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On the Helical MHD Mode in a Finite-Conductivity Tokamak Plasma

机译:在有限电导率下的螺旋MHD模式下的螺旋形血管

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A helical MHD perturbation in a finite-conductivity tokamak plasma has been considered in the straight-cylinder model in a situation where there is no resonance surface q = m/n in plasma. The radial eigenfunction of the helical mode, in addition to the large-scale component described at sigma(||) by the ideal MHD equation, contains a small-scale component localized near the wall and near discontinuities in the radial profiles of the unperturbed quantities. At smooth profiles, the small-scale component is attached to the wall and is smaller in magnitude than the large-scale component. Therefore, beyond a thin near-wall plasma layer, the mode is close to the large-scale ideal MHD mode. The presence of the small-scale component is necessary to satisfy the boundary conditions for the perturbed field on the wall.
机译:在直流缸模型中,在等离子体中没有共振表面Q = M / N的情况下,在直筒模型中考虑了有限导电Tokamak等离子体中的螺旋MHD扰动。 除了由理想的MHD方程中Σ(||)描述的大规模组件之外,螺旋模式的径向特征函数还包含一个局部靠近墙壁附近的小规模分量,并且在不受干扰的数量的径向剖面中近的不连续性 。 在平滑的轮廓下,小尺寸分量连接到墙壁上,幅度较小,大小比大规模分量更小。 因此,除了薄的近壁等离子体层之外,该模式靠近大规模理想的MHD模式。 需要小规模部件的存在,以满足墙壁上的扰动场的边界条件。

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