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Stresses and transport phenomena in sheared granular flows with different wall conditions

机译:不同壁面条件下的颗粒状剪切流中的应力和传输现象

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Experiments were performed in a shear cell device with four different wall conditions. The glass spheres with a mean diameter of 3 mm were used as granular materials. Three bidirectional stress gauges were installed to measure the normal and shear stresses along the upper wall. The motions of the granular materials were recorded by a high-speed camera. The image processing technology and particle tracking method were employed to measure the average and fluctuation velocities in the streamwise and the transverse directions. By tracking the movements of particles continually, the variation in the mean-square diffusive displacements with time was plotted and the self-diffusion coefficient was determined. The self-diffusion coefficients in the streamwise direction were much higher than those in the transverse direction. The self-diffusion coefficients were increased with the increase of the velocity fluctuations, the shear rates, and the stresses. The influences of the wall conditions (wall frictional coefficients) on these properties are discussed in the paper. (C) 2002 American Institute of Physics. [References: 41]
机译:实验是在具有四个不同壁面条件的剪切池设备中进行的。平均直径为3mm的玻璃球用作颗粒材料。安装了三个双向应力计,以测量沿上壁的法向应力和剪切应力。粒状材料的运动由高速照相机记录。采用图像处理技术和粒子跟踪方法来测量流向和横向的平均速度和波动速度。通过连续跟踪粒子的运动,绘制了均方扩散位移随时间的变化,并确定了自扩散​​系数。流向的自扩散系数远大于横向的自扩散系数。自扩散系数随速度波动,剪切速率和应力的增加而增加。本文讨论了壁条件(壁摩擦系数)对这些性能的影响。 (C)2002美国物理研究所。 [参考:41]

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