Rycroft Chris H, Orpe Ashish V, Kudrolli Arshad
Department of Mathematics, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Sep;80(3 Pt 1):031305. doi: 10.1103/PhysRevE.80.031305. Epub 2009 Sep 24.
We report a detailed comparison of a slow gravity-driven sheared granular flow with a discrete-element simulation performed in the same geometry. In the experiments, grains flow inside a silo with a rectangular cross section and are sheared by a rough boundary on one side and smooth boundaries on the other sides. Individual grain position and motion are measured using a particle index-matching imaging technique where a fluorescent dye is added to the interstitial liquid which has the same refractive index as the glass beads. The simulations use a Cundall-Strack contact model between the grains using contact parameters that have been used in many other previous studies and ignore the hydrodynamic effects of the interstitial liquid. Computations are performed to understand the effect of particle coefficient of friction, elasticity, contact model, and polydispersity on mean flow properties. We then perform a detailed comparison of the particle fluctuation properties as measured by the displacement probability distribution function and the mean square displacement. All in all, our study suggests a high level of quantitative agreement between the simulations and experiments.
我们报告了在相同几何形状下对缓慢重力驱动的剪切颗粒流与离散元模拟进行的详细比较。在实验中,颗粒在具有矩形横截面的筒仓内流动,并在一侧被粗糙边界剪切,在其他侧面被光滑边界剪切。使用颗粒索引匹配成像技术测量单个颗粒的位置和运动,该技术是将荧光染料添加到与玻璃珠具有相同折射率的间隙液体中。模拟使用颗粒之间的Cundall-Strack接触模型,使用许多先前研究中使用的接触参数,并忽略间隙液体的流体动力学效应。进行计算以了解颗粒摩擦系数、弹性、接触模型和多分散性对平均流动特性的影响。然后,我们对通过位移概率分布函数和均方位移测量的颗粒波动特性进行了详细比较。总而言之,我们的研究表明模拟和实验之间具有高度的定量一致性。