首页> 外文会议>9th international symposium on high-temperature metallurgical processing >Effect of Density Difference on Particle Segregation Behaviors at Bell-Less Top Blast Furnace with Parallel-Type Hopper
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Effect of Density Difference on Particle Segregation Behaviors at Bell-Less Top Blast Furnace with Parallel-Type Hopper

机译:密度差对平行式漏斗的无贝尔顶鼓风炉颗粒分离行为的影响

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摘要

The difference on particle density causes mass and size segregation in the blast furnace throat, causing poor permeability in radial and circumferential direction. Understanding the effect of density difference on particle spatial-temporal distribution helps stabilize smooth operation and improve energy efficiency of blast furnace iron-making process. Based on discrete element method simulation, the influence of density difference on particle segregation behaviors is quantitatively characterized by the proposed method when the binary-sized particles are charged from parallel-type hopper of blast furnace. The results show that increasing the 4 mm particle density aggravates the mass segregation in circumferential and radial direction, and the maximum standard deviation of each ring reaches as great as 0.415. For size segregation, the difference on average mass fraction of small particle between center and edge ring decreases from 0.373 to 0.301. When increasing the 6 mm particle density, the similar particle segregation behaviors could be obtained.
机译:颗粒密度的差异导致高炉喉咙中的质量和尺寸偏析,从而导致径向和周向的渗透性差。了解密度差对颗粒时空分布的影响有助于稳定运行,并提高高炉炼铁工艺的能源效率。在离散元方法模拟的基础上,利用该方法定量地描述了高炉平行料斗中装填二元颗粒时密度差对颗粒偏析行为的影响。结果表明,增加4 mm的颗粒密度会加剧周向和径向的质量偏析,每个环的最大标准偏差高达0.415。对于尺寸分离,中心和边缘环之间的小颗粒的平均质量分数之差从0.373减小至0.301。当增加6 mm的颗粒密度时,可以获得类似的颗粒偏析行为。

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