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首页> 外文期刊>Physical review letters >Effects of Anisotropic Thermal Conductivity in Magnetohydrodynamics Simulations of a Reversed-Field Pinch
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Effects of Anisotropic Thermal Conductivity in Magnetohydrodynamics Simulations of a Reversed-Field Pinch

机译:各向异性热导率在反向场捏磁流体动力学模拟中的作用

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A compressible magnetohydrodynamics simulation of the reversed-field pinch is performed including anisotropic thermal conductivity. When the thermal conductivity is much larger in the direction parallel to the magnetic field than in the perpendicular direction, magnetic field lines become isothermal. As 'a consequence, as long as magnetic surfaces exist, a temperature distribution is observed displaying a hotter confined region, while an almost uniform temperature is produced when the magnetic field lines become chaotic. To include this effect in the numerical simulation, we use a multiple-time-scale analysis, which allows us to reproduce the effect of a large parallel thermal conductivity. The resulting temperature distribution is related to the existence of closed magnetic surfaces, as observed in experiments. The magnetic field is also affected by the presence of an anisotropic thermal conductivity.
机译:进行反向场收缩的可压缩磁流体动力学模拟,包括各向异性导热系数。当在平行于磁场的方向上的热导率比在垂直方向上的热导率大得多时,磁场线变成等温的。结果,只要存在磁性表面,就观察到温度分布显示出更热的封闭区域,而当磁场线变得混乱时,产生几乎均匀的温度。为了在数字仿真中包括这种影响,我们使用了多时间尺度分析,这使我们能够重现大平行热导率的影响。如在实验中观察到的,所得的温度分布与封闭的磁性表面的存在有关。各向异性热导率的存在也会影响磁场。

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