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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Water Model Experiment on the Liquid Flow Behavior in a Bottom Blown Bath with Top Layer
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Water Model Experiment on the Liquid Flow Behavior in a Bottom Blown Bath with Top Layer

机译:顶层底吹浴中液体流动行为的水模型实验

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Water model experiments were performed to study the effect of top slag on the mean flow and turbulence characteristics in a steel bath agitated by bottom gas injection. The slag was modeled by silicone oil with a density of 0.968 g/cm~3 and a kinematic viscosity 100 times larger than that of water at 25deg C. Velocity measurements were made using a two-dimensional (2-D) laser Doppler velocimeter (LDV) in the absence of swirl motions. The output signals of the LDV system were processed on a personal computer to obtain the axial and radial mean velocity components, the root-mean-square (rms) values of the axial and radial turbulence fluctuations, the Reynolds shear stress, and the turbulence production for two' cases with and without top slag. The bubbling jet (or the bubble dispersion) region was localized near the centerline of the bath by the presence of the top oil layer. The mean flow and turbulence motions in the recirculation region located outside the bubbling jet region were also suppressed significantly by the top layer. This result could be attributed to the entrainment of top slag into steel in a real system.
机译:进行了水模型实验,以研究炉顶渣对注入底气的钢浴中平均流量和湍流特性的影响。用硅油对渣进行建模,硅油的密度为0.968 g / cm〜3,运动粘度是25°C时水的运动粘度的100倍。使用二维(2-D)激光多普勒测速仪( LDV)在没有涡旋运动的情况下。在个人计算机上处​​理LDV系统的输出信号,以获得轴向和径向平均速度分量,轴向和径向湍流波动的均方根(rms)值,雷诺剪切应力以及湍流产生有和没有顶渣的两种情况。由于顶部油层的存在,鼓泡喷射(或气泡分散)区域位于浴的中心线附近。顶层也大大抑制了位于起泡射流区域之外的再循环区域中的平均流动和湍流运动。该结果可以归因于在真实系统中钢渣夹带到钢中。

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