The Influence of Network Topology on Sound Propagation in Granular Materials
arXiv:1110.1858 · doi:10.1103/PhysRevE.86.041306
Abstract
Granular materials, whose features range from the particle scale to the force-chain scale to the bulk scale, are usually modeled as either particulate or continuum materials. In contrast with either of these approaches, network representations are natural for the simultaneous examination of microscopic, mesoscopic, and macroscopic features. In this paper, we treat granular materials as spatially-embedded networks in which the nodes (particles) are connected by weighted edges obtained from contact forces. We test a variety of network measures for their utility in helping to describe sound propagation in granular networks and find that network diagnostics can be used to probe particle-, curve-, domain-, and system-scale structures in granular media. In particular, diagnostics of meso-scale network structure are reproducible across experiments, are correlated with sound propagation in this medium, and can be used to identify potentially interesting size scales. We also demonstrate that the sensitivity of network diagnostics depends on the phase of sound propagation. In the injection phase, the signal propagates systemically, as indicated by correlations with the network diagnostic of global efficiency. In the scattering phase, however, the signal is better predicted by meso-scale community structure, suggesting that the acoustic signal scatters over local geographic neighborhoods. Collectively, our results demonstrate how the force network of a granular system is imprinted on transmitted waves.
19 pages, 9 figures, and 3 tables
References in corpus (13)
- Fast unfolding of communities in large networks
- Modularity and community structure in networks
- Resolution limit in community detection
- Comparing community structure identification
- Spatial Networks
- Statistical Mechanics of Community Detection
- Communicability in complex networks
- The Jamming Transition in Granular Systems
- Vibrational modes identify soft spots in a sheared disordered packing
- How Hertzian solitary waves interact with boundaries in a 1-D granular medium
- Elastic wave propagation in confined granular systems
- Sound propagation and force chains in granular materials
- The path to fracture in granular flows: dynamics of contact networks
Cited by in corpus (39)
- Robust Detection of Dynamic Community Structure in Networks
- Explosive higher-order Kuramoto dynamics on simplicial complexes
- Network Analysis of Particles and Grains
- Think Locally, Act Locally: The Detection of Small, Medium-Sized, and Large Communities in Large Networks
- Extraction of Force-Chain Network Architecture in Granular Materials Using Community Detection
- Evolution of network architecture in a granular material under compression
- Nonlinear Force Propagation during Granular Impact
- Resolving structural variability in network models and the brain
- Simplicial complexes: higher-order spectral dimension and dynamics
- Quantifying force networks in particulate systems
- Topological and geometric measurements of force chain structure
- Evolution of Force Networks in Dense Particulate Media
- Forecasting failure locations in two-dimensional disordered lattices
- Benchmarking measures of network controllability on canonical graph models
- Topological data analysis of continuum percolation with disks
- Granular Response to Impact: Topology of the Force Networks
- Conformational Control of Mechanical Networks
- Structure of force networks in tapped particulate systems of disks and pentagons (Part 1): Clusters and Loops
- Structure of force networks in tapped particulate systems of disks and pentagons (Part 2): Persistence analysis
- Characterizing Granular Networks Using Topological Metrics
- Topology of Force Networks in Granular Media under Impact
- Failure of confined granular media due to pullout of an intruder: From force networks to a system wide response
- Force Percolation Transition of Jammed Granular Systems
- Scaling Properties of Force Networks for Compressed Particulate Systems
- Experimental validation of a micromechanically-based compaction law for soft/hard grain mixtures
- Geometrical and spectral study of -skeleton graphs
- Localization in random bipartite graphs: numerical and empirical study
- Complex systems: features, similarity and connectivity
- Random-Graph Models and Characterization of Granular Networks
- Percolation and jamming transitions in particulate systems with and without cohesion
- Two approaches to quantification of force networks in particulate systems
- Inference of hidden structures in complex physical systems by multi-scale clustering
- Evolution of force networks in dense granular matter close to jamming
- Local topological moves determine global diffusion properties of hyperbolic higher-order networks
- Correlating the force network evolution and dynamics in slider experiments
- Friction and Pressure-Dependence of Force Chain Communities in Granular Materials
- Granular Impact: A Grain-scale Approach
- Generalized Erdos Numbers for network analysis
- A new nature inspired modularity function adapted for unsupervised learning involving spatially embedded networks: A comparative analysis