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Selecting Sustainable Drainage Structures Based on Ecosystem Service Variables Estimated by Different Stakeholder Groups

机译:根据不同利益相关者群体估算的生态系统服务变量选择可持续的排水结构

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In times of recession, expert systems supporting environmental managers undergo a revival. However, the retrofitting of sustainable water structures is currently undertaken ad hoc using engineering experience supported by minimal formal guidance. There is a lack of practical decision tools that can be used by different professions for the rapid assessment of ecosystem services that can be created when retrofitting water structures. Thus the aim was to develop an innovative decision support tool based on the rapid estimation of novel ecosystem service variables at low cost and acceptable uncertainty. The tool proposes the retrofitting of those sustainable drainage systems that obtained the highest ecosystem services score for a specific urban site subject to professional bias. The estimation of variables was undertaken with high confidence and manageable error at low cost. In comparison to common public opinion, statistically significant differences between social scientists and the general public for the estimation of land costs using the non-parametric Mann-Whitney U-test were found. It was also surprising to find no significant differences in the estimation of habitat for species by civil engineers and ecologists. The new methodology may lead to an improvement of the existing urban landscape by promoting ecosystem services.
机译:在经济衰退时期,支持环境管理人员的专家系统正在复兴。但是,目前可持续的水结构改建是临时性的,使用的工程经验很少得到正式指导的支持。缺乏实用的决策工具,不同的行业可以使用这些决策工具来快速评估在改造水结构时可以创建的生态系统服务。因此,目的是基于低成本和可接受的不确定性快速评估新型生态系统服务变量,开发一种创新的决策支持工具。该工具建议对那些受专业偏见影响的特定城市地区的生态系统服务得分最高的可持续排水系统进行改造。变量的估计具有很高的置信度和可控制的错误,且成本较低。与公众舆论相比,在使用非参数Mann-Whitney U检验估算土地成本时,社会科学家与公众之间存在统计学上的显着差异。土木工程师和生态学家在物种栖息地估计中没有发现显着差异也令人惊讶。新方法可以通过促进生态系统服务来改善现有的城市景观。

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