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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 - Flat Plate Boundary Layer Stimulation Using Trip Wires and Hama Strips.
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Flat Plate Boundary Layer Stimulation Using Trip Wires and Hama Strips.

机译:APS-流体动力学APS部门第70届年会-事件-使用跳闸线和Hama条刺激平板边界层。

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Water tunnel experiments on a flat plate at zero angle of attack were performed to investigate the effect of single roughness elements, i.e., trip wires and Hama strips, on the transition to turbulence. Boundary layer trips are traditionally used in scale model testing to force a boundary layer to transition from laminar to turbulent flow at a single location to aid in scaling of flow characteristics. Several investigations of trip wire effects exist in the literature, but there is a dearth of information regarding the influence of Hama strips on the flat plate boundary layer. The intent of this investigation is to better understand the effects of boundary layer trips, particularly Hama strips, and to investigate the pressure-induced drag of both styles of boundary layer trips.Untripped and tripped boundary layers along a flat plate at a range of flow speeds were characterized with multiple diagnostic measurements in the NUWC/Newport 12-inch water tunnel. A wide range of Hama strip and wire trip thicknesses were used. Measurements included dye flow visualization, direct skin friction and parasitic drag force, boundary layer profiles using LDV, wall shear stress fluctuations using hot film anemometry, and streamwise pressure gradients. Test results will be compared to the CFD and boundary layer model results as well as the existing body of work. Conclusions, resulting in guidance for application of Hama strips in model scale experiments and non-dimensional predictions of pressure drag will be presented.
机译:在平板上以零迎角进行了水隧道实验,以研究单个粗糙元素(即跳闸线和Hama条)对湍流过渡的影响。传统上在比例模型测试中使用边界层行程,以迫使边界层在单个位置从层流过渡到湍流,以帮助缩放流量特性。文献中对脱扣丝效应进行了几项研究,但缺乏关于Hama条对平板边界层的影响的信息。这项研究的目的是为了更好地了解边界层跳闸的影响,特别是Hama条带,并研究两种类型的边界层跳闸的压力引起的阻力。在NUWC / Newport 12英寸水洞中通过多种诊断测量来表征速度。使用了各种各样的Hama带材和焊丝脱扣厚度。测量包括染料流动可视化,直接皮肤摩擦和寄生阻力,使用LDV的边界层轮廓,使用热膜风速计的壁切应力波动以及沿流方向的压力梯度。测试结果将与CFD和边界层模型结果以及现有工作进行比较。结论,将为在模型规模实验和压力阻力的无量纲预测中应用Hama条带提供指导。

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