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首页> 外文期刊>Mitigation and Adaptation Strategies for Global Change >Coastal and riverine ecosystems as adaptive flood defenses under a changing climate
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Coastal and riverine ecosystems as adaptive flood defenses under a changing climate

机译:沿海和河流生态系统作为变化气候的自适应洪水防御

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Adaptation planning for flood risk forms a significant part of global climate change response. Engineering responses to higher water levels can be prohibitively costly. Several recent studies emphasize the potential role of ecosystems in flood protection as adaptive risk reduction measures while also contributing to carbon fixation. Here, we use a conceptual model study to illustrate the built-in adaptive capability of ecosystems to reduce a wide range of wave heights, occurring at different water levels, to a narrower range. Our model shows that wave height of waves running through a forested section is independent of initial height or of water level. Although the underlying phenomenon of non-linear wave attenuation within coastal vegetation is well studied, implications of reducing variability in wave heights for design of ecosystem and levee combinations have not yet been properly outlined. Narrowing the range of wave heights by a vegetation field generates an adaptive levee that is robust to a whole range of external conditions rather than only to a maximum wave height. This feature can substantially reduce costs for retrofitting of levees under changing future wave climates. Thereby, in wave prone areas, inclusion of ecosystems into flood defense schemes constitutes an adaptive and safe alternative to only hard engineered flood risk measures.
机译:洪水风险适应规划形成了全球气候变化反应的重要组成部分。对更高水位的工程反应可能是昂贵的。最近的几项研究强调了生态系统在洪水保护中的潜在作用,因为适应性风险降低措施同时也有助于碳固定。在这里,我们使用概念模型研究来说明生态系统的内置自适应能力,以减少在不同的水位上发生的广泛波浪高度,以较窄的范围。我们的模型表明,通过森林部分运行的波浪高度与初始高度或水位无关。尽管沿海植被内的非线性波衰减的潜在现象是很好的研究,但尚未正确概述降低生态系统和堤坝组合的波浪高度变化的影响。通过植被领域缩小波浪高度的范围产生自适应堤坝,其在整个外部条件范围而不是仅对最大波高度方面具有鲁棒。在不断变化的未来波浪中,此功能可以显着降低改装堤坝的成本。因此,在波峰俯卧面积中,将生态系统纳入防洪方案构成了仅适应性和安全的替代方案,以便仅难以工程泄漏风险措施。

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