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LDA MEASUREMENTS ON ROUGH TURBULENT BOUNDARY LAYERS SUBJECT TO STRONG FAVORABLE PRESSURE GRADIENTS

机译:受强有利梯度影响的粗糙湍流边界层的LDA测量

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摘要

Laser-Doppler anemometry (LDA) measurements of the mean velocity and Reynolds stresses are carried out on a rough surface favorable pressure gradient (FPG) turbulent boundary layer. These data is compared with smooth FPG turbulent boundary layer data possessing with the same strength of pressure gradient and also with rough zero pressure gradient (ZPG) data. The scales for the mean velocity deficit and Reynolds stresses are obtained through means of equilibrium similarity analysis of the RANS equations. The mean velocity deficit profiles collapse, but to different curves when normalized using the free-stream velocity. The effects of the pressure gradient and roughness are clearly distinguished and separated. However, these effects are removed from the outer flow when the profiles are normalized using the Zagarola and Smits scaling. It is also found that there is a clear effect of the roughness and pressure gradient on the Reynolds stresses. The Reynolds stress profiles augment due to the rough surface. Furthermore, the strength of the pressure gradient imposed of the flow changes the shape of the Reynoldsrnstress profiles especially on the < v~2 > and < uv > components. The rough surface influence is mostly noticed on the < u~2 > component of the Reynolds stress, where the shape of the profiles change entirely. The boundary layer parameter δ_*/δ shows the effects of the roughness and a dependence on the Reynolds number for the smooth FPG case. The pressure parameter, A, describes a development of the turbulent boundary layer and no influence of the roughness is linked with the parameter, k~+. The boundary layers grow differently and depict the influence of the studied effects in their development. These measurements are the first of their nature due to the extensive number in downstream locations (12) and the combination of the studied external conditions (i.e., the strength of the pressure gradient and the surface roughness).
机译:平均速度和雷诺应力的激光多普勒风速仪(LDA)测量在粗糙的表面有利压力梯度(FPG)湍流边界层上进行。将这些数据与具有相同压力梯度强度的平滑FPG湍流边界层数据以及粗糙的零压力梯度(ZPG)数据进行比较。通过对RANS方程进行平衡相似性分析,获得了平均速度赤字和雷诺应力的标度。使用自由流速度进行归一化时,平均速度赤字分布会崩溃,但会变为不同的曲线。压力梯度和粗糙度的影响可以清楚地区分和分离。但是,当使用Zagarola和Smits缩放比例对轮廓进行归一化时,这些影响将从外部流中消除。还发现粗糙度和压力梯度对雷诺应力有明显的影响。由于表面粗糙,雷诺应力分布会增加。此外,由流动引起的压力梯度的强度改变了雷诺应力分布的形状,特别是在分量上。粗糙的表面影响主要在雷诺应力的分量上注意到,在那里轮廓的形状完全改变。边界层参数δ_ * /δ显示了平滑FPG情况下粗糙度的影响以及对雷诺数的依赖性。压力参数A描述了湍流边界层的发展,粗糙度的影响与参数k〜+没有关系。边界层以不同的方式增长,并描述了所研究效应对其发展的影响。由于在下游位置(12)的数量众多,并且研究的外部条件(即压力梯度的强度和表面粗糙度)的组合,这些测量是其首次出现。

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