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Study on the use of porous materials with adsorbed helium as the regenerator of cryocooler at temperatures below 10 K

机译:吸附氦的多孔材料在10 k低于10 k的温度下使用吸附氦的多孔材料

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摘要

Cryocoolers play a vital role in ground low-temperature experiments and space explorations. The regenerator is an important part of the cryocooler, which is used to store the cold produced by the expansion of the working fluid helium and absorb the heat produced during the next cycle of compression. However, the specific heat of helium at temperatures below 10 K is higher than that of almost all currently known regenerator materials, resulting in insufficient cold storage capacity and severely restricting the improvement of the cryocooler cooling performance. In this paper, the study of using porous material to absorb helium as the regenerator material for cryocoolers is carried out. An experimental system was built to test the helium adsorption capacity of super activated carbon in the temperature range of 3-10 K, and it was found that the activated carbon has a significant increase in specific heat compared with the current conventional materials. A thermody-namic calculation model was further established to investigate the dynamic cryogenic adsorption characteristics and the effect of adsorption/ desorption heat on the performance of the regenerator. This work is an exploration in the research of low-temperature regenerators, which can provide useful help for the selection and use of regenerator materials for cryocoolers working below 10 K. It also has great application prospects in the fields of energy storage, low-temperature superconductivity, and sub-K refrigeration systems.
机译:冷冻室在地面低温实验和空间探索中发挥着重要作用。再生器是低温冷却器的重要组成部分,其用于存储通过工作流体氦的膨胀而产生的冷却产生的冷却,并吸收在下一个压缩循环期间产生的热量。然而,低于10 k的温度下氦的比热量高于几乎所有当前已知的再生器材料的热量,导致冷藏容量不足,并且严重限制冷冻机冷却性能的改善。在本文中,进行了使用多孔材料吸收氦作为冷冻机的再生器材料的研究。建立了一个实验系统,以测试3-10k的温度范围内超活性炭的氦吸附容量,发现活性炭与电流常规材料相比的比热量显着增加。进一步建立了热学 - Namic计算模型,以研究动态低温吸附特性及吸附/解吸热对再生器性能的影响。这项工作是对低温再生器的研究探索,可以提供有用的帮助,用于选择和使用用于低于10 K的低温冷却器的再生器材料。它还在储能,低温下具有很大的应用前景。超导和子k制冷系统。

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  • 来源
    《Applied Physics Letters》 |2021年第14期|143902.1-143902.4|共4页
  • 作者单位

    Chinese Academy of Sciences Key Laboratory of Cryogenics Technical Institute of Physics and Chemistry Beijing 100190 China University of Chinese Academy of Sciences Beijing 100049 China;

    Chinese Academy of Sciences Key Laboratory of Cryogenics Technical Institute of Physics and Chemistry Beijing 100190 China University of Chinese Academy of Sciences Beijing 100049 China;

    Chinese Academy of Sciences Key Laboratory of Cryogenics Technical Institute of Physics and Chemistry Beijing 100190 China University of Chinese Academy of Sciences Beijing 100049 China;

    Chinese Academy of Sciences Key Laboratory of Cryogenics Technical Institute of Physics and Chemistry Beijing 100190 China University of Chinese Academy of Sciences Beijing 100049 China;

    Chinese Academy of Sciences Key Laboratory of Cryogenics Technical Institute of Physics and Chemistry Beijing 100190 China University of Chinese Academy of Sciences Beijing 100049 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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