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Extended MHD Modelling with the Ten-Moment Equations

机译:十矩方程的扩展MHD建模

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High-order moment fluid equations for simulation of plasmas are presented. The ten-moment equations are a two-fluid model in which time dependent equations are used to advance the pressure tensor. With the inclusion of the full pressure tensor Finite Larmor Radius (FLR) effects are captured. Further, Hall-effects are captured correctly by including the full electron momentum equation. Hall and FLR effects are important to understand stability of compact toroids like Field Reversed Configurations (FRCs) and also to detailed understanding of small scale instabilities in current carrying plasmas. The effects of collisions are discussed. Solutions to a Riemann problem for the ten-moment equations are presented. The ten-moment equations show complex dispersive solutions which come about from the source terms. The model is validated with the GEM fast magnetic reconnection challenge problem.
机译:提出了用于等离子体模拟的高阶矩流体方程。十矩方程是一个两流体模型,其中时间相关方程用于推进压力张量。通过包含全压力张量,可以捕获有限拉莫半径(FLR)效果。此外,通过包括完整的电子动量方程,可以正确捕获霍尔效应。霍尔效应和FLR效应对于理解紧凑型环形磁极(如场反转配置(FRC))的稳定性以及对详细了解载流等离子体中的小规模不稳定性非常重要。讨论了碰撞的影响。给出了十矩方程的黎曼问题的解。十矩方程显示了复杂的色散解,它们来自源项。该模型已通过GEM快速磁重连接挑战问题进行了验证。

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