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Numerical Analysis on Passage and Blockage Behaviors of Fine Particles through an Orifice Consists of Coarse Particles

机译:细颗粒通过孔口的粗颗粒通过和堵塞行为的数值分析

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Stable operation under low reducing agent rate condition of blast furnace is necessary to realize to contribute solution of global warming. Under low reducing agent rate operation, large amount of powder materials like fine coke and unburnt pulverize coal generate in the furnace. It is known that the heavy accumulation of these powders in the packed bed of blast furnace deteriorates the permeability, and cause operation trouble in extreme case. Thus it is important to understand the flow and accumulation behaviors of powder in packed bed. This paper discussed the powder motion in the packed bed through numerical simulation under simplified condition. A simplified packing structure, namely an orifice consisting of three spherical particles that touched each other and were in equilateral triangle arrangement, was picked out from the packed bed. The powder trajectories passing through this orifice were tracked by using the discrete element method. The simulation results showed that only a few powder particles initiated the blockage of the particle orifice. Additionally the effects of mechanical properties of the particles on the passage and the blockage behaviors were also revealed.
机译:为了实现对全球变暖的解决方案,高炉低还原剂率条件下的稳定运行是必要的。在低还原剂速率操作下,炉中会产生大量粉状物料,如细焦炭和未燃烧的煤粉。众所周知,这些粉末在高炉的填充床上的大量堆积会降低渗透性,并在极端情况下造成操作麻烦。因此,了解粉末在填充床中的流动和聚集行为很重要。本文通过简化条件下的数值模拟讨论了填充床中的粉末运动。从填充床中取出简化的填充结构,即由相互接触并呈等边三角形排列的三个球形颗粒组成的孔口。通过离散元素方法跟踪通过该孔口的粉末轨迹。仿真结果表明,只有少数粉末颗粒引发了颗粒孔的堵塞。另外,还揭示了颗粒的机械性能对通道和阻塞行为的影响。

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