Bratberg I, Radjai F, Hansen A
Department of Telecommunications, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Sep;66(3 Pt 1):031303. doi: 10.1103/PhysRevE.66.031303. Epub 2002 Sep 19.
We study the structural properties of two-dimensional granular packings prepared by random deposition from a source line. We consider a class of random ballistic deposition models based on single-particle relaxation rules controlled by a critical angle, and we show that these local rules can be formulated as rolling friction in the framework of dynamic methods for the simulation of granular materials. We find that a packing prepared by random deposition models is generically unstable, and undergoes dynamic rearrangements. As a result, the dynamic method leads systematically to a higher solid fraction than the geometrical model for the same critical angle. We characterize the structure of the packings generated by both methods in terms of solid fraction, contact connectivity, and anisotropy. Our analysis provides evidence for four packing regimes as a function of solid fraction, the mechanisms of packing growth being different in each regime.
我们研究了通过从源线随机沉积制备的二维颗粒堆积的结构特性。我们考虑了一类基于由临界角控制的单粒子弛豫规则的随机弹道沉积模型,并表明这些局部规则可以在颗粒材料模拟的动态方法框架中表述为滚动摩擦。我们发现,由随机沉积模型制备的堆积通常是不稳定的,并会经历动态重排。因此,对于相同的临界角,动态方法系统地导致比几何模型更高的固体分数。我们根据固体分数、接触连通性和各向异性来表征两种方法生成的堆积结构。我们的分析提供了作为固体分数函数的四种堆积状态的证据,每种状态下堆积生长的机制都不同。