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Optimal cool-down time of a 4 K superconducting magnet cooled by a two-stage cryocooler

机译:由两级低温冷却器冷却的4 K超导磁体的最佳冷却时间

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A cool-down time is one of the major factors in many cryocooler applications, especially for the design of conduction-cooled superconducting devices. Cool-down time means a time cooling a thermal mass from a room-temperature to cryogenic-temperature within a stipulated amount of time. The estimation of cool-down time seeks the elapsed time to cool the thermal object by a cryocooler during initial cooldown process. This procedure includes the dimension and properties of thermal object, heat transfer analysis for cryogenic load, thermal interface between cold mass and cryocooler, and available refrigeration capacity of cryocooler. The proposed method is applied to the specific cooling system for 3 T superconducting magnet cooled by a two-stage GM cryocooler. The result is compared with that of experiment,showing that proposed method has a good agreement with experiment. In addition, the initial cool-down time can be shortened by employing thermal link between the cold mass and first-stage of cryocooler.Through a rigorous modeling and analysis taking into account the effect of thermal link size, it is concluded that there exists an optimal cool-down time during initial cooling in conduction-cooled superconducting magnet system.
机译:冷却时间是许多低温冷却器应用中的主要因素之一,尤其是对于传导冷却的超导设备的设计而言。冷却时间是指在规定的时间内将热质从室温冷却至低温的时间。冷却时间的估算寻求在初始冷却过程中通过低温冷却器冷却热物体所花费的时间。该程序包括热对象的尺寸和属性,低温负载的传热分析,冷气与低温冷却器之间的热界面以及低温冷却器的可用制冷量。所提出的方法适用于由两级GM低温冷却器冷却的3 T超导磁体的特定冷却系统。将结果与实验结果进行比较,表明所提出的方法与实验结果吻合良好。另外,通过在冷水机和一级冷却器之间采用热连接可以缩短初始冷却时间。通过严格的建模和分析,考虑到热连接尺寸的影响,得出结论是存在一个传导冷却的超导磁体系统在初始冷却过程中的最佳冷却时间。

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