Experiments and simulations of Richtmyer-Meshkov Instability with measured,volumetric initial conditions.
POSTER
Abstract
We describe experiments of single-shock Richtmyer-Meskhov Instability (RMI) performed on the shock tube apparatus at the University of Arizona in which the initial conditions are volumetrically imaged prior to shock wave arrival. Initial perturbations play a major role in the evolution of RMI, and previous experimental efforts only capture a single plane of the initial condition. The method presented uses a rastered laser sheet to capture additional images throughout the depth of the initial condition immediately before the shock arrival time. These images are then used to reconstruct a volumetric approximation of the experimental perturbation. Analysis of the initial perturbations is performed, and then used as initial conditions in simulations using the hydrodynamics code ARES, developed at Lawrence Livermore National Laboratory (LLNL). Experiments are presented and comparisons are made with simulation results.
Authors
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Everest Sewell
The University of Arizona
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Kevin Ferguson
The University of Arizona
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Jeffrey Jacobs
The University of Arizona, Univ of Arizona
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Jeff Greenough
Lawrence Livermore National Laboratory
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Vitaliy Krivets
The University of Arizona, Univ of Arizona