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Numerical Simulation of the Coupled Turbulent Flow, Heat and Solute Transport in the Turbulent Flow Region of Slab Continuous Casting

机译:板坯连铸湍流区域内湍流,热量和溶质运移耦合的数值模拟。

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In the current work, a three-dimensional model coupling turbulent flow, heat and solute transport was developed to investigate the solute transport and redistribution in the mold of slab continuous casting where the Reynolds number is very high and the molten steel flows strongly. The conservation equations of momentum, energy and species for a multicomponent system which includes solute element C, Si, Mn, P, S were solved with the commercial software ANSYS Fluent. The parameters used in the model are based on the actual continuous casting. The fluid flow, temperature distribution and solute elements distribution were analyzed. Results showed that negative segregation occurred near the strand surface, and the species concentration reached a peak value at the solidification front during solidification. The segregation degree of solute element S is higher than the other solute elements because of its lower equilibrium partition coefficient. The species concentration in the liquid pool is homogeneous because of the turbulent flow effect.
机译:在目前的工作中,建立了湍流,热量和溶质运移耦合的三维模型,以研究雷诺数很高且钢水流动性强的板坯连铸结晶器中的溶质运移和再分布。利用商业软件ANSYS Fluent求解了包含溶质元素C,Si,Mn,P,S的多组分系统的动量,能量和物种的守恒方程。模型中使用的参数基于实际的连续铸造。分析了流体的流动,温度分布和溶质元素分布。结果表明,在铸坯表面附近发生了负偏析,并且在凝固过程中,物种浓度在凝固前沿达到了峰值。溶质元素S的偏析度较低,因此溶质元素的偏析度高于其他溶质元素。由于湍流效应,液体池中的物质浓度是均匀的。

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