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Effect of interparticle forces on the conical spouted bed behavior of wet particles with size distribution

机译:颗粒间力对具有尺寸分布的湿颗粒圆锥形喷头床行为的影响

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This paper aims to analyze air-solid flow behavior in conical spouted beds composed of glass bead mixtures coated by glycerol.Four mixtures of glass beads are used as the solid phase.Although these mixtures have the same mean Sauter diameter,each one is characterized by a different size distribution function(mono-sized;flat,Gaussian or binary size distribution).When glycerol is added to the bed of these particles,which are spouted by air,the gas-solid flow characteristics are changed due to the growth of interparticle forces;however,the trends of these changes are affected by the glass bead mixture type as well as by the concentration of glycerol.For beds of mono-sized particles,the minimum spouting velocity is maintained almost unchanged as the glycerol concentration rises;while,for beds of inert particle mixtures,this velocity increases,becoming greater for flat and binary size distribution particles.Conversely,the minimum spouting pressure drop decreases as the glycerol concentration rises for all beds of particles used.Based on theoretical prediction of interparticle forces,it is shown that these changes in the minimum spouting conditions can be explained by the magnitude of these forces.
机译:本文旨在分析由甘油包被的玻璃珠混合物组成的锥形喷头床中的气固流动行为。使用四种玻璃珠混合物作为固相。尽管这些混合物具有相同的平均Sauter直径,但每个都具有以下特征:具有不同的尺寸分布函数(单一尺寸;平坦,高斯或二元尺寸分布)。当将甘油添加到由空气喷出的颗粒床中时,气固流动特性会由于颗粒间的增长而改变力;但是,这些变化的趋势受玻璃珠混合物类型以及甘油浓度的影响。对于单一尺寸的颗粒床,随着甘油浓度的增加,最小喷出速度几乎保持不变;而对于惰性颗粒混合物床,该速度增加,对于平面和二元尺寸分布的颗粒,该速度变大。相反,最小喷出压力降随甘油浓度的降低而减小。根据所用粒子间力的理论预测,表明最小喷射条件下的这些变化可以用这些力的大小来解释。

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