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Enthalpy change measurements of a mixed refrigerant in a microcryogenic cooler in steady and pulsating flow regimes

机译:稳定和脉动流态下微低温冷却器中混合制冷剂的焓变测量

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摘要

Microcryogenic coolers (MCCs) are useful to a number of small electronic devices which require low cooling power. The cooling power of microcryogenic coolers operating with mixed refrigerants in a Joule-Thomson (J-T) cycle can be calculated based on enthalpy change for the mixture, but it has been observed that cooling power depends on flow regime. This article demonstrates a method to measure the isothermal enthalpy change in a mixture undergoing J-T expansion in an MCC for different flow regimes. The enthalpy change for a mixture undergoing steady flow is an order of magnitude below that calculated, whereas the enthalpy change for the mixture undergoing pulsating flow agrees with the calculations below a certain temperature, and is over-predicted above that temperature. For steady flow, an analysis of component separation within the mixture due to annular flow shows good agreement with measured data, and for pulsating flow, the discrepancy is likely due to periods of liquid slug flow interrupted by periods of annular flow.
机译:微低温冷却器(MCC)可用于许多需要低冷却功率的小型电子设备。可以基于混合物的焓变来计算在焦耳-汤姆森(J-T)循环中与混合制冷剂一起运行的微低温冷却器的冷却功率,但是已经观察到,冷却功率取决于流动状态。本文演示了一种方法,该方法可测量在MCC中针对不同流态进行J-T膨胀的混合物中的等温焓变。经历稳定流动的混合物的焓变比计算值低一个数量级,而经历脉动流动的混合物的焓变与低于某一温度的计算结果一致,并且在该温度以上被过度预测。对于稳定流动,由于环形流动而导致的混合物内组分分离的分析显示与实测数据具有很好的一致性,而对于脉动流动,差异可能是由于液体弹状流动的周期被环形流动的周期打断。

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