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首页> 外文期刊>Theoretical and Computational Fluid Dynamics >Global instabilities in diverging channel flows
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Global instabilities in diverging channel flows

机译:全球渠道渠道不稳定

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摘要

A global stability study of a divergent channel flow reveals features not obtained hitherto by making either the parallel or the weakly non-parallel (WNP) flow assumption. A divergent channel flow is chosen for this study since it is the simplest spatially developing flow: the Reynolds number is constant downstream, and for a theoretical Jeffery-Hamel flow, the velocity profile obeys similarity. Even in this simple flow, the global modes are shown to be qualitatively different from the parallel or WNP. In particular, the disturbance modes are often not wave-like, and the local scale, estimated from a wavelet analysis, can be a function of both streamwise and normal coordinates. The streamwise variation of the scales is often very different from the expected linear variation. Given recent global stability studies on boundary layers, such spatially extended modes which are not wave-like are unexpected. A scaling argument for why the critical Reynolds number is so sensitive to divergence is offered.
机译:对发散性水流的整体稳定性研究揭示了通过进行平行或弱非平行(WNP)流动假设迄今尚未获得的特征。由于它是最简单的空间展开流,因此选择了分散的通道流:雷诺数在下游是恒定的,对于理论Jeffery-Hamel流,速度分布服从相似性。即使在这种简单流程中,全局模式在质量上也与并行或WNP有所不同。特别是,干扰模式通常不是波浪状的,根据小波分析估计的局部比例可以是流向和法向坐标的函数。比例尺的沿河方向的变化通常与预期的线性变化大不相同。鉴于最近对边界层的整体稳定性研究,这种非波浪状的空间扩展模式是出乎意料的。对于为何临界雷诺数对发散如此敏感的问题,提出了一个比例论证。

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