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Determination of environmental flows in rivers using an integrated hydrological-hydrodynamic-habitat modelling approach

机译:利用水文-水动力-栖息地综合建模方法确定河流中的环境流量

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摘要

We propose the novel integrated modelling procedure 3H-EMC for the determination of the environmental flow in rivers and streams; 3H-EMC combines Hydrological, Hydrodynamic and Habitat modelling with the use of the Environmental Management Classes (EMCs) that are defined by the Global Environmental Flow Calculator. We apply 3H-EMC in the Sperchios River in Central Greece, in which water abstractions for irrigation cause significant environmental impacts. Calculations of the hydrodynamic-habitat model, in which the large and the small chub are the main fish species, suggest discharge values that range from 1.0 m3/s to 4.0 m3/s. However, hydrological modelling indicates that it is practically difficult to achieve discharges that are higher than approximately 1.0–1.5 m3/s. Furthermore, legislation suggests significantly lower values (0.4–0.5 m3/s) that are unacceptable from the ecological point of view. This behaviour shows that a non-integrated approach, which is based only on hydrodynamic-habitat modelling does not necessarily result in realistic environmental flows, and thus an integrated approach is required. We propose the value of 1.0 m3/s as the “optimum” environmental flow for Sperchios River, because (a) it satisfies the habitat requirements, as expressed by the values of weighted useable area that are equal to 2180 and 1964 m2for the large and small chub, respectively, and correspond to 82 and 95% of their respective maximum values, (b) it is consistent with the requirements of Environmental Classes A and B, whose percentiles are higher than 75% for discharge (77.2%) and for habitat availability (>83.5% for the large chub and >85.0% for the small chub), (c) it is practically achievable from the hydrological point of view, and (d) it is higher than the value proposed by the Greek legislation. The proposed modelling approach can be applied to any river or stream using the same or similar modelling tools, which should be linked via suitable coupling algorithms.
机译:我们提出了新颖的综合建模程序3H-EMC,用于确定河流和溪流中的环境流量。 3H-EMC使用全球环境流量计算器定义的环境管理类别(EMC)将水文,水动力和栖息地建模相结合。我们在希腊中部的Sperchios河中应用3H-EMC,在该河中取水灌溉会造成严重的环境影响。水动力栖息地模型的计算以大,小为主要鱼类,建议的排放值范围为1.0m3 / s至4.0m3 / s。但是,水文模型表明,要实现高于约1.0-1.5 m3 / s的流量实际上是困难的。此外,立法建议显着降低数值(0.4-0.5 m3 / s),这从生态角度来看是不可接受的。此行为表明,仅基于水动力栖息地建模的非集成方法不一定会导致实际的环境流量,因此需要集成方法。我们建议将1.0m3 / s的值作为Sperchios河的“最佳”环境流量,因为(a)它满足了栖息地的要求,用加权的可用面积的值表示,即大面积和大面积的加权可用面积分别为2180和1964 m2。小凸块,分别对应于它们各自最大值的82%和95%,(b)符合环境等级A和B的要求,环境等级的排放百分数高于75%(77.2%)可用性(大凸耳大于83.5%,小凸耳大于85.0%),(c)从水文角度来看实际上是可以实现的,并且(d)高于希腊立法建议的值。可以使用相同或相似的建模工具将拟议的建模方法应用于任何河流或河流,应通过适当的耦合算法进行链接。

著录项

  • 来源
    《Journal of Environmental Management》 |2018年第1期|273-285|共13页
  • 作者单位

    Laboratory of Applied Hydraulics, Department of Water Resources and Environmental Engineering, School of Civil Engineering, National Technical University of Athens,Institute of Hydraulic and Water Resources Engineering, Technical University of Munich;

    Laboratory of Applied Hydraulics, Department of Water Resources and Environmental Engineering, School of Civil Engineering, National Technical University of Athens;

    Laboratory of Applied Hydraulics, Department of Water Resources and Environmental Engineering, School of Civil Engineering, National Technical University of Athens;

    Research Institute for Integrated Management of Coastal Areas (IGIC), Universitat Politècnica de València;

    Research Institute for Integrated Management of Coastal Areas (IGIC), Universitat Politècnica de València;

    Institute of Marine Biological Resources and Inland Waters, Hellenic Centre for Marine Research;

    Institute of Marine Biological Resources and Inland Waters, Hellenic Centre for Marine Research;

    Institute of Hydraulic and Water Resources Engineering, Technical University of Munich;

    Institute of Hydraulic and Water Resources Engineering, Technical University of Munich;

    Institute of Marine Biological Resources and Inland Waters, Hellenic Centre for Marine Research;

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

    Environmental flow; Environmental management classes; Global environmental flow calculator; Hydrodynamic-habitat modelling; Hydrological modelling; Integrated modelling;

    机译:环境流量;环境管理课程;全球环境流量计算器;水动力栖息地建模;水文建模;集成建模;
  • 入库时间 2022-08-17 13:31:54

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