Department of Physics, Institute for Advanced Studies in Basic Sciences, Zanjan 45137-66731, Iran.
Phys Rev Lett. 2013 Oct 4;111(14):148301. doi: 10.1103/PhysRevLett.111.148301. Epub 2013 Oct 3.
We report experiments on slow granular flows in a split-bottom Couette cell that show novel strain localization features. Nontrivial flow profiles have been observed which are shown to be the consequence of simultaneous formation of shear zones in the bulk and at the boundaries. The fluctuating band model based on a minimization principle can be fitted to the experiments over a large variation of morphology and filling height with one single fit parameter, the relative friction coefficient μ(rel) between wall and bulk. The possibility of multiple shear zone formation is controlled by μ(rel). Moreover, we observe that the symmetry of an initial state, with coexisting shear zones at both side walls, breaks spontaneously below a threshold value of the shear velocity. A dynamical transition between two asymmetric flow states happens over a characteristic time scale which depends on the shear strength.
我们报告了在具有分底 Couette 单元的慢速颗粒流中的实验,这些实验显示了新的应变局部化特征。观察到了非平凡的流动剖面,这些剖面是由于在本体和边界同时形成剪切带的结果。基于最小化原理的波动带模型可以与实验相匹配,其形态和填充高度变化很大,只需一个拟合参数,即壁面和本体之间的相对摩擦系数μ(rel)。多个剪切带形成的可能性由μ(rel)控制。此外,我们观察到,在剪切速度低于一个阈值时,具有两侧壁同时存在剪切带的初始状态的对称性会自发地破坏。在一个依赖于剪切强度的特征时间尺度上,会发生两个不对称流态之间的动力学转变。