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Theoretical and experimental investigations on the optimal match between compressor and cold finger of the Stirling-type pulse tube cryocooler

机译:斯特林型脉冲管冷冻机压缩机与冷指之间最佳匹配的理论和实验研究

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The match between the pulse tube cold finger (PTCF) and the linear compressor of the Stirling-type pulse tube cryocooler plays a vital role in optimizing the compressor efficiency and in improving the PTCF cooling performance as well. In this paper, the interaction of them has been analyzed in a detailed way to reveal the match mechanism, and systematic investigations on the two-way matching have been conducted. The design method of the PTCF to achieve the optimal matching for the given compressor and the counterpart design method of the compressor to achieve the optimal matching for the given PTCF are put forward. Specific experiments are then carried out to verify the conducted theoretical analyses and modeling. For a given linear compressor, a new in-line PTCF which seeks to achieve the optimal match is simulated, designed and tested. And for a given coaxial PTCF, a new dual-opposed moving coil linear compressor is also developed to match with it. The simulated and experimental results are compared, and fairly good agreements are found between them in both cases. The matched in-line cooler with the newly-designed PTCF has capacities of 4-11.84 W at 80 K with higher than 17% of Carnot efficiency and the mean motor efficiency of 81.5%, and the matched coaxial cooler with the new-designed compressor can provide 2-5.5 W at 60 K with higher than 9.6% of Carnot efficiency and the mean motor efficiency of 83%, which verify the validity of the theoretical investigations on the optimal match and the proposed design methods. (C) 2016 Elsevier Ltd. All rights reserved.
机译:斯特林型脉冲管低温冷却器的脉冲管冷指(PTCF)与线性压缩机之间的匹配在优化压缩机效率和改善PTCF冷却性能方面起着至关重要的作用。本文对它们之间的相互作用进行了详细的分析,以揭示匹配机制,并对双向匹配进行了系统的研究。提出了给定压缩机最佳匹配的PTCF设计方法和给定PTCF最佳匹配的压缩机设计方法。然后进行特定的实验以验证进行的理论分析和建模。对于给定的线性压缩机,将对旨在实现最佳匹配的新型在线PTCF进行仿真,设计和测试。对于给定的同轴PTCF,还开发了与之匹配的新型双对置动圈线性压缩机。比较了模拟结果和实验结果,在两种情况下它们之间都找到了相当好的协议。与新设计的PTCF相匹配的直列式冷却器在80 K时的容量为4-11.84 W,卡诺效率高于17%,平均电动机效率为81.5%,与新设计的压缩机相匹配的同轴冷却器可以在60 K时提供2-5.5 W的功率,其Carnot效率高于9.6%,平均电动机效率为83%,这证明了关于最佳匹配和所提出的设计方法的理论研究的有效性。 (C)2016 Elsevier Ltd.保留所有权利。

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