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A 3-D MHD equilibrium description of nonlinearly saturated ideal external kink/peeling structures in tokamaks

机译:托卡马克中非线性饱和理想外部扭结/剥离结构的3-D MHD平衡描述

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摘要

Novel free boundary magnetohydrodynamic equilibrium states with spontaneous three-dimensional (3-D) deformations of the plasma vacuum interface are computed. The structures obtained look like saturated ideal external kink/peeling modes. Large edge pressure gradients yield toroidal mode number n = 1 distortions when the edge bootstrap current is large and higher n corrugations when this current is small Linear ideal MHD stability analyses confirm the nonlinear saturated ideal kink equilibrium states produced and we can identify the Pfirsch-Schluter current as the main linear instability driving mechanism when the edge pressure gradient is large. The dominant non-axisymmetric component of this Pfirsch-Schluter current drives a near resonant helical parallel current density ribbon that aligns with the near vanishing magnetic shear region caused by the edge bootstrap current. This current ribbon is a manifestation of the outer mode previously found on JET (Solano 2010). We claim that the equilibrium corrugations describe structures that are commonly observed in quiescent H-mode tokamak discharges.
机译:计算了具有自发三维(3-D)等离子体真空界面变形的新型自由边界磁流体动力学平衡态。获得的结构看起来像是饱和的理想外部扭结/剥离模式。当边缘自举电流大时,大的边缘压力梯度会产生环形模式数n = 1畸变;当电流小时,大的n波纹会产生环形波纹。边缘压力梯度大时,电流是主要的线性不稳定性驱动机制。该Pfirsch-Schluter电流的主要非轴对称分量驱动一个近共振螺旋并联电流密度带,该带与边缘自举电流引起的近乎消失的磁剪切区域对齐。当前的功能区是以前在JET上发现的外部模式的体现(Solano 2010)。我们声称平衡波纹描述了在静态H模式托卡马克放电中通常观察到的结构。

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