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Effect of Nozzle Swirl Blade on Flow Pattern in Runner during Uphill Teeming

机译:上旋期间喷嘴旋流叶片对流道内流场的影响

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Recent research has found a swirling flow induced by a twist-tape swirl blade inserted in the submerged entry nozzle of both slab and billet continuous casting molds to be remarkably effective for controlling the fluid-flow pattern in mold filling. The objective of the work reported on in this paper was to investigate, usage of the swirl blade in the filling of molds in uphill teeming. Both mathematical and physical modeling were employed. Resulting velocity predictions and measurements corresponding to different positions in the water model were compared. Specific focus was on manipulation of the flow pattern by the swirl blade and its affect on flow unevenness, i.e. tangential and axial velocities. Good agreement was observed between the calculated and experimental results. The study's findings strongly suggest that equipping the entry nozzle of the uphill-teeming mold with a swirl blade would be a highly effective means of reducing flow unevenness during filling.
机译:最近的研究发现,由插入在板坯和方坯连铸结晶器的浸入式喷嘴中的扭曲带旋流叶片引起的旋流对于控制模具填充中的流体流动模式非常有效。本文报道的工作目的是研究在上坡灌浆过程中涡流叶片在模具填充中的使用。数学模型和物理模型都被采用。比较了与水模型中不同位置对应的速度预测结果和测量结果。特别关注的是涡流叶片对​​流动模式的操纵及其对流动不均匀性(即切向和轴向速度)的影响。在计算结果和实验结果之间观察到良好的一致性。该研究结果强烈表明,在上坡模具的入口喷嘴上配备旋流叶片将是减少填充过程中流动不均匀的有效手段。

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