Fenistein Denis, van de Meent Jan Willem, van Hecke Martin
Kamerlingh Onnes Laboratory, Leiden University, P.O. Box 9504, 2300 RA Leiden, The Netherlands.
Phys Rev Lett. 2004 Mar 5;92(9):094301. doi: 10.1103/PhysRevLett.92.094301. Epub 2004 Mar 3.
We present experiments on slow granular flows in a modified (split-bottomed) Couette geometry in which wide and tunable shear zones are created away from the sidewalls. For increasing layer heights, the zones grow wider (apparently without bound) and evolve towards the inner cylinder according to a simple, particle-independent scaling law. After rescaling, the velocity profiles across the zones fall onto a universal master curve given by an error function. We study the shear zones also inside the material as a function of both their local height and the total layer height.
我们展示了在一种经过改进的(底部剖开的)库埃特几何结构中进行的缓慢颗粒流实验,在该结构中,远离侧壁处形成了宽且可调的剪切带。随着层高度增加,这些带变宽(显然无界),并根据一个简单的、与颗粒无关的标度律向内圆柱演化。重新标度后,穿过这些带的速度剖面落在由误差函数给出的通用主曲线上。我们还研究了材料内部的剪切带,它是局部高度和总层高度的函数。