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Fluid-solid transition in unsteady shearing flows

机译:非恒定剪切流中的流固转换

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摘要

This paper focuses on the mechanical behaviour of granular systems under shearing, unsteady conditions. The results of numerical simulations of time evolving, homogeneous, shear flows of an assembly of frictional spheres, under constant volume conditions are illustrated. Simulations have been performed considering three volume fractions corresponding to fluid, solid and near-to-critical conditions at steady state. The three systems follow very different evolutionary paths, in terms of pressure, coordination number and stress ratio. Fluid-like and solid-like systems exhibit large and small fluctuations, respectively, in those quantities. A critical value of the coordination number seems to govern the transition from fluid to solid.
机译:本文重点研究在剪切,非稳态条件下颗粒系统的力学行为。说明了在恒定体积条件下摩擦球体组件的时间演化,均质,剪切流的数值模拟结果。考虑稳态时流体,固体和接近临界条件的三个体积分数,进行了模拟。这三个系统在压力,配位数和应力比方面遵循非常不同的演化路径。类液体和类固体系统分别在这些数量上表现出较大和较小的波动。配位数的临界值似乎决定着从流体到固体的转变。

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