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The Development (and Suppression) of very Short-Scale Instabilities in Mixed Forced-Free Convection Boundary Layers

机译:混合强制对流边界层非常短尺度不稳定性的发展(和抑制)

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The two-dimensional boundary-layer flow over a cooled/heated flat plate is investigated. A cooled plate (with a free-stream flow and wall temperature distribution which admit similarity solutions) is shown to support non-modal disturbances, which grow algebraically with distance downstream from the leading edge of the plate. In a number of flow regimes, these modes have diminishingly small wavelength, which may be studied in detail using asymptotic analysis. Corresponding non-self-similar solutions are also investigated. It is found that there are important regimes in which if the temperature of the plate varies (in such a way to break self-similarity), then standard numerical schemes exhibit a breakdown at a finite distance downstream. This breakdown is shown to be related to very short-scale disturbance modes, which manifest themselves by means of the spontaneous formation of an essential singularity at a finite downstream location. We show how these difficulties can be overcome by treating the problem in a quasi-elliptic manner, in particular by prescribing suitable downstream (in addition to upstream) boundary conditions.
机译:研究了在冷却/加热平板上的二维边界层流。被示出冷却板(具有自由流流动和壁式温度分布,承认相似度溶液)支持非模态扰动,其在板的前缘下游的距离上游地生长。在许多流动方案中,这些模式具有小的波长,可以使用渐近分析详细研究。还研究了相应的非自我相似的解决方案。发现存在重要的制度,其中如果板的温度变化(以这样的方式破坏自相似性),则标准数值方案在下游的有限距离下表现出击穿。该击穿显示与非常短尺度的扰动模式有关,其通过在有限下游位置自发地形成本质的基本奇异性。我们通过以准椭圆形式处理问题,特别是通过规定合适的下游(除上游)边界条件来概念来克服这些困难。

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