Drops: Wetting
ORAL · Z07 · ID: 3582302
Presentations
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General wetting energy boundary condition in a fully explicit non-ideal fluids solver
ORAL
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Publication: Numerical methods for multiphase flows;
Volume-conserving method for dynamic contact line on complex surfaces;
Spreading and engulfment of a viscoelastic film onto a Newtonian droplet;
A force splitting spectral element multiphase Lattice Boltzmann method with general wetting boundary condition;Presenters
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Chenhung Zhao
City College of New York, CCNY
Authors
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Chenhung Zhao
City College of New York, CCNY
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Alexandre Limare
Sorbonne University
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Stephane L Zaleski
Sorbonne Université, CNRS and IUF
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Dynamic contact angle modeling for simulations of drop impingement and sliding
ORAL
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Presenters
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Lucy Jane Brown
Center for Turbulence Research, Stanford University
Authors
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Lucy Jane Brown
Center for Turbulence Research, Stanford University
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Parviz Moin
Center for Turbulence Research, Stanford University, Stanford University
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Artificially stopping a solid body after surface impact
ORAL
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Presenters
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David Charland
George Washington University
Authors
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David Charland
George Washington University
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Megan C. Leftwich
George Washington University, PI
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Micrometre-sized Droplet Contact Line Advancement on Micropillared Surfaces
ORAL
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Presenters
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Janice C To
University of Edinburgh
Authors
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Janice C To
University of Edinburgh
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Khellil Sefiane
University of Edinburgh
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Rodrigo Ledesma Aguilar
University of Edinburgh
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Daniel Orejon
University of Edinburgh
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Spreading and Dewetting of Alcohol-Water Drops on a Surfactant-Laden Oil Layer
ORAL
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Presenters
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Katie Wu
Princeton University
Authors
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Katie Wu
Princeton University
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Victoria Spradlin
Princeton University
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Howard A Stone
Princeton University; Inaedis Inc., Princeton University
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Capillary Currents and Viscous Droplet Spreading
ORAL
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Presenters
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David Darrow
Massachusetts Institute of Technology
Authors
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David Darrow
Massachusetts Institute of Technology
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Lucas N Warwaruk
Massachusetts Institute of Technology, Univ of Alberta
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John W M Bush
Massachusetts Institute of Technology
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Freezing-induced contact line friction and universal scaling for maximum spreading of impacting drops on cold solid substrates
ORAL
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Publication: Universal scaling for maximum spreading of impacting drops on cold solid substrates
Presenters
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Peiwen Yan
University of California, Los Angeles
Authors
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Peiwen Yan
University of California, Los Angeles
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Conan Mccormack
University of California, Los Angeles
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Pirouz P Kavehpour
University of California, Los Angeles
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