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Saltating particles in a turbulent boundary layer: experiment and theory

机译:在湍流边界层中盐化颗粒:实验和理论

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The work presented here focuses on the analysis of a turbulent boundary layer saturated with saltating particles. Experiments were carried out in a wind tunnel 15 m long and 0.6 m wide at the University of Aarhns in Denmark with sand grains 242 mu m in size for wind speeds ranging from the threshold speed to twice its value. The saltating particles were analysed Using particle image velocimetry (PIV) and particle-tracking velocimetry (PTV), and vertical profiles of particle concentration and velocity were extracted. The particle concentration was found to decrease exponentially with the height above the bed, and the characteristic decay height was independent of the wind speed. In contrast with the logarithmic profile of the wind speed. the grain velocity was found to vary linearly with the height. In addition, the measurements indicated that the grain velocity profile depended only slightly on the wind speed. These results are shown to be closely related to the features of the splash function that characterizes the impact of the saltating particles on a sandbed. A numerical simulation is developed that explicitly incorporates low-velocity moments of the splash function in a calculation of the boundary conditions that apply at the bed. The overall features of the experimental measurements are reproduced by simulation.
机译:这里介绍的工作集中在分析盐分饱和的湍流边界层上。实验在丹麦Aarhns大学的15 m长,0.6 m宽的风洞中进行,风洞的大小为242μm,风速从阈值速度到其值的两倍。使用颗粒图像测速仪(PIV)和颗粒跟踪测速仪(PTV)分析盐化颗粒,并提取颗粒浓度和速度的垂直分布图。发现颗粒浓度随床层上方的高度呈指数下降,特征衰减高度与风速无关。与风速的对数曲线相反。发现晶粒速度随高度线性变化。另外,这些测量表明,谷物速度分布仅略微取决于风速。这些结果表明与飞溅功能的特征密切相关,该特征描述了盐化颗粒对沙床的影响。开发了一个数值模拟,该数值模拟在计算施加在床层的边界条件时明确地将了飞溅函数的低速矩纳入了计算。实验测量的总体特征通过仿真再现。

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