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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Simulation of three-phase flow and lance height effect on the cavity shape
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Simulation of three-phase flow and lance height effect on the cavity shape

机译:三相流和喷枪高度对腔体形状影响的模拟

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A three-dimensional computational fluid dynamics (CFD) model was developed to simulate a 150-t top-blown converter. The effect of different lance heights on the cavity shape was investigated using the volume of fluid (VOF) method. Numerical simulation results can reflect the actual molten bath surface waves impinged by the supersonic oxygen jets. With increasing lance height, the cavity depth decreases, and the cavity area, varying like a parabola, increases and then decreases. The cavity area maximizes at the lance height of 1.3 m. Under the three different lance heights simulated in this study, all of the largest impact velocities at the molten bath surface are between 50 m/s and 100 m/s.
机译:开发了三维计算流体动力学(CFD)模型来模拟150吨顶吹转炉。使用流体体积(VOF)方法研究了不同喷枪高度对腔体形状的影响。数值模拟结果可以反映超声速射流撞击的实际熔池表面波。随着喷枪高度的增加,腔体深度会减小,并且像抛物线一样变化的腔体面积会增大然后减小。腔面积在喷枪高度1.3 m时最大。在本研究中模拟的三种不同的喷枪高度下,熔池表面的所有最大冲击速度都在50 m / s至100 m / s之间。

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