Turbulence: Simulations II - DNS and LES I
ORAL · D21
Presentations
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Towards Feature-Resolved Simulations of Superhydrophobic Surfaces
ORAL
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Authors
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Yixuan Li
University of Minnesota
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Karim Alame
University of Minnesota
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Krishnan Mahesh
University of Minnesota
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Direct numerical simulation from laminar to fully-developed turbulence in spatially evolving pipe flow and flat plate boundary layer
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 University, Center for Turbulence Research, CTR, Stanford University, Stanford University
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Ronald J. Adrian
Arizona State University
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Jon R. Baltzer
Arizona State University
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Jean-Pierre Hickey
Stanford University, Center for Turbulence Research, Stanford University
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Application of the High Gradient hydrodynamics code to simulations of a two-dimensional zero-pressure-gradient turbulent boundary layer over a flat plate
ORAL
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Authors
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Bryan E. Kaiser
University of New Mexico
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Svetlana V. Poroseva
University of New Mexico
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Jesse M. Canfield
Geophysical Fluid Dynamics Institute, Florida State University
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Jeremy A. Sauer
Geophysical Fluid Dynamics Institute, Florida State University
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Rodman R. Linn
Los Alamos National Laboratory
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Estimating the Effective Reynolds Number in Implicit Large Eddy Simulation
ORAL
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Authors
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Fernando Grinstein
LANL
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Ye Zhou
LLNL
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Adam Wachtor
Los Alamos National Laboratory, LANL
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Brian Haines
LANL
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Large-Eddy Simulation of Propeller Crashback
ORAL
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Authors
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Praveen Kumar
University of Minnesota
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Krishnan Mahesh
University of Minnesota
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Large Eddy Simulation of Entropy Generation in a Turbulent Mixing Layer
ORAL
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Authors
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Reza H. Sheikhi
Northeastern University
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Mehdi Safari
Northeastern University
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Fatemeh Hadi
Northeastern University
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Large-eddy simulations of a fully appended submarine model
ORAL
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Authors
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Antonio Posa
The George Washington University
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Elias Balaras
The George Washington University, George Washington Unversity, George Washington University
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Direct numerical simulations of curvature effects on shear layer transition over airfoils
ORAL
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Authors
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Wei Zhang
King Abdullah University of Science and Technology
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Wan Cheng
King Abdullah University of Science and Technology
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Adnan Qamar
King Abdullah University of Science and Technology
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Wei Gao
King Abdullah University of Science and Technology
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Ravi Samtaney
King Abdullah University of Science and Technology
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Direct Numerical Simulation of a Transient Cumulus Flow
ORAL
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Authors
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Prasanth Prabhakaran
JNCASR
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Suresh Deshpande
JNCASR
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Roddam Narasimha
JNCASR
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Reynolds number effects on drag reduction of turbulent boundary layers subject to wall oscillation
ORAL
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Authors
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Maneesh Mishra
School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore
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Martin Skote
School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore
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