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首页> 外文期刊>Journal of Computational Physics >The Fluid-Kinetic Particle-in-Cell method for plasma simulations
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The Fluid-Kinetic Particle-in-Cell method for plasma simulations

机译:用于等离子体模拟的流体 - 动力学粒子细胞方法

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摘要

A method that solves concurrently the multi-fluid and Maxwell's equations has been developed for plasma simulations. By calculating the stress tensor in the multi-fluid momentum equation by means of computational particles moving in a self-consistent electromagnetic field, the kinetic effects are retained while solving the multi-fluid equations. The Maxwell's and multi-fluid equations are discretized implicitly in time enabling kinetic simulations over time scales typical of the fluid simulations. The Fluid-Kinetic Particle-in-Cell method has been implemented in a three-dimensional electromagnetic code, and tested against the two-stream instability, the Weibel instability, the ion cyclotron resonance and magnetic reconnection problems. The method is a promising approach for coupling fluid and kinetic methods in a unified framework.
机译:已经开发了一种同时解决多流体和麦克斯韦方程的方法,用于等离子体模拟。 通过在自一致电磁场中移动的计算颗粒计算多流体动量方程中的应力张量,在求解多流体方程的同时保留动力学效应。 MaxWell和多流体方程被隐含地离散化,以便在流体模拟的典型时间尺度上实现动力学模拟。 流体 - 动力学粒子电池方法已经在三维电磁码中实现,并针对双流不稳定性,Weibel不稳定性,离子回旋谐振和磁性重新连接问题进行测试。 该方法是在统一框架中偶联流体和动力学方法的有希望的方法。

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