Self-sustaining and propagating mechanism of localized wave packet in plane-Poiseuille flow

Yue Xiao, J. Tao, Linsen Zhang
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引用次数: 7

Abstract

The advection velocity of localized wave packet in plane-Poiseuille flow is found to be determined by a solitary wave at the centerline of a downstream vortex dipole in its mean field after deducting the basic flow. The fluctuation component following the vortex dipole oscillates with a global frequency selected by the upstream marginal absolute instability, and propagates obeying the local dispersion relation of the mean flow. By applying localized initial disturbances, a nonzero wave-packet density is achieved at the threshold state, suggesting a first order transition.
平面泊泽维尔流中局部波包的自持与传播机制
发现平面泊泽维尔流中局域波包的平流速度是由其平均场中下游涡旋偶极子中心线处的一个孤立波在扣除基本流后决定的。旋涡偶极子后的波动分量以上游边缘绝对不稳定性选择的全局频率振荡,并服从平均流的局部色散关系传播。通过施加局域初始扰动,在阈值状态下获得非零波包密度,表明一阶跃迁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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