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水力发电学报 ›› 2026, Vol. 45 ›› Issue (8): 29-38.doi: 10.11660/slfdxb.20260803

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柔性沉水植被对流速的削弱效应与泥沙悬浮抑制作用

  

  • 出版日期:2026-08-25 发布日期:2026-08-25

Flow velocity attenuation and sediment suspension suppression by submerged flexible vegetation

  • Online:2026-08-25 Published:2026-08-25

摘要: 水生植被作为明渠、湖泊生态系统中必不可少的组成部分,具有重要的生态服务价值。水生植被显著影响水体的湍流特性及泥沙悬浮,进而改变水体浊度,水体浊度是影响水生态系统健康的重要因素之一,而天然水生植被对水体浊度影响机理复杂。为揭示天然柔性沉水植被作用下水体流速结构及悬沙浓度分布规律,本研究选用天然苦草进行水槽试验,设置矩形排列方式,通过设置不同的流量和密度,对水体垂向流速及悬沙浓度进行系统分析。结果表明:柔性植被形态显著改变了水体的垂向流速分布与湍流结构,不同密度条件下,时均流速、横向与垂向雷诺应力,以及紊动能均呈现明显差异,近床面及冠层区域紊动能变化尤为显著。时均流速在冠层顶端出现转折点。紊动能及雷诺应力沿垂向分布具有相似性,最大值基本位于植被冠层顶端附近。植被作用下水体悬沙浓度相较于裸床条件下显著下降,且随着植被密度的增加而降低,水流与密度条件对冠层区的影响显著,沉水植被降低水体悬沙浓度的主要机制在于其削弱了冠层内水体时均流速,从而抑制了泥沙悬浮。

关键词: 植被水力学, 柔性沉水植被, 紊流结构, 悬沙浓度, 水槽试验

Abstract: Aquatic vegetation, as a key part of open-channel and lake ecosystems, plays critical ecological roles. It impacts flow turbulence and sediment suspension in a water body, thereby altering its turbidity—a basic indicator of aquatic ecosystem health. However, the mechanism of turbidity altered by natural aquatic vegetation remains complicated. This study conducts a flume experiment using Vallisneria natans arranged in a rectangular pattern, to observe vertical variations in the flow velocity and sediment concentration of water flows under different flowrates and densities of natural flexible submerged vegetation. Analysis on the measured vertical profiles shows the morphology of flexible vegetation markedly alters the flow velocity pattern and turbulence structure. Under different vegetation densities, the time-averaged velocity, lateral and vertical Reynolds stresses, and turbulent kinetic energy all vary significantly, particularly in the near-bed and canopy layers. A turning point of the mean velocity profile occurs at the canopy top; similar vertical patterns are observed in turbulent kinetic energy and Reynolds stresses, with the maximum values located near the top of the vegetation canopy. Compared with the flow on a bare bed, suspended sediment concentration is reduced significantly in the vegetation condition, and decreases further with the vegetation density increasing. Flow rate and density conditions impact the canopy layer remarkably. Thus, we demonstrate that the primary reason for the reduction of suspended sediment in the flow on a submerged vegetation riverbed is that vegetation lowers the time-averaged flow velocity within the canopy and thereby suppresses sediment suspension.

Key words: vegetation hydraulics, flexible submerged vegetation, turbulence structure, suspended sediment concentration, flume experiment

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