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首页> 外文期刊>Science of the total environment >Rapid decision support tool based on novel ecosystem service variables for retrofitting of permeable pavement systems in the presence of trees
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Rapid decision support tool based on novel ecosystem service variables for retrofitting of permeable pavement systems in the presence of trees

机译:基于新型生态系统服务变量的快速决策支持工具,用于在有树木的情况下改造渗透性路面系统

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摘要

The retrofitting of sustainable drainage systems (SuDS) such as permeable pavements is currently undertaken ad hoc using expert experience supported by minimal guidance based predominantly on hard engineering variables. There is a lack of practical decision support tools useful for a rapid assessment of the potential of ecosystem services when retrofitting permeable pavements in urban areas that either feature existing trees or should be planted with trees in the near future. Thus the aim of this paper is to develop an innovative rapid decision support tool based on novel ecosystem service variables for retrofitting of permeable pavement systems close to trees. This unique tool proposes the retrofitting of permeable pavements that obtained the highest ecosystem service score for a specific urban site enhanced by the presence of trees. This approach is based on a novel ecosystem service philosophy adapted to permeable pavements rather than on traditional engineering judgement associated with variables based on quick community and environment assessments. For an example case study area such as Greater Manchester, which was dominated by Sycamore and Common Lime, a comparison with the traditional approach of determining community and environment variables indicates that permeable pavements are generally a preferred SuDS option. Permeable pavements combined with urban trees received relatively high scores, because of their great potential impact in terms of water and air quality improvement, and flood control, respectively. The outcomes of this paper are likely to lead to more combined permeable pavement and tree systems in the urban landscape, which are beneficial for humans and the environment.
机译:目前,使用专家经验临时对可持续排水系统(SuDS)进行改造,例如渗透路面,该经验主要由硬工程变量决定,并辅以最少的指导。缺乏实用的决策支持工具,无法快速评估在以现有树木为特色或应在不久的将来种植树木的城市地区的透水路面时,快速评估生态系统服务的潜力。因此,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型快速决策支持工具,用于对树木附近的渗透性路面系统进行改造。这种独特的工具提出了对渗透性路面的改造,该渗透性路面由于树木的存在而在特定的城市地点获得了最高的生态系统服务得分。该方法基于适用于渗透性路面的新型生态系统服务理念,而不是基于与基于快速社区和环境评估的变量相关联的传统工程判断。以Sycamore和Common Lime为主的大曼彻斯特这样的案例研究区域为例,与确定社区和环境变量的传统方法的比较表明,通透性路面通常是SuDS的首选。渗透性路面与城市树木相结合获得较高的分数,因为它们分别对改善水质和空气质量以及防洪具有潜在的影响。本文的结果可能会导致城市景观中更多的渗透性人行道和树木系统结合在一起,这对人类和环境都是有益的。

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