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Numerical modeling of bubble-driven liquid metal flows with external static magnetic field

机译:外部静磁场作用下气泡驱动液态金属流动的数值模拟

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Three-dimensional numerical simulations are presented considering the impact of a steady magnetic field on a bubble-driven liquid metal flow inside a cylinder. The injection of moderate gas flow rates through a single orifice at the bottom of the fluid vessel results in the formation of a bubble plume. The magnetic field is applied in either vertical or horizontal direction. The calculations were performed by means of the commercial software package CFX using the Euler-Euler multiphase model and the RANS-SST turbulence model. The non-isotropic nature of MHD turbulence was taken into account by specific modifications of the turbulence model. The numerical models are validated with recent experimental results. (Zhang, C., Eckert, S., Gerbeth, G., 2007. The flow structure of a bubble-driven liquid-metal jet in a horizontal magnetic field, J. Fluid Mech. 575, 57-82.) The comparison between the numerical simulations and the experimental findings shows a good agreement. The calculations are able to reproduce a striking feature of a horizontal magnetic field found in the range of moderate Hartmann numbers revealing that such a steady transverse magnetic field may destabilize the flow and cause distinct oscillations of the liquid velocity.
机译:提出了三维数值模拟,其中考虑了恒定磁场对气缸内气泡驱动的液态金属流的影响。通过流体容器底部的单个孔口注入适度的气体流速会导致气泡羽流的形成。沿垂直或水平方向施加磁场。通过商业软件包CFX使用Euler-Euler多相模型和RANS-SST湍流模型进行计算。通过对湍流模型进行特定修改,可以考虑MHD湍流的非各向同性性质。数值模型已通过最近的实验结果验证。 (Zhang,C.,Eckert,S.,Gerbeth,G.,2007。在水平磁场中气泡驱动的液态金属射流的流动结构,J。Fluid Mech。575,57-82。)比较数值模拟与实验结果之间显示出良好的一致性。该计算能够再现在中等哈特曼数范围内发现的水平磁场的显着特征,表明这种稳定的横向磁场可能会使流量不稳定并引起液体速度的明显波动。

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