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Optimization on Reducing Slag Entrapment in 150 × 1270 mm Slab Continuous Casting Mold

机译:150×1270 mm板坯连铸结晶器减少夹渣的优化。

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摘要

To reduce slag entrapment in 150 × 1270 mm slab continuous casting molds at the Tang Steel Company, the effect of submerged entrance nozzle (SEN) depth and casting speed on the phenomenon was studied by computational fluid dynamics simulations. Then, the slag entrapment behavior in continuous casting molds, utilizing Large Eddy Simulation (LES) by coupling the volume of fluid (VOF) method, was also used. Finally, the effect of several common oils usually used to simulate slag in water modelling on slag entrapment was discussed and the water modelling results were used to validate the numerical simulation findings. The results showed that the optimum scheme is a submerged depth of SEN 90 mm and a casting speed of 1.6 m/min. Under optimal conditions, the maximum surface velocity is smallest (0.335 m/s) and the maximum slag entrapment ratio (0.44%) appears in the position of 0.1 m below the meniscus after 15 s. The water modelling results were in good agreement with the numerical simulation results.
机译:为了减少唐钢公司150×1270 mm板坯连铸结晶器中的夹渣现象,通过计算流体动力学模拟研究了浸入式喷嘴(SEN)深度和铸造速度对现象的影响。然后,还采用了大涡模拟(LES),通过结合流体体积(VOF)方法,在连铸结晶器中夹渣的行为。最后,讨论了在水模型中通常用于模拟炉渣的几种常见油对夹渣的影响,并利用水模型结果验证了数值模拟结果。结果表明,最佳方案为沉入深度为SEN 90 mm,铸造速度为1.6 m / min。在最佳条件下,最大表面速度最小(0.335 m / s),最大熔渣滞留率(0.44%)出现在15 s后弯液面以下0.1 m的位置。水的模拟结果与数值模拟结果吻合良好。

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