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Large-Eddy Simulation of the Three-Dimensional Experiment on Richtmyer-Meshkov Instability Induced Turbulence

机译:Richtmyer-Meshkov不稳定引起的湍流三维实验的大涡模拟

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A program MVFT3D of large-eddy simulation is developed and performed to solve the multi compressible Navier- Stokes equations. The SGS dissipation and molecular viscosity dissipation have been analyzed, and the former is much larger than the later. Our test shows that the SGS dissipation of Vreman model is smaller than the Smagorinsky model. We mainly simulate the experiment of fluid instability of shock-accelerated interface by Poggi in this paper. The decay of the turbulent kinetic energy before the first reflected shock wave–mixing zone interaction and its strong enhancement by re-shocks are presented in our numerical simulations. The computational mixing zone width under double re-shock agreement well with the experiment, and the decaying law of the turbulent kinetic energy is consistent with Mohamed and Larue’s investigation. Also, by using MVFT3D we give some simulation results of the inverse Chevron model from AWE. The numerical simulations presented in this paper allow us to characterize and better understand the Richtmyer-Meshkov instability induced turbulence, and the code MVFT3D is validated.
机译:开发并执行了大涡模拟程序MVFT3D,以求解多重可压缩的Navier-Stokes方程。分析了SGS耗散和分子粘度耗散,前者比后者大得多。我们的测试表明,Vreman模型的SGS耗散小于Smagorinsky模型。本文主要通过Poggi模拟了激波加速界面的流体不稳定性实验。在我们的数值模拟中介绍了在第一次反射的冲击波-混合区相互作用之前湍流动能的衰减及其通过再冲击的强烈增强。在两次重冲击下的计算混合区宽度与实验吻合得很好,湍流动能的衰减规律与穆罕默德和拉鲁的研究相一致。此外,通过使用MVFT3D,我们给出了AWE的反向Chevron模型的一些仿真结果。本文中提出的数值模拟使我们能够表征和更好地理解Richtmyer-Meshkov不稳定性引起的湍流,并且对代码MVFT3D进行了验证。

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