English

Statistics of relative velocity for particles settling under gravity in a turbulent flow

Fluid Dynamics 2020-03-11 v1

Abstract

We study the joint probability distributions of separation, RR, and radial component of the relative velocity, VRV_{\rm R}, of particles settling under gravity in a turbulent flow. We also obtain the moments of these distributions and analyze their anisotropy using spherical harmonics. We find that the qualitative nature of the joint distributions remains the same as no gravity case. Distributions of VRV_{\rm R} for fixed values of RR show a power-law dependence on VRV_{\rm R} for a range of VRV_{\rm R}, exponent of the power-law depends on the gravity. Effects of gravity are also manifested in the following ways: (a) moments of the distributions are anisotropic; the degree of anisotropy depends on particle's Stokes number, but does not depend on RR for small values of RR. (b) mean velocity of collision between two particles is decreased for particles having equal Stokes numbers but increased for particles having different Stokes numbers. For the later, collision velocity is set by the difference in their settling velocities.

Keywords

Cite

@article{arxiv.2001.02724,
  title  = {Statistics of relative velocity for particles settling under gravity in a turbulent flow},
  author = {Akshay Bhatnagar},
  journal= {arXiv preprint arXiv:2001.02724},
  year   = {2020}
}