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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Coarse-grained discrete particle simulations of particle segregation in rotating fluidized beds in vortex chambers
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Coarse-grained discrete particle simulations of particle segregation in rotating fluidized beds in vortex chambers

机译:涡流室旋转流化床中颗粒隔离的粗粒离散粒子模拟

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摘要

Vortex chambers allow the generation of rotating fluidized beds, offering high-G intensified gas-solid contact, gas-solids separation and solids-solids segregation. Focusing on binary particle mixtures and fixing the density and diameter of the heavy/large particles, transient batch CFD-coarse-grained DPM simulations were carried out with varying densities or sizes of the light/small particles to evaluate to what extent combining these three functionalities is possible within a vortex chamber of given design. Both the rate and quality of segregation were analyzed. Within a relatively wide density and size range, fast and efficient segregation takes place, with an inner and slower rotating bed of the lighter/small particles forming within the outer and faster rotating bed of the heavier/large particles. Simulations show that the contamination of the outer bed with lighter particles occurs more easily than contamination of the inner bed with heavier particles and increases with decreasing difference in size or density of the particles. Bubbling in the inner bed is observed with an inner bed of very low density or small particles. Porosity plots show that vortex chambers with a sufficient number of gas inlet slots have to be used to guarantee a uniform gas distribution and particle bed. Finally, the flexibility of particle segregation in vortex chambers with respect to the gas flow rate is demonstrated. (c) 2017 Elsevier B.V. All rights reserved.
机译:涡流腔允许产生旋转流化床,提供高G强化气固接触,气体固体分离和固体固体偏析。专注于二元粒子混合物并固定重/大颗粒的密度和直径,瞬态批量CFD-粗粒DPM模拟,具有不同的密度或尺寸的光/小颗粒,以评估这些三个功能的组合的程度在给定设计的涡流室内是可能的。分析隔离的速率和质量。在相对较宽的密度和尺寸范围内,发生快速和有效的隔离,其中较轻/小颗粒的内部和较慢的旋转床形成在较重/大颗粒的外部和更快的旋转床内。模拟表明,具有较轻的颗粒的外床的污染比内床的污染更容易发生较重的颗粒,并随着颗粒的尺寸或密度的差异而增加。用非常低密度或小颗粒的内床观察在内床中的鼓泡。孔隙率图表明,具有足够数量的气体入口槽的涡流室必须用于保证均匀的气体分布和颗粒床。最后,对涡流室相对于气流速率的颗粒偏析的灵活性进行了说明。 (c)2017 Elsevier B.v.保留所有权利。

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