Turbulent Boundary Layers: Experiments III
ORAL · MA ·
Presentations
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Scaling of near-wall turbulence in pipe flow
ORAL
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Authors
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Marcus Hultmark
- Princeton University
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Sean Bailey
- Princeton University
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Alexander Smits
- Princeton University
- Department of Mechanical and Aerospace Engineering, Princeton University
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Reynolds number effects on scale energy analysis of turbulent boundary layers
ORAL
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Authors
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Neelakantan Saikrishnan
- University of Minnesota Twin Cities
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Ellen Longmire
- University of Minnesota Twin Cities
- Aerospace Engineering \& Mechanics, University of Minnesota
- University of Minnesota
- Aerospace Engineering and Mechanics, University of Minnesota
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I. Marusic
- University of Melbourne
- The University of Melbourne
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Vortex organization in wall turbulence: inner or outer scaling?
ORAL
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Authors
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M. Guala
- GALCIT, California Institute of Technology
- Graduate Aerospace Laboratories, California Institute of Technology
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J. LeHew
- GALCIT, California Institute of Technology
- Graduate Aerospace Laboratories, California Institute of Technology
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Meredith Metzger
- University of Utah
- Dep. Mechanical Engineering, University of Utah
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Beverley McKeon
- California Institute of Technology
- GALCIT, California Institute of Technology
- Graduate Aerospace Laboratories, California Institute of Technology
- California Institute Technology
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PIV Characterization of Turbulent Channel Flow with Rib Patterned Superhydrophobic Walls
ORAL
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Authors
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Joseph Prince
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Brady Woolford
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Daniel Maynes
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Brent Webb
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Behavior of Different Turbulent Length Scales in a Boundary Layer with Isotropic Freestream Turbulence
ORAL
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Authors
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Sheilla Torres-Nieves
- Rensselaer Polytechnic Institute
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Jose Lebron-Bosques
- Rensselaer Polytechnic Institute
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Brian Brzek
- Rensselaer Polytechnic Institute
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Luciano Castillo
- Rensselaer Polytechnic Institute
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Hyung-Suk Kang
- The Johns Hopkins University
- Johns Hopkins University (JHU)
- Johns Hopkins University
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Charles Meneveau
- The Johns Hopkins University
- JHU
- Johns Hopkins University
- Department of Mechanical Engineering and Institute for Data Intensive Engineering and Science, Johns Hopkins University
- Mechanical Engineering and Center for Environmental and Applied Fluid Mechanics, Johns Hopkins University
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Raul B. Cal
- Portland State University
- PSU
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Experimental evidence of the Self Sustaining Process in a flat plate boundary layer
ORAL
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Authors
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Thomas Duriez
- PMMH / ESPCI
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Jean-Luc Aider
- PMMH / ESPCI
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Jose Eduardo Wesfreid
- PMMH / ESPCI
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The Mechanism of Heat Transfer Augmentation in Stagnation Flow Subject to Freestream Turbulence
ORAL
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Authors
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David Hubble
- Virginia Tech
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Tom Diller
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Pavlos Vlachos
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Scaling of Polymer Degradation Rate within a High-Reynolds-Number Turbulent Boundary Layer
ORAL
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Authors
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Brian Elbing
- University of Michigan
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Michael Solomon
- University of Michigan
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Marc Perlin
- University of Michigan
- Naval Architecture and Marine Engineering, University of Michigan, Ann Arbor, MI 48109 USA
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David Dowling
- University of Michigan
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Steven Ceccio
- University of Michigan
- University of Michigan, Ann Arbor
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Superhydrophobic Surfaces for Turbulent Drag Reduction: Effect of Geometry and Reynolds Number
ORAL
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Authors
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Robert Daniello
- University of Massachusetts, Amherst
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Jonathan P. Rothstein
- Univ. Massachusetts Amherst
- University of Massachusetts, Amherst
- University of Massachusetts Amherst
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Drag reduction in flows over superhydrophic surfaces
ORAL
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Authors
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Charles Peguero
- Brown University
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Charles Henoch
- NUWC
- Naval Undersea Warfare Center (NUWC), Newport, RI
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Kenneth Breuer
- Brown University
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