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首页> 外文期刊>Superconductor Science & Technology >Coupled mechanical-electromagnetic-thermal-hydraulic effects in Nb3Sn cable-in-conduit conductors for ITER
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Coupled mechanical-electromagnetic-thermal-hydraulic effects in Nb3Sn cable-in-conduit conductors for ITER

机译:ITER Nb3Sn导管内导体中的机械-电磁-热-液压耦合效应

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摘要

The crucial multi-physics problem of how to extrapolate from the performance of an isolated Nb3Sn strand measured in the laboratory to the performance of a superconducting coil using multi-strand twisted cables is addressed here. We consider the particular case of the path going from the LMI strand to the international thermonuclear experimental reactor (ITER) toroidal field model coil (TFMC), through its associated Full Size Joint Sample, the TFMC-FSJS. Mechanical, electromagnetic and thermal-hydraulic conditions are simulated using the ANSYS, ENSIC and Mithrandir/M&M codes, respectively. At least in this case, the DC performance of the short sample turns out to be relatively close to (considering error bars) but not fully representative of that of the coil, showing higher (less compressive) effective thermal strain but also higher sensitivity to the electromechanical load.
机译:此处解决了至关重要的多物理问题,即如何从实验室中测得的隔离Nb3Sn链的性能外推到使用多股双绞电缆的超导线圈的性能。我们考虑从LMI链到国际热核实验堆(ITER)环形场模型线圈(TFMC)的路径的特殊情况,方法是通过其关联的全尺寸联合样本TFMC-FSJS。机械,电磁和热工条件分别使用ANSYS,ENSIC和Mithrandir / M&M代码进行模拟。至少在这种情况下,短样本的直流性能相对接近(考虑误差线),但不能完全代表线圈的直流性能,显示出较高的(较低压缩性)有效热应变,但对线圈的敏感度较高。机电负载。

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