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A Fixed-point Scheme for the Numerical Construction of Magnetohydrostatic Atmospheres in Three Dimensions

机译:三维静磁静力学数值构造的定点方案

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Magnetohydrostatic models of the solar atmosphere are often based on idealized analytic solutions because the underlying equations are too difficult to solve in full generality. Numerical approaches, too, are often limited in scope and have tended to focus on the two-dimensional problem. In this article we develop a numerical method for solving the nonlinear magnetohydrostatic equations in three dimensions. Our method is a fixed-point iteration scheme that extends the method of Grad and Rubin (Proc. 2nd Int. Conf. on Peaceful Uses of Atomic Energy 31, 190, 1958) to include a finite gravity force. We apply the method to a test case to demonstrate the method in general and our implementation in code in particular.
机译:太阳大气的静磁静力模型通常基于理想化的解析解,因为基本方程式很难完全概括地求解。数值方法也常常受到范围的限制,并且倾向于集中在二维问题上。在本文中,我们开发了一种用于求解三维静磁静力方程的数值方法。我们的方法是定点迭代方案,它扩展了Grad和Rubin方法(和平利用原子能的第2届国际学术会议,1958年1月31日),以包括有限重力。我们将该方法应用于测试案例,以大体上演示该方法,尤其是在代码中的实现。

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