作者
Jason D Bender, Oleg Schilling, Kumar S Raman, Robert A Managan, Britton J Olson, Sean R Copeland, C Leland Ellison, David J Erskine, Channing M Huntington, Brandon E Morgan, Sabrina R Nagel, Shon T Prisbrey, Brian S Pudliner, Philip A Sterne, Christopher E Wehrenberg, Ye Zhou
发表日期
2021/5
期刊
Journal of Fluid Mechanics
卷号
915
页码范围
A84
出版商
Cambridge University Press
简介
This paper describes a computational investigation of multimode instability growth and multimaterial mixing induced by multiple shock waves in a high-energy-density (HED) environment, where pressures exceed 1 Mbar. The simulations are based on a series of experiments performed at the National Ignition Facility (NIF) and designed as an HED analogue of non-HED shock-tube studies of the Richtmyer–Meshkov instability and turbulent mixing. A three-dimensional computational modelling framework is presented. It treats many complications absent from canonical non-HED shock-tube flows, including distinct ion and free-electron internal energies, non-ideal equations of state, radiation transport and plasma-state mass diffusivities, viscosities and thermal conductivities. The simulations are tuned to the available NIF data, and traditional statistical quantities of turbulence are analysed. Integrated measures of …
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