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How natural processes contribute to flood protection - A sustainable adaptation scheme for a wide green dike

机译:自然过程如何促进防洪 - 广泛的绿色堤防可持续适应方案

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摘要

Effective adaptation to sea-level rise is critical for future flood protection. Nature-based solutions including salt marshes have been proposed to naturally enhance coastal infrastructure. A gently sloping grass-covered dike (i.e. Wide Green Dike) can be strengthened with clay accumulating locally in the salt marsh. This study explores the feasibility of extracting salt-marsh sediment for dike reinforcement as a climate adaptation strategy in several sea-level rise scenarios, using the Wide Green Dike in the Dutch part of the Ems-Dollard estuary as a case study. A 0-D sedimentation model was combined with a wave propagation model, and probabilistic models for wave impact and wave overtopping. This model system was used to determine the area of borrow pits required to supply clay for adequate dikes under different sea-level rise scenarios. For medium to high sea-level rise scenarios (>102 cm by 2100) thickening of the clay layer on the dike is required to compensate for the larger waves resulting from insufficient marsh accretion. The model results indicate that for our case study roughly 9.4 ha of borrow pit is sufficient to supply clay for 1 km of dike reinforcement until 2100. The simulated borrow pits are refilled within 22 simulation years on average, and infilling is projected to accelerate with sea-level rise and pit depth. This study highlights the potential of salt marshes as an asset for adapting flood defences in the future.
机译:对海平面上升的有效适应对于未来的防洪至关重要。已经提出了包括盐沼的基于自然的解决方案,以自然增强沿海基础设施。在盐沼中局部积聚的粘土可以加强轻微倾斜的草地覆盖的堤(即宽的绿色堤坝)。本研究探讨了在几个海平面上升情景中提取烟雾增强作为气候适应策略的盐沼沉积物的可行性,在荷兰桶中的荷兰河口中的宽阔绿色堤防为例。将0-D沉积模型与波传播模型相结合,波浪冲击和波浪初探的概率模型。该型号系统用于确定在不同海平面上升情景下提供足够堤坝所需的借款坑领域。对于高海平面上升场景(> 102cm×2100),需要在堤坝上加厚粘土层,以补偿由沼泽增生不足导致的较大波浪。模型结果表明,对于我们的案例研究,大约9.4公顷的借款坑足以将粘土供应达到1公里的堤防加固至2100.平均22个模拟年内重新填充模拟借款坑,并预计infilling将加速海洋 - 升起和坑深。本研究突出了盐沼作为在未来适应洪水防御的资产的潜力。

著录项

  • 来源
    《Science of the total environment》 |2020年第15期|139698.1-139698.17|共17页
  • 作者单位

    Water Systems and Global Change group Wageningen University & Research P.O. Box 47 6700 AA Wageningen the Netherlands;

    PUCCIMAR Ecological Research and Consultancy Boermarke 35 9483 HD Vries the Netherlands;

    Faculty of Civil Engineering and Geosciences Delft University of Technology P.O. Box 5048 2600 GA Delft the Netherlands HKV Consultants Botter 11 29 8232 JN Lelystad the Netherlands;

    Water Systems and Global Change group Wageningen University & Research P.O. Box 47 6700 AA Wageningen the Netherlands;

    Water Systems and Global Change group Wageningen University & Research P.O. Box 47 6700 AA Wageningen the Netherlands Faculty of Civil Engineering and Geosciences Delft University of Technology P.O. Box 5048 2600 GA Delft the Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nature-based solutions; Climate adaptation; Salt marsh; Sea-level rise; Clay mining; Flood risk;

    机译:基于自然的解决方案;气候适应;盐沼;海平面上升;粘土矿业;洪水风险;

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