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INVESTIGATION OF A PASSIVE FLOW CONTROL DEVICE IN AN S-DUCT INLET AT HIGH SUBSONIC FLOW

机译:高亚源流动中的S型入口中被动流量控制装置的研究

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This paper reports the investigation of a flow control strategy for an S-duct diffusers. The method incorporates stream-wise tubercles, and aims to enhance the performance of S-duct inlets by reducing the size and intensity of separated flow. These devices, bioinspired from humpback whale flippers' leading edge protuberances, have been shown to be effective in increasing post-stall coefficients of lift of airfoils. In S-duct diffusers, the presence of convex curvature next to the separated region provides an ideal location for the installation of a tubercle-like device. The flow control effectiveness was evaluated by test-rig measurements and computational fluid dynamics (CFD) simulations of the flow in an S-duct at high subsonic flow conditions (Ma = 0.80). The S-ducts were rapid prototyped in plastic using 3D printing. Static surface pressure along the length and total pressure at the exit revealed pressure recovery, total pressure loss, swirl, and the nature of flow distortion at the S-duct exit. CFD simulations used AN-SYS FLUENT with a RANS solver closed with the RKE turbulence model. The CFD simulation compared well with the test-rig data and provided useful information on flow mechanism and for understanding flow features. The performance of the baseline and variant with the flow control device was compared and flow control strategy was evaluated.
机译:本文报告了S型路径扩散器的流量控制策略的调查。该方法包含流明智结节,并旨在通过降低分离流的尺寸和强度来提高S型入口的性能。这些装置,从驼背鲸脚蹼的前缘突起的生物悬浮,已经证明是有效地在增加翼型的升升的失摊系数方面是有效的。在S型扩散器中,分离区域旁边的凸曲率的存在提供了用于安装结节状装置的理想位置。通过在高亚音流条件(MA = 0.80)的S-PINK中的流动测量和计算流体动力学(CFD)模拟的试验台测量和计算流体动力学(CFD)模拟来评估流量控制效果。使用3D印刷,S-PUCT在塑料中是快速的原型。沿着静态表面压力沿着射线的长度和总压力显示出在S沟道出口处的压力回收,总压力损失,旋流和流动变形的性质。 CFD仿真使用与RKE湍流模型关闭的RAN Solver Fluent的Sys。 CFD仿真与测试钻机数据相比较,并提供有关流动机制的有用信息和了解流量特征。比较了与流量控制装置的基线和变体的性能,并评估了流量控制策略。

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