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Plasma Relaxation in Hall Magnetohydrodynamics

机译:霍尔磁流体力学中的等离子体弛豫

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摘要

Parker's formulation of isotopological plasma relaxation process in magnetohydrodynamics (MHD) is extended to Hall MHD. The torsion coefficient α in the Hall MHD Beltrami condition turns out now to be proportional to the potential vorticity. The Hall MHD Beltrami condition becomes equivalent to the potential vorticity conservation equation in two-dimensional (2D) hydrodynamics if the Hall MHD Lagrange multiplier β is taken to be proportional to the potential vorticity as well. The winding pattern of the magnetic field lines in Hall MHD then appears to evolve in the same way as potential vorticity lines in 2D hydrodynamics.
机译:Parker在磁流体动力学(MHD)中的等离子等离子体弛豫过程的公式扩展到了MHD大厅。现在证明霍尔MHD Beltrami条件下的扭转系数α与潜在涡度成正比。如果霍尔MHD拉格朗日乘数β也与势涡成比例,则霍尔MHD Beltrami条件变得等效于二维(2D)流体力学中的势涡守恒方程。然后,MHD大厅中磁场线的缠绕方式似乎与二维流体力学中的潜在涡流线一样演化。

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