Cheng Xiang, Lechman Jeremy B, Fernandez-Barbero Antonio, Grest Gary S, Jaeger Heinrich M, Karczmar Greg S, Möbius Matthias E, Nagel Sidney R
The James Franck Institute and Department of Physics, The University of Chicago, Chicago, Illinois 60637, USA.
Phys Rev Lett. 2006 Jan 27;96(3):038001. doi: 10.1103/PhysRevLett.96.038001. Epub 2006 Jan 23.
The evolution of granular shear flow is investigated as a function of height in a split-bottom Couette cell. Using particle tracking, magnetic-resonance imaging, and large-scale simulations, we find a transition in the nature of the shear as a characteristic height H* is exceeded. Below H* there is a central stationary core; above H* we observe the onset of additional axial shear associated with torsional failure. Radial and axial shear profiles are qualitatively different: the radial extent is wide and increases with height, while the axial width remains narrow and fixed.
在一个底部剖分式库埃特流动槽中,研究了颗粒剪切流随高度的演变。通过粒子追踪、磁共振成像和大规模模拟,我们发现当超过特征高度H时,剪切性质会发生转变。在H以下存在一个中心静止核;在H*以上,我们观察到与扭转破坏相关的额外轴向剪切的出现。径向和轴向剪切剖面在性质上有所不同:径向范围较宽且随高度增加,而轴向宽度保持狭窄且固定。