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Analysis of internal temperature distribution and its total parasitic heat leak for a cryogenic cold Compressor

机译:低温冷压缩机内部温度分布及其总寄生热泄漏分析

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Cold compressors are the core component needed for the development of a facility for large-capacity refrigeration at superfluid helium temperatures.The compressor impeller is operated at extremely low temperature and low pressure which involves technical issues including material properties at low temperature,heat transfer,failures of the actuating motor resulting from overheating and performance penalty due to heat transfer from the warm side of the machine to the cold side.To address these issues,it is important to understand the temperature distribution inside the housing of the machine.To analyze the temperature distribution,an integrated numerical model is created on the basis of the model of the cold compressor structure and then simulated through computational fluid dynamics.The actual temperature rise of the cold compressor is measured at two temperature measuring points and compared with the temperatures predicted by the simulation to validate the accuracy of the model.The results show that the internal flow field around the motor and bearings of the cold compressor is completely turbulent and the total parasitic heat transfer to the cold gas stream is closely related to the rotating speed of the high-speed motor.
机译:冷压缩机是Superfluid氦温度下大容量制冷的设施所需的核心组件。压缩机叶轮在极低的温度和低压下操作,涉及在低温下的材料性质,传热,故障等技术问题。由于从机器的热侧到冷侧的热传递出来的致动电动机导致的致动电动机。要解决这些问题,但要了解机器壳体内的温度分布非常重要。分析温度分布,基于冷压缩机结构的模型创建集成数值模型,然后通过计算流体动力学模拟。冷压缩机的实际温度升高在两个温度测量点上测量,并与所预测的温度相比仿真以验证模型的准确性.res ULT表示冷压缩机的电动机和轴承周围的内部流场是完全湍流的,并且对冷气流的总寄生热传递与高速电动机的转速密切相关。

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