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Resistive MHD simulation of edge-localized-modes for double-null discharges in the MAST device

机译:MAST设备中双零位放电的边缘定位模式的电阻MHD模拟

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Recent development of the nonlinear magneto hydrodynamic (MHD) code JOREK has enabled the alignment of its two-dimensional finite-element grid along poloidal flux surfaces for double-null Grad-Shafranov equilibria. In previous works with the JOREK code, only single X-point plasmas were studied. The fast-camera diagnostic on MAST, which gives a global view of the pedestal filamentation during an ELM crash, clearly shows filaments travelling far into the scrape-off layer, as far as the first wall. Simulation of such a filament dynamics in MAST double-null plasmas is presented here and compared with experimental observations. In addition to direct comparison with the fast-camera images, general aspects of filaments are studied, such as their radial speed and composition. A qualitative validation of simulations is carried out against other diagnostics, such as the Thomson-scattering profiles or the infra-red camera images. Simulations are found to reproduce experimental edge localized modes in a reasonable manner, with similar energy losses and divertor heat-flux profiles. However, the MHD model used for those simulations is a reduced MHD model, which is likely approaching the limit of its applicability for the MAST device. Also, the absence of diamagnetic drift terms in the present MHD model results in nonlinear simulations being dominated by the highest mode number, and thus coupling with lower mode numbers is not observed.
机译:非线性磁流体动力(MHD)代码的最新发展使得JOREK能够沿双极性通量表面对齐其二维有限元网格,以实现双零级Grad-Shafranov平衡。在先前使用JOREK代码的工作中,仅研究了单个X点等离子体。 MAST上的快速摄像头诊断功能可提供ELM碰撞过程中基座细丝的全局视图,清楚地显示出细丝行进到刮擦层远至第一壁。在此介绍了在MAST双无效等离子体中这种灯丝动力学的模拟,并将其与实验观察结果进行了比较。除了直接与快速相机图像进行比较之外,还研究了细丝的一般方面,例如其径向速度和成分。针对其他诊断,例如汤姆森散射曲线或红外摄像机图像,对模拟进行了定性验证。发现模拟以合理的方式重现了实验边缘局部模式,具有相似的能量损失和偏滤器热通量曲线。但是,用于这些模拟的MHD模型是简化的MHD模型,这很可能接近其在MAST设备中的适用性极限。同样,在当前的MHD模型中不存在反磁性漂移项,导致非线性仿真以最高模数为主导,因此未观察到与较低模数的耦合。

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