arXiv · 1505.04076
Hydrodynamic instabilities in shear flows of cohesive granular particles
Abstract
We extend the dynamic van der Waals model introduced by A. Onuki [Phys. Rev. Lett. 94, 054501 (2005)] to the description of cohesive granular flows under a plane shear to study their hydrodynamic instabilities. Numerically solving the dynamic van der Waals model, we observe various heterogeneous structures of the density in steady states, where the viscous heating is balanced with the energy dissipation caused by inelastic collisions. Based on the linear stability analysis, we find that the spatial structures are determined by the mean volume fraction, the applied shear rate, and the inelasticity, where the instability is triggered if the system is thermodynamically unstable, i.e. the pressure, $p$, and the volume fraction, $\phi$, satisfy $\partial p/\partial\phi<0$.
Explore related subjects
Keep this discovery
Kuniyasu Saitoh, Satoshi Takada, Hisao Hayakawa. 2015-05-15. Hydrodynamic instabilities in shear flows of cohesive granular particles. https://doi.org/10.1039/c5sm01160d
Cite the original work for its findings. Save a collection to share your selection of sources.