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Numerical simulation of self-diffusion and mixing in a vibrated granular bed with the cohesive effect of liquid bridges

机译:液桥凝聚作用在振动颗粒床中自扩散混合的数值模拟

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The discrete element method (DEM) is employed to study the self-diffusion motions and mixing of cohesive powders with the effect of liquid bridges in a two-dimensional vibrated granular bed. The dynamic liquid bridge forces are considered as the cohesive forces between particles, and three types of viscous liquids with different values of viscosity are used. A simplified model of dynamic bridge strength based on the superposition of lubrication and circular approximation is incorporated in the simulation model. It is found that the granular temperatures and the self-diffusion coefficients of cohesive powders are highly anisotropic with a greater component in the vertical direction. The diffusion coefficients for cohesive powders are larger than those of cohesionless powders and are related to the interstitial liquid volume. The mixing is strongly dependent on the self-diffusivity and is related to the magnitude of interstitial liquid volume. The variations of the self-diffusion coefficients and the mixing rate for three types of interstitial liquids show that the mixing rate constants are proportional to the diffusion coefficients. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 37]
机译:采用离散元方法(DEM)研究了二维振动颗粒床中液体桥的自扩散运动和粘性粉末的混合。动态液桥力被认为是颗粒之间的内聚力,并且使用具有不同粘度值的三种类型的粘性液体。基于润滑和圆近似的叠加的动态桥梁强度简化模型被包含在仿真模型中。已经发现,粘性粉末的颗粒温度和自扩散系数是高度各向异性的,并且在垂直方向上具有更大的成分。粘性粉末的扩散系数大于无粘性粉末的扩散系数,并且与间隙液体的体积有关。混合在很大程度上取决于自扩散性,并且与间隙液体体积的大小有关。三种间隙液体的自扩散系数和混合速率的变化表明混合速率常数与扩散系数成正比。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:37]

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