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首页> 外文期刊>Journal of Thermal Science and Technology >On the scaling of turbulence over an irregular rough surface in a transitionally rough regime
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On the scaling of turbulence over an irregular rough surface in a transitionally rough regime

机译:在过渡粗糙的方案中不规则粗糙表面上的湍流缩放

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In this paper, the characteristics of a transitionally rough turbulent flow over a real rough surface are examined. In our research, high-resolution large eddy simulations over a scanned marine painted rough surface were carried out, and the friction Reynolds number and roughness Reynolds number (inner-scaled roughness height) were systematically varied. Away from the rough surface, the mean velocity and Reynolds stresses are unaffected by the mean roughness height. Further, the similarity away from the rough surface is clearly confirmed when we use the effective wall-normal distance. The effective wall-normal distance is defined as the wall-normal integral of the plane-porosity (void fraction). Moreover, near the rough surface, the Reynolds stresses asymptotically decay toward the bottom of the rough surface when plotted against the inner-scaled effective distance. The profiles of the mean velocity and Reynolds stresses against the effective distance reveal that the mean velocity profile can be characterized by the roughness Reynolds number (inner-scaled roughness length scale). However, the other parameters should be considered when characterizing the near-wall Reynolds stress behavior. When the budget terms in the plane and Reynolds averaged momentum equations are analyzed, it is found that the drag force term dominates the momentum transfer in the vicinity of the bottom of the rough surface. As the roughness Reynolds number increases, the pressure drag contribution to the skin friction coefficient increases, while the viscous contribution decreases.
机译:在本文中,检查了真正粗糙表面上的过渡性粗糙湍流的特性。在我们的研究中,进行了在扫描海洋涂漆粗糙表面上的高分辨率大涡模拟,并且系统地改变了摩擦雷诺数和粗糙度雷诺数(内缩粗糙度高度)。远离粗糙表面,平均速度和雷诺应力不受平均粗糙度高度的影响。此外,当我们使用有效壁正常距离时,清楚地证实了远离粗糙表面的相似性。有效壁正常距离被定义为平面孔隙率(空隙率)的壁正常积分。此外,在粗糙表面附近,雷诺在绘制内缩放的有效距离时,雷诺在粗糙表面的底部应力朝向粗糙表面的底部应力。平均速度和雷诺的轮廓抵抗有效距离揭示了平均速度曲线可以通过粗糙雷诺数(内缩放的粗糙度长度)的表征。然而,在表征近壁雷诺应力行为时应考虑其他参数。当分析平面和雷诺的预算术语平均动量方程时,发现拖曳力术语在粗糙表面底部的底部附近主导。随着粗糙度雷诺数的增加,压力拖动对皮肤摩擦系数的贡献增加,而粘性贡献降低。

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