Focus Session: Superhydrophobicity and Drag Reduction II
ORAL · H8 ·
Presentations
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Longevity of underwater superhydrophobic surfaces for drag reduction
ORAL
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Authors
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Muchen Xu
- Univ of California - Los Angeles
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Chang-Jin ``CJ'' Kim
- University of California, Los Angeles
- Univ of California - Los Angeles
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Mechanically Robust Superhydrophobic Surfaces for Turbulent Drag Reduction
ORAL
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Authors
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Kevin Golovin
- Univ of Michigan - Ann Arbor
- University of Michigan
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Mathew Boban
- University of Michigan
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Charlotte Xia
- University of Michigan
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Anish Tuteja
- Univ of Michigan - Ann Arbor
- University of Michigan
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Self-limiting electrochemical recovery of dewetted state underwater: visualization and performance
ORAL
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Authors
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Ryan Freeman
- University of California, Los Angeles
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Chang-Jin ``CJ'' Kim
- University of California, Los Angeles
- Univ of California - Los Angeles
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High resolution velocity measurements within a turbulent boundary layer over super-hydrophobic surface
ORAL
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Authors
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Hangjian Ling
- Johns Hopkins University
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Siddarth Srinivasan
- Massachusetts Institute of Technology
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Joseph Katz
- Johns Hopkins University
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Gareth McKinley
- Massachusetts Institute of Technology
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Sustainable Drag Reduction in Turbulent Taylor-Couette Flows using Sprayable Superhydrophobic Surfaces
ORAL
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Authors
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Siddarth Srinivasan
- Massachusetts Institute of Technology
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Justin Kleingartner
- Massachusetts Institute of Technology
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Jonathan Gilbert
- Massachusetts Institute of Technology
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Andrew Milne
- Massachusetts Institute of Technology
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Robert Cohen
- Massachusetts Institute of Technology
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Gareth McKinley
- Massachusetts Institute of Technology
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Measurements of drag reduction by SLIPS
ORAL
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Authors
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Mohamed A. Samaha
- Princeton University
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Jessica Shang
- Princeton University
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Matthew Fu
- Princeton University
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Karen Wang
- Princeton University
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Howard A. Stone
- Princeton University
- Department of Mechanical and Aerospace Engineering, Princeton University
- Princeton Univ
- Mechanical \& Aerospace Engineering, Princeton University
- Princeton University, Complex Fluid Group
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Alexander Smits
- Princeton University, Monash University
- Princeton University
- Princeton University and Monash University
- Princeton University; Monash University
- Princeton University, Monash Universty
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Marcus Hultmark
- Princeton University
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Liquid infused surfaces in turbulent channel flow
ORAL
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Authors
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Matthew Fu
- Princeton University
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Howard Stone
- Princeton University
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Alexander Smits
- Princeton University
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Ian Jacobi
- Princeton University
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Mohamed Samaha
- Princeton University
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Jason Wexler
- Princeton University
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Jessica Shang
- Princeton University
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Brian Rosenberg
- Princeton University
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Leo Hellstr\"om
- Princeton University
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Yuyang Fan
- Princeton University
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Karen Wang
- Princeton University
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Kevin Lee
- Princeton University
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Marcus Hultmark
- Princeton University
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Drag on a liquid-infused superhydrophobic cylinder
ORAL
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Authors
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Jessica Shang
- Princeton University
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Alexander Smits
- Princeton University, Monash University
- Princeton University
- Princeton University and Monash University
- Princeton University; Monash University
- Princeton University, Monash Universty
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Howard A. Stone
- Princeton University
- Department of Mechanical and Aerospace Engineering, Princeton University
- Princeton Univ
- Mechanical \& Aerospace Engineering, Princeton University
- Princeton University, Complex Fluid Group
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Evaluation of Drag Reduction via Superhydrophobic Surfaces and Active Gas Replenishment in a Fully-developed Turbulent Flow
ORAL
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Authors
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James W. Gose
- Univ of Michigan - Ann Arbor
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Kevin Golovin
- Univ of Michigan - Ann Arbor
- University of Michigan
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Steven Ceccio
- University of Michigan
- Univ of Michigan - Ann Arbor
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Marc Perlin
- Univ of Michigan - Ann Arbor
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Anish Tuteja
- Univ of Michigan - Ann Arbor
- University of Michigan
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Turbulent flow drag reduction on hybrid riblet superhydrophobic surfaces
ORAL
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Authors
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Julie Crockett
- Brigham Young Univ - Provo
- Brigham Young University
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Richard Perkins
- Brigham Young University
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Daniel Maynes
- Brigham Young University
- Brigham Young Univ - Provo
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