Energy Spectrum of Buoyancy-Driven Turbulence
Abstract
Using high-resolution direct numerical simulation and arguments based on the kinetic energy flux , we demonstrate that for stably stratified flows, the kinetic energy spectrum , the entropy spectrum , and , consistent with the Bolgiano-Obukhov scaling. This scaling arises due to the conversion of kinetic energy to the potential energy by buoyancy. For weaker buoyancy, this conversion is weak, hence follows Kolmogorov's spectrum with a constant energy flux. For Rayleigh B\'{e}nard convection, we show that the energy supply rate by buoyancy is positive, which leads to an increasing with , thus ruling out Bolgiano-Obukhov scaling for the convective turbulence. Our numerical results show that convective turbulence for unit Prandt number exhibits a constant and for a narrow band of wavenumbers.
Keywords
Cite
@article{arxiv.1406.5359,
title = {Energy Spectrum of Buoyancy-Driven Turbulence},
author = {Abhishek Kumar and Anando G. Chatterjee and Mahendra K. Verma},
journal= {arXiv preprint arXiv:1406.5359},
year = {2015}
}
Comments
arXiv admin note: text overlap with arXiv:1404.2148