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The influence of flow asymmetry on refractory erosion in the vacuum chamber of a RH degasser

机译:流量不对称对RH脱气机真空室中耐火材料侵蚀的影响

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Nozzle blockage in RH reactors is a serious operational problem since it can cause an asymmetric distribution of the steel flow in both the up-leg as well as the lower region of the vacuum chamber. This anomaly can alter the circulation rate in addition to affecting the erosion profile of the lower part of vacuum chamber refractory lining. In this study, the effect of nozzle obstruction on liquid circulation rate, wall shear stress, velocity profiles and flow pattern have been evaluated. In addition, refractory erosion in the vacuum chamber has been estimated through physical modeling and mathematical simulation results. Four blockage conditions were studied for different gas flow rates. There was a good agreement in physical and mathematical models results. Asymmetric flow was observed in vacuum chamber lower region in asymmetric blockage cases, which resulted in preferential wear on one chamber side in physical modeling experiments. The wall shear stress analysis in the vacuum chamber using a fluid dynamic model also indicates preferential erosion. When compared, refractory erosion results in physical modeling and shear stress in mathematical modeling presented good correlation.
机译:RH反应器中的喷嘴堵塞是一个严重的操作问题,因为它会导致钢流在真空室的上支管和下部区域中的分布不对称。除了影响真空室耐火衬里下部下部的腐蚀状况外,这种异常还会改变循环速度。在这项研究中,已经评估了喷嘴阻塞对液体循环速率,壁面剪应力,速度分布和流型的影响。另外,已经通过物理模型和数学模拟结果估计了真空室中的耐火材料侵蚀。针对不同的气体流速研究了四种堵塞条件。在物理和数学模型结果上有很好的一致性。在不对称堵塞情况下,在真空室下部区域观察到不对称流动,这在物理模拟实验中导致了一侧室的优先磨损。使用流体动力学模型在真空室中进行的壁面剪应力分析也表明存在优先腐蚀。与之相比,物理模型中的耐火侵蚀与数学模型中的切应力呈现良好的相关性。

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