首页> 外文期刊>Journal of Plasma Physics >General three-dimensional equilibria for gravitating ideal magnetohydrodynamics of field-aligned steady incompressible flows with an application to solar prominences
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General three-dimensional equilibria for gravitating ideal magnetohydrodynamics of field-aligned steady incompressible flows with an application to solar prominences

机译:用于引人的技术对齐稳定不可压缩流动的理想磁力学流动的一般三维均衡与太阳能突出的应用

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This paper investigates the motion of three-dimensional ideal magnetohydrodynamics with incompressible flows. The governing equation is performed at steady state, with the magnetic field parallel to the plasma flow. The equations of stationary equilibrium are derived and described mathematically in Cartesian space. Two approaches for derivation of general three-dimensional solutions for Alfvenic and non-Alfvenic flows at constant and variable fluid densities are constructed. The general vector and scalar potentials of the velocity field are used to derive general formulas of general three-dimensional solutions for Alfvenic and non-Alfvenic flows. To verify the general results we have obtained, some examples are presented. An application that may be of interest for coronal loops and solar prominences is presented.
机译:本文研究了三维理想磁流动力学与不可压缩流动的运动。 控制方程以稳态执行,磁场平行于等离子体流。 在笛卡尔空间中,静止平衡的方程是在数学上衍生和描述的。 构造了两种衍生用于恒定和可变流体密度的烤肉和非烤流动的一般三维解决方案的方法。 速度场的一般矢量和标量电位用于导出用于烤肉和非抗方向的一般三维解决方案的通用公式。 为了验证我们获得的一般结果,提出了一些示例。 提出了可能对冠状环路和太阳突出感兴趣的应用程序。

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