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Reconstruction of the Eddy Current Distribution on the Vacuum Vessel in a Reversed Field Pinch Device based on the External Magnetic Sensor Signals

机译:基于外部磁传感器信号的反向场收缩装置中真空容器上涡流分布的重构

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摘要

For the MHD equilibrium reconstruction of a reverse field pinch device, it is a big issue to identify accurately the strong eddy current flow on the shell. In the present work, boundary integrals of the eddy current along the shell are added to the conventional Cauchy-condition surface method formulation. The eddy current profile is unknown in advance but straightforwardly identified using only the signals from magnetic sensors located outside the plasma. Two ideas are introduced to overcome the numerical difficulties encountered in the problem. One is an accurate boundary integral scheme to damp out the near singularity occurring at the sensor position very close to the shell. The other is the modified truncated singular value decomposition technique to solve an ill-conditioned matrix equation when a large number of nodal points exist on the shell. The capability of the new method is demonstrated for a test problem modeling the RELAX device.
机译:对于反向场收缩装置的MHD平衡重建,准确识别壳体上的强涡流是一个大问题。在当前的工作中,沿壳的涡流的边界积分被添加到传统的柯西条件表面方法公式中。涡流曲线事先是未知的,但仅使用来自位于等离子体外部的磁传感器的信号即可直接识别。引入了两个想法来克服在该问题中遇到的数值困难。一种是精确的边界积分方案,以消除发生在非常靠近外壳的传感器位置处的近奇点。另一种是改进的截断奇异值分解技术,当壳上存在大量节点时,可以求解病态矩阵方程。演示了该新方法对RELAX设备建模的测试问题的功能。

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