English

Spatial correlations of hydrodynamic fluctuations in simple fluids under shear flow: A mesoscale simulation study

Soft Condensed Matter 2024-06-03 v1 Statistical Mechanics

Abstract

Hydrodynamic fluctuations in simple fluids under shear flow are demonstrated to be spatially correlated, in contrast to the fluctuations at equilibrium, using mesoscopic hydrodynamic simulations. The simulation results for the equal-time hydrodynamic correlations in a multiparticle collision dynamics (MPC) fluid in shear flow are compared with the explicit expressions obtained from fluctuating hydrodynamic calculations. For large wave vectors kk, the nonequlibrium contributions to transverse and longitudinal velocity correlations decay as k4k^{-4} for wave vectors along the flow direction, and as k2k^{-2} for the off-flow directions. For small wave vectors, a cross-over to a slower decay occurs, indicating long-range correlations in real space. The coupling between the transverse velocity components, which vanishes at equilibrium, also exhibits a k2k^{-2} dependence on the wave vector. In addition, we observe a quadratic dependency on the shear rate of the non-equilibrium contribution to pressure.

Keywords

Cite

@article{arxiv.1712.05452,
  title  = {Spatial correlations of hydrodynamic fluctuations in simple fluids under shear flow: A mesoscale simulation study},
  author = {Anoop Varghese and Gerhard Gompper and Roland G. Winkler},
  journal= {arXiv preprint arXiv:1712.05452},
  year   = {2024}
}

Comments

7 pages, 5 figures

R2 v1 2026-06-22T23:18:38.666Z