CALCULATED REGENERATOR PERFORMANCE AT 4 K WITH HELIUM-4 AND HELIUM-3

R. Radebaugh, Yonghua Huang, A. O'Gallagher, J. Gary
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引用次数: 32

Abstract

The helium-4 working fluid in regenerative cryocoolers operating with the cold end near 4 K deviates considerably from an ideal gas. As a result, losses in the regenerator, given by the time-averaged enthalpy flux, are increased and are strong functions of the operating pressure and temperature. Helium-3, with its lower boiling point, behaves somewhat closer to an ideal gas in this low temperature range and can reduce the losses in 4 K regenerators. An analytical model is used to find the fluid properties that strongly influence the regenerator losses as well as the gross refrigeration power. The thermodynamic and transport properties of helium-3 were incorporated into the latest NIST regenerator numerical model, known as REGEN3.3, which was used to model regenerator performance with either helium-4 or helium-3. With this model we show how the use of helium-3 in place of helium-4 can improve the performance of 4 K regenerative cryocoolers. The effects of operating pressure, warm-end temperature, and frequency on regenerators with helium-4 and helium-3 are investigated and compared. The results are used to find optimum operating conditions. The frequency range investigated varies from 1 Hz to 30 Hz, with particular emphasis on higher frequencies.
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计算了氦-4和氦-3在4k下的蓄热器性能
在冷端温度接近4 K的蓄热式低温冷却器中,氦-4工作流体与理想气体的偏差很大。结果,由时间平均焓通量给出的回热器损失增加,并且是操作压力和温度的强函数。氦-3由于其较低的沸点,在这个低温范围内的行为更接近于理想气体,可以减少4k再生器的损失。利用解析模型找出了对蓄热器损失和总制冷功率有较大影响的流体性质。氦-3的热力学和输运性质被纳入最新的NIST蓄热器数值模型REGEN3.3,该模型用于模拟氦-4或氦-3的蓄热器性能。通过这个模型,我们展示了如何使用氦-3代替氦-4可以提高4k再生制冷机的性能。研究并比较了操作压力、暖端温度和频率对氦-4和氦-3再生器的影响。结果用于寻找最佳操作条件。所调查的频率范围从1赫兹到30赫兹不等,特别强调更高的频率。
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