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The Effect of a Dissipative Ladle Shroud on Mixing in Tundish: Mathematical and Experimental Modelling

机译:消散钢包导流罩对中间包内混合的影响:数学和实验模型

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The effect of a dissipative ladle shroud (DLS) on mixing in tundish was investigated, compared with that of a conventional ladle shroud (CLS) using mathematical and physical modelling. The tracer profiles of mathematical results, achieved using large eddy simulation, were validated by physical observations employing high-speed cinephotography. The design of a DLS dramatically changed the flow patterns and contributed the intermixing of fluid elements inside the ladle shroud. The vortex flow encouraged the turbulent mixing and was verified by tracking of physical tracer dispersion inside the DLS. Residence Time Distribution (RTD) curves were obtained in two different sized tundishes to examine the mixing behaviours. The findings indicated that the DLS benefited the tundish mixing in terms of increasing active volume. The effect seemed to be more remarkable in the smaller tundish. The DLS gave rise to a more plug-like flow pattern inside the tundish, showing potential to shorten the transition length during grade change.
机译:与使用数学和物理建模的常规钢包套(CLS)相比,研究了消散钢包套(DLS)对中间包混合的影响。使用大型涡流模拟获得的数学结果的示踪剂谱已通过使用高速电影摄影机进行的物理观察得到了验证。 DLS的设计极大地改变了流型,并促进了钢包导流罩内流体元素的混合。涡流促进了湍流混合,并通过跟踪DLS内部的物理示踪剂分散来验证。在两个不同大小的通道中获得了停留时间分布(RTD)曲线,以检查混合行为。研究结果表明,DLS在增加中间包装量方面受益于中间包混合。在较小的中间包中,效果似乎更为明显。 DLS在中间包内产生了一种更像塞子的流动模式,显示了在等级变化期间缩短过渡长度的潜力。

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