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Study on the Fluid Flow in a Semi-Open-Stream-Poured Beam Blank Continuous Casting Mold with Submerged Refractory Funnels by Multiphase Modeling

机译:多相流模型研究浸没漏斗的半开放式浇注束坯连铸结晶器内的流体流动

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The flow transport of a 420 × 320 × 90 mm beam blank continuous casting mold that used open-stream pouring combined with submerged refractory funnels was studied. By considering the dynamic similarity, geometric similarity, and air entrapment quantity similarity, a full-size water model was established. Meanwhile, the 3D mathematical models that included three phases were applied. Through the combination of the water model and the mathematical model, the distribution and morphology of the phases in the mold were investigated. The results indicate that bubbles existed in the molten steel due to entrapment and the flow pattern was different from that of the full protection-poured mold. Furthermore, the effects of funnel immersion depth and funnel diameter on the bubbles’ impact depth, funnel’s inside wall shear stress, and overall area of the air/steel interface were discussed. The results provide useful information for the industrial continuous casting process.
机译:研究了420×320×90 mm束坯连铸结晶器的流传输,该结晶器采用流式浇筑结合浸没耐火漏斗的方式进行。通过考虑动态相似性,几何相似性和空气截留量相似性,建立了全尺寸水模型。同时,应用了包括三个阶段的3D数学模型。通过水模型和数学模型的结合,研究了模具中各相的分布和形态。结果表明,由于夹带,钢水中存在气泡,并且其流型与完全注入保护液的铸型不同。此外,还讨论了漏斗浸入深度和漏斗直径对气泡的冲击深度,漏斗内壁的剪应力以及空气/钢界面总面积的影响。结果为工业连铸工艺提供了有用的信息。

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