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CFD-DEM Analysis of Particle Attrition in a Jet in a Fluidised Bed

机译:流化床射流中颗粒磨损的CFD-DEm分析

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摘要

In fluidised bed processes, the solids are in vigorous motion and thus inevitably subjected to mechanical stresses due to inter-particle and particle-wall impacts. These stresses lead to a gradual degradation of the particles by surface wear, abrasion and body fragmentation commonly termed attrition. One significant contribution of attrition comes from the air jets of the fluidised bed distributor. Particles are entrained into the air jet, where they get accelerated and impacted onto the fluidised bed particles. The jet induced attrition only affects the part of the bed which is limited by the jet length, where the mode of attrition is largely collisional. The overall jet attrition rate is therefore the result of the combination of the single particle damage and the flux of particles entering into that region. The attrition behaviour of particles in the jet region is analysed by evaluating their propensity of breakage experimentally and by simulating an air-jet in a bed of particles by CFD-DEM. The frequency of collisions and impact velocities are estimated from which the attrition due to a single air-jet is predicted.
机译:在流化床工艺中,固体会剧烈运动,因此不可避免地会受到颗粒间和颗粒壁碰撞的机械应力。这些应力通过通常称为磨损的表面磨损,磨损和碎裂而导致颗粒逐渐降解。损耗的一项重要贡献来自流化床分配器的气流。颗粒被夹带到空气喷射器中,在那里它们被加速并撞击到流化床颗粒上。射流引起的磨损仅影响床的一部分,该部分受射流长度的限制,在该部分,磨损模式主要是碰撞。因此,总的射流磨损率是单个颗粒损坏和进入该区域的颗粒通量的综合结果。通过实验评估其破裂的倾向并通过CFD-DEM模拟颗粒床中的空气喷射,分析了喷射区域中颗粒的磨损行为。估计碰撞的频率和速度,从中可以预测由于单个喷气引起的磨损。

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