English

Wall effects on pressure fluctuations in turbulent channel flow

Fluid Dynamics 2015-03-17 v2 Computational Physics

Abstract

The purpose of the present paper is to study the influence of wall-echo on pressure fluctuations pp', and on statistical correlations containing pp', {\em viz} redistribution ϕij\phi_{ij}, pressure diffusion dij(p)d_{ij}^{(p)}, and velocity/pressure-gradient Πij\Pi_{ij}. We extend the usual analysis of turbulent correlations containing pressure fluctuations in wall-bounded \tsc{dns} computations [Kim J.: {\em J. Fluid Mech.} {\bf 205} (1989) 421--451], separating pp' not only into rapid p(r)p_{(\mathrm{r})}' and slow p(s)p_{(\mathrm{s})}' parts [Chou P.Y.: {\em Quart. Appl. Math.} {\bf 3} (1945) 38--54], but further into volume (p(r;V)p'_{(\mathrm{r};\mathfrak{V})} and p(s;V)p'_{(\mathrm{s};\mathfrak{V})}) and surface (wall-echo; p(r;w)p'_{(\mathrm{r};w)} and p(s;w)p'_{(\mathrm{s};w)}) terms. An algorithm, based on a Green's function approach, is developed to compute the above splittings for various correlations containing pressure fluctuations (redistribution, pressure diffusion, velocity/pressure-gradient), in fully developed turbulent plane channel flow. This exact analysis confirms previous results based on a method-of-images approximation [Manceau R., Wang M., Laurence D.: {\em J. Fluid Mech.} {\bf 438} (2001) 307--338] showing that, at the wall, p(V)p'_{(\mathfrak{V})} and p(w)p'_{(w)} are usually of the same sign and approximately equal. The above results are then used to study the contribution of each mechanism on the pressure correlations in low Reynolds-number plane channel flow, and to discuss standard second-moment-closure modelling practices.

Keywords

Cite

@article{arxiv.1101.1876,
  title  = {Wall effects on pressure fluctuations in turbulent channel flow},
  author = {G. A. Gerolymos and D. Senechal and I. Vallet},
  journal= {arXiv preprint arXiv:1101.1876},
  year   = {2015}
}