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Quench analysis of an ITER 13 T-40 kA Nb_3Sn coil (CS insert)

机译:ITER 13 T-40 kA Nb_3Sn线圈(CS插入件)的淬火分析

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In order to analyze the quench characteristic of a cable-in-conduit (CIC) conductor that has a sub-cooling channel at the center of conductor cross section, an axisymmetric two-dimensional calculation model was developed. The tests and calculation results of the central solenoid (CS) insert were compared regarding the pressure drop and the behavior of the total voltage, temperature and normal zone propagation in the quench. They show good agreement. Therefore, the effectiveness of the calculation model is verified. It was also found that there is coolant convection between the central channel and bundle region even in a steady state. This makes the pressure drop in the central channel larger than that in a cylindrical pipe which has a smooth surface. In addition, it was found that the higher temperature of the coolant flowing through the central channel heats the coolant and the cable in the bundle region. It can be said that the hot coolant flowing through the central channel accelerates normal zone propagation.
机译:为了分析在导体横截面中心具有过冷通道的电缆导管(CIC)导体的淬火特性,建立了轴对称二维计算模型。比较了中央螺线管(CS)插件的测试和计算结果,涉及压降以及总电压,温度和淬火中正常区域传播的行为。他们表现出良好的协议。因此,验证了计算模型的有效性。还发现即使在稳定状态下,在中央通道和管束区域之间也存在冷却剂对流。这使得中央通道中的压降大于具有光滑表面的圆柱形管中的压降。另外,发现流过中央通道的冷却剂的较高温度加热了束区域中的冷却剂和电缆。可以说,流过中央通道的热冷却剂加速了正常的区域传播。

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