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Impact of Trapped Helium Gas Bubble in Liquid Helium on the Cooling in High Magnetic Field

机译:液态氦中截留的氦气气泡对强磁场冷却的影响

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Liquid helium is used as the coolant for high field superconducting magnets or samples tested in the high magnetic field at the National High Magnetic Field Laboratory. When the magnetic field is ramping up, the boil-off helium gas generated by heat losses in the coil and from external environment of the cryostat can be trapped in the liquid helium bath in a region where is less than 2100 due to the weakly diamagnetic property of helium. It results to the surfaces of the magnet or samples being covered partially or even fully with the accumulated helium gas instead of liquid helium. The very low thermal conductivity of helium gas may cause an inefficient cooling for the magnets or samples. In the beginning stage of YBCO coils development, the trapped gas bubble caused a temperature increase in the region of trapped gas bubble and prevented the test coils ramped up to a higher current. This raised an issue for the cooling of the 32-T magnet, which is to be cooled in a liquid helium bath, because the trapped gas bubble may cause inefficient cooling of the magnet in this gas bubble region. Relevant tests were performed, and the trapped gas bubble was observed in recent tests of the 32-T magnet prototype coils. The impact of the gas bubble on the cooling of the 32-T YBCO prototype coils was tested, and the test results are presented.
机译:液态氦用作高场超导磁体或在国家高磁场实验室在高磁场中测试的样品的冷却剂。当磁场逐渐增大时,由于抗磁性弱,由线圈中的热损失和低温恒温器的外部环境产生的蒸发氦气会被捕集到液氦浴中小于2100的区域中氦气结果导致磁体或样品的表面部分或什至全部被积累的氦气而不是液态氦覆盖。氦气的导热系数非常低,可能会导致磁体或样品的冷却效率低下。在YBCO线圈开发的开始阶段,被困气泡在被困气泡的区域引起温度升高,并阻止了测试线圈斜升到更高的电流。这就提出了要在液氦浴中冷却的32-T磁体的冷却问题,因为捕获的气泡可能导致在该气泡区域内磁体的冷却效率低下。进行了相关测试,并且在最近对32-T磁体原型线圈的测试中观察到了所捕获的气泡。测试了气泡对32-T YBCO原型线圈冷却的影响,并给出了测试结果。

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