Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
Shear-jamming in two-dimensional granular materials with power-law grain-size distribution - MaRDI portal

Shear-jamming in two-dimensional granular materials with power-law grain-size distribution (Q280686)

From MaRDI portal





scientific article; zbMATH DE number 6578405
Language Label Description Also known as
English
Shear-jamming in two-dimensional granular materials with power-law grain-size distribution
scientific article; zbMATH DE number 6578405

    Statements

    Shear-jamming in two-dimensional granular materials with power-law grain-size distribution (English)
    0 references
    0 references
    0 references
    10 May 2016
    0 references
    Summary: Although substantial progress has been made in recent years in research onsheared granular matter, relatively few studies concentrate on the behavior of materials with very strong polydispersity. In this paper, shear deformation of a two-dimensional granular material composed of frictional disk-shaped grains with power-law size distribution is analyzed numerically with a finite-difference model. The analysis of the results concentrates on those aspects of the behavior of the modeled system that are related to its polydispersity. It is demonstrated that many important global material properties are dependent on the behaviorof the largest grains from the tail of the size distribution. In particular, they are responsible for global correlation of velocity anomalies emerging at the jamming transition. They als obuild a skeleton of the global contact and force networks in shear-jammed systems, leadingto the very open, ``sparse'' structure of those networks, consisting of only \(\sim 35\%\) of all grains.The details of the model are formulated so that it represents fragmented sea ice moving ona two-dimensional sea surface; however, the results are relevant for other types of strongly polydisperse granular materials, as well.
    0 references
    granular materials
    0 references
    finite-element simulation
    0 references
    shear deformation
    0 references
    jamming phase transition
    0 references
    polydispersity
    0 references
    force networks
    0 references

    Identifiers