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Rmp Enhanced Transport And Rotational Screening In Simulations Of Diii-d Plasmas

机译:Rmp增强的运输和旋转筛选在Diii-d等离子体的模拟中

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Nonlinear magnetohydrodynamic simulations of an equilibrium in the DIII-D geometry with applied resonant magnetic perturbations (RMPs) are performed. The reduction in pedestal density observed in RMP experiments is explained in terms of E × B convection cells crossing the separatrix. Results are obtained both in the absence of plasma rotation and for two rotation profiles having different values at the separatrix. The effects of rotation on RMP screening as well as on the density transport mechanism are obtained from the simulations. Poloidal mode spectra from the simulations show amplification of the resonant components of the error field for the non-rotating plasma. With rotation, this amplification is reduced and a toroidal phase shift appears. At the highest value of rotation, an oscillation in the toroidal mode number n = 3 is observed. These results are considered in light of analytic error field theory.
机译:进行了DIII-D几何形状中具有平衡的非线性磁流体动力学模拟,并应用了共振磁扰动(RMP)。在RMP实验中观察到的基座密度的降低是通过穿过对流层的E×B对流细胞来解释的。在没有等离子旋转的情况下以及对于在皮层处具有不同值的两个旋转轮廓都获得了结果。从模拟中获得了旋转对RMP筛选以及密度传输机制的影响。来自模拟的极谱模式光谱显示了非旋转等离子体的误差场的谐振分量的放大。随着旋转,该放大率降低并且出现环形相移。在最高旋转值下,观察到环形模式数n = 3的振荡。根据分析误差场理论来考虑这些结果。

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