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The Effectiveness Costs and Coastal Protection Benefits of Natural and Nature-Based Defences

机译:自然和基于自然的防御的有效性成本和海岸保护收益

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摘要

There is great interest in the restoration and conservation of coastal habitats for protection from flooding and erosion. This is evidenced by the growing number of analyses and reviews of the effectiveness of habitats as natural defences and increasing funding world-wide for nature-based defences–i.e. restoration projects aimed at coastal protection; yet, there is no synthetic information on what kinds of projects are effective and cost effective for this purpose. This paper addresses two issues critical for designing restoration projects for coastal protection: (i) a synthesis of the costs and benefits of projects designed for coastal protection (nature-based defences) and (ii) analyses of the effectiveness of coastal habitats (natural defences) in reducing wave heights and the biophysical parameters that influence this effectiveness. We (i) analyse data from sixty-nine field measurements in coastal habitats globally and examine measures of effectiveness of mangroves, salt-marshes, coral reefs and seagrass/kelp beds for wave height reduction; (ii) synthesise the costs and coastal protection benefits of fifty-two nature-based defence projects and; (iii) estimate the benefits of each restoration project by combining information on restoration costs with data from nearby field measurements. The analyses of field measurements show that coastal habitats have significant potential for reducing wave heights that varies by habitat and site. In general, coral reefs and salt-marshes have the highest overall potential. Habitat effectiveness is influenced by: a) the ratios of wave height-to-water depth and habitat width-to-wavelength in coral reefs; and b) the ratio of vegetation height-to-water depth in salt-marshes. The comparison of costs of nature-based defence projects and engineering structures show that salt-marshes and mangroves can be two to five times cheaper than a submerged breakwater for wave heights up to half a metre and, within their limits, become more cost effective at greater depths. Nature-based defence projects also report benefits ranging from reductions in storm damage to reductions in coastal structure costs.
机译:人们对恢复和保护沿海生境免受洪水和侵蚀的兴趣引起了极大兴趣。对栖息地作为自然防御的有效性的分析和审查的数量不断增加,并且全球范围内基于自然的防御的资金越来越多,即证明了这一点。针对沿海保护的恢复项目;但是,目前尚没有关于哪种项目在此方面有效和具有成本效益的综合信息。本文讨论了对设计沿海保护修复项目至关重要的两个问题:(i)沿海保护设计项目(基于自然的防御)的成本和收益的综合;(ii)沿海栖息地的有效性分析(自然防御) ),以降低波高和影响此效果的生物物理参数。我们(i)分析来自全球沿海生境的69个野外测量的数据,并研究红树林,盐沼,珊瑚礁和海草/海藻层对降低波浪高度的有效性的措施; (ii)综合五十二个基于自然的国防项目的成本和沿海保护收益;以及(iii)通过将恢复成本信息与附近现场测量数据相结合,估算每个恢复项目的收益。野外测量的分析表明,沿海生境具有降低波高的巨大潜力,波高随生境和地点的不同而变化。通常,珊瑚礁和盐沼具有最高的整体潜力。栖息地的有效性受到以下因素的影响:a)珊瑚礁的波高与水深之比和生境宽度与波长之比; b)盐沼中植被高度与水深之比。对基于自然的国防项目和工程结构的成本进行比较后发现,对于波高高达半米的海域,盐沼和红树林的价格要比淹没的防波堤便宜两到五倍,并且在其极限范围内,在更大的深度。基于自然的国防项目还报告了各种好处,从减少风暴破坏到减少沿海建筑成本。

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