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Hydraulic Features of Flow through Emergent Bending Aquatic Vegetation in the Riparian Zone

机译:河岸带紧急弯曲水生植被的水力特征

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Vegetation in riparian zones has a significant influence on resistance, velocity distribution and turbulence intensity. This study experimentally investigated the effect of emergent bending riparian zone vegetation on the flow. The results showed that the frond and stem parts of Acorus calami had different influences on hydraulic features and that the relative depth ratio of water depth h to stem height hs was a key determinant of those influences. Manning coefficient n varied greatly with the variation of vegetation densities, relative depth ratio of water depth h to stem height hs, Re and Fr. Manning coefficient n increased with increasing vegetation density, particularly in cases when h/hs 1. The velocity distributions did not follow logarithmic profiles, but they instead exhibited double logarithmic profiles. In addition, vegetation characteristics were shown to influence the height of maximum velocity. The position of maximum velocity is further away from the bed in cases with denser vegetation distribution. Finally, turbulence intensity showed more significant variation in the stem part and peaked near the middle of the stem, at z/hs = 0.5, where z was the distance from the bottom.
机译:河岸带的植被对阻力,速度分布和湍流强度有重要影响。本研究通过实验研究了涌现的弯曲河岸带植被对水流的影响。结果表明,cal蒲的叶和茎部分对水力特征的影响不同,水深h与茎高h s 的相对深度比是决定这些影响的关键因素。人工系数n随植被密度,水深h与茎高h s ,Re和Fr的相对深度比的变化而变化很大。配给系数n随着植被密度的增加而增加,特别是在h / h s s = 0.5,其中z为距底部的距离。

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