Interfacial and Thin Flim Instabilities V
ORAL · HD
Presentations
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Flow down a fibre at moderate Reynolds number
ORAL
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Authors
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Grigori Sisoev
Birmingham University
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Richard Craster
Imperial College London
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Omar Matar
Imperial College London
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Experimental and numerical study of film flows down fibers at moderate Reynolds numbers
ORAL
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Authors
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Fr\'ed\'erique Giorgiutti-Dauphin\'e
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Camille Duprat
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Christian Ruyer-Quil
CNRS UMR 7608, Paris
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J-P. Hulin
lab. FAST, UMR 7608, Campus Universitaire, 91405 Orsay, France
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Philip M.J. Trevelyan
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Serafim Kalliadasis
Department of Chemical Engineering, Imperial College London, London, SW7 2AZ United Kingdom
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Effect of wall topography on the wavy motion on falling liquid films
ORAL
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Authors
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Tatiana Gambaryan-Roisman
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Klaus Helbig
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Ralph Nasarek
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Peter Stephan
Chair of Technical Thermodynamics, Darmstadt University of Technology
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Rivulet patterns in heated falling films up to moderate Reynolds numbers.
ORAL
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Authors
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Benoit Scheid
Universit\'e Libre de Bruxelles, Universite Libre de Bruxelles
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S. Kalliadasis
Imperial College, London, Department of Chemical Engineering, Imperial College London, London SW7 2AZ, UK, Department Of Chemical Engineering, Imperial College London, SW7 2AZ, UK
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Christian Ruyer-Quil
CNRS UMR 7608, Paris
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Pierre Colinet
Universit\'e Libre de Bruxelles
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Rupture of thin films with resonant substrate patterning
ORAL
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Authors
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Justin Kao
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Alexander Golovin
Northwestern University
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Stephen Davis
Northwestern University
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Unusual Result of Non-Linear Wave Interaction
ORAL
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Authors
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Valentina Shevtsova
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Denis Melnikov
University of Brussels
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Alexander Nepomnyashchy
Israel Institute of Technology, Haifa
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