Turbulence: Simulations I - LES Application
ORAL · A21
Presentations
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Wall-modeled large eddy simulation of high-lift devices from low to post-stall angle of attacks
ORAL
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Authors
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Julien Bodart
Universite de Toulouse, ISAE, Stanford University
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Johan Larsson
University of Maryland, Department of Mechanical Engineering, University of Maryland, University of Maryland, College Park
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Parviz Moin
Center for Turbulence Research, Stanford University, Stanford University, Center for Turbulence Research, CTR, Stanford University, Stanford University
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Wavelet-based adaptive LES of turbulent flow around a square-cylinder
ORAL
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Authors
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Giuliano De Stefano
University of Naples (Italy)
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Oleg V. Vasilyev
University of Colorado Boulder
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Numerical Study of Impulse Actuated Stall Control
ORAL
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Authors
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Sigfried Haering
University of Texas at Austin
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Robert Moser
The University of Texas at Austin, University of Texas at Austin, University of Texas, University of Texas Austin
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Dynamic Immersed Boundary Method for Modeling of Turbulent Boundary Layers over Bio-Fouled Surfaces
ORAL
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Authors
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Xiang Yang
Johns Hopkins University
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Jasim Sadique
Johns Hopkins University
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Rajat Mittal
Johns Hopkins University
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Charles Meneveau
Johns Hopkins University, Department of Mechanical Engineering, Johns Hopkins University
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Computational Analysis of Particle Nucleation in Dilution Tunnels: Effect of Flow Configuration and Tunnel Geometry
ORAL
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Authors
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Satbir Singh
Carnegie Mellon University
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Peter Adams
Carnegie Mellon University
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Ashwin Misquitta
Carnegie Mellon University
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Kyung Lee
Carnegie Mellon University
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Eric Lipsky
Penn State Greater Allegheny
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Allen Robinson
Carnegie Mellon University
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Coherent eddies in flows over three-dimensional dunes
ORAL
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Authors
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Mohammad Omidyeganeh
Queen's University
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Ugo Piomelli
Queen's University, Queen's University, Kingston, Ontario, Canada
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LES study of vortical structures and suction peaks on a 3D square cylinder in turbulent boundary layer
ORAL
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Authors
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Tetsuro Tamura
Tokyo Institute of Technology
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Yoshiyuki Ono
Obayashi Corporation
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Turbulent Heat Transfer in Curved Pipe Flow
ORAL
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Authors
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Changwoo Kang
Inha University, Korea
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Kyung-Soo Yang
Inha University, Korea
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Secondary Peak in Nusselt Number for Jet Impinging Flows: LES Study
ORAL
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Authors
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Rabijit Dutta
Department of Applied Mechanics, Indian Institute of Technology Delhi, New Delhi-110016
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Anupam Dewan
Department of Applied Mechanics, Indian Institute of Technology Delhi, New Delhi-110016
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Balaji Srinivasan
Department of Applied Mechanics, Indian Institute of Technology Delhi, New Delhi-110016
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