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Sensitivity of interfacial hydraulics to the microtopographic roughness of water-lain gravels

机译:界面水力学对水砂砾石微观形貌粗糙度的敏感性

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Flow within the interfacial layer of gravel-bed rivers is poorly understood, but this zone is important because the hydraulics here transport sediment, generate flow structures and interact with benthic organisms. We hypothesized that different gravel-bed microtopographies generate measurable differences in hydraulic characteristics within the interfacial layer. This was tested using a high density of spatially and vertically distributed, velocity time series measured in the interfacial layers above three surfaces of contrasting microtopography. These surfaces had natural water-worked textures, captured in the field using a casting procedure. Analysis was repeated for three discharges, with Reynolds numbers between 165000 and 287000, to evaluate whether discharge affected the impact of microtopography on interfacial flows. Relative submergence varied over a small range (3.5 to 8.1) characteristic of upland gravel-bed rivers. Between-surface differences in the median and variance of several time-averaged and turbulent flow parameters were tested using non-parametric statistics. Across all discharges, microtopographic differences did not affect spatially averaged (median) values of streamwise velocity, but were associated with significant differences in its spatial variance, and did affect spatially averaged (median) turbulent kinetic energy. Sweep and ejection events dominated the interfacial region above all surfaces at all flows, but there was a microtopographic effect, with Q2 and Q4 events less dominant and structures less persistent above the surface with the widest relief distribution, especially at the highest Reynolds number flow. Results are broadly consistent with earlier work, although this analysis is unique because of the focus on interfacial hydraulics, spatially averaged 'patch scale' metrics and a statistical approach to data analysis. An important implication is that observable differences in microtopography do not necessarily produce differences in interfacial hydraulics. An important observation is that appropriate roughness parameterizations for gravel-bed rivers remain elusive, partly because the relative contributions to flow resistance of different aspects of bed microtopography are poorly constrained.
机译:人们对砾石河的界面层中的水流了解甚少,但是该区域很重要,因为这里的水力学可以输送沉积物,产生水流结构并与底栖生物相互作用。我们假设不同的砾石层微观形貌在界面层内的水力特性上产生了可测量的差异。使用高密度的空间和垂直分布的速度时间序列进行了测试,该速度时间序列是在对比微形貌的三个表面上方的界面层中测量的。这些表面具有自然的水加工纹理,可使用浇铸程序在野外捕获。重复分析三个放电,雷诺数在165000和287000之间,以评估放电是否影响了微形貌对界面流动的影响。相对淹没在高地砾石床河流的小范围(3.5至8.1)特征范围内变化。使用非参数统计数据测试了多个时间平均和湍流参数的中值和方差之间的表面间差异。在所有放电中,微观形貌差异不会影响流向速度的空间平均(中值)值,但会与其空间方差的显着差异相关,并且会影响空间平均(中值)湍流动能。在所有流动下,扫掠和喷射事件都占据了所有表面上方的界面区域,但存在微观形貌效应,Q2和Q4事件的占主导地位较小,且结构在地面上方的持久性较弱,且浮雕分布最宽,尤其是在雷诺数最大时。尽管由于侧重于界面水力学,空间平均的“补丁规模”度量标准和数据分析的统计方法,该分析是独特的,但结果与早期工作大致相符。一个重要的含义是,微观形貌中可观察到的差异不一定会在界面水力学方面产生差异。一个重要的观察结果是,砾石河道的合适粗糙度参数设置仍然难以捉摸,部分原因是河床微观形貌的不同方面对流阻的相对贡献受到限制。

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