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Design configurations affecting flow pattern and solids accumulation in horizontal free water and subsurface flow constructed wetlands

机译:设计构型影响水平自由水和地下流动人工湿地中的流型和固体积累

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摘要

The aim of this study was to evaluate the effect of different horizontal constructed wetland (CW) design parameters on solids distribution, loss of hydraulic conductivity over time and hydraulic behaviour, in order to assess clogging processes in wetlands. For this purpose, an experimental plant with eight CWs was built at mesocosm scale. Each CW presented a different design characteristic, and the most common CW configurations were all represented: free water surface flow (FWS) with different effluent pipe locations, FWS with floating macrophytes and subsurface flow (SSF), and the presence of plants and specific species (Typha angustifolia and Phragmites australis) was also considered. The loss of the hydraulic conductivity of gravel was greatly influenced by the presence of plants and organic load (representing a loss of 20% and c.a. 10% in planted wetlands and an overloaded system, respectively). Cattail seems to have a greater effect on the development of clogging since its below-ground biomass weighed twice as much as that of common reed. Hydraulic behaviour was greatly influenced by the presence of a gravel matrix and the outlet pipe position. In strict SSF CW, the water was forced to cross the gravel and tended to flow diagonally from the top inlet to the bottom outlet (where the inlet and outlet pipes were located). However, when FWS was considered, water preferentially flowed above the gravel, thus losing half the effective volume of the system. Only the presence of plants seemed to help the water flow partially within the gravel matrix.
机译:这项研究的目的是评估不同水平建设的湿地(CW)设计参数对固体分布,水力传导率随时间的损失以及水力行为的影响,以评估湿地的堵塞过程。为此,以中观规模建造了具有八个连续波的实验工厂。每个CW都呈现出不同的设计特征,并且最常见的CW配置都被表示:具有不同出水管道位置的自由水面流(FWS),具有漂浮的大型植物和地下流(SSF)的FWS,以及植物和特定物种的存在还考虑了斑疹伤寒(Typha angustifolia)和芦苇(Phragmites australis)。砾石的水力传导率的损失在很大程度上受到植物的存在和有机负荷的影响(在种植的湿地和过载的系统中分别损失了20%和约10%)。香蒲似乎对堵塞的产生有更大的影响,因为其地下生物量的重量是普通芦苇的两倍。砾石基质的存在和出口管道的位置极大地影响了水力行为。在严格的SSF CW中,水被迫穿过砾石,并倾向于从顶部入口到底部出口(位于入口和出口管所在的位置)对角流动。但是,当考虑使用FWS时,水优先流向砾石上方,因此损失了系统有效容积的一半。只有植物的存在似乎有助于水在砾石基质中部分流动。

著录项

  • 来源
    《Water Research》 |2013年第3期|1448-1458|共11页
  • 作者单位

    Environmental Institute, University of Leon, c/La Serna 56, 24007 Leon, Spain,Ecology Section, Department of Biodiversity and Environmental Management, University of Leon, Campus de Vegazana s, 24071 Leon, Spain;

    Environmental Institute, University of Leon, c/La Serna 56, 24007 Leon, Spain,Ecology Section, Department of Biodiversity and Environmental Management, University of Leon, Campus de Vegazana s, 24071 Leon, Spain;

    Environmental Institute, University of Leon, c/La Serna 56, 24007 Leon, Spain,Ecology Section, Department of Biodiversity and Environmental Management, University of Leon, Campus de Vegazana s, 24071 Leon, Spain;

    GEMMA - Group of Environmental Engineering and Microbiology, Department of Hydraulic, Maritime and Environmental Engineering, Universitat Politecnica de Catalunya-BarcelonaTech, c/Jordi Girona 1-3, Building Dl, E-08034 Barcelona, Spain;

    GEMMA - Group of Environmental Engineering and Microbiology, Department of Hydraulic, Maritime and Environmental Engineering, Universitat Politecnica de Catalunya-BarcelonaTech, c/Jordi Girona 1-3, Building Dl, E-08034 Barcelona, Spain;

    Environmental Institute, University of Leon, c/La Serna 56, 24007 Leon, Spain,Ecology Section, Department of Biodiversity and Environmental Management, University of Leon, Campus de Vegazana s, 24071 Leon, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    clogging; flow path; solids distribution; permeability; cattail; common reed;

    机译:堵塞流动路径;固体分布渗透性香蒲;普通芦苇;

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