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Development of a Mixing Layer Downstream of a Lambda Notched Splitter Plate

机译:Lambda缺口分流板下游混合层的开发

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摘要

The streamwise growth rate of the mixing layer downstream of a splitter plate with a 60° swept lambda notch and velocity ratio of 0.5 was spanwise independent and self-preserving once the velocity deficit from the splitter plate had disappeared. It was hypothesized the baseline mixing layer had a rapidly divergent growth component normal, and a non-divergent component parallel to the trailing edge of the notch. The streamwise growth rate of flow was not dependent on the spanwise dependence of the boundary layer. For forced cases the interaction of waves propagating from the oscillating flaperons influenced the streamwise growth rate of mixing layer. The forced case had a divergent growth component parallel to the trailing edge associated with streamwise rib vortices. The initial growth stages of the forced cases of this turbulent 3D mixing layer were dependent on the local Strouhal Number; similar to certain 2D cases.
机译:具有60°扫掠的Lambda缺口且速度比为0.5的分流板下游的混合层的流向生长速率是跨向独立的,并且一旦分流板的速度不足消失就可以自我保留。假设基线混合层具有快速发散的生长分量法线,并且非发散的分量平行于缺口的后缘。流向的流向增长率不取决于边界层的跨度依赖性。对于强迫情况,从振荡的襟副翼传播的波的相互作用影响混合层的沿流方向的生长速率。强迫情况下,发散生长分量平行于与流向肋涡旋相关的后缘。这种湍流的3D混合层的强迫情况的初始生长阶段取决于局部的Strouhal数。类似于某些2D情况。

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    Zalewski Nicholas;

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  • 年度 2013
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