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Azimuthally non-uniform equilibrium of field-reversed configuration sustained by rotating magnetic field with spatial high-harmonic components

机译:带有空间高谐波分量的旋转磁场维持的场反转配置的方位角非均匀平衡

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摘要

Field-reversed configurations (FRCs) sustained by rotating magnetic fields (RMFs) with spatial high-harmonic components have been studied in a metal flux conserver of the FRC injection experiment apparatus. In the RMF-FRC equilibrium, significant azimuthal variation of the axial magnetic field, the electron density and the electron rotation velocity are observed. This deformation of the core FRC plasma is brought about by the strong azimuthal non-uniformity of the RMF and the configuration is consistent with the continuity of the electron flow flux and the magnetic field reversal conditions. The RMF with spatial high-harmonic components provides quasi-steady current drive of high-beta and singly-connected FRC plasmas without destructive modes and will be helpful in reducing the particle loss and thermal load when applied to the fusion core plasma.
机译:在FRC注入实验装置的金属通量存储装置中,已经研究了由具有空间高谐波分量的旋转磁场(RMF)维持的场反转配置(FRC)。在RMF-FRC平衡中,观察到轴向磁场,电子密度和电子旋转速度的明显方位角变化。核心FRC等离子体的这种变形是由RMF的强方位角不均匀性引起的,并且其构造与电子流通量的连续性和磁场反转条件一致。具有空间高谐波分量的RMF提供了高β和单连接FRC等离子体的准稳态电流驱动,而没有破坏性模式,当应用于聚变核等离子体时,将有助于减少颗粒损失和热负荷。

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