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壁面摩擦驱动的颗粒通道流中的有序转变:对颗粒流变学的启示。

Sidewall-friction-driven ordering transition in granular channel flows: Implications for granular rheology.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.

出版信息

Phys Rev E. 2017 Nov;96(5-1):050901. doi: 10.1103/PhysRevE.96.050901. Epub 2017 Nov 22.

Abstract

We report a transition from a disordered state to an ordered state in the flow of nearly monodisperse granular matter flowing in an inclined channel with planar slide walls and a bumpy base, using discrete element method simulations. For low particle-sidewall friction coefficients, the flowing particles are disordered, however, for high sidewall friction, an ordered state is obtained, characterized by a layering of the particles and hexagonal packing of the particles in each layer. The extent of ordering, quantified by the local bond-orientational order parameter, varies in the cross section of the channel, with the highest ordering near the sidewalls. The flow transition significantly affects the local rheology-the effective friction coefficient is lower, and the packing fraction is higher, in the ordered state compared to the disordered state. A simple model, incorporating the extent of local ordering, is shown to describe the rheology of the system.

摘要

我们使用离散元方法模拟,报告了在具有平面滑动壁和凹凸基底的倾斜通道中流动的近乎单分散颗粒物质从无序状态到有序状态的转变。对于低颗粒-侧壁摩擦系数,流动的颗粒是无序的,然而,对于高侧壁摩擦,会得到有序状态,其特征在于颗粒的分层和每个层中的颗粒的六方堆积。通过局部键取向有序参数来量化的有序程度,在通道的横截面上变化,在侧壁附近具有最高的有序程度。流动转变显著影响局部流变学-与无序状态相比,有序状态下的有效摩擦系数更低,堆积分数更高。一个包含局部有序程度的简单模型被证明可以描述系统的流变学。

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