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首页> 外文期刊>ISIJ international >Influences of Physical Properties of Particle in Discrete Element Method on Descending Phenomena and Stress Distribution in Blast Furnace
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Influences of Physical Properties of Particle in Discrete Element Method on Descending Phenomena and Stress Distribution in Blast Furnace

机译:离散元法中颗粒物理性质对高炉下降现象和应力分布的影响

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Recently, discrete element method (DEM) had been applied for simulation of the blast furnace. For mitigating computation load and precise simulation of blast furnace, the determination of optimum physical parameters in DEM are very important. In the present study, influence of variation of hardness, rolling friction coefficient of particle and descending velocity on the solid flow and stress distribution in the blast furnace were investigated. Decreasing hardness of particle does not affect on shape of layers descending in the shaft, and causes acceleration of computation. However, stream line of particles and stress distribution vary with changing in hardness of particle. The softening of particle is not suitable for analysis of stream line and stress distribution of packed bed in the blast furnace. Stream lines of particle become smooth with an increase in the rolling friction coefficient. The value of the rolling friction coefficient should be controlled for representing shape of actual burden. It is confirmed that descending velocity of burden also affects on the stress distribution of the packed bed. Physical properties and calculation condition should be optimized depending on the purpose of analysis and phenomena in the blast furnace.
机译:近来,离散元方法(DEM)已被用于高炉的模拟。为了减轻高炉的计算负担和精确模拟,确定DEM中的最佳物理参数非常重要。本研究研究了硬度变化,颗粒滚动摩擦系数和下降速度对高炉固相流动和应力分布的影响。颗粒硬度的降低不会影响井筒中下降的层的形状,并会加速计算。然而,颗粒的流线和应力分布随颗粒硬度的变化而变化。颗粒的软化不适用于分析流线和高炉填充床的应力分布。随着滚动摩擦系数的增加,颗粒的流线变得平滑。应该控制滚动摩擦系数的值以表示实际负荷的形状。可以确认,负荷的下降速度也影响填充床的应力分布。应根据分析目的和高炉中的现象来优化物理性能和计算条件。

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