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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Coupled turbulent flow, heat, and solute transport in continuous casting processes with an electromagnetic brake
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Coupled turbulent flow, heat, and solute transport in continuous casting processes with an electromagnetic brake

机译:在连续铸造过程中,通过电磁制动器将湍流,热量和溶质传输耦合在一起

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dThis study describes the numerical modeling of coupled turbulent fluid flow, heat, and solute transport in a continuous slab caster with an electromagnetic brake (EMBr). Transport equations of total mass, momentum, energy, and species for a binary iron-carbon alloy system are solved using a continuum model. The turbulent effects are taken into account using the standard k-epsilon equations, where coefficients are appropriately modified for phase change. The electromagnetic field is described by Maxwell equations. A finite-volume method is employed to solve the conservation equations associated with appropriate boundary conditions. The process variables considered are the casting speed, magnetic flux density, and carbon segregation. The effects of these process variables on the velocity, temperature, and solute distributions are reported and discussed.
机译:d这项研究描述了带有电磁制动器(EMBr)的连续板坯连铸机中湍流的流动,热和溶质耦合的数值模型。使用连续模型求解二元铁碳合金系统的总质量,动量,能量和种类的输运方程。使用标准k-ε方程考虑了湍流效应,其中系数针对相变进行了适当修改。电磁场由麦克斯韦方程描述。采用有限体积方法来求解与适当边界条件相关的守恒方程。考虑的工艺变量是铸造速度,磁通密度和碳偏析。报告并讨论了这些过程变量对速度,温度和溶质分布的影响。

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