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Transition to turbulence and effect of initial conditions on three-dimensional compressible mixing in planar blast-wave-driven systems

机译:平面爆炸波驱动系统中湍流的过渡和初始条件对三维可压缩混合的影响

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Perturbations on an interface driven by a strong blast wave grow in time due to a combination of Rayleigh-Taylor, Richtmyer-Meshkov, and decompression effects. In this paper, results from three-dimensional (3D) numerical simulations of such a system under drive conditions to be attainable on the National Ignition Facility [E. M. Campbell, Laser Part. Beams 9, 209 (1991)] are presented. Using the multiphysics, adaptive mesh refinement, higher order Godunov Eulerian hydrocode, Raptor [L. H. Howell and J. A. Greenough, J. Comput. Phys. 184, 53 (2003)], the late nonlinear instability evolution, including transition to turbulence, is considered for various multimode perturbation spectra. The 3D post-transition state differs from the 2D result, but the process of transition proceeds similarly in both 2D and 3D. The turbulent mixing transition results in a reduction in the growth rate of the mixing layer relative to its pretransition value and, in the case of the bubble front, relative to the 2D result. The post-transition spike front velocity is approximately the same in 2D and 3D. Implications for hydrodynamic mixing in core-collapse supernovae are discussed. 2005 American Institute of Physics.
机译:由于瑞利·泰勒(Rayleigh-Taylor),里奇米尔·梅什科夫(Richtmyer-Meshkov)和减压效应的结合,由强爆炸波驱动的界面上的扰动随时间增长。在本文中,在国家点火装置上可以在驱动条件下获得的这种系统的三维(3D)数值模拟结果[E. M. Campbell,激光部分。提出了Beam 9,209(1991)。使用多物理场,自适应网格细化,高阶Godunov Eulerian水码,Raptor [L. H. Howell和J. A. Greenough,J。Comput。物理184,53(2003)],对于各种多模摄动谱,都考虑了后期的非线性不稳定性演化,包括向湍流的过渡。 3D转换后的状态与2D结果不同,但是转换过程在2D和3D中都类似地进行。湍流的混合转变导致混合层相对于其转变前值的生长速率降低,并且在气泡前沿的情况下,相对于2D结果而言降低。过渡后峰值前速度在2D和3D中大致相同。讨论了核塌陷超新星中流体动力混合的意义。 2005美国物理研究所。

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