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Flow-Vegetation-Sediment Interaction in a Cohesive Compound Channel

机译:粘性复合通道中的水-植被-沉积物相互作用

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The purpose of this study was to quantify how vegetation influences the flow and sediment processes relevant to the design and management of environmental compound channels. Therefore, a two-year field investigation was conducted in a cohesive two-stage channel, focusing on the flow resistance and net deposition in five subreaches with different floodplain vegetation conditions. In the grassy subreaches, the cross-sectional blockage factor was the key vegetation property governing the flow resistance, with a process-based model providing reliable estimates under widely variable hydraulic and vegetative conditions. The net deposition of cohesive sediment was best explained by vegetation height while high stand length and density created supply-limited conditions on the inner floodplain. These results showed that the two-stage approach offers potential for controlling the sediment processes through appropriate vegetation maintenance. The novelty of this research is that straightforward analyses accompanied by a physically-based parameterization of the floodplain plant stands were successfully used to characterize the flow-vegetation-sediment interaction in a practical engineering application. The results are expected to be helpful in designing and managing comparable channels. (C) 2015 American Society of Civil Engineers.
机译:这项研究的目的是量化植被如何影响与环境复合通道的设计和管理有关的流量和沉积过程。因此,在一个有凝聚力的两阶段通道中进行了为期两年的野外调查,重点研究了五个洪泛区植被条件不同的子流域的流阻和净沉积。在草丛中,断面阻塞因子是控制流动阻力的关键植被特性,基于过程的模型在水力和植物条件广泛变化的情况下提供了可靠的估计。粘性沉积物的净沉积最好用植被高度来解释,而高的林分长度和密度则为内洪泛区创造了供不应求的条件。这些结果表明,采用两阶段方法可通过适当的植被维护来控制沉积过程。这项研究的新颖性在于,在实际工程应用中,简单的分析以及基于洪泛区工厂林分的基于物理参数的分析已成功用于表征流-水-沙相互作用。预期结果将有助于设计和管理可比较的渠道。 (C)2015年美国土木工程师学会。

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