Large eddy simulation of wake vortices in the convective boundary layer
Author(s) -
YuhLang Lin,
Jongil Han,
Jing Zhang,
Feng Ding,
S. Pal Arya,
Fred Proctor
Publication year - 2000
Publication title -
38th aerospace sciences meeting and exhibit
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2000-753
Subject(s) - wake , boundary layer , vortex , large eddy simulation , convective boundary layer , mechanics , convection , wake turbulence , physics , meteorology , planetary boundary layer , turbulence
The behavior of wake vortices in a convective boundary layer is investigated using a validated large eddy simulation model. Our results show that the vortices are largely deformed due to strong turbulent eddy motion while a sinusoidal Crow instability develops. Vortex rising is found to be caused by the updrafts (thermals) during daytime convective conditions and increases with increasing nondimensional turbulence intensity eta. In the downdraft region of the convective boundary layer, vortex sinking is found to be accelerated proportional to increasing eta, with faster speed than that in an ideal line vortex pair in an inviscid fluid. Wake vortices are also shown to be laterally transported over a significant distance due to large turbulent eddy motion. On the other hand, the decay rate of the, vortices in the convective boundary layer that increases with increasing eta, is larger in the updraft region than in the downdraft region because of stronger turbulence in the updraft region.
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