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Numerical and analytical study of rotating flow in an enclosed cylinder under an axial magnetic field

机译:轴向磁场作用下密闭圆柱体内旋转流动的数值分析研究

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A numerical and analytical study of the steady laminar flow driven by a rotating disk at the top of an enclosed cylinder, having an aspect ratio H/R equal to 1, filled with a liquid metal, and submitted to an axial magnetic field B, is presented. The governing equations in cylindrical coordinates are solved by a finite volume method. In the absence of a magnetic field, the numerical method is validated via a comparison with experimental data; the latter was found to be in good agreement with the predictions. In the presence of a magnetic field, the analytical velocity profiles under the rotating disk and on the bottom wall obtained for a high value of the magnetic interaction parameter N are in excellent agreement with those obtained by numerical simulations. The effect of the top, bottom and vertical walls' conductivity on the flow is studied and found to be an important parameter in the control of the flow. [References: 28]
机译:由封闭圆柱体顶部的旋转圆盘驱动的稳定层流的数值和分析研究,纵横比H / R等于1,填充有液态金属并受到轴向磁场B的作用。呈现。圆柱坐标中的控制方程通过有限体积法求解。在没有磁场的情况下,通过与实验数据的比较来验证数值方法。后者被认为与预测相符。在存在磁场的情况下,对于高磁相互作用参数N而言,在旋转盘下和底壁上获得的分析速度曲线与通过数值模拟获得的分析速度曲线极为吻合。研究了顶部,底部和垂直壁的电导率对流动的影响,发现它是控制流动的重要参数。 [参考:28]

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