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Computer simulation of nonlinear phenomena in plasmas

机译:等离子体中非线性现象的计算机模拟

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Simulation Science is explored by developing Man-machine Interactive System for Simulation (MISSION), in which an advanced virtual reality visualization system is an important element. Plasma is an exemplar of a medium governed by complexity, and plasma physics research is evolving from a "static science" into a "dynamic science". In this paper, a topic in Simulation Science on nonlinear behavior of plasma physics is picked up, specifically, energy relaxation phenomena. Three-dimensional simulations are executed to clarify physical mechanisms of relaxation activities that are observed in the spherical tokamak experiments. The simulation results predict an occurrence of self-organizing transition from an axisymmetric state to a stable n = 2 helical state.
机译:通过开发仿真人机交互系统(MISSION)来探索仿真科学,其中先进的虚拟现实可视化系统是重要的元素。等离子体是受复杂性支配的媒介的典范,等离子体物理研究正在从“静态科学”发展为“动态科学”。本文研究了“模拟科学”中有关等离子体物理非线性行为的主题,特别是能量弛豫现象。执行三维模拟以阐明在球形托卡马克实验中观察到的松弛活动的物理机制。仿真结果预测了从轴对称状态到稳定的n = 2螺旋状态的自组织转变的发生。

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