Instability: Rayleigh-Taylor II
ORAL · L30
Presentations
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Comparison Between Turbulence Model Initialization Approaches for Rayleigh-Taylor and Richtmyer-Meshkov Turbulent Mixing
ORAL
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Authors
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Bertrand Rollin
Los Alamos National Laboratory
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Nick Denissen
Los Alamos National Laboratory
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Jon Reisner
Los Alamos National Laboratory
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Malcolm J. Andrews
Los Alamos National Laboratory
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Blast-Driven Hydrodynamic Instability
ORAL
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Authors
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Marc T. Henry de Frahan
University of Michigan
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Eric Johnsen
University of Michigan, Ann Arbor, University of Michigan, Department of Mechanical Engineering, University of Michigan, Ann Arbor, United states
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Temporal Evolution and Scaling of Mixing in Two-dimensional Rayleigh-Taylor Turbulence
ORAL
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Authors
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Quan Zhou
Shanghai Institute of Applied Mathematics and Mechanics, Shanghai University, Shanghai 200072, China
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Electrohydrodynamically induced mixing in immiscible multilayer flows
ORAL
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Authors
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Radu Cimpeanu
Imperial College London
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Demetrios Papageorgiou
Imperial College London, Department of Mathematics, Imperial College London
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The Rayleigh-Taylor Instability driven by an accel-decel-accel profile
ORAL
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Authors
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Praveen Ramaprabhu
University of North Carolina at Charlotte
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Varad Karkhanis
University of North Carolina at Charlotte
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Andrew Lawrie
University of Bristol, United Kingdom
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Initial Condition Effects on Turbulent Rayleigh Taylor Instability under Variable Acceleration History
ORAL
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Authors
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Denis Aslangil
Lehigh University
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Andrew Lawrie
University of Bristol
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Arindam Banerjee
Lehigh University
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ABSTRACT WITHDRAWN
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ABSTRACT WITHDRAWN
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Mixing and turbulence generated by the tilted Rayleigh-Taylor instability
ORAL
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Authors
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Daniel Livescu
Los Alamos National Laboratory
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Tie Wei
New Mexico Tech
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The Rayleigh-Taylor instability for a thin film on the inside of a horizontal cylinder
ORAL
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Authors
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Naima Hammoud
Princeton University
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Philippe Trinh
Oxford University
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Peter Howell
Oxford University, University of Oxford
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Jonathan Chapman
Oxford University
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Howard A. Stone
Princeton University, Department of Mechanical and Aerospace Engineering, Princeton University, Department of Mechanical \& Aerospace Engineering, Princeton University
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