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Toward Understanding Wake Vortices and Atmospheric Turbulence Interactions Using Large-Eddy SimulationThe vortices produced by an aircraft in flight are a complex phenomena created from a 'sheet of vorticity' leaving the trailing edge of the aircraft surfaces. This sheet tends to roll-up into two counter-rotating vortices. After a few spans downstream of the aircraft, the roll-up process is complete and the vortex pair may be characterized in a simple manner for modeling purposes. Our research will focus on what happens to these post roll-up vortices in the vicinity of an airport terminal. As the aircraft wake vortices descend, they are transported by the air mass which they are embedded and are decayed by both internal and external processes. In the vicinity of the airport, these external influences are usually due to planetary boundary layer (PBL) turbulence. Using large-eddy simulation (LES), one may simulate a variety of PBL conditions. In the LES method, turbulence is generated in the PBL as a response to surface heat flux, horizontal pressure gradient, wind shear, and/or stratification, and may produce convective or unstably stratified, neutral, or stably stratified PBL's. Each of these PBL types can occur during a typical diurnal cycle of the PBL. Thus it is important to be able to characterize these conditions with the LES method. Once this turbulent environment has been generated, a vortex pair will be introduced and the interactions are observed. The objective is to be able to quantify the PBL turbulence vortex interaction and be able to draw some conclusions of vortex behavior from the various scale interactions. This research is ongoing, and we will focus on what has been accomplished to date and the future direction of this research. We will discuss the model being used, show results that validate its use in the PBL, and present a nested-grid method proposed to analyze the entire PBL and vortex pair simultaneously.
Document ID
19980073281
Acquisition Source
Langley Research Center
Document Type
Conference Paper
Authors
DeCroix, David
(North Carolina State Univ. Raleigh, NC United States)
Lin, Yuh-Lang
(North Carolina State Univ. Raleigh, NC United States)
Arya, S. Pal
(North Carolina State Univ. Raleigh, NC United States)
Kao, C.-T.
(North Carolina State Univ. Raleigh, NC United States)
Shen, S.
(North Carolina State Univ. Raleigh, NC United States)
Date Acquired
August 18, 2013
Publication Date
November 1, 1997
Publication Information
Publication: Proceedings of the NASA First Wake Vortex Dynamic Spacing Workshop
Subject Category
Aerodynamics
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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