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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Active Flow Control in an Aggressive Transonic Diffuser
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Active Flow Control in an Aggressive Transonic Diffuser

机译:APS-流体动力学APS部门第70届年会-事件-积极的跨音速扩散器中的主动流量控制

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A diffuser exchanges upstream kinetic energy for higher downstream static pressure by increasing duct cross-sectional area. The resulting stream-wise and span-wise pressure gradients promote extensive separation in many diffuser configurations. The present computational work evaluates active flow control strategies for separation control in an asymmetric, aggressive diffuser of rectangular cross-section at inlet Mach $sim$ 0.7 and Re $sim$ 2.19M. Corner suction is used to suppress secondary flows, and steady/unsteady tangential blowing controls separation on both the single ramped face and the opposite flat face. We explore results from both Spalart-Allmaras RANS and DDES turbulence modeling frameworks; the former is found to miss key physics of the flow control mechanisms. Simulated baseline, steady, and unsteady blowing performance is validated against experimental data.
机译:扩散器通过增加管道横截面积将上游动能交换为更高的下游静压。所得的沿流向和跨向的压力梯度促进了许多扩散器配置中的广泛分离。当前的计算工作评估了用于入口Mach $ sim $ 0.7和Re $ sim $ 2.1M的矩形截面的非对称,侵蚀性扩散器中的分离控制的主动流控制策略。角吸力用于抑制二次流,并且稳定/不稳定切向吹气控制单个倾斜面和相对的平坦面上的分离。我们探索了Spalart-Allmaras RANS和DDES湍流建模框架的结果;发现前者错过了流量控制机制的关键物理学。根据实验数据验证了模拟的基线,稳定和不稳定的吹气性能。

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