CFD: Turbulent Flows
ORAL · D8
Presentations
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Data-driven RANS for prediction of wind turbine wakes
ORAL
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Authors
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Giacomo Valerio Iungo
UT Dallas
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Francesco Viola
LFMI EPFL, Laboratory of Fluid Mechanics and Instabilities, STI, EPFL, Lausanne, Switzerland, EPFL
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Umberto Ciri
Univ of Texas, Dallas, UT Dallas
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Simone Camarri
University of Pisa
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Mario A. Rotea
UT Dallas
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Stefano Leonardi
Univ of Texas, Dallas, UT Dallas
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Density Effects on the Shock-Turbulence Interaction
ORAL
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Authors
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Yifeng Tian
Michigan State University
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Farhad Jaberi
Michigan State University
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Daniel Livescu
Los Alamos National Laboratory
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Zhaorui Li
Texas A\&M University Corpus Christi, Los Alamos National Laboratory
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Air entrainment due to shear-flow free surface turbulence
ORAL
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Authors
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Xiangming Yu
Massachusetts Institute of Technology, Cambridge, MA, 02139
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Dick Yue
Department of Mechanical Engineering, MIT, Massachusetts Institute of Technology, Massachusetts Institute of Technology, Cambridge, MA, 02139
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Kelli Hendrickson
Massachusetts Institute of Technology, Massachusetts Institute of Technology, Cambridge, MA, 02139
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Minimum-dissipation models for large-eddy simulation
ORAL
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Authors
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Hyunji Jane Bae
Stanford University
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Wybe Rozema
University of Groningen, Netherlands
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Parviz Moin
Center for Turbulence Research, Stanford University, Stanford Univ, Stanford University
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Roel Verstappen
University of Groningen, University of Groningen, Netherlands
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Error-measure for anisotropic grid-adaptation in turbulence-resolving simulations
ORAL
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Authors
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Siavash Toosi
University of Maryland
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Johan Larsson
Department of Mechanical Engineering, University of Maryland, College Park, University of Maryland, College Park, University of Maryland
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Vortex Particle-Mesh methods for large scale LES of aircraft wakes
ORAL
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Authors
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Philippe Chatelain
Universite catholique de Louvain (UCL) - Institute of Mechanics, Materials and Civil Engineering (iMMC), Univ Catholique de Louvain
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Matthieu Duponcheel
Univ Catholique de Louvain
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Yves Marichal
WaPT, Wake Prediction Technologies
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Grégoire Winckelmans
Universite catholique de Louvain (UCL) - Institute of Mechanics, Materials and Civil Engineering (iMMC), Univ Catholique de Louvain
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Sensitivity Analysis of Chaotic Flow around Two-Dimensional Airfoil
ORAL
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Authors
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Patrick Blonigan
Massachusetts Inst of Tech-MIT
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Qiqi Wang
Massachusetts Inst of Tech-MIT
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Eric Nielsen
NASA Langley Research Center
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Boris Diskin
National Institute of Aerospace
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Slow transition of the Osborne Reynolds pipe flow: A direct numerical simulation study.
ORAL
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Authors
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Xiaohua Wu
Royal Military College of Canada
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Parviz Moin
Center for Turbulence Research, Stanford University, Stanford Univ, Stanford University
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Ronald J. Adrian
Arizona State University, Arizona State Univeristy, School of EMTE, Arizona State University
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Jon R. Baltzer
Los Alamos National Laboratory
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