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Experimental results of the model coil for cooling design of a 1 T cryocooler-cooled pulse coil for SMES

机译:用于SMES的1 T低温冷却器冷却脉冲线圈冷却模型线圈的实验结果

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The authors have been developing high-Tc superconducting coils for SMES applications. Their primary goal is to make a HTS coil which is cooled to 40 K by a single-stage cryocooler and continuously operated at 1 Hz with a field amplitude of 1 T. The coil has heat drains of AlN plates to remove heat because of AC losses. They made a cooling model coil system to study the effective arrangement of the heat drains. The system consisted of a model coil using Cu conductors, current leads and a cryocooled system. The test coil was divided into three sections in different arrangement of heat drains. The model coil was daubed with a high thermal conductivity epoxy resin to improve thermal contact resistance between the conductors and AlN plates. They tested the coil by Joule heating which was equal to AC losses. They measured the temperature distribution in the coil and the temperature difference between Cu conductors and AlN plates. The temperature difference was measured between 0.2 K and 0.7 K. The results will be applied to the 1 T HTS coil design.
机译:作者一直在为SMES应用开发高Tc超导线圈。他们的主要目标是制造一种HTS线圈,该线圈由单级低温冷却器冷却至40 K,并在1 Hz的磁场强度下以1 T的频率连续运行。该线圈具有AlN板的散热片,可消除由于交流损耗引起的热量。他们制作了一个冷却模型线圈系统,以研究散热装置的有效布置。该系统由使用铜导体的模型线圈,电流引线和低温冷却系统组成。将测试线圈分为三部分,以不同的散热方式布置。模型线圈涂有高导热环氧树脂,以改善导体与AlN板之间的热接触电阻。他们通过焦耳热测试了线圈,这等于交流损耗。他们测量了线圈中的温度分布以及铜导体和AlN板之间的温差。测量出的温度差为0.2 K至0.7K。该结果将应用于1 T HTS线圈设计。

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