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Study on unsymmetrical phenomena of vapor cooled current leads

机译:蒸气冷却电流引线的非对称现象研究

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Unsymmetrical phenomena of gas flow and temperature distributions between a pair of vapor cooled current leads (VCCL) often occur in superconducting systems, which makes the VCCL depart from the optimum operating status, consequently results in an increased heat leak to the cryostat and even a destroyed safety operating condition of the VCCL. To analyze this problem, a numerical model for the VCCL was built, which is based on the conservation equation of energy for the solid and the conservation equations of mass, momentum, and energy for the fluid. With this model, unsymmetrical phenomena between a pair of VCCL were analyzed. Unbalanced gas flow distribution in a single multi-channel VCCL was also studied. Some conclusions were made for the design of VCCL, and a new type of VCCL with combined positive and negative poles and a helical cross section structure was developed. Test results showed that the unsymmetrical phenomena can be well restrained by using the new type of VCCL.
机译:在超导系统中经常会发生一对气体冷却的电流引线(VCCL)之间气流和温度分布的不对称现象,这使VCCL脱离了最佳工作状态,从而导致低温恒温器的热泄漏增加,甚至损坏VCCL的安全操作条件。为了分析该问题,建立了VCCL的数值模型,该模型基于固体的能量守恒方程和流体的质量,动量和能量守恒方程。使用该模型,分析了一对VCCL之间的不对称现象。还研究了单个多通道VCCL中的不平衡气流分布。对VCCL的设计提出了一些结论,并开发了一种新型的具有正负极组合和螺旋截面结构的VCCL。测试结果表明,使用新型VCCL可以很好地抑制不对称现象。

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