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Two-dimensional numerical simulation and performance analysis of tapered pulse tube refrigerator

机译:锥形脉冲管制冷机的二维数值模拟与性能分析

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Numerical simulation of two-dimensional viscous compressible oscillating flow was carried out for the uniform cross-section and tapered pulse tubes. Based on the numerical results, it was found that for the taper pulse tube refrigerator, there was an optimum taper angle, with which the performance of a cryogenic refrigerator can be greatly improved. However, on the other hand, the results also demonstrated that when the taper angle becomes much larger than this optimum value, the cooling performance becomes weaker than that of the circular tube. We discussed the effect of the tapered pulse tube on the performance of pulse tube refrigerator based on an evaluation of the secondary flow in the pulse tube. It was found that in comparison with the uniform cross-section pulse tube, the magnitude of the secondary flow in the tapered pulse tube decreases while its distribution becomes less uniform, which explains why the performance of the tapered pulse tube can be improved compared with the uniform cross-section pulse tube.
机译:对均匀截面和锥形脉冲管进行了二维粘性可压缩振荡流的数值模拟。根据数值结果,发现对于锥形脉冲管制冷机,存在最佳的锥角,由此可以大大提高低温制冷机的性能。然而,另一方面,结果还表明,当锥角变得比该最佳值大得多时,冷却性能变得比圆管的冷却性能弱。我们基于对脉冲管中二次流的评估,讨论了锥形脉冲管对脉冲管制冷机性能的影响。已经发现,与均匀横截面的脉冲管相比,锥形脉冲管中的二次流的大小减小,而其分布变得不均匀,这解释了为什么与之相比,锥形脉冲管的性能可以得到改善。横截面均匀的脉冲管。

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