Free Surface Flows I: Wakes and Turbulence
ORAL · A13 ·
Presentations
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A Reduced Order Model for Wake Surface-Wave Interaction
ORAL
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Authors
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Laura Pauley
- Penn State University
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Amir Mehdizadeh
- Penn State University
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Modeling variable density turbulence in the wake of an air-entraining transom stern
ORAL
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Authors
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Kelli Hendrickson
- Massachusetts Institute of Technology
- 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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A Study of Water Wave Wakes of Washington State Ferries
ORAL
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Authors
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Bradley Perfect
- University of Washington
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James Riley
- University of Washington
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Jim Thomson
- University of Washington
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Endicott Fay
- Washington State Ferries
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Footprints of turbulence over a viscous liquid
ORAL
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Authors
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Marc Rabaud
- FAST - Universit\'e Paris Sud, Orsay
- Laboratory FAST, Orsay, France
- Laboratoire FAST, Orsay
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Anna Paquier
- Laboratory FAST, Orsay, France
- Laboratoire FAST, Orsay
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Frederic Moisy
- Laboratoire FAST, CNRS, Universite Paris-Sud, Orsay, France
- Laboratoire FAST, CNRS, Universit\'e Paris-Sud, Orsay, France
- Laboratory FAST, Orsay, France
- Laboratoire FAST, Orsay
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The Turbulent Boundary Layer Near the Air-Water Interface on a Surface-Piercing Flat Plate
ORAL
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Authors
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Nathan Washuta
- University of Maryland
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Naeem Masnadi
- University of Maryland
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James H. Duncan
- University of Maryland
- University of Maryland, College Park
- University of Maryland-College Park
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DNS of air entrainment at the air-water interface of a temporally developing turbulent boundary layer
ORAL
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Authors
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Farshad Nasiri
- The George Washington University
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Elias Balaras
- The George Washington University
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Micro-swimmer dynamics in free-surface turbulence subject to wind stress
ORAL
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Authors
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Cristian Marchioli
- University of Udine
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Salvatore Lovecchio
- University of Udine
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Alfredo Soldati
- University of Udine
- Dept. of Elec. Manag. and Mechanical Engineering, University of Udine, Italy
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Understanding capillary wave turbulence using discrete quasi-resonant kinetic equation
ORAL
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Authors
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Yulin Pan
- Massachusetts Institute of Technology
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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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