首页> 外文会议>International conference on diffusion in solids and liquids, mass transfer-heat transfer-microstructure properties-nanodiffusion and nanostructured materials;DSL-2009 >Numerical Simulation Study for the Effect of the Strength and the Direction of a Static Magnetic Field on the Transient Double-Diffusive Flow in Liquid Phase during an Alloy Solidification
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Numerical Simulation Study for the Effect of the Strength and the Direction of a Static Magnetic Field on the Transient Double-Diffusive Flow in Liquid Phase during an Alloy Solidification

机译:合金凝固过程中静态磁场强度和方向对液相瞬态双扩散流影响的数值模拟研究

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A numerical simulation study has been carried out to examine the effect of a static magnetic field on the solidification process of an alloy. A mathematical model, based on the continuum model, was developed for the computation of a transient double-diffusive fluid flow under Lorentz body force. The model includes conservation of mass and momentum, heat, species and electrical charge balance equations. The simulation domain was selected as a cavity filled with a metallic alloy and differentially heated, which may be taken as a Bridgman model domain used in the crystal growth process. The solution is carried out by using a Finite Volume Method. Study of the direction and the intensity of the applied magnetic field effects on stabilizing the double diffusive flow field were also carried out. Simulation results indicate that the use of a static, magnetic field in this growth setup is effective in suppressing natural convection in the solution.
机译:进行了数值模拟研究,以检验静磁场对合金凝固过程的影响。建立了基于连续模型的数学模型,用于计算在洛伦兹体力作用下的瞬态双扩散流体流动。该模型包括质量和动量守恒,热量,物质和电荷平衡方程。选择模拟域作为填充金属合金并进行不同加热的空腔,可以将其用作晶体生长过程中使用的Bridgman模型域。该解决方案是使用有限体积法进行的。还研究了施加磁场的方向和强度对稳定双扩散流场的影响。仿真结果表明,在此生长设置中使用静态磁场可有效抑制溶液中的自然对流。

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