Content area

Abstract

Anyone who has built a sandcastle recognizes that adding liquid to the sand grains increases the overall stability. However, measurements of the stability in wet granular materials often conflict with theory and with each other. The friction-based Mohr-Coulomb model distinguishes between granular friction and interparticle friction, but uses the former without providing a physical mechanism. A frictionless model for the geometric stability of dry particles on the surface of a pile is in excellent agreement with experiment. However, the same model applied to wet grains overestimates the stability and predicts no dependence on system size. Here we take a frictionless liquid-bridge model and perform a stability analysis within the pile. We reproduce our experimentally observed dependence of the stability angle on system size, particle size and surface tension. Furthermore, we account for past discrepancies in experimental reports by showing that sidewalls can significantly increase the stability of granular material.

Details

Title
Maximum angle of stability of a wet granular pile
Author
Nowak, Sarah; Samadani, Azadeh; Kudrolli, Arshad
Pages
50-52
Publication year
2005
Publication date
Oct 2005
Publisher
Nature Publishing Group
ISSN
17452473
e-ISSN
17452481
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
194682273
Copyright
Copyright Nature Publishing Group Oct 2005