Turbulence: DNS Methods, Process, and Analysis
ORAL · M34
Presentations
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Two-step simulation of velocity and passive scalar mixing at high Schmidt number in turbulent jets
ORAL
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Authors
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K. Jeff Rah
California Institute of Technology
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Guillaume Blanquart
California Institute of Technology, Caltech, Mechanical Engineering Department, California Institute of Technology
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From laminar to fully-developed turbulence in a 500 radii long Osborne Reynolds pipe flow: A direct numerical simulation study.
ORAL
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Authors
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Ronald Adrian
Arizona State University
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Xiaohua Wu
Canadian Royal Military College
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Parviz Moin
Stanford University, Center for Turbulence Research, Stanford University, Stanford, California 94305, USA, Center for Turbulence Research, Stanford University, Stanford Univ
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Characteristics of the mixing volume model with the interactions among spatially distributed particles for Lagrangian simulations of turbulent mixing
ORAL
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Authors
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Tomoaki Watanabe
Nagoya University
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Koji Nagata
Nagoya University
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Lagrangian study of acceleration in a turbulent channel flow
ORAL
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Authors
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Juan Ignacio Polanco
LMFA, Universit\'e Lyon 1, INSA Lyon, Ecole Centrale Lyon, CNRS UMR 5509
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Ivana Vinkovic
LMFA, Universit\'e Lyon 1, INSA Lyon, Ecole Centrale Lyon, CNRS UMR 5509
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Nickolas Stelzenmuller
LEGI, Universit\'e Grenoble Alpes, CNRS UMR 5519
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Nicolas Mordant
LEGI, Universit\'e Grenoble Alpes, CNRS UMR 5519, LEGI, Universite Grenoble Alpes & CNRS
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Direct numerical simulation of turbulent boundary layer with constant thickness
ORAL
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Authors
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Yichen Yao
Tsinghua Univ
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Chunxiao Xu
Tsinghua Univ
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Weixi Huang
Tsinghua Univ
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Non-Boussinesq effects on buoyancy-driven variable-density turbulence
ORAL
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Authors
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Denis Aslangil
Lehigh University
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Daniel Livescu
Los Alamos National Laboratory
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Arindam Banerjee
Lehigh University
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Turbulent heat-and-mass transfer in channel flow at transcritical temperature conditions
ORAL
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Authors
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Kukjin Kim
Purdue University
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Carlo Scalo
Purdue University, Purdue Univ, University of Purdue, School of Engineering
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Jean-Pierre Hickey
University of Waterloo
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Quantitative evaluation on contributions of laminar, turbulence and secondary flow to momentum and heat transfer in rhombic ducts
ORAL
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Authors
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Naoya Fukushima
Tokyo University of Science
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Direct numerical simulation of chemical fouling in a turbulent channel flow
ORAL
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Authors
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Hanbyeol Kim
Seoul Natl Univ
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Haecheon Choi
Seoul Natl Univ, Seoul National University
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Computing Normal Shock-Isotropic Turbulence Interaction With Tetrahedral Meshes and the Space-Time CESE Method
ORAL
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Authors
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Balaji Shankar Venkatachari
National Institute of Aerospace
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Chau-Lyan Chang
NASA Langley Research Center
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