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Plasma rotation effects on magnetic island formation and the trigger of disruptions in reversed shear plasma

机译:等离子体旋转对磁岛形成的影响以及反向剪切等离子体中破坏的触发

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摘要

Plasma rotation effects on the trigger and the evolution of MHD activities in reversed shear profiles are studied by nonlinear MHD simulations. It is found that, in a rotating plasma, magnetic islands formed around the inner and outer magnetic resonant surfaces, which are stable for the tearing mode, by an external perturbation (driven magnetic island), evolve with different growth rates during an initial growth phase. After the initial growth phase, an outer magnetic island grows rapidly prior to the inner one and triggers a rapid growth of the inner magnetic island. At the final phase, enlarged magnetic islands flatten a q-profile in a wide radial region including the plasma centre. Though this final phase closely resembles a nonlinear destabilization of a spontaneous double tearing mode (Ishii et al 2002 Phys. Rev. Lett. 89 205002), this process can explain the time delay of a plasma edge oscillation in triggering an internal MHD event and disruption.
机译:通过非线性MHD模拟研究了等离子体旋转对反向剪切剖面中MHD活动的触发和演化的影响。已经发现,在旋转的等离子体中,在内部和外部磁共振表面周围形成的磁岛(在撕裂模式下是稳定的)通过外部扰动(驱动磁岛)在初始生长阶段以不同的生长速率发展。 。在初始生长阶段之后,外磁性岛先于内磁性岛快速生长,并触发内磁性岛的快速生长。在最后阶段,扩大的磁岛在包括等离子体中心在内的宽径向区域内将q轮廓展平。尽管此最后阶段非常类似于自发双撕裂模式的非线性失稳(Ishii等,2002 Phys。Rev. Lett。89 205002),但此过程可以解释触发内部MHD事件和破坏的等离子体边缘振荡的时间延迟。 。

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