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Numerical study of thermal driven buoyancy flow effect on solidification process of continuous slab caster

机译:热驱动浮力流动效应对连续板坯凝固过程的数值研究

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The main aim of the present research is to study the role of thermal driven buoyancy flow in solidification process of continues slab caster. A 3-D fluid flow, heat transfer and solidification model was developed. The result from the model combined with non-dimensional number to study the effect of thermal driven buoyancy flow on fluid flow and temperature distribution. For mushy region Kozeny-Carman is applicable. Observations show the relative strength between thermal driven buoyancy flow and forced flow and steel flow through mushy region. It is observed that buoyancy force in mould and sub mould region depend on the characteristic flow velocity, temperature difference and porosity of mushy zone. The most effect zone of thermal driven buoyancy flow is mushy zone and centre of mould where inertial flow is inferior. The convection flow creates by thermal buoyancy cause appearance of local turbulence.
机译:本研究的主要目的是研究热驱动的浮力流动在持续的板坯粉碎机的凝固过程中的作用。开发了3-D流体流动,传热和凝固模型。模型与非尺寸数相结合的结果研究热驱动浮力流动对流体流动和温度分布的影响。对于糊状地区Kozeny-Carman适用。观察结果显示了热驱动浮力流动和通过糊状区域的强制流动和钢流动的相对强度。观察到模具和子模具区域中的浮力力取决于糊状区的特征流速,温差和孔隙率。热驱动浮力流动的最大效果区是糊状区和模具中心,惯性流动差。对流流通过热浮力产生导致局部湍流的出现。

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