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Numerical simulation of two-dimensional steady granular flows in rotating drum: On surface flow rheology

机译:转鼓中二维稳态颗粒流的数值模拟:表面流变学

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The rheology of two-dimensional steady surface flow of cohesionless cylinders in a rotating drum is investigated through nonsmooth contact dynamics simulations. Profiles of volume fraction, translational and angular velocity, rms velocity, strain rate, and stress tensor are measured at the midpoint along the length of the surface-flowing layer, where the flow is generally considered as steady and homogeneous. Analysis of these data and their interrelations suggest the local inertial number-defined as the ratio between local inertial forces and local confinement forces-to be the relevant dimensionless parameter to describe the transition from the quasistatic part of the packing to the flowing part at the surface of the heap. Variations of the components of the stress tensor as well as the ones of rms velocity as a function of the inertial number are analyzed within both the quasistatic and the flowing phases. Their implications are discussed. (c) 2005 American Institute of Physics.
机译:通过非光滑接触动力学模拟研究了无粘性圆柱体在转鼓中的二维稳态表面流变。在沿表面流动层长度的中点测量体积分数,平移和角速度,均方根速度,应变速率和应力张量的分布图,在该分布中,流动通常被认为是稳定且均匀的。对这些数据及其相互关系的分析表明,局部惯性数(定义为局部惯性力与局部约束力之比)是相关的无量纲参数,用于描述从填料的准静态部分到地表流动部分的过渡堆。在准静态阶段和流动阶段都分析了应力张量分量的变化以及均方根速度随惯性数的变化。他们的含义进行了讨论。 (c)2005年美国物理研究所。

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