DocumentCode :
3291372
Title :
Investigation of Three-Dimensional Internal and External Flow Separation
Author :
Gross, A. ; Jacobi, Ricardo ; Fasel, H.
Author_Institution :
Aerosp. & Mech. Eng, Univ. of Arizona, Tucson, AZ, USA
fYear :
2010
fDate :
14-17 June 2010
Firstpage :
45
Lastpage :
53
Abstract :
Flow separation is always three-dimensional despite the fact that most of the past research has focused on two-dimensional separation. The three-dimensional character of separation is particularly relevant when low-aspect ratio geometries are considered. Separation is often associated with unsteadiness, which is caused by large coherent structures that are a consequence of hydrodynamic instability mechanisms of the mean-flow. We are employing direct numerical simulations for investigating the highly-complex flow physics of three-dimensional laminar separation bubbles. The introduction of pulse disturbances allows us to probe the instability mechanisms. In parallel, we are also employing hybrid turbulence models for simulations of the turbulent flow through a square-duct, and for the Stanford University asymmetric diffuser experiments. By advancing the understanding of the fundamental mechanisms governing three-dimensional separation and by devising modeling strategies for high-Reynolds number flows, we are laying the foundation that may lead to better predictive tools and to separation control devices for practical applications.
Keywords :
bubbles; external flows; flow control; flow instability; flow separation; flow simulation; laminar flow; pipe flow; turbulence; asymmetric diffuser experiments; direct numerical simulations; high Reynolds number flows; highly complex flow physics; hybrid turbulence models; hydrodynamic instability; mean flow; pulse disturbances; separation control devices; square duct; three dimensional external flow separation; three dimensional internal flow separation; three dimensional laminar separation bubbles; turbulent flow; Computational modeling; Friction; Geometry; Numerical models; Radio access networks; Skin; Three dimensional displays; coherent structures; diffuser; hybrid turbulence model; separation; square-duct; three-dimensional;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Performance Computing Modernization Program Users Group Conference (HPCMP-UGC), 2010 DoD
Conference_Location :
Schaumburg, IL
Print_ISBN :
978-1-61284-986-7
Type :
conf
DOI :
10.1109/HPCMP-UGC.2010.10
Filename :
6017997
Link To Document :
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