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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Coupled dynamics of the co-evolution of gravel bed topography, flow turbulence and sediment transport in an experimental channel
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Coupled dynamics of the co-evolution of gravel bed topography, flow turbulence and sediment transport in an experimental channel

机译:砾石床地形,流动湍流和沉积物在实验通道中共同演化的耦合动力学

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摘要

A series of flume experiments were conducted in a large experimental channel at the St. Anthony Falls Laboratory to understand the coupled dynamics of flow and bed forms above the sediment-water interface. Simultaneous high resolution measurements of velocity fluctuations, bed elevations and sediment flux at the downstream end of the channel, were made for a range of discharges. The probability density functions (pdfs) of bed elevation increments and instantaneous Reynolds stress reveal a power law tail behavior and a wavelet cross-correlation analysis depicts a strong dependence of these series across a range of scales, indicating a feedback between bed form dynamics and near-bed turbulence. These results complement our previous findings in which the signature of bed form evolution on the near-bed velocity fluctuations was confirmed via the presence of a spectral gap and two distinct power law scaling regimes in the spectral density of velocity fluctuations. We report herein a strong asymmetry in the probability distribution of bed elevation increments and instantaneous Reynolds stresses, the latter being further analyzed and interpreted via a quadrant analysis of velocity fluctuations in the longitudinal and vertical directions. We also report the presence of intermittency (multifractality) in bed elevation increments and interpret it, in view of the asymmetric nature of the pdfs, as the result of scale coupling. In other words, the geometric asymmetry at the bed form scale gets transferred down to a probabilistic asymmetry at all smaller scales indicating a local anisotropy in the energy transfer. Finally, we propose a predictive relationship between bed form averaged sediment transport rates and bed form averaged instantaneous Reynolds stress and validate it using our experimental data.
机译:在圣安东尼瀑布实验室的大型实验通道中进行了一系列水槽实验,以了解沉积物-水界面上方的水流和床层形式的耦合动力学。对于一定范围的排放量,同时进行了流速波动,河床高程和河道下游端的泥沙通量的高分辨率测量。床高增量和瞬时雷诺应力的概率密度函数(pdfs)揭示了幂律尾部行为,并且小波互相关分析描述了这些尺度在一系列尺度上的强烈依赖性,表明床形动力学与近邻之间存在反馈床湍流。这些结果补充了我们先前的发现,在该发现中,通过在速度波动的频谱密度中存在频谱缺口和两种不同的幂律定标机制,证实了近床速度波动的床状演化特征。我们在这里报告了床高增量和瞬时雷诺应力的概率分布中的强烈不对称性,后者通过纵向和垂直方向上的速度波动的象限分析得到了进一步的分析和解释。我们还报告了床高程增量中间歇性(多重分形)的存在,并考虑到pdfs的不对称性质(作为比例耦合的结果)对其进行了解释。换句话说,床形尺度上的几何不对称性在所有较小尺度上都向下转化为概率不对称性,表明能量传递中的局部各向异性。最后,我们提出了床形平均沉积物输送速率与床形平均瞬时雷诺应力之间的预测关系,并使用我们的实验数据对其进行了验证。

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