Orientational correlation and velocity distributions in uniform shear flow of a dilute granular gas
arXiv:0802.0056 · doi:10.1103/PhysRevLett.100.068002
Abstract
Using particle simulations of the uniform shear flow of a rough dilute granular gas, we show that the translational and rotational velocities are strongly correlated in direction, but there is no orientational correlation-induced singularity at perfectly smooth () and rough () limits for elastic collisions (); both the translational and rotational velocity distribution functions remain close to a Gaussian for these two limiting cases. Away from these two limits, the orientational as well as spatial velocity correlations are responsible for the emergence of non-Gaussian high velocity tails. The tails of both distribution functions follow stretched exponentials, with the exponents depending on normal () and tangential () restitution coefficients.
Physical Review Letters (accepted)
References in corpus (1)
Cited by in corpus (4)
- Transport coefficients of a granular gas of inelastic rough hard spheres
- Revisiting ignited-quenched transition and the non-Newtonian rheology of a sheared dilute gas-solid suspension
- Universality of shear-banding instability and crystallization in sheared granular fluid
- Inhomogeneous Cooling of the Rough Granular Gas in Two Dimensions