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Numerical investigation of initial condition effects on Rayleigh-Taylor instability with acceleration reversals

机译:初始条件对加速度反转的瑞利-泰勒不稳定性影响的数值研究

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The influence of initial conditions on miscible incompressible baroclinically driven Rayleigh-Taylor instability undergoing nonuniform acceleration is explored computationally using an implicit large eddy simulation (ILES) technique. We consider the particular case of evolution during multiple reversals of acceleration direction, where the flow is alternately statically stable or unstable. In the unstable phase, the flow is driven by the baroclinic release of potential energy, whereas in the stable phase, work is done against the density stratification with the energy exchange taking place by wavelike mechanisms. These dynamics are fundamentally different; here, we track the evolution of volume-averaged turbulent statistics that are most sensitive to changes in the distribution of spectral power and bandwidth of the initial conditions as the flow alternates between dynamical regimes due to acceleration reversal.
机译:使用隐式大涡模拟(ILES)技术,通过计算探索了初始条件对经历不均匀加速度的可混不可压缩的斜压驱动的瑞利泰勒不稳定性的影响。我们考虑了加速方向多次反转过程中的演化的特殊情况,在这种情况下,流量交替为静态稳定或不稳定。在不稳定阶段,流动由势能的斜压释放驱动,而在稳定阶段,则通过波状机制进行能量交换来防止密度分层。这些动态是根本不同的。在这里,我们跟踪体积平均湍流统计数据的演变,这些统计数据对初始条件下频谱功率和带宽分布的变化最敏感,因为流动由于加速反转而在动态状态之间交替变化。

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