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Three-Dimensional Magnetohydrodynamic Description of the Process of Collision of a Solar Wind Shock Wave and the Earth's Bow Shock

机译:太阳风冲击波与地球弓激波碰撞过程的三维磁流体动力学描述

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摘要

The propagation of a solar wind shock wave along the surface of the Earth's bow shock is investigated within the framework of an ideal magnetohydrodynamic model in the three-dimensional non-plane-polarized formulation. The most characteristic values of the solar wind parameters and the interplanetary magnetic field strength are considered for the plane front of a solar wind shock wave moving at various velocities along the Sun-Earth radius. The global three-dimensional pattern of the interaction is constructed as a function of the angle of inclination of the surface of the bow shock to the solar wind velocity and the azimuthal angle along the curve of intersection of the fronts of the interacting shock waves. The evolution of the flow developed in the neighborhood of the bow shock is investigated and the parameters of the medium and magnetic field are calculated.
机译:在理想的磁流体动力学模型的框架内,在三维非平面极化公式中研究了太阳风冲击波沿地球弓激波表面的传播。太阳风参数的最特征值和行星际磁场强度被认为是沿着太阳地球半径以各种速度运动的太阳风冲击波的平面前沿。相互作用的整体三维模式是根据弓形激波表面相对于太阳风速的倾斜角和沿相互作用的激波波前的交点曲线的方位角构造的。研究了弓形激波附近流动的演变,并计算了介质和磁场的参数。

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