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首页> 外文期刊>International Journal of Heat and Fluid Flow >Control of flow distortion in offset diffusers using trapped vorticity
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Control of flow distortion in offset diffusers using trapped vorticity

机译:利用俘获涡度控制偏移扩散器中的流量畸变

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摘要

Controlled concentrations of trapped vorticity within an offset, subsonic (M-AIP = 0.7) diffuser are explored for active suppression of flow distortion in joint experimental and numerical investigations. The coupling between trapped vorticity, used to model boundary-layer separation, and secondary-flow vortices is manipulated using an array of fluidic oscillating jets, which are spanwise distributed just upstream of the trapped vortex. Actuation energizes the separated shear layer, reducing the size of separation and effecting an earlier reattachment of the boundary layer, which favorably effects the flow field downstream of reattachment. It is shown that optimal interactions between actuation and the trapped vortex fully suppress the central vortex pair, and redistributes the residual vorticity around the diffuser's circumference. This results in a 68% reduction in circumferential distortion at the Aerodynamic Interface Plane (AIP), using an actuation mass flow rate that is only 0.25% of the diffuser mass flow rate.
机译:在联合实验和数值研究中,探索了偏移,亚音速(M-AIP <= 0.7)扩散器中受控涡流的受控浓度,以有效抑制流动畸变。使用一系列流体振荡射流来操纵用于建模边界层分离的捕获涡流与次级流涡流之间的耦合,该流体振荡射流在捕获涡流的上游沿展向分布。致动使分离的剪切层通电,减小分离的尺寸并实现边界层的较早重新附接,这有利地影响重新附接下游的流场。结果表明,驱动和被困涡之间的最佳相互作用完全抑制了中心涡对,并在扩散器的圆周周围重新分布了剩余涡。使用仅是扩散器质量流率的0.25%的致动质量流率,这可以使空气动力学界面平面(AIP)处的周向变形降低68%。

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