arXiv · 2303.12312
Suppression of Richtmyer-Meshkov instability via special pairs of shocks and phase transitions
Abstract
The classical Richtmyer-Meshkov instability is a hydrodynamic instability characterizing the evolution of an interface following shock loading. In contrast to other hydrodynamic instabilities such as Rayleigh-Taylor, it is known for being unconditionally unstable: regardless of the direction of shock passage, any deviations from a flat interface will be amplified. In this article, we show that for negative Atwood numbers, there exist special sequences of shocks which result in a nearly perfectly suppressed instability growth. We demonstrate this principle computationally and experimentally with stepped fliers and phase transition materials. A fascinating immediate corollary is that in specific instances a phase transitioning material may self-suppress RMI.
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W. J. Schill, M. R. Armstrong, J. H. Nguyen, D. M. Sterbentz, D. A. White, L. X. Benedict, R. N. Rieben, A. Hoff, H. E. Lorenzana, B. M. La Lone, M. D. Staska, J. L. Belof. 2023-03-22. Suppression of Richtmyer-Meshkov instability via special pairs of shocks and phase transitions. https://arxiv.org/abs/2303.12312
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