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Evolutionary of Discontinuous Plasma Flows in the Vicinity of Reconnecting Current Layers

机译:在重新连接电流层附近的不连续等离子体流的演化

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The question about the interpretation of numerical experiments on magnetic reconnection in solar flares is considered. A correspondence between the standard classification of magnetohydrodynamic discontinuities and the parameters characterizing the mass flux through a discontinuity and the magnetic field configuration has been established within a classical formulation of the problem on discontinuous magnetohydrodynamic flows. A pictorial graphical representation of the relationship between the angles of the magnetic field vector relative to the normal to the discontinuity plane on both its sides has also been found. The relations between the parameters of a two-dimensional discontinuous flow have the simplest form in a frame of reference where the magnetic field lines (B) are parallel to the matter velocity (u) the de Hoffmann-Teller frame. The question about the transformation of the magnetic field configuration when passing to a "laboratory" frame of reference where (v • B ) ≠ 0, i.e., an electric field is present, is considered in this connection. The result is applied to the analytical solution of the problem on the magnetic field structure in the vicinity of a reconnecting current layer obtained previously by Bezrodnykh et al. The regions of nonevolutionary shocks are shown to appear near the endpoints of a current layer with reverse currents.
机译:考虑到有关太阳耀斑中磁重连的数值实验的解释问题。磁流体动力不连续性的标准分类与表征通过不连续性的质量通量和磁场配置的参数之间的对应关系已在关于不连续磁流体动力流的问题的经典表述中得到确立。还发现了磁场矢量相对于不连续平面两侧的法线的角度之间的关系的图形表示。二维不连续流参数之间的关系在参考系中具有最简单的形式,其中磁场线(B)平行于de Hoffmann-Teller框架的物质速度(u)。在这种情况下,考虑到当传递到(v•B)≠0(即存在电场)的“实验室”参考系时磁场配置的转换问题。该结果被应用于先前由Bezrodnykh等人获得的重连电流层附近磁场结构问题的解析解。非旋转冲击的区域显示为在具有反向电流的电流层的端点附近出现。

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