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The Role of Resistivity on the Efficiency of Magnetic Reconnection in MHD

机译:电阻率的效率的作用下的永磁磁场重联

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Using a resistive MagnetoHydroDynamic (MHD) simulation, we study how the magnitude and shape of diffusion influence magnetic reconnection. Specifically, we investigate how and why the reconnection rate is influenced by variations in the diffusion distribution and magnitude. By running multiple MHD simulations where we vary the localized resistivity, we find that the properties of the diffusion region greatly influence the rate of reconnection. Increasing the magnitude of the imposed resistivity results in a higher reconnection rate, but the rate saturates at approximately 0.2. We show how a redistribution of the current density, leading to a bifurcated current sheet, play a major role in this limitation. In addition, we investigate the impact of different shapes of resistive region. The shape of the diffusion region also plays a major role in how efficient the reconnection energy conversion can operate. The highest reconnection rate, approximately 0.25, is achieved for an optimal opening angle. Our results imply that reconnection has a speed limit that may depend on properties outside the diffusion region.
机译:使用一个电阻磁流体动力(磁流体动力)仿真中,我们研究如何大小和形状磁重联的扩散影响。具体地说,我们研究如何以及为什么重联率是受变化的影响扩散分布和大小。运行多个磁流体动力模拟我们不同的地方局部电阻率,我们发现大大扩散区域的属性影响重新连接的速度。对电阻率的大小的结果重联率较高,但税率在大约0.2浸透。电流密度的重新分配,导致当前表分为两部分,扮演了重要的角色这种限制。不同形状的电阻的影响。也是一个扩散的形状区域如何有效的重新连接的主要角色能量转换可以操作。重新连接率,大约0.25,实现最优孔径角。结果表明,重新连接有一个速度限制这可能取决于属性外的地区扩散。

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