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Arches and contact forces in a granular pile

机译:颗粒桩中的拱形和接触力

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Assemblies of granular particles mechanically stable under their own weight contain arches. These are structural units identified as sets of mutually stable grains. It is generally assumed that these arches shield the weight above them and should bear most of the stress in the system. We test such hypothesis by studying the stress born by in-arch and out-of-arch grains. We show that, indeed, particles in arches withstand larger stresses. In particular, the isotropic stress tends to be larger for in-arch grains whereas the anisotropic component is marginally distinguishable between the two types of particles. The contact force distributions demonstrate that an exponential tail (compatible with the maximization of entropy under no extra constraints) is followed only by the out-of-arch contacts. In-arch contacts seem to be compatible with a Gaussian distribution consistent with a recently introduced approach that takes into account constraints imposed by the local force balance on grains.
机译:在自重作用下机械稳定的颗粒状颗粒的组件包含拱形。这些是被识别为相互稳定晶粒组的结构单元。通常认为,这些拱形物会屏蔽其上方的重量,并应承受系统中的大部分应力。我们通过研究拱内和拱外晶粒所产生的应力来检验这种假设。我们表明,确实,拱门中的粒子可以承受更大的应力。特别是,对于拱形晶粒,各向同性应力趋向于更大,而在两种类型的颗粒之间,各向异性成分几乎没有区别。接触力分布表明,指数尾部(在没有额外约束的情况下与熵的最大值兼容)仅跟随拱外接触。拱内接触似乎与高斯分布兼容,这与最近引入的方法一致,该方法考虑了局部力平衡对谷物施加的约束。

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