流变学
惯性参考系
粒状材料
机械
本构方程
剪切(地质)
斜面
流量(数学)
统计物理学
剪切速率
物理
平面(几何)
职位(财务)
经典力学
数学
地质学
几何学
热力学
财务
量子力学
有限元法
经济
岩石学
作者
Olivier Pouliquen,Yoël Forterre
标识
DOI:10.1098/rsta.2009.0171
摘要
A non-local theory is proposed to model dense granular flows. The idea is to describe the rearrangements occurring when a granular material is sheared as a self-activated process. A rearrangement at one position is triggered by the stress fluctuations induced by rearrangements elsewhere in the material. Within this framework, the constitutive law, which gives the relation between the shear rate and the stress distribution, is written as an integral over the entire flow. Taking into account the finite time of local rearrangements, the model is applicable from the quasi-static regime up to the inertial regime. We have checked the prediction of the model in two different configurations, namely granular flows down inclined planes and plane shear under gravity, and we show that many of the experimental observations are predicted within the self-activated model.
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