无量纲量
剪切速率
机械
牛顿流体
消散
惯性参考系
流变学
物理
剪切(地质)
布朗运动
非牛顿流体
膨胀的
剪切(物理)
经典力学
粘性液体
粘度
材料科学
热力学
复合材料
量子力学
作者
Martin Trulsson,Bruno Andreotti,Philippe Claudin
标识
DOI:10.1103/physrevlett.109.118305
摘要
Non-Brownian suspensions present a transition from Newtonian behavior in the zero-shear limit to a shear thickening behavior at a large shear rate, none of which is clearly understood so far. Here, we carry out numerical simulations of such an athermal dense suspension under shear, at an imposed confining pressure. This setup is conceptually identical to recent experiments of Boyer, Guazzelli, and Pouliquen [Phys. Rev. Lett. 107, 188301 (2011)]. Varying the interstitial fluid viscosities, we recover the Newtonian and Bagnoldian regimes and show that they correspond to a dissipation dominated by viscous and contact forces, respectively. We show that the two rheological regimes can be unified as a function of a single dimensionless number, by adding the contributions to the dissipation at a given volume fraction.
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