Pugnaloni Luis A, Carlevaro C Manuel, Kramár M, Mischaikow K, Kondic L
Dpto. de Ingeniería Mecánica, Facultad Regional La Plata, Universidad Tecnológica Nacional, Av. 60 Esq. 124, 1900 La Plata, Argentina.
Consejo Nacional de Investigaciones Científicas y Técnicas, Argentina.
Phys Rev E. 2016 Jun;93(6):062902. doi: 10.1103/PhysRevE.93.062902. Epub 2016 Jun 14.
The force network of a granular assembly, defined by the contact network and the corresponding contact forces, carries valuable information about the state of the packing. Simple analysis of these networks based on the distribution of force strengths is rather insensitive to the changes in preparation protocols or to the types of particles. In this and the companion paper [Kondic et al., Phys. Rev. E 93, 062903 (2016)10.1103/PhysRevE.93.062903], we consider two-dimensional simulations of tapped systems built from frictional disks and pentagons, and study the structure of the force networks of granular packings by considering network's topology as force thresholds are varied. We show that the number of clusters and loops observed in the force networks as a function of the force threshold are markedly different for disks and pentagons if the tangential contact forces are considered, whereas they are surprisingly similar for the network defined by the normal forces. In particular, the results indicate that, overall, the force network is more heterogeneous for disks than for pentagons. Such differences in network properties are expected to lead to different macroscale response of the considered systems, despite the fact that averaged measures (such as force probability density function) do not show any obvious differences. Additionally, we show that the states obtained by tapping with different intensities that display similar packing fraction are difficult to distinguish based on simple topological invariants.
由接触网络和相应接触力定义的颗粒集合体的力网络,携带着关于堆积状态的有价值信息。基于力强度分布对这些网络进行的简单分析,对制备方案的变化或颗粒类型相当不敏感。在本文以及配套论文[孔迪奇等人,《物理评论E》93,062903(2016年)10.1103/PhysRevE.93.062903]中,我们考虑了由摩擦圆盘和五边形构建的敲击系统的二维模拟,并通过考虑随着力阈值变化网络的拓扑结构,研究颗粒堆积的力网络结构。我们表明,如果考虑切向接触力,对于圆盘和五边形,在力网络中观察到的簇和环的数量作为力阈值的函数有显著差异,而对于由法向力定义的网络,它们却惊人地相似。特别是,结果表明,总体而言,圆盘的力网络比五边形的更不均匀。尽管平均度量(如力概率密度函数)没有显示出任何明显差异,但预计网络属性的这种差异会导致所考虑系统的不同宏观响应。此外,我们表明,基于简单的拓扑不变量,难以区分通过不同强度敲击获得的、具有相似堆积分数的状态。