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Nonlinear evolution of turbulent coherent structures in channel flows

机译:通道内湍流相干结构的非线性演化

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摘要

The generation and the development of turbulent coherent structures in channel flows are investigated by using numerical simulation of Navier-Stokes equation and the theoretic model of turbulent coherent structures built up by the flow stability theories. The three-dimensional coupling compact difference scheme with high accuracy and resolution developed can be applied to the calculative region including points near the boundary. The results computed show nonlinear evolution process and characteristics of Reynolds stress, stream-wise vortices and span-wise vorticities, especially the nonlinear interactions between different coherent structures.
机译:利用Navier-Stokes方程的数值模拟和流动稳定性理论建立的湍流相干结构的理论模型,研究了通道内湍流相干结构的产生和发展。所开发的具有高精度和高分辨率的三维耦合紧致差分方案可以应用于包括边界附近点的计算区域。计算结果显示了非线性演化过程和雷诺应力,流向涡旋和跨度涡旋的特征,特别是不同相干结构之间的非线性相互作用。

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