Boundary Layers: Flow Control
ORAL · J08 · ID: 677739
Presentations
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Assessment of the Darcy-Brinkman model for the characterisation of flows in permeable substrates
ORAL
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Presenters
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Ricardo Garcia-Mayoral
Univ of Cambridge
Authors
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Ziyin Lu
U. of Cambridge / IST Austria
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Dharma Busetto
U. of Pisa / U. of Cambridge
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Daniel Harwood
U. of Cambridge
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Ricardo Garcia-Mayoral
Univ of Cambridge
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Laminarizing effect of nonlinearly saturated crossflow vortices sustained by a sinusoidal roughness
ORAL
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Presenters
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Makoto Hirota
Institute of Fluid Science, Tohoku University
Authors
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Makoto Hirota
Institute of Fluid Science, Tohoku University
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Yuki Ide
Japan Aerospace Exploration Agency
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Yuji Hattori
Tohoku University, Institute of Fluid Science, Tohoku University
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Boundary-layer manipulation using shape-programmable materials
ORAL
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Presenters
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Jin-Tae Kim
Northwestern University
Authors
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Jin-Tae Kim
Northwestern University
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Xinchen Ni
Northwestern University
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Leonardo Chamorro
University of Illinois, Urbana-Champaign, University of Illinois Urbana Champaign, Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, University of Illinois Urbana-Champaign
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John A Rogers
Northwestern University
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Turbulent skin-friction drag reduction with flexible roughness
ORAL
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Presenters
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Jae Bok Lee
University of Michigan
Authors
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Jae Bok Lee
University of Michigan
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Rayhaneh Akhavan
University of Michigan
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Assessment of Clauser chart method for determination of drag on superhydrophobic surfaces
ORAL
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Presenters
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Kimberly Liu
Stanford University
Authors
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Kimberly Liu
Stanford University
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Ali Mani
Stanford
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Turbulent skin friction drag reduction over dynamically rough superhydrophobic surfaces
ORAL
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Presenters
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Amirreza Rastegari
University of Michigan
Authors
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Amirreza Rastegari
University of Michigan
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Rayhaneh Akhavan
University of Michigan
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Numerical Study of Turbulent Characteristics behind a Novel Vortex Generator
ORAL
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Presenters
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Benjamin S Savino
University of Mississippi
Authors
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Benjamin S Savino
University of Mississippi
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Taiho Yeom
University of Mississippi
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Wen Wu
University of Mississippi
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Analysis of underlying physics of drag alteration by riblets using Restricted nonlinear simulations
ORAL
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Presenters
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Bianca Viggiano
Johns Hopkins University
Authors
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Bianca Viggiano
Johns Hopkins University
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Benjamin A Minnick
Johns Hopkins University
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Xiaowei Zhu
Johns Hopkins University
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Dennice Gayme
Johns Hopkins, Johns Hopkins University
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The influence of frontal solidity on fully rough heat transfer modeled through an exposed and sheltered flow dichotomy
ORAL
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Publication: Rowin et al. (in preparation, Journal of Fluid Mechanics): Effect of roughness density on turbulent forced convection
Presenters
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Kevin Zhong
University of Melbourne
Authors
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Kevin Zhong
University of Melbourne
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Wagih A Rowin
University of Melbourne
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Tanvir M Saurav
University of New South Wales
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Thomas O Jelly
Univ of Glasgow
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Nicholas Hutchins
University of Melbourne
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Daniel Chung
University of Melbourne
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Model for turbulent drag reduction of superhydrophobic surfaces in large Reynolds number flows
ORAL
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Publication: P. Luzzatto-Fegiz, S. Tomlinson, S. D. Egan, F. Gibou, O. E. Jensen and J. R. Landel. (2022) Mechanisms of turbulent drag reduction for superhydrophobic surfaces across large Reynolds numbers. Under review.
Presenters
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Julien R Landel
Univ of Manchester, University of Manchester
Authors
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Julien R Landel
Univ of Manchester, University of Manchester
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Samuel D Tomlinson
University of Manchester
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Oliver E Jensen
University of Manchester
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Frederic Gibou
University of California, Santa Barbara
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Paolo Luzzatto Fegiz
University of California, Santa Barbara, University of California, Santa Barbra
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A systematic numerical investigation of turbulent channel flow over hydrophobic bottom wall: an analogue of rough wall turbulent boundary layer
ORAL
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Publication: Xu, Haosen HA, Xiang IA Yang, and Xiaowei Zhu. "A systematic numerical investigation of turbulent channel flow over hydrophobic bottom wall: an analogue of rough wall turbulent boundary layer" (under preparation)
Presenters
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Haosen H Xu
Ocean University of China
Authors
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Haosen H Xu
Ocean University of China
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Mass Transfer at Topologically Singular Points
ORAL
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Publication: Convective mass deposition near a topologically singular point at the leading edge of a<br>solid substrate, PRL
Presenters
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Oles Dubrovski
Technion- Israel Institute of Technology
Authors
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Oles Dubrovski
Technion- Israel Institute of Technology
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Matthew Suss
Technion-Israel Institute of Technology
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Robert Glouckhovski
Technion-Israel Institute of Technology
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Ofer Manor
Technion - Israel Institute of Technolog, Technion
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