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Refrigeration mechanism of the gas parcels in pulse tube cryocoolers under different phase angles

机译:不同相角下脉冲管低温冷却器中气体包裹的致冷机理

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摘要

The thermodynamic behavior of gas parcels in the key parts of the pulse tube cryocooler (PTC) is studied. The refrigeration mechanism of PTCs under different cold end phase angles is revealed by analyzing and comparing the heat transfer characteristics of the gas parcels at both sides of the cold end heat exchanger. Results show that the cold end phase angle, an important parameter of the PTC, determines the cooling performance of the PTC by affecting the heat transfer characteristics of the gas parcels in a cycle. In PTCs with a cold end phase angle normally between -30° and 60°, the gases pump heat from the cold end heat exchanger to the aftercooler all the way through the regenerator. In contrast, for the basic PTC with a cold end phase angle close to 90°, the heat transfer direction is reversed, the gases pump heat from the cold end heat exchanger to the hot end heat exchanger all the way through the pulse tube. This study unifies the various perspectives on the PTC's refrigeration mechanism by revealing the inherent effect of the cold end phase angle, indicating that enhancing the heat pumping function of the gas in the regenerator is an essential way to improve the cooling performance.
机译:研究了脉冲管低温冷却器(PTC)关键部位中气体包裹的热力学行为。通过分析和比较冷端热交换器两侧气体小包的传热特性,揭示了不同冷端相角下PTC的致冷机理。结果表明,冷端相角是PTC的重要参数,它通过影响循环中气体包裹的传热特性来确定PTC的冷却性能。在冷端相角通常在-30°至60°之间的PTC中,气体将热量从冷端热交换器一直泵送到再生器的后冷却器。相反,对于冷端相角接近90°的基本PTC,传热方向相反,气体将热量从冷端热交换器通过脉冲管一直泵送到热端热交换器。通过揭示冷端相角的内在影响,本研究统一了PTC制冷机制的各种观点,表明增强蓄热器中气体的热泵功能是提高制冷性能的必不可少的方法。

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