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Non-linear simulations of internal reconnection events in spherical tokamaks

机译:球形托卡马克内部重新连接事件的非线性模拟

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摘要

Three dimensional MHD simulations are executed in a full toroidal geometry to clarify the physical mechanisms of the internal reconnection event (IRE) which is observed in spherical tokamak experiments. The simulation results reproduce several main properties of IREs. A notable property in the linear growth of modes is the simultaneous excitation of multiple low n modes, which grow together with similar growth rates. A spontaneous phase alignment mechanism among these excited modes is found in the non-linear stage of the development, which causes a bulge-like deformation of the torus and subsequent expulsion of heat energy to the external region through the occurrence of external reconnection.
机译:在完整的环形几何体中执行三维MHD模拟,以阐明在球形托卡马克实验中观察到的内部重新连接事件(IRE)的物理机制。仿真结果重现了IRE的几个主要特性。模线性增长的一个显着特性是同时激发多个低n模,它们以相似的增长率生长。在开发的非线性阶段中发现了这些激发模式中的自发相位对准机制,这导致圆环的凸起状变形,并随后通过外部重新连接而将热能排出到外部区域。

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