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Cryogenic cooling system of HTS transformers by natural convection of subcooled liquid nitrogen

机译:过冷液氮自然对流的高温超导变压器低温冷却系统

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摘要

Heat transfer analysis on a newly proposed cryogenic cooling system is performed for HTS transformers to be operated at 63-66 K. In the proposed system HTS pancake windings are immersed in a liquid nitrogen bath where the liquid is cooled simply by colder copper sheets vertically extended from the coldhead of a cryocooler. Liquid nitrogen in the gap between the windings and the copper sheets develops a circulating flow by buoyancy force in subcooled state. The heat transfer coefficient for natural convection is estimated from the existing engineering correlations, and then the axial temperature distributions are calculated analytically and numerically with taking into account the distributed AC loss in the windings and the thermal radiation on the walls of liquid-vessel. The calculation results show that the warm end of the HTS windings can be maintained at only 2-3 K above the freezing temperature of nitrogen, with acceptable values for the height of HTS windings and the thickness of copper sheets. It is concluded that the cooling by natural convection of subcooled liquid nitrogen can be an excellent option for compactness, efficiency, and reliability of HTS transformers.
机译:对在63-66 K下运行的HTS变压器进行了新提出的低温冷却系统的传热分析。在提出的系统中,HTS薄饼绕组浸入液氮浴中,在此液氮仅通过垂直延伸的较冷铜板进行冷却从冷冻机的冷头。绕组和铜片之间的间隙中的液氮在过冷状态下通过浮力产生循环流。自然对流的传热系数是从现有的工程关系式中估算出来的,然后考虑到绕组中分布的交流损耗和液体容器壁上的热辐射,对轴向温度分布进行了解析和数值计算。计算结果表明,HTS绕组的热端仅能保持在氮气冻结温度以上2-3 K,HTS绕组的高度和铜板的厚度可以接受。结论是,通过自然对流冷却过冷的液氮可以成为HTS变压器紧凑,高效和可靠的绝佳选择。

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