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Force chains as the link between particle and bulk friction angles in granular material

机译:力链是颗粒材料中颗粒和整体摩擦角之间的联系

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摘要

From sediment transport in rivers to landslides, predictions of granular motion rely on a Mohr-Coulomb failure criterion parameterized by a friction angle. Measured friction angles are generally large for single grains, smaller for large numbers of grains, and no theory exists for intermediate numbers of grains. We propose that a continuum of friction angles exists between single-grain and bulk friction angles due to grain-to-grain force chains. Physical experiments, probabilistic modeling, and discrete element modeling demonstrate that friction angles decrease by up to 15° as the number of potentially mobile grains increases from 1 to ~20. Decreased stability occurs as longer force chains more effectively dislodge downslope “keystone” grains, implying that bulk friction angles are set by the statistics of single-grain friction angles. Both angles are distinct from and generally larger than grain contact-point friction, with implications for a variety of sediment transport processes involving small clusters of grains.
机译:从河流中的泥沙输送到滑坡,对颗粒运动的预测依赖于由摩擦角参数化的Mohr-Coulomb破坏准则。对于单个晶粒,测得的摩擦角通常较大,对于大量晶粒,测得的摩擦角较小,并且对于中等晶粒数,没有理论存在。我们建议,由于晶粒间的力链,单晶粒角和整体摩擦角之间存在连续的摩擦角。物理实验,概率模型和离散元素模型表明,随着潜在可移动晶粒的数量从1增加到〜20,摩擦角最多减少15°。随着更长的力链更有效地移出下坡“基石”晶粒,稳定性会降低,这意味着整体摩擦角是由单颗粒摩擦角的统计数据确定的。这两个角度均不同于谷物接触点摩擦,并且通常大于谷物接触点摩擦,这对涉及小颗粒团簇的各种沉积物输送过程产生了影响。

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