首页> 外文OA文献 >Nonlinear interaction of near-planar TS waves and longitudinal vortices in boundary-layer transition
【2h】

Nonlinear interaction of near-planar TS waves and longitudinal vortices in boundary-layer transition

机译:边界层过渡中近平面TS波与纵向涡旋的非线性相互作用

摘要

The nonlinear interactions that evolve between a planar or nearly planar Tollmien-Schlichting (TS) wave and the associated longitudinal vortices are considered theoretically for a boundary layer at high Reynolds number. The vortex flow is either induced by the TS nonlinear forcing or is input upstream, and similarly for the nonlinear wave development. Three major kinds of nonlinear spatial evolution, Types 1-3, are found. Each can start from secondary instability and then become nonlinear, Type 1 proving to be relatively benign but able to act as a pre-cursor to the Types 2, 3 which turn out to be very powerful nonlinear interactions. Type 2 involves faster stream-wise dependence and leads to a finite-distance blow-up in the amplitudes, which then triggers the full nonlinear 3-D triple-deck response, thus entirely altering the mean-flow profile locally. In contrast, Type 3 involves slower streamwise dependence but a faster spanwise response, with a small TS amplitude thereby causing an enhanced vortex effect which, again, is substantial enough to entirely alter the meanflow profile, on a more global scale. Streak-like formations in which there is localized concentration of streamwise vorticity and/or wave amplitude can appear, and certain of the nonlinear features also suggest by-pass processes for transition and significant changes in the flow structure downstream. The powerful nonlinear 3-D interactions 2, 3 are potentially very relevant to experimental findings in transition.
机译:对于高雷诺数的边界层,理论上考虑了平面或接近平面的Tollmien-Schlichting(TS)波与相关的纵向涡旋之间演化的非线性相互作用。涡流要么是由TS非线性强迫引起的,要么是上游输入的,对于非线性波的发展也是如此。发现了三种主要的非线性空间演化类型1-3。每个类型都可以从次级不稳定性开始,然后变为非线性,类型1被证明是相对良性的,但可以充当类型2、3的前兆,结果证明类型2是非常强大的非线性相互作用。类型2涉及较快的流向相关性,并导致幅度发生有限距离的爆炸,然后触发完整的非线性3-D三层甲板响应,从而局部改变了平均流速分布。相反,类型3涉及较慢的流向相关性,但跨度响应较快,具有较小的TS振幅,从而导致增强的涡流效应,这又足以在更大的范围内完全改变平均流量分布。可能出现条纹状地层,其中局部集中了沿流的涡度和/或波幅,并且某些非线性特征还暗示了过渡过程的旁通过程和下游流动结构的显着变化。强大的非线性3-D交互作用2、3与过渡中的实验结果非常相关。

著录项

  • 作者

    Smith F. T.;

  • 作者单位
  • 年度 1988
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号