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Rapid assessment system based on ecosystem services for retrofitting of sustainable drainage systems

机译:基于生态系统服务的快速评估系统,用于可持续排水系统的改造

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摘要

Sustainable drainage systems (SuDS) design and retrofitting is predominantly based on expert opinion supported by descriptive guidance documents. The aim of this paper is to develop an innovative rapid decision support tool based on novel ecosystem service variables for retrofitting of key SuDS techniques. This unique tool proposes the retrofitting of a SuDS technique that obtained the highest ecosystem service score for a specific urban site. This approach contrasts with methods based on traditional civil engineering judgement linked to standard variables based on community and environment studies. For a case study area (Greater Manchester), a comparison with the traditional approach of determining community and environment variables indicates that permeable pavements, filter strips, swales, ponds, constructed wetlands and below-ground storage tanks are generally less preferred than infiltration trenches, soakaways and infiltration basins. However, permeable pavements and belowground storage tanks also received relatively high scores, because of their great potential impact in terms of water quality improvement and flood control, respectively. The application of the proposed methodology will lead to changes of the sustainable drainage infrastructure in the urban landscape.
机译:可持续排水系统(SuDS)的设计和改造主要基于描述性指导文件支持的专家意见。本文的目的是开发一种基于新型生态系统服务变量的创新快速决策支持工具,以对关键的SuDS技术进行改造。这个独特的工具建议对SuDS技术进行改造,该技术可为特定城市站点获得最高的生态系统服务得分。这种方法与基于传统土木工程判断方法和基于社区和环境研究的标准变量相联系。对于一个案例研究区域(大曼彻斯特),与确定社区和环境变量的传统方法的比较表明,通透性路面,滤带,沼泽,池塘,人工湿地和地下储罐通常比渗透沟更不受欢迎, soakaway和渗透盆地。但是,由于渗透性路面和地下储罐分别在改善水质和防洪方面具有巨大的潜在影响,因此它们也获得了较高的评分。拟议方法的应用将导致城市景观中可持续排水基础设施的变化。

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