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Flow Hydrodynamics across Open Channel Flows with Riparian Zones: Implications for Riverbank Stability

机译:沿岸带明渠水流的水动力学:对河岸稳定性的影响

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Riverbank vegetation is of high importance both for preserving the form (morphology) and function (ecology) of natural river systems. Revegetation of riverbanks is commonly used as a means of stream rehabilitation and management of bank instability and erosion. In this experimental study, the effect of different riverbank vegetation densities on flow hydrodynamics across the channel, including the riparian zone, are reported and discussed. The configuration of vegetation elements follows either linear or staggered arrangements as vegetation density is progressively increased, within a representative range of vegetation densities found in nature. Hydrodynamic measurements including mean streamwise velocity and turbulent intensity flow profiles are recorded via acoustic Doppler velocimetry (ADV)—both at the main channel and within the riverbank. These results show that for the main channel and the toe of riverbank, turbulence intensity for the low densities ( λ ≈ 0 to 0.12 m ?1 ) can increase up to 40% compared the case of high densities ( λ = 0.94 to 1.9 m ?1 ). Further analysis of these data allowed the estimation of bed-shear stresses, demonstrating 86% and 71% increase at the main channel and near the toe region, for increasing densities ( λ = 0 to 1.9 m ?1 ). Quantifying these hydrodynamic effects is important for assessing the contribution of physically representative ranges of riparian vegetation densities on hydrogeomorphologic feedback.
机译:河岸植被对于保护天然河流系统的形式(形态)和功能(生态)都非常重要。河岸的植被恢复通常用作河流恢复和管理河岸的不稳定性和侵蚀的一种手段。在本实验研究中,报告并讨论了不同河岸植被密度对跨河道(包括河岸带)的流动水动力的影响。在自然界中典型的植被密度范围内,随着植被密度的逐渐增加,植被元素的配置遵循线性或交错排列的方式。通过声学多普勒测速仪(ADV)记录了包括平均水流速度和湍流强度流量分布在内的水动力测量结果-在主河道和河岸内。这些结果表明,对于主要河道和河岸趾,低密度(λ≈0至0.12 m?1)的湍流强度与高密度(λ= 0.94至1.9 m? 1)。对这些数据的进一步分析可以估算床剪切应力,表明密度增加时(λ= 0至1.9 m?1),主通道处和脚趾区域附近分别增加了86%和71%。量化这些水动力效应对于评估物理代表范围的河岸植被密度对水文地貌反馈的贡献很重要。

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