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Influence of the transition of a laminar separation bubble on the downstream evolution of strong adverse pressure gradient turbulent boundary layers

机译:层间分离气相过渡对强不良压力梯度湍流边界层下游演化的影响

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The evolution of boundary layers subject to adverse pressure gradient (APG) is strongly influenced by the upstream history. Hence, the detailed understanding of APG flows in general or downstream of reattachment of a separation bubble requires a clear acquaintance of the relation between the upstream flow structures and the downstream ones. In this work the results for three different direct numerical simulations (DNS) of APG flows are analyzed to scrutinize the relaxation of these flows having distinct development histories. The three cases have the same overall characteristics - laminar separation, transition, and turbulent reattachment with respect to the imposed APG and the Reynolds number Re so at the inlet. However, in the first case no additional perturbations are imposed to trigger transition, in the second case the flow is tripped by a trip wire and in the third case a periodic wake is superimposed on the flow. The detailed information provided by DNS is critical to evaluate the current turbulence models and develop new ones. Hence, main points that are discussed are the Reynolds stress budgets, two-point spatial correlations, and spanwise spectra. Attention is in particular directed to a comparison between the three different cases. The most important conclusion is that the flow downstream of the reattachment decorrelates faster with the flow at the transition position if transition to turbulence completes within the separation bubble than in the case the transition completes after reattachment. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:受不利压力梯度(APG)的边界层的演变受上游历史的强烈影响。因此,对分离气泡的一般或下游的APG流动的详细理解需要清楚地了解上游流动结构和下游泡之间的关系。在这项工作中,分析了APG流动的三种不同直接数值模拟(DNS)的结果,以仔细审查这些流动具有不同发展历史的流动。三种情况具有相同的总体特征 - 层流分离,转变和湍流再凝固,相对于施加的APG和雷诺数重新在入口处。然而,在第一种情况下,不施加额外的扰动来触发过渡,在第二种情况下,通过跳闸线跳闸并且在第三种情况下,周期性唤醒叠加在流量上。 DNS提供的详细信息对于评估当前的湍流模型并开发新的信息至关重要。因此,讨论的要点是雷诺应力预算,两点空间相关和翼展谱。特别是注意三种不同案例之间的比较。最重要的结论是,如果在分离气泡内完成到湍流,则在过渡位置的流动比在转换完成后的情况下,在过渡位置的流动下游的流动脱落的流动更快地脱离。 (c)2017年Elsevier Masson SAS。版权所有。

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