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Development of new simulation method for flow behavior of granular materials in a blast furnace using cellular automaton

机译:基于元胞自动机的高炉颗粒物料流动行为模拟新方法的研制。

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摘要

A new simulation method that permits the large-scale of simulation of coke and granular flow in a blast furnace was developed using cellular automata. The automaton rule consists of the transition rule of constituent particles and interaction rule between particles. The interaction rule is divided into three rules; the collision rule, the static contact rule between particles, and propagation rule of impulsive force through the particle bed. The interaction rule was derived quantitatively on the basis of microscopic information on the interactive force between flowing particles under gravity obtained by DEM simulation. The evolution of granular flow with time can be simulated by defining the equivalent time to one step in automaton simulation, and the state variables in granular flow can be obtained by the proposed simulation method. The validity of the proposed powder cellular automaton method was confirmed by comparison of the simulated flow pattern of discharging flow from a hopper with experimental one. Granular flow of iron ore and coke particles in a blast furnace can be simulated with high speed by the proposed automaton method.
机译:使用元胞自动机,开发了一种新的模拟方法,可以对高炉中的焦炭和颗粒流进行大规模模拟。自动机规则由组成粒子的过渡规则和粒子之间的相互作用规则组成。交互规则分为三个规则。碰撞规则,粒子之间的静态接触规则以及冲力通过粒子床的传播规则。相互作用规则是根据微观信息定量获得的,该微观信息是通过DEM模拟获得的重力作用下流动粒子之间的相互作用力的结果。通过在自动机模拟中将等效时间定义为一个步骤,可以模拟颗粒流随时间的演变,并通过所提出的模拟方法可以获得颗粒流的状态变量。通过比较料斗的出料流模拟流型与实验流型的比较,证实了所提出的粉末元胞自动机方法的有效性。提出的自动机方法可以高速模拟高炉中铁矿石和焦炭颗粒的颗粒流动。

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