Microscale Flows: Interfaces and Wetting
ORAL · M22 ·
Presentations
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Effect of Microstructure and Wettability on Liquid Delivery in Structured Surfaces
ORAL
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Authors
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Diyuan Zong
- Tsinghua University
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Arif Rokoni
- Drexel University
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Yuanyuan Duan
- Tsinghua University
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Ying Sun
- Drexel University
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The failure of a superhydrophobic surface under external flow
ORAL
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Authors
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Ying Liu
- Princeton University
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Matthew Fu
- Princeton University
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Marcus Hultmark
- Princeton University
- Princeton Univ
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Alexander Smits
- Princeton University; Monash University
- Princeton University
- Princeton University and Monash University
- Princeton University, Monash University
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Howard Stone
- Princeton University
- Department of Mechanical and Aerospace Engineering, Princeton University, USA
- Department of Mechanical and Aerospace Engineering, Princeton University
- Princeton University, Department of Mechanical and Aerospace Engineering
- Princeton Univ
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Absence of molecular slip on ultraclean and SAM-coated surfaces
ORAL
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Authors
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Justin Pye
- Emory University
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Clay Wood
- Emory University
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Justin Burton
- Emory University
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Apparent and Actual Dynamic Contact Angles in Confined Two-Phase Flows
ORAL
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Authors
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Takeshi Omori
- Osaka Univ
- Department of Mechanical Engineering, Osaka University
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Takeo Kajishima
- Osaka Univ
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From catastrophic acceleration to deceleration of liquid plugs in prewetted capillary tubes.
ORAL
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Authors
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Juan Magniez
- IEMN, International Laboratory, UMR CNRS 8520, Université de Lille
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Michael Baudoin
- IEMN, International Laboratory, UMR CNRS 8520, Université de Lille
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Farzam Zoueshtiagh
- IEMN, International Laboratory, UMR CNRS 8520, Université de Lille
- University of Lille, IEMN-CNRS 8520
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Liquid/liquid/solid contact angles
ORAL
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Authors
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Marine Borocco
- PMMH, ESPCI, Paris, and LadHyX, Ecole Polytechnique, Palaiseau, France
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Charlotte Pellet
- Sanofi Pharmaceutical Engineering, Vitry-sur-Seine, France
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Jean-René Authelin
- Sanofi Pharmaceutical Engineering, Vitry-sur-Seine, France
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Christophe Clanet
- PMMH, ESPCI, Paris, and LadHyX, Ecole Polytechnique, Palaiseau, France
- LadHyx - Ecole Polytechnique
- Ecole polytechnique - ESPCI
- Ecole Polytechnique - Ladhyx
- PMMH, ESPCI ; Ladhyx, Ecole Polytechnique
- LadHyX, Ecole Polytechnique - PMMH, ESPCI
- PMMH - ESPCI ; Ladhyx - Ecole Polytechnique
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David Quere
- PMMH, ESPCI, Paris, and LadHyX, Ecole Polytechnique, Palaiseau, France
- Ecole polytechnique - ESPCI
- Espci - Pmmh
- PMMH, ESPCI ; Ladhyx, Ecole Polytechnique
- LadHyX, Ecole Polytechnique - PMMH, ESPCI
- PMMH - ESPCI ; Ladhyx - Ecole Polytechnique
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Dynamic wetting of a liquid film in a vertical hydrophobic tube
ORAL
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Authors
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Franck Pigeonneau
- Surface du Verre et Interface - UMR 125 CNRS/saint-Gobain
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Pascaline Hayoun
- ESPCI - Physico-chimie des Polymeres et Milieux Disperses
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Etienne Barthel
- ESPCI - Physico-chimie des Polymeres et Milieux Disperses
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Fran\c{c}ois Lequeux
- ESPCI - Physico-chimie des Polymeres et Milieux Disperses
- CNRS UMR 7615 - ESPCI PARIS
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Emilie Verneuil
- ESPCI - Physico-chimie des Polymeres et Milieux Disperses
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Alban Letailleur
- Saint-Gobain Recherche
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Jeremie Teisseire
- Saint-Gobain Recherche
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ABSTRACT WITHDRAWN
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Comparison of the Cahn-Hilliard-Navier-Stokes and Molecular Dynamics Approaches for the Simulation of Droplet Coalescence and Wetting Phenomena
ORAL
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Authors
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Urbain Vaes
- Department of Mathematics, Imperial College London
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Benjamin Aymard
- Complex Multiscale Systems Group, Department of Chemical Engineering, Imperial College London
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Srikanth Ravipati
- Complex Multiscale Systems Group, Department of Chemical Engineering, Imperial College London
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Petr Yatsyshin
- Complex Multiscale Systems Group, Department of Chemical Engineering, Imperial College London
- Imperial College London
- Department of Chemical Engineering, Imperial College London, London, UK
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Amparo Galindo
- Centre for Process Systems Engineering Group, Department of Chemical Engineering, Imperial College London
- Centre for Process Systems Engineering, Department of Chemical Engineering, Imperial College London
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Serafim Kalliadasis
- Complex Multiscale Systems Group, Department of Chemical Engineering, Imperial College London
- Imperial College London
- Department of Chemical Engineering, Imperial College London
- Department of Chemical Engineering, Imperial College London, London SW7 2AZ, UK
- Department of Chemical Engineering, Imperial College, London, UK
- Imperial College - London
- Department of Chemical Engineering, Imperial College London, London, UK
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Rayleigh-Plateau instability of slipping viscous filaments in v-shaped grooves
ORAL
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Authors
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Martin Brinkmann
- Experimental Physics, Saarland University
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Tak Shing Chan
- Experimental Physics, Saarland University
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Ralf Seemann
- Experimental Physics, Saarland University
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