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A continuum constitutive model for cohesionless granular flows

机译:无内聚颗粒流的连续本构模型

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A constitutive model is developed to represent shear granular flows of cohesionless solids. The model is based on the postulate that the friction coefficient and the solids fraction in a moving granular material are exclusive functions of the inertial number, which represents the ratio of inertial to normal stress forces. The constitutive equation obtained has the same form as a multidimensional Bingham fluid model, albeit with apparent viscosity and yield stress that depend on the vertical normal stress. The model is applied to previously published experimental results dealing with shear flows of granular beds made up of cohesionless spherical particles. The first case analyzed corresponds to a granular bed moving on top of a rotating disk. The model captures the main trends of the velocity profiles with a single adjustable parameter. The second case is a conventional Couette flow, for which the model is capable of representing the velocity and solids fraction profiles measured experimentally. (c) 2006 Elsevier Ltd. All rights reserved.
机译:建立了本构模型来表示无粘性固体的剪切颗粒流。该模型基于以下假设:运动的颗粒材料中的摩擦系数和固体分数是惯性数的唯一函数,该惯性数表示惯性与法向应力之比。获得的本构方程具有与多维Bingham流体模型相同的形式,尽管其表观粘度和屈服应力取决于垂直法向应力。该模型被应用于先前发表的处理由无粘性球形颗粒组成的颗粒床的剪切流的实验结果。分析的第一种情况对应于在旋转磁盘顶部移动的颗粒床。该模型使用单个可调参数捕获速度曲线的主要趋势。第二种情况是常规的库埃特流,该模型能够代表实验测得的速度和固体分数分布。 (c)2006 Elsevier Ltd.保留所有权利。

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