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ABSTRACT WITHDRAWN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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