液态金属内部电涡流的三维建模及外部磁场的影响

M. Al Nasser, E. Karimi-Sibaki, M. Wu, C. Redl, A. Ishmurzin, N. Voller, G. Hackl, A. Kharicha
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引用次数: 1

摘要

当导电液体内部的电流与其自感应磁场相互作用时,就会产生电涡流。流动结构和流动强度由电流值和外部磁场决定。我们在此介绍液态金属圆柱体内部电涡流的三维模拟。模拟结果显示了低电流时的典型电涡流结构。在没有任何外部磁场的情况下,较高的电流会在电涡流内部引起湍流。在存在地球磁场的情况下,流动结构会受到很大影响。根据施加的电流与地球磁场的比率,在地球磁场的作用下,域内会出现旋风、龙卷风和绳状龙卷风。
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3D Modelling of Electro Vortex Flow Inside Liquid Metal and Effect of External Magnetic Fields
Electrovortex flow emerges when the current inside conducting liquids interacts with its self-induced magnetic field. The flow structure and strength of the flow are dictated by the current value and the presence of an external magnetic field. We present here 3D simulations for the electrovortex flow inside a liquid metal cylinder. The results presented reveal a typical electrovortex structure for low currents. Higher currents induce turbulence inside the electrovortex flow without any presence of an external magnetic field. In presence of Earth’s magnetic field, the flow structure is affected significantly. Cyclone, tornado, and rope tornado are observed inside the domain due to the earth’s magnetic field depending on the ratio of current applied and the earth’s magnetic field.
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