Bubbles: Growth, Heat Transfer and Boiling II
ORAL · L24
Presentations
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ABSTRACT WITHDRAWN
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Light-guided surface plasmonic bubble movement via contact line de-pinning by in-situ deposited plasmonic nanoparticle heating.
ORAL
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Authors
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Qiushi Zhang
Department of Aerospace and Mechanical Engineering, University of Notre Dame, 365 Fitzpatrick Hall, Notre Dame, IN 46556
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Eungkyu Lee
University of Notre Dame, Department of Aerospace and Mechanical Engineering, University of Notre Dame, 365 Fitzpatrick Hall, Notre Dame, IN 46556
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Yunsong Pang
Department of Aerospace and Mechanical Engineering, University of Notre Dame, 365 Fitzpatrick Hall, Notre Dame, IN 46556
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Jarrod Schiffbauer
Department of Physics, Colorado Mesa University, Grand Junction, CO, USA
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Aleksandar Jemcov
Department of Aerospace and Mechanical Engineering, University of Notre Dame, 365 Fitzpatrick Hall, Notre Dame, IN 46556
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Hsueh-Chia Chang
Department of Aerospace and Mechanical Engineering, University of Notre Dame, 365 Fitzpatrick Hall, Notre Dame, IN 46556
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Tengfei Luo
University of Notre Dame, Department of Aerospace and Mechanical Engineering, University of Notre Dame, 365 Fitzpatrick Hall, Notre Dame, IN 46556
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The physics of plasmonic vapor-gas bubbles in a gassy liquid
ORAL
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Authors
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Yuhang Zhang
Johns Hopkins University
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Andrea Prosperetti
University of Houston
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Direct Numerical Simulations of Surfactant Effects on Heat and/or Mass Transfer Around a Bubble
ORAL
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Authors
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Thomas Abadie
Imperial College London
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Omar Matar
Imperial College London, Department of Chemical Engineering, Imperial College London
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Bubble Dynamics on Nanostructured Microwires
ORAL
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Authors
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Lauren Coertze
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Daniel Orejon Mantecon
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Marilize Everts
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Prashant Valluri
School of Engineering, University of Edinburgh, University of Edinburgh, The University of Edinburgh
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Josua Meyer
University of Pretoria
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Khellil Sefiane
School of Engineering, University of Edinburgh
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Heat transport by bubbles in vertical natural convection
ORAL
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Authors
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Chong Shen Ng
University of Twente
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Roberto Verzicco
Physics of Fluids Group and Max Planck Center Twente, MESA+ Institute and J. M. Burgers Centre for Fluid Dynamics, University of Twente, P.O. Box 217,, Univ of Rome, Uniroma2, UTwente, GSSI, University of Rome ‘Tor Vergata’, University of Roma, Univ of Rome Tor Vergata, Univ of Twente, uniroma2
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Detlef Lohse
Physics of Fluids Group and Max Planck Center Twente, MESA+ Institute and J. M. Burgers Centre for Fluid Dynamics, University of Twente, P.O. Box 217,, Physics of Fluids group, University of Twente, Physics of Fluids Group, University of Twente, Univ of Twente, PoF - University of Twente, The Netherlands, Twente University, Physics of Fluids Group, University of Twente; Max Planck Institute for Dynamics and Self-Organization, University of Twente
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Direct numerical simulation of heat transfer in turbulent bubbly pipe flow
ORAL
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Authors
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In-Koo Lee
Seoul National University
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Jaehee Chang
Seoul National University
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Haecheon Choi
Seoul National University
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