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An equivalent undercooling model to account for flow effect on binary alloy dendrite growth rate

机译:考虑过流对二元合金枝晶生长速率影响的等效过冷模型

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A theoretical analysis is carried out to observe the influence of important flow parameters such as Nusselt number and Sherwood number on the tip speed of an equiaxed dendrite growing in a converting alloy melt. The effect of thermal and solutal transfer at the interface due to convection is equated to an undercooling of the melt, and an expression is derived for this equivalent undercooling in terms of the flow Nusselt number and Sherwood number. Results for the equivalent undercooling are compared with corresponding numerical values obtained by performing simulations based on the enthalpy method. This method represents a relatively simple procedure to analyze the effects of melt convection on the growth rate of dendrites.
机译:进行了理论分析,以观察重要的流动参数(如Nusselt数和Sherwood数)对转化合金熔体中等轴枝晶生长的尖端速度的影响。由于对流,在界面处的热和固溶传递的影响等同于熔体的过冷,并根据流动的努塞尔数和舍伍德数得出了等效过冷的表达式。将等效过冷的结果与通过基于焓法进行模拟获得的相应数值进行比较。该方法代表了一个相对简单的过程,可分析熔体对流对枝晶生长速率的影响。

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