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The hydrogen migration in cryogenic tubes of superconductive accelerator with gas source

机译:含气源超导加速器低温管中的氢迁移

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摘要

Background In superconductive linear accelerator, the performance and stability can be impacted by gas adsorbed on cryogenic surfaces adversely. The cryogenic devices usually work at 4.2 K or 1.9 K and are refrigerated by normal or super fluid liquid helium, respectively. Purpose The purpose of this paper is to study the character of gas migration in cryogenic tubes. Method Adsorption coefficient for hydrogen at 4.2 K is measured by experimental study. Then, a gas migration model is established based on the experimental results to depict the hydrogen migration process in cryogenic tubes. Results The experimental results and model analysis indicated that at cryogenic temperature (4.2 K), adsorption coefficient for hydrogen is very close to 1, which is several orders higher than the adsorption coefficient at room temperature, resulting in a unique pressure distribution pattern in cryogenic tubes when compared with the pressure distribution in room temperature tubes. Conclusions At 4.2 K or 1.9 K, the gas migration process is obviously different from the process at room temperature and is significantly affected by the gas adsorption on the cryogenic surfaces. The model established in this article can be applied not only to hydrogen migration in cryogenic tubes but also to other gas migration in tubes with high adsorption coefficient.
机译:背景技术在超导线性加速器中,性能和稳定性会受到低温表面吸附气体的不利影响。低温设备通常在4.2 K或1.9 K下工作,并分别通过普通或超流体液氦进行制冷。目的本文的目的是研究低温管中气体迁移的特征。方法通过实验研究在4.2 K下对氢的吸附系数。然后,基于实验结果建立了气体迁移模型,以描述低温管中的氢迁移过程。结果实验结果和模型分析表明,在低温(4.2 K)下,氢气的吸附系数非常接近1,比室温下的吸附系数高几个数量级,从而在低温管中产生独特的压力分布模式与室温管中的压力分布相比。结论在4.2 K或1.9 K时,气体迁移过程与室温下的过程明显不同,并且受低温表面气体吸附的影响很大。本文建立的模型不仅可以应用于低温管中的氢迁移,还可以应用于具有高吸附系数的管中的其他气体迁移。

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  • 作者单位

    University of Chinese Academy of Sciences, Beijing, China,Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China;

    University of Chinese Academy of Sciences, Beijing, China,Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China;

    Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China;

    Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China;

    Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China;

    Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vacuum; Cryogenic; Gas migration; Superconductive accelerator;

    机译:真空;低温气体迁移;超导加速器;

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