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首页> 外文期刊>Chemical Engineering Science >Granular dynamics of cohesive powders in a rotating drum as revealed by speckle visibility spectroscopy and synchronous measurement of forces due to avalanching
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Granular dynamics of cohesive powders in a rotating drum as revealed by speckle visibility spectroscopy and synchronous measurement of forces due to avalanching

机译:斑点可见度光谱法和雪崩作用力的同步测量揭示了旋转鼓中粘性粉末的颗粒动力学

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We have used speckle visibility spectroscopy (SVS) and synchronized force measurements to compare the granular dynamics of two cohesive lactose powders, with Sauter mean diameters of similar to 29 and 151 pm, in a rotating drum. A load cell (LC) was used to measure forces on the drum mounting frame and enable monitoring of bulk powder motion; SVS is a dynamic light scattering technique particularly suited for studying dynamics in dense, non-ergodic granular systems. Our results reveal that surface slumping and intermittent collisional dynamics in the bulk of the bed are correlated, especially for the fine more cohesive particles (Geldart group C/A boundary), but not as much for the less cohesive larger particles (Geldart group A/B boundary). The specific dissipation energy of the particles in the drum is similar for both powders, and increases linearly with increasing drum speed. However, the dependencies of the load cell and SVS signals on rotation speed have opposing trends for these two powders, indicating different dissipation mechanisms for the different Geldart Groups; collisional dissipation is more important for the Geldart C/A powder, while for the Geldart A/B powder avalanche dissipation is dominant. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:我们已经使用斑点可见度光谱法(SVS)和同步力测量法在旋转鼓中比较了两种粘性乳糖粉末的颗粒动力学,其Sauter平均直径分别接近29和151 pm。称重传感器(LC)用于测量滚筒安装框架上的力,并能够监控散装粉末的运动; SVS是一种动态光散射技术,特别适合研究密集的非遍历颗粒系统中的动力学。我们的结果表明,大部分床层的表面塌陷和间歇性碰撞动力学是相关的,特别是对于粘性较小的细颗粒(Geldart组C / A边界),而对于粘性较小的较大颗粒(Geldart组A / B边界)。两种粉末在鼓中颗粒的比耗散能量相似,并且随着鼓速度的增加而线性增加。但是,对于这两种粉末,称重传感器和SVS信号对转速的依赖性具有相反的趋势,这表明不同Geldart组的耗散机理不同;对于Geldart C / A粉末,碰撞耗散更为重要,而对于Geldart A / B粉末,雪崩耗散占主导。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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