Weakly Nonlinear Analysis of a Localized Disturbance in Poiseuille Flow

In this article, we investigate, via a perturbation analysis, some important nonlinear features related to the process of transition to turbulence in a wall‐bounded flow subject to a spatially localized disturbance that is harmonic in time. We show that the perturbation expansion, truncated at secon...

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Veröffentlicht in:Studies in applied mathematics (Cambridge) Jg. 105; H. 2; S. 121 - 141
Hauptverfasser: Ponziani, D., Casciola, C. M., Zirilli, F., Piva, R.
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Boston, USA and Oxford, UK Blackwell Publishers 01.08.2000
Blackwell
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ISSN:0022-2526, 1467-9590
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Zusammenfassung:In this article, we investigate, via a perturbation analysis, some important nonlinear features related to the process of transition to turbulence in a wall‐bounded flow subject to a spatially localized disturbance that is harmonic in time. We show that the perturbation expansion, truncated at second order, is able to capture the generation of streamwise vorticity as a weakly nonlinear effect. The results of the perturbation approach are discussed in comparison with direct numerical simulation data for a sample case by extracting the contribution of the different orders. The main aim is to provide a tool to select the most effective nonlinear interactions to enlighten the essential features of the transitional process.
Bibliographie:ark:/67375/WNG-D070GJV8-H
istex:AC8BD637A0800D8F22D3CF2F5A987FA933FD166D
ArticleID:SAPM145
ISSN:0022-2526
1467-9590
DOI:10.1111/1467-9590.00145