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Numerical Analysis of Fluid Flow and Heat Transfer in Molten Zinc Pot of Continuous Hot-dip Galvanizing Line

机译:连续热镀锌线熔锌锅内流体流动和传热的数值分析

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A numerical model adopting a partially staggered grid system for the location of dependent variables has been developed to analyze the fluid flow and temperature distributions in a molten zinc pot of No.2 CGL of POSCO Kwangyang strip mills. A control volume based finite difference procedure was employed to solve the conservation equations transformed by using the boundary-fitted-coordinate (BFC) system. The calculation results have shown that a change in the steel strip velocity has little influence on the overall flow pattern developed in the pot. The overall temperature distribution was rather uniform as predicted. However, charging cold ingots directly into the pot produced a non-uniform distribution of temperature. The local temperature fluctuations will promote the formation of intermetallic dross particles. It has been proposed that the non-uniform distribution of temperature could be reduced by selecting an appropriate channel inductor position as well as by optimizing the zinc ingot loading position.
机译:建立了采用部分交错网格系统进行因变量定位的数值模型,以分析POSCO光阳钢厂2号CGL熔融锌罐中的流体流量和温度分布。采用基于控制量的有限差分程序求解使用边界拟合坐标(BFC)系统转换的守恒方程。计算结果表明,钢带速度的变化对罐中形成的总流型几乎没有影响。如预测的那样,整体温度分布相当均匀。但是,将冷的铸锭直接装入锅中会导致温度分布不均匀。局部温度波动将促进金属间锡渣颗粒的形成。已经提出,可以通过选择适当的沟道电感器位置以及通过优化锌锭的装载位置来减少温度的不均匀分布。

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