FLUCTUATIONS AND FLOW FOR GRANULAR SHEARING Results from experiment and simulation
نویسندگان
چکیده
We present results from both simulation and experiment on a 2D gran-ular shear-cell. The experiments determine the position of disks and their orientations over time, as well as the force on individual disks. We use computerized particle tracking techniques to achieve the former and pho-toelasticity to achieve the latter. The simulations use MD force laws and eecient algorithms to simulate as closely as possible the experimental system. We measure the radial dependence of velocities and their distributions. In particular we nd that the azimuthal velocity decays exponentially to some background level within a distance of about 7 disk diameters from the shearing wheel. Experimentally the distribution of azimuthal velocities is found to have a complex, roughly bimodal distribution close the shearing wheel which is indicative of a complex combination of slip, no-slip, and rolling processes at the boundary, and a more exponential distribution away from the shearing surface. The distribution of stresses shows a falloo which is approximately exponential at large forces, although it is probably not possible to determine which among competing models for force distributions best ts these results. The model can capture most but not all of the features seen in the experiment. The mean velocity proole, the qualitative nature of force chains and the distribution of velocities far from the shearing surface are well captured in the simulations. The velocity and the force distributions from the experiment and simulation diier however. 2 C.T. VEJE ET AL.
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