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Stress field and solid flow analysis of coke packed bed in blast furnace based on DEM

机译:基于DEM的高炉焦炭填充床应力场和固流分析

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摘要

The stability of blast furnace operation, such as blast pressure, burden descending, liquid holdup and residual amount of slag in hearth, are dominated by the permeability of coke packed bed. The coke degradation in packed bed is caused by abrasion. Then the stress field is calculated by simulation based on discrete element method (DEM) to make clear the abrasion mechanism. Coke free space shape affects on the liquid drainage efficiency and hearth refractory erosion. Then the effects of hearth depth, burden load and coke consumption on the coke free space shape is considered by using the DEM simulation also. The calculated results show that a force network is formed in the whole of BF and supports the load of burden. The stress of particle in the network is much larger than the average, which can be estimated by continuous simulation. A coke in force network is abraded until the contact cross section larger and contact stress is less than the compressive stress. After then another coke particle participates in force network. Coke abrasion is caused by such force network reconstructions. Coke free space shape is dominated by the solid flow caused by coke consumption in hearth. The coke free space shape, hearth refractory erosion and drainage efficiency can be affected by the hearth depth, burden load and coke consumption in hearth.
机译:高炉操作的稳定性,例如高炉压力,负荷下降,液体滞留率和炉渣残留量,都取决于焦炭填充床的渗透性。填充床中的焦炭降解是由磨损引起的。然后基于离散元法(DEM)通过仿真计算应力场,以弄清磨损机理。焦炭自由空间的形状影响排液效率和炉膛耐火材料的侵蚀。然后,还通过使用DEM模拟来考虑炉床深度,炉料负荷和焦炭消耗对无焦空间形状的影响。计算结果表明,在整个高炉中都形成了一个力网络,并支撑了负担。网络中粒子的应力远大于平均应力,可以通过连续模拟来估算。磨碎力网络中的焦炭,直到接触横截面变大并且接触应力小于压应力。之后,另一个焦炭颗粒参与了力网络。焦炭磨损是由这种力网络重建引起的。焦炭自由空间形状主要由炉床中焦炭消耗引起的固体流控制。炉膛深度,负荷负荷和炉膛中的焦炭消耗会影响焦炭的自由空间形状,炉膛耐火材料的侵蚀和排水效率。

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