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New insights into the generalized Rutherford equation for nonlinear neoclassical tearing mode growth from 2D reduced MHD simulations

机译:二维简化MHD模拟对非线性新古典撕裂模增长的广义Rutherford方程的新见解

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Two dimensional reduced MHD simulations of neoclassical tearing mode growth and suppression by ECCD are performed. The perturbation of the bootstrap current density and the EC drive current density perturbation are assumed to be functions of the perturbed flux surfaces. In the case of ECCD, this implies that the applied power is flux surface averaged to obtain the EC driven current density distribution. The results are consistent with predictions from the generalized Rutherford equation using common expressions for Δ′_(bs) and Δ′_(ECCD). These expressions are commonly perceived to describe only the effect on the tearing mode growth of the helical component of the respective current perturbation acting through the modification of Ohm's law. Our results show that they describe in addition the effect of the poloidally averaged current density perturbation which acts through modification of the tearing mode stability index. Except for modulated ECCD, the largest contribution to the mode growth comes from this poloidally averaged current density perturbation.
机译:进行了二维的新古典撕裂模式增长和通过ECCD抑制的MHD模拟。自举电流密度的扰动和EC驱动电流密度的扰动被认为是被扰动的磁通表面的函数。对于ECCD,这意味着对施加的功率进行磁通表面平均,以获得EC驱动的电流密度分布。结果与使用通用表达式Δ'_(bs)和Δ'_(ECCD)的广义Rutherford方程的预测一致。通常认为这些表达式仅描述了通过欧姆定律的修改对相应电流扰动的螺旋分量的撕裂模式增长的影响。我们的结果表明,他们还描述了通过修改撕裂模式稳定性指数而产生的倍数平均电流密度扰动的影响。除了调制的ECCD以外,对模态增长的最大贡献来自于这种倍数平均电流密度扰动。

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