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Formation of zones of an inverse energy cascade in an axisymmetric jet

机译:轴对称射流中逆能量级联区域的形成

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The results of investigation into the mechanism of formation of an inverse turbulence energy cascade in an axially symmetric submerged jet based on numerical modeling by the large eddy simulation. The flow structure is calculated using two models of subgrid turbulence in a broad range of Reynolds numbers with the imposed external harmonic low-amplitude perturbation and swirling. Calculations showed that upon imposing swirling, the effect of formation of the inverse cascade is suppressed, while upon imposing the external low-amplitude harmonic perturbations corresponding to the frequency of highest perceptivity, it is enhanced. We can assume that the regions with the inverse turbulence energy flow are formed there where the dynamics of large quasi-2D structures is determined by the mechanisms of combining eddies and involvement processes, while the tension mechanism of vortex tubes is suppressed. It is shown that the balance of these mechanisms can be controlled by means of imposition of low-amplitude harmonic perturbations.
机译:基于数值模拟的大涡模拟研究了轴对称浸没式射流中逆湍流能级联的形成机理。流动结构是使用两个模型的亚网格湍流计算的,这些模型在宽范围的雷诺数下施加了外部谐波低振幅摄动和旋流。计算表明,在施加旋涡时,抑制了反向叶栅的形成,而在施加与最高感知频率相对应的外部低振幅谐波扰动时,则增强了该效果。我们可以假设在此处形成了具有逆湍流能流的区域,在该区域中,大的准2D结构的动力学是由涡流和参与过程的组合机制决定的,而涡旋管的张力机制却受到抑制。结果表明,这些机制的平衡可以通过施加低振幅谐波扰动来控制。

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