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DEM simulation of dense granular flows in a vane shear cell: Kinematics and rheological laws

机译:VANE剪切单元中致密粒状流动模拟:运动学和流变法

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摘要

The rheology of dense granular flows is investigated through discrete element method (DEM) simulation of a vane shear cell. From the simulation, profiles of shear stress, shear rate, and velocity are obtained, which demonstrates that the flow features in the vane shear cell are equivalent to those in the classic annular Couette cell. A novel correlation for the apparent viscosity is formulated and leads to a new expression for mu(KT) in the kinetic theory analysis. The mu(KT) formulation is able to qualitatively capture the mu-I relation in the shear cell. A correlation length is added in the energy dissipation term to account for the effects of the particle motion correlation. A simplified correlation length model is derived based on DEM results and is compared with the literature. The modified granular kinetic energy equation is able to correctly predict the granular temperature profiles in the shear cell. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过叶片剪切单元的离散元件(DEM)模拟研究了致密粒状流的流变学。 从模拟,获得剪切应力,剪切速率和速度的曲线,这表明叶片剪切单元中的流动特征等同于经典环形循环电池中的流动特征。 制定了表观粘度的新相关性,并导致MU(KT)在动力学理论分析中的新表达。 MU(KT)配方能够定性地捕获剪切电池中的MU-I关系。 在能量耗散术语中添加相关长度以考虑粒子运动相关的影响。 基于DEM结果导出简化的相关长度模型,并与文献进行比较。 改进的粒状动能方程能够正确地预测剪切电池中的颗粒温度曲线。 (c)2020 Elsevier B.V.保留所有权利。

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