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Transitionally rough zero pressure gradient turbulent boundary layers

机译:过渡粗糙的零压力梯度湍流边界层

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Near-wall measurements are performed to study the effects of surface roughness and viscous shear stresses on the transitionally rough regime (5 < k + < 70) of a zero pressure gradient turbulent boundary layer. The x-dependence is known from the eleven consecutive measurements in the streamwise direction, which allows for the computation of the streamwise gradients in the boundary layer equations. Thus, the skin friction is computed from the integrated boundary layer equation with errors of 3 and 5% for smooth and rough, respectively. It is found that roughness destroys the viscous layer near the wall, thus, reducing the contribution of the viscous stress in the wall region. As a result, the contribution in the wall shear stress due to form drag increases, while the viscous stress decreases. This yields Reynolds number invariance in the skin friction as k + increases into the fully rough regime. Furthermore, the roughness at the wall reduces the high peak of the streamwise component of the Reynolds stress in the near-wall region. However, for the Reynolds wall-normal and shear stress components, its contribution is not significantly altered for sand grain roughness.
机译:进行了近壁测量,以研究表面粗糙度和粘性剪切应力对零压力梯度湍流边界层的过渡粗糙状态(5 <70)的影响。从沿流向的十一个连续测量中可以知道x依赖性,这可以计算边界层方程中的流向梯度。因此,皮肤摩擦是根据积分边界层方程计算出来的,光滑和粗糙的误差分别为3和5%。发现粗糙度破坏了壁附近的粘性层,因此减少了壁区域中的粘性应力的贡献。结果,由于形式阻力而对壁剪应力的贡献增加,而粘性应力减小。当k + 增加到完全粗糙状态时,这会在皮肤摩擦中产生雷诺数不变性。此外,壁的粗糙度降低了近壁区域中雷诺应力的沿流分量的高峰值。但是,对于雷诺壁法向分量和剪应力分量而言,其对沙粒粗糙度的影响不会显着改变。

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