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Numerical Simulation of Thermal Properties of a Cryocooler-Cooled Bi2223 Superconducting Pulsed Coil in AC Operation

机译:交流致冷器冷却的Bi2223超导脉冲线圈热性能的数值模拟

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We fabricated a cryocooler-cooled Bi2223 superconducting pulsed coil and experimentally studied the thermal runaway in dc or ac operation. We carried out numerical simulation of thermal properties of the coil in order to explain the thermal runaway of the coil. Firstly, we analyzed the total heat generation of flux-flow losses and ac losses inside the winding from the experimental results of the external field losses and the$E-J$characteristics for the Bi2223 strands. Secondly, we numerically simulated the thermal properties by using a 2-dimensional heat conduction equation with axial symmetry. The numerical simulation shows the relation between the initiation of thermal runaway and the temperature distribution with highly concentrated heat source in the winding. We have a semi-quantitative agreement between the numerical results and the experimental ones for the condition of the thermal runaway.
机译:我们制造了一种低温冷却器冷却的Bi2223超导脉冲线圈,并通过实验研究了直流或交流操作中的热失控。为了说明线圈的热失控,我们对线圈的热性能进行了数值模拟。首先,我们从外部磁场损失和Bi2223股的$ E-J $特性的实验结果分析了绕组内部通量损失和交流损失的总热量。其次,我们使用具有轴向对称性的二维热传导方程数值模拟了热性能。数值模拟显示了热失控的开始与绕组中高度集中的热源的温度分布之间的关系。对于热失控的条件,我们在数值结果和实验结果之间有一个半定量的协议。

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