English

Large Eddy Simulation of Turbulent Channel Flows by the Rational LES Model

Numerical Analysis 2025-10-20 v1 Numerical Analysis

Abstract

The rational large eddy simulation (RLES) model is applied to turbulent channel flows. This approximate deconvolution model is based on a rational (subdiagonal Pade') approximation of the Fourier transform of the Gaussian filter and is proposed as an alternative to the gradient (also known as the nonlinear or tensor-diffusivity) model. We used a spectral element code to perform large eddy simulations of incompressible channel flows at Reynolds numbers based on the friction velocity and the channel half-width Re{sub tau} = 180 and Re{sub tau} = 395. We compared the RLES model with the gradient model. The RLES results showed a clear improvement over those corresponding to the gradient model, comparing well with the fine direct numerical simulation. For comparison, we also present results corresponding to a classical subgrid-scale eddy-viscosity model such as the standard Smagorinsky model.

Keywords

Cite

@article{arxiv.math/0205264,
  title  = {Large Eddy Simulation of Turbulent Channel Flows by the Rational LES Model},
  author = {T. Iliescu and P. Fischer},
  journal= {arXiv preprint arXiv:math/0205264},
  year   = {2025}
}

Comments

31 pages including 15 figures