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Numerical Analysis on the Refractory Wear of the Blast Furnace Main Trough

机译:高炉主槽耐火磨损的数值分析

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This study aims to numerically analyze the refractory wear of the blast furnace main trough. The three dimensional transient Navier-Stocks equation associated with the volume of fluid (VOF) was developed to describe the flow fields of air, molten iron and slag in the main trough of the blast furnace during tapping process; and then solved by the finite volume method (FVM) subject to the pressure implicit with split operator (PSIO). Based on the Newton's law of viscosity, the computed shear stress profile in the impingement region consists with the erosion rate of main trough from the no. 4 blast furnace at China Steel Corporation (CSC BF4). The influence of the tapping angle and the ratio of iron to slag in tapping stream on the wall shear stress of main trough was also examined for the suggestion to minimize the refractory wear of blast furnace main trough in this work.
机译:本研究旨在数值分析高炉主槽的耐火磨损。开发了与流体(VOF)的体积相关的三维瞬态Navier - 股票,以描述在攻丝过程中的高炉主槽中的空气,铁水和渣的流量;然后通过有限体积法(FVM)来解决压力隐含物体(PSIO)。基于牛顿的粘度定律,冲击区域中的计算剪切应力曲线包括来自NO的主槽的腐蚀速率。 4中国钢铁公司的高炉(CSC BF4)。敲击角度和铁与炉渣中的炉渣与主槽壁剪切应力的影响,暗示了在这项工作中最小化高炉主槽的耐火磨损。

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