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首页> 外文期刊>ISRN Metallurgy >CFD Model Study of a New Four-Port Submerged Entry Nozzle for Decreasing the Turbulence in Slab Casting Mold
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CFD Model Study of a New Four-Port Submerged Entry Nozzle for Decreasing the Turbulence in Slab Casting Mold

机译:新型四口浸入式注口降低铸坯结晶器湍流的CFD模型研究

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摘要

In recent years, the continuous casting process in which molten metal is constantly cast into semifinished shapes has been widely adopted in the steel and nonferrous metal producing industry, mainly due to its economic advantages associated with increased yields and the elimination of intermediate processing steps. Turbulent flow in submerged entrance nozzle and mold of continuous casting is associated with costly failure such as the entrainment of slag inclusions and the formation of surface defects. A number of previously studies have analyzed the flow. A CFD model study has done to decrease the turbulence within the mold by developing a 4-port submerged entry nozzle in comparison with conventional 2-port submerged entry nozzle. VOF (volume of fluid) simulation study has been done to find out the effect of turbulence within mold on slag metal interaction, level fluctuation, and risk of breakout. In all the cases the performance of new 4-port SEN over 2-port SEN has been compared by plotting graph.
机译:近年来,将熔融金属不断地铸造成半成品形状的连续铸造工艺已在钢铁和有色金属生产行业中得到广泛采用,这主要是由于其与提高产量和省去中间加工步骤相关的经济优势。浸入式浇口和连铸结晶器中的湍流与昂贵的故障有关,例如夹带炉渣夹杂物和表面缺陷的形成。先前的许多研究已经分析了流量。与传统的2端口浸入式注嘴相比,CFD模型研究通过开发4端口浸入式注嘴来降低模具内的湍流。已经进行了VOF(流体体积)模拟研究,以发现结晶器内部湍流对矿渣金属相互作用,液位波动和破裂风险的影响。在所有情况下,已通过绘制曲线图比较了新的4端口SEN优于2端口SEN的性能。

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