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Post Construction Green Infrastructure Performance Monitoring Parameters and Their Functional Components

机译:施工后绿色基础设施性能监控参数及其功能组件

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Drainage system infrastructures in most urbanized cities have reached or exceeded their design life cycle and are characterized by running with inadequate capacity. These highly degraded infrastructures are already overwhelmed and continued to impose a significant challenge to the quality of water and ecological systems. With predicted urban growth and climate change the situation is only going to get worse. As a result, municipalities are increasingly considering the concept of retrofitting existing stormwater drainage systems with green infrastructure practices as the first and an important step to reduce stormwater runoff volume and pollutant load inputs into combined sewer systems (CSO) and wastewater facilities. Green infrastructure practices include an open green space that can absorb stormwater runoff, ranging from small-scale naturally existing pocket of lands, right-of-way bioswales, and trees planted along the sidewalk as well as large-scale public parks. Despite the growing municipalities’ interest to retrofit existing stormwater drainage systems with green infrastructure, few studies and relevant information are available on their performance and cost-effectiveness. Therefore, this paper aims to help professionals learn about and become familiar with green infrastructure, decrease implementation barriers, and provide guidance for monitoring green infrastructure using the combination of survey questionnaires, meta-narrative and systematic literature review techniques.
机译:大多数城市化城市的排水系统基础设施已达到或超过其设计生命周期,其特点是运行能力不足。这些高度退化的基础设施已经不堪重负,并继续对水和生态系统的质量构成重大挑战。随着城市增长和气候变化的预测,情况只会变得更糟。结果,市政当局越来越多地考虑采用绿色基础设施实践来改造现有雨水排放系统的概念,这是减少雨水径流量和联合污水系统(CSO)和废水处理设施的污染物负荷输入的第一步和重要一步。绿色基础设施实践包括开放的绿色空间,可以吸收雨水径流,范围包括自然界中的小规模小片土地,通行的生物通道,在人行道上种植的树木以及大型公园。尽管市政当局对利用绿色基础设施改造现有雨水排放系统的兴趣日益浓厚,但有关其性能和成本效益的研究和相关信息很少。因此,本文旨在帮助专业人员学习和熟悉绿色基础设施,减少实施障碍,并结合使用调查问卷,元叙事和系统的文献综述技术为监测绿色基础设施提供指导。

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