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Flow resistance models for flexible submerged vegetation

机译:柔性淹没植被的流阻模型

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This paper investigates the variation of hydraulic roughness parameters with flow depth for submerged flexible vegetation. In an experimental study flexible grass canopies are used to examine the impact of stem height, grass type and degree of submergence on the flow resistance properties. Results reveal that Manning's n roughness coefficient increases with decreasing flow depth reaching an asymptotic constant at lower levels of vegetation submergence. Data suggest that the value of the constant is dependent on the vegetation height and the vegetation properties. Currently the n-UR method underpredicts the Manning's n and the data from this study extends the USDA method for lower bed slopes and for smaller UR values. The vegetal drag-Reynolds number model is extended for submerged flexible grass linings of differing heights and types. Similar values of the vegetative characteristic number k are evaluated as from previous studies yet for contrasting vegetation types. The vegetal drag coefficient value was found to be strongly correlated to the vegetation height, and follows a power law relationship. The exponent value was found to be independent of the vegetation characteristics. (C) 2007 Elsevier B.V. All rights reserved.
机译:本文研究了淹没柔性植被的水力粗糙度参数随深度的变化。在一项实验研究中,使用柔性草冠来检查茎高,草类型和浸没程度对流阻特性的影响。结果表明,Manning的n粗糙度系数随着水深的减小而增加,在较低的植被淹没水平下达到渐近常数。数据表明该常数的值取决于植被高度和植被性质。目前,n-UR方法低估了Manning的n,该研究的数据将USDA方法扩展到了较低的床坡度和较小的UR值。植物阻力-雷诺数模型得到扩展,适用于不同高度和类型的水下柔性草衬。与以前的研究一样,评估了植物特征数k的相似值,但用于对比植被类型。发现植物阻力系数值与植被高度高度相关,并且遵循幂律关系。发现该指数值与植被特征无关。 (C)2007 Elsevier B.V.保留所有权利。

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