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Longitudinal and lateral diffusion of solute transport in flow with rigid vegetation

机译:用刚性植被流动溶质输送的纵向和横向扩散

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Background Aquatic vegetation has major influence on the local water environment, affecting flow velocities and solute mixing. Extensive research has been conducted on the flow characteristics of vegetated areas, but little is known about solute transport. In this study, Laboratory experiments were carried out?to investigate how solute transport is affected by emergent and submerged rigid vegetation. Results Vegetation greatly reduces the mean velocity, especially within the vegetated region. Near the bottom, the solute concentration is greater in the dense vegetation than in the sparse vegetation. The vertical distribution of the solute concentration decreases rapidly with the relative water depth. Generally, the longitudinal and lateral diffusion coefficients are less affected by denser vegetation, but both coefficients are strongly influenced by the relative water depth (submerged vegetation height). Conclusions A modified function to estimate the longitudinal diffusion coefficients is proposed under both emergent and submerged vegetation conditions, including cases of variable vegetation height. The key parameters ( a’ and b’ ) for the assessment of the lateral diffusion coefficients are improved considering vegetation height. Results in the present paper can be used as efficient and convenient methods to estimate the longitudinal and lateral diffusion coefficients in flow with rigid vegetation.
机译:背景水生植被对当地水环境的重大影响,影响流速和溶质混合。已经对植物区的流动特性进行了广泛的研究,但对溶质转运知之甚少。在这项研究中,进行了实验室实验?调查溶质运输如何受到突出和淹没刚性植被的影响。结果植被极大地降低了平均速度,特别是在植被区域内。靠近底部,溶质浓度在浓密的植被中大于稀疏植被。溶质浓度的垂直分布随着相对水深而迅速降低。通常,纵向和横向扩散系数受密度植被影响,但两个系数受到相对水深(埋地植被高度)的强烈影响。结论在出苗和浸没植被条件下提出了一种估计纵向扩散系数的改性功能,包括可变植被高度的情况。考虑植被高度,改善了用于评估横向扩散系数的关键参数(A'和B')。本文的结果可用作有效且方便的方法来估计与刚性植被流动的纵向和横向扩散系数。

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