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Modeling of Coke Particle Breakage in Blast Furnace Considering Pore Structure by Discrete Element Method

机译:基于分立元素法考虑孔隙结构的高炉焦颗粒破损的建模

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Cokes play an important role in the blast furnace as a spacer for maintaining gas permeability. Since blast furnaces with large inner volumes exceeding 5000 m~(3) are now common in Japan, use of high strength coke has become a crucial issue for modern blast furnaces. However, general methods for evaluating coke strength, for example, the drum test, are insufficient for understanding the breakage behavior of coke in detail. In order to evaluate the coke breakage behavior in blast furnaces, a coke breakage model based on the discrete element method (DEM) with cluster particles and parallel bonds was developed.According to experiments using the indirect tensile test, the tensile strength of cokes shows a wide distribution because of the randomness of the pore arrangement. Therefore, a DEM simulation model for coke breakage was developed considering pores with random positions. DEM simulations of the indirect tensile test were conducted for 10 cases of random pore arrangements for each of Coke A (small porosity) and Coke B (large porosity). The tensile strength obtained from the experiments and DEM simulations was compared by a Weibull analysis. The simulation results were in agreement with the experimental results including the distribution of coke strength. Finally, the probability distributions of coke breakage obtained from the Weibull analysis were applied to the DEM simulation result of the material flow in a 5000 m~(3) blast furnace, and the percentage of coke breakage in the deadman region of the blast furnace was evaluated for Coke A and Coke B.
机译:COKE在高炉中发挥着重要作用,作为保持透气性的垫片。由于内部容积大的高炉超过5000 m〜(3),现在在日本常见,因此使用高强度焦炭已成为现代高炉的关键问题。然而,用于评估焦炭强度的一般方法,例如鼓测试,不足以了解焦炭的破损行为。为了评估高炉中的焦炭破损行为,开发了基于分立元件方法(DEM)的焦炭破损模型,具有簇颗粒和平行键合。根据使用间接拉伸试验的实验,COKE的拉伸强度显示由于孔布置的随机性,可分布。因此,考虑具有随机位置的孔隙开发了用于冰块破损的DEM仿真模型。对间接拉伸试验的DEM模拟进行10例随机孔装置,用于每种焦炭A(小孔隙率)和焦炭B(大孔隙率)。通过威布尔分析比较了从实验和DEM仿真获得的拉伸强度。模拟结果与实验结果一致,包括焦炭强度分布。最后,从Weibull分析中获得的焦炭破损的概率分布应用于5000 m〜(3)高炉中的材料流动的DEM仿真结果,并且高炉死亡区的焦炭破损百分比是评估焦炭A和焦炭B.

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