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Case Study: Effect of Submerged Aquatic Plants on Turbulence Structure in a Lowland River

机译:案例研究:低水河中淹没的水生植物对湍流结构的影响

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Interactions of aquatic plants with turbulent flows in fluvial systems have attracted considerable interest. While there have been recent advances in theories that describe vegetation-flow interactions in idealized laboratory flows, their practical application is still problematic due to limited knowledge of effects caused by heterogeneously (patchy) distributed plants in naturally formed vegetative mosaics in rivers. This paper reports on a study in a lowland river, aimed at quantification and parameterization of vegetation effects on redistribution of mean and turbulent characteristics of the flow and their consequences for hydraulic resistance. The measurements were carried out in summer on a river reach with a patchy mosaic dominated by submerged flexible aquatic plants and repeated at the same water level in early spring before the plants start growing. This design of the study allowed for quantitative evaluation of the effects caused by flow-plants interactions on bulk flow parameters at comparable submergences of riverbed roughness elements (sediment grains and sand bars). The study indicates that symmetrical quasi-two-dimensional open-channel flow structure in unvegetated riverbed was transformed into highly fragmented complex flow pattern spatially arranged by patches and free paths in the mosaic. Despite complexities and three dimensionality of the flow, normalized mean velocity profiles in the patches were satisfactory described by hyperbolic tangent function while flow in the free paths, similarly to unvegetated channel, was in a reasonable agreement with the conventional logarithmic law.
机译:水生植物与河流系统中湍流的相互作用引起了极大的兴趣。尽管在描述理想化的实验室水流中植被与水流相互作用的理论方面已有新进展,但由于对由自然形成的植被马赛克中的异类(斑驳)分布的植物引起的影响的了解有限,因此其实际应用仍然存在问题。本文报道了在低地河流上的一项研究,该研究旨在量化和参数化植被对流量平均和湍流特征的重新分布及其对水力阻力的影响。测量是在夏季在河边进行的,该河段以淹没的柔性水生植物为主的斑驳马赛克,并在植物开始生长之前的早春以相同的水位重复进行。这项研究设计可以定量评估在相当的河床粗糙度元素(泥沙和沙洲)淹没情况下,流水厂相互作用对大流量参数的影响。研究表明,无植被河床中的对称准二维明渠流结构被转换为高度碎片化的复杂流型,由斑块和自由路径在空间上排列。尽管存在复杂性和三维流动性,但通过双曲正切函数描述的斑块中的标准化平均速度曲线令人满意,而自由路径中的流动(类似于无植被通道)则与常规对数律合理吻合。

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