Flow Instability: Rayleigh-Taylor II
ORAL · M18 ·
Presentations
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Rayleigh-Taylor mixing with time-dependent acceleration
ORAL
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Authors
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Snezhana Abarzhi
- Carnegie Mellon University
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Stochastic model of Rayleigh-Taylor mixing with time-dependent acceleration
ORAL
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Authors
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Nora Swisher
- Carnegie Mellon University
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Snezhana Abarzhi
- Carnegie Mellon University
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The Evolution of the single-mode Rayleigh-Taylor instability under the influence of time-dependent accelerations
ORAL
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Authors
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Praveen Ramaprabhu
- University of North Carolina at Charlotte
- Univeristy of North Carolina at Charlotte
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Varad Karkhanis
- University of North Carolina at Charlotte
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Rahul Banerjee
- St. Paul's Cathedral Mission College, Kolkata
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Hilda Varshochi
- University of North Carolina at Charlotte
- Univeristy of North Carolina at Charlotte
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Manoranjan Khan
- Jadavpur University
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Andrew Lawrie
- University of Bristol
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Simulations of mixing in Inertial Confinement Fusion with front tracking and sub-grid scale models
ORAL
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Authors
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Verinder Rana
- Stony Brook University
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Hyunkyung Lim
- Stony Brook University
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Jeremy Melvin
- Stony Brook University
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Baolian Cheng
- Los Alamos National Laboratory
- Los Alamos National Lab
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James Glimm
- Stony Brook University
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David H. Sharp
- Los Alamos National Laboratory
- Los Alamos National Lab
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Rayleigh-Taylor instability (RTI) for a yield-stress fluid
ORAL
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Authors
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Ilham Maimouni
- Paris-Est University (Navier Laboratory) / Schlumberger (SRPC)
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Julie Goyon
- Paris-Est University (Navier Laboratory)
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Etienne Lac
- Schlumberger (SRPC)
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Nicolas Flamant
- Schlumberger (SRPC)
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Thibault Pringuey
- Schlumberger (SRPC)
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Philippe Coussot
- Paris-Est University (Navier Laboratory)
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A 3D Bubble Merger Model for RTI Mixing
ORAL
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Authors
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Baolian Cheng
- Los Alamos National Laboratory
- Los Alamos National Lab
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The effect of an obstruction on the Rayleigh-Taylor instability
ORAL
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Authors
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Christopher Brown
- University of Cambridge
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Stuart Dalziel
- Department of Applied Mathematics and Theoretical Physics
- University of Cambridge
- DAMTP, University of Cambridge
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Dripping from a curved ceiling: a linear optimal transient growth analysis
ORAL
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Authors
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Gioele Balestra
- Laboratory of Fluid Mechanics and Instabilities, STI, EPFL, Lausanne, Switzerland
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Anna Lee
- Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge, MA 02139, USA
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Joel Marthelot
- Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge, MA 02139, USA
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Pierre-Thomas Brun
- Department of Mathematics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA
- Department of Mathematics Massachusetts Institute of Technology Cambridge, MA 02139, USA
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Pedro M. Reis
- Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge, MA 02139, USA
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Francois Gallaire
- LFMI EPFL
- Laboratory of Fluid Mechanics and Instabilities, STI, EPFL, Lausanne, Switzerland
- LFMI EPFL, Lausanne, Switzerland
- Laboratory of Fluid Mechanics and Instabilities, EPFL
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Validation of Nek5000 against low-Atwood, single-mode Rayleigh Taylor experiments
ORAL
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Authors
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Maxwell Hutchinson
- Univ of Chicago
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Scale-coupling and Nonlinear Dynamics in Compressible Rayleigh-Taylor Instability
ORAL
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Authors
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Dongxiao Zhao
- Department of Mechanical Engineering, University of Rochester
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Hussein Aluie
- 1. Laboratory for Laser Energetics, University of Rochester 2.Department of Mechanical Engineering, University of Rochester
- University of Rochester
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Riccardo Betti
- 1. Laboratory for Laser Energetics, University of Rochester 2.Department of Mechanical Engineering \& Physics and Astronomy, University of Rochester
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