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Ion motion control in RMF current drive by means of a frequency modulated counter-RMF

机译:RMF电流驱动中的离子运动控制,通过调频计数器-RMF

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numerical model of current drive is developed in an infinitely long plasma cylinder, by means of two counter-rotating magnetic fields (RMFs) where the frequency of the (+) RMF is allowed to vary. The accessibility of steady state solutions where both RMFs penetrate into the plasma much farther than the classical skin depth, the electron fluid rotating synchronously with the (-) RMF and the ion fluid rotating synchronously with the (+) RMF, is examined. It is demonstrated that the steady state solutions are accessible from a broader class of initial conditions by allowing the frequency of the (+) RMF to decrease linearly. The rate of change in the frequency of the (+) RMF is required to be greater than the ion relaxation rate due to collisions with the electron fluid. [References: 8]
机译:电流驱动的数值模型是在无限长的等离子圆柱体中通过两个反向旋转磁场(RMF)开发的,其中允许(+)RMF的频率发生变化。研究了稳态溶液的可及性,其中两个RMF都比经典趋肤深度更深地渗透到等离子体中,电子流体与(-)RMF同步旋转,而离子流体与(+)RMF同步旋转。通过允许(+)RMF的频率线性降低,可以证明从更广泛的初始条件中可以获取稳态解。由于与电子流体的碰撞,(+)RMF的频率变化率必须大于离子弛豫率。 [参考:8]

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