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Global 3D Braginskii simulations of the tokamak edge region of IWL discharges

机译:IWL排放托卡马克边缘区域的全局3D Braginskii模拟

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A study of plasma turbulence and profile evolution in conditions of low (L-mode) and high (H-mode) confinement at the edge of an axisymmetric, nested circular flux-surface approximation to an inner wall limited (IWL) Alcator C-Mod discharge is presented, using numerical simulations with the global drift-ballooning (GDB) code. GDB solves driftreduced Braginskii two-fluid equations for electromagnetic low-frequency turbulence in a 3D annulus centered on the last closed flux-surface (LCFS). Three simulations that investigate the conditions of a reference L-mode, a high density, and a high temperature (or H-mode-like) shot were performed using realistic parameters. L-mode transport appears to be largely driven by drift resistive ballooning structures. Its pressure profile exhibits a near-SOL breakpoint that Mirror Langmuir Probes (MLP) detect in C-Mod. The high density simulation sees an increase in the size of convective cells and enhanced turbulent transport, while H-mode conditions develop improved confinement, balanced E × B and ion diamagnetic drifts in the closed-flux region, and spontaneous generation of temperature pedestal with a density pedestal remaining absent. A statistical characterization of the turbulence both in the SOL and the closed-flux region is presented.
机译:在轴对称,嵌套圆形通量表面近似到内壁有限(IWL)Alcator C-Mod的边缘的低(L-模式)和高(H-模式)约束条件下等离子湍流和轮廓演变的研究使用带有全局漂移气球(GDB)代码的数值模拟来显示排放。 GDB在以最后一个封闭磁通面(LCFS)为中心的3D环空中,针对电磁低频湍流求解了减少漂移的Braginskii两流体方程。使用实际参数进行了三个模拟,这些模拟研究了参考L模式,高密度和高温(或类似H模式)射击的条件。 L型运输似乎主要由抗漂移气球结构驱动。它的压力曲线显示了一个接近SOL的断点,这是Mirror Langmuir探针(MLP)在C-Mod中检测到的。高密度模拟发现对流单元的尺寸增加,湍流传输增强,而H模式条件则改善了封闭性,在封闭通量区域内平衡了E×B和离子反磁性漂移,并自发产生了温度场。密度基座仍不存在。给出了SOL和封闭通量区域中湍流的统计特征。

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