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Bed load transport in turbulent flow at the grain scale: Experiments and modeling

机译:湍流中颗粒级的床层负荷传输:实验和建模

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We report an experimental investigation of the motion of bed load particles under steady and spatially uniform turbulent flow above a flat sediment bed of, uniform grain size. Using a high-speed video imaging system, we recorded the trajectories of the moving particles and measured their velocity and the length and duration of their flights, as well as the surface density of the moving particles. Our observations show that entrained particles exhibit intermittent motion composed of the succession of periods of "flight" and periods of rest. During one flight, a particle may go through phases of reptation, during which it moves in nearly persistent contact with the rough bed, and phases of saltation, during which it travels sufficiently high above the bed to reach high velocities. The distributions of longitudinal and transverse particle velocities obey a decreasing exponential and a Gaussian law, respectively. Interestingly, these observations are similar to those previously reported for viscous flows. The experimental results presented here support the erosion-deposition model of Charm (2006) and allow the calibration of the involved coefficients. In particular, noting T*, the Shields number, and τ_c~*, the threshold Shields number, we find that (1) the surface density of moving particles increases linearly with τ~*-τ_c~*; (2) the average particle velocity increases linearly with τ~*~(1/2) -τ_c~*~(1/2), with a finite nonzero value at the threshold; (3) the flight duration scales with a characteristic settling time with no significant dependence on either τ~* or the settling Reynolds number; and (4) the flight length increases linearly with τ~*~(1/2) -τ_c~*~(1/2). The results presented in this paper should provide a valuable physical framework to describe bed form development in turbulent flows.
机译:我们报告了在均匀粒径的平坦沉积床上方稳定且空间均匀的湍流下,床荷颗粒运动的实验研究。使用高速视频成像系统,我们记录了运动粒子的轨迹,并测量了它们的速度,飞行的长度和持续时间,以及运动粒子的表面密度。我们的观察表明,夹带的颗粒表现出间歇运动,该间歇运动由“飞行”周期和休息周期的连续组成。在一次飞行过程中,颗粒可能会经历沉淀阶段,在此阶段中,其与粗糙床层几乎持续地接触;而在盐析阶段,颗粒在床层上方行进足够高的速度,以达到较高的速度。纵向和横向粒子速度的分布分别服从递减的指数和高斯定律。有趣的是,这些观察结果类似于先前报道的粘性流动观察结果。这里介绍的实验结果支持了Charm(2006)的侵蚀-沉积模型,并允许对所涉及的系数进行校准。特别是,注意到T *(Shields数)和τ_c〜*(阈值Shields数),我们发现(1)运动粒子的表面密度随τ〜*-τ_c〜*线性增加; (2)平均粒子速度随τ〜*〜(1/2)-τ_c〜*〜(1/2)线性增加,在阈值处有一个有限的非零值; (3)飞行时长具有特征性的稳定时间,与τ〜*或稳定的​​雷诺数均无明显关系; (4)飞行长度随τ〜*〜(1/2)-τ_c〜*〜(1/2)线性增加。本文介绍的结果应提供一个有价值的物理框架,以描述湍流中床形的发展。

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