum; the cooling mechanism being highlighted in terms of this model. New approximate formulas are derived for the velocity in the tube and the non-linear thermal wave speed in the porous medium (known as the regenerator) on the short (piston oscillation) time-scale. The temperature dependence of the thermal wave speed is proposed as one measure of the efficiency of the transport of heat away from the cold heat exchanger. Progress is limited on the long time-scale, however, the importance of the difference between the gas temperature averaged over an oscillation and heat exchanger temperature is identified.
机译:本文研究了模拟脉冲管制冷机的偏微分方程系统。通过有规律的渐近扩展,发现压力是时间的已知函数。因此,忽略了动量守恒方程,导出了传热传质模型。在此模型中重点介绍了冷却机制。在短期(活塞振荡)时标上,得出了管中速度和多孔介质(称为再生器)中非线性热波速度的新近似公式。提出了热波速度的温度依赖性,作为对从冷热交换器传出热量的效率的一种度量。在长时期内进展受到限制,但是,确定了在振荡上平均的气体温度与热交换器温度之间的差异的重要性。

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