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Linear and Nonlinear Growth of Secondary Instabilities of Stationary Crossflow Vortices Studied by Parabolized Stability Equations

机译:通过抛物杠稳定方程研究的静止交叉流涡流的次要空间的线性和非线性生长

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摘要

Laminar-turbulent transition in (quasi-) three-dimensional boundary layers dominated by stationary crossflow vortices is studied for the setup of the DLR swept-flat plate experiment. The linear and subsequent nonlinear development of both the stationary crossflow vortices and their high-frequency secondary instabilities are modelled by nonlinear parabolized stability equations (PSE). In contrast to previous work, secondary instability theory is used only for initialization of secondary instabilities within the PSE analysis. Thereby, the nonlinear development of secondary instabilities including the generation of higher harmonics could be studied up to the stages where the feedback of the finite-amplitude secondary instability modes on the stationary crossflow vortices is no longer negligible and the skin-friction coefficient starts to deviate from that due to the mean flow distortion caused by the stationary crossflow modes alone. Moreover, the present approach allows rather efficient studies on the nonlinear development of secondary instabilities independent of their frequency.
机译:研究了由静止交叉流动涡流主导的(准)三维边界层中的层压湍流过渡,用于设置DLR扫描平板实验的设置。静止横流涡流的线性和随后的非线性开发及其高频二级稳定性由非线性抛物稳定性方程(PSE)建模。与以前的工作相反,辅助不稳定性理论仅用于在PSE分析中初始化次要缩放。由此,可以研究包括产生更高谐波的二级不稳定性的非线性发展,其达到静止横流涡流上的有限幅度二次不稳定性模式的反馈不再可忽略不计,并且皮肤摩擦系数开始偏离从那个原因是由静止的横流模式单独引起的平均流动变形。此外,本方法允许与其频率无关的二级不稳定性的非线性开发的相当有效研究。

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  • 来源
    《STAB/DGLR Symposium》|2018年|767p|共10页
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  • 作者

    Stefan Hein;

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  • 中图分类 TB126-53;
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