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Compatibility of reduced activation ferritic steel wall with high performance plasma on JFT-2M

机译:还原活化铁素体钢壁与高性能等离子在JFT-2M上的兼容性

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In JFT-2M, the applicability of reduced activation ferritic steel to a fusion demonstration reactor has been demonstrated mainly concerning the ferromagnetic effect on plasma production, control, stability and confinement. The compatibility of the close ferritic wall with high-normalized beta plasmas has been investigated mainly because the demonstration reactor will utilize the wall stabilization effect. Due to improvements in the operation scenario and the modification of the guard limiter configuration, the region showing good compatibility was extended to the closer wall position (the wall position was normalized to the plasma minor radius; r(wall)/a similar to 1.25) and the higher normalized beta (beta(N) similar to 3.5), compared with the previous works with the relatively far wall position and stronger magnetic field (Tsuzuki K. et al 2003 Nucl. Fusion. 43 1288). A reduction in the growth rate of the instability was also observed in the close wall case, which presumably corresponds to the wall stabilization effect, similar to a resistive wall without ferromagnetism.
机译:在JFT-2M中,已证明还原活化铁素体钢在聚变演示反应堆中的适用性主要涉及铁磁对等离子体产生,控制,稳定性和限制的影响。已经研究了紧密铁素体壁与高规格化β等离子体的相容性,这主要是因为示范反应堆将利用壁稳定作用。由于操作场景的改进和防护限制器配置的修改,显示出良好兼容性的区域扩展到了更靠近壁的位置(壁位置被标准化为等离子体次半径; r(wall)/ a类似于1.25)与具有相对较远的壁位置和更强磁场的以前的工作相比,更高的归一化beta(类似于3.5的beta(N))(Tsuzuki K.等,2003 Nucl。Fusion。43 1288)。在封闭壁的情况下,还观察到不稳定性的增长速度降低,这大概与壁稳定效应相对应,类似于没有铁磁性的电阻壁。

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