PhysicsEngineering

Y. Dubief, F. Delcayre

2000JOURNAL OF TURBULENCE

DOI: 10.1088/1468-5248/1/1/011

tlooto Summary

Researchers investigate coherent-vortex identification in turbulence using DNS and LES, finding that pressure Laplacian is positive within a low-pressure tube and Q criterion is a necessary condition for its existence.

Abstract

The identification issue of coherent vortices is investigated on the basis of direct numerical simulation (DNS) and large-eddy simulations (LES) of turbulent flows. It is first shown that the pressure Laplacian is positive within a low-pressure tube of small cross section enclosed by convex isobaric surfaces in a uniform-density flow. Since this quantity is related to the second invariant Q of ∇ u , the Q criterion (region where Q is positive) is a necessary condition for the existence of such tubes. This eduction scheme is compared to other classical methods in incompressible simulations of isotropic turbulence: a mixing layer, a channel flow and a backward-facing step. Q-isosurfaces turn out to display very nice coherent vortices. This criterion is also used in combination with a conditional sampling method to discuss the characteristics of quasi-longitudinal vortices in a manipulated channel flow. The contribution of near-wall vortical structures to velocity and vorticity fluctuations is clearly isolat...

Citation format

DUBIEF, Y.; DELCAYRE, F. On coherent-vortex identification in turbulence. JOURNAL OF TURBULENCE, 2000, 1.