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Quantifying the Impact on Stormwater Management of an Innovative Ceramic Permeable Pavement Solution

机译:量化创新陶瓷渗透路面解决方案雨水管理的影响

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Stormwater management in cities has traditionally been based on centralized systems, evacuating runoff as quickly as possible through drainage networks that collect and convey the runoff to the final point of treatment or the receiving water body. In recent years, a different approach focused on the use of Sustainable Urban Drainage Systems (SUDS) represents a paradigm shift, promoting a decentralized management as close to the runoff source as possible. Among these techniques, permeable pavements represent an effective solution for reducing runoff and providing pollutant treatment. This contribution describes the results obtained from an innovative ceramic permeable pavement developed as part of the LIFE CERSUDS project in the city of Benicassim (Spain). This pavement, composed by modules built from ceramic tiles in stock, allows water infiltration, runoff treatment and water reuse as part of a SUDS built in 2018 and monitored from September 2018 to September 2019. The purpose of the research was to demonstrate the hydraulic performance of the proposed solution through monitoring of runoff quantity and quality variables. Monitoring data analysis have shown positive results, reducing peak runoff rates and the volume of water which is conducted downstream. From the hydrological point of view, the system capacity shown a 100% runoff management for events up to 15-25 mm of precipitation. This is a very significant threshold since these values represent, respectively, the 81% and 91% percentiles for the study area. System performance was confirmed in terms of runoff management and water infiltration. This demonstration case study represents a reference example of urban retrofitting actions which integrate social, economic and environmental aspects.
机译:城市的雨水管理传统上是基于集中系统,通过收集并将径流的排水网络撤离到径流到最后的治疗点或接收水体的排水网络来撤离径流。近年来,一项不同的方法,专注于使用可持续城市排水系统(SUD)代表范式转变,促进尽可能接近径流源的分散管理。在这些技术中,可渗透的路面代表了用于减少径流和提供污染物治疗的有效解决方案。这种贡献描述了从作为宾西克市(西班牙)的寿命项目的一部分开发的创新陶瓷渗透路面所获得的结果。这种路面由由库存瓷砖构建的模块组成,允许水渗透,径流处理和水重用作为2018年的苏打水渣的一部分,并于2018年9月至2019年9月监测。该研究的目的是展示液压性能通过监测径流数量和质量变量来提出的解决方案。监测数据分析表明了阳性结果,降低了下游进行的峰值径流率和水量。从水文的角度来看,系统容量显示了100%的径流管理,用于降水量为15-25毫米。这是一个非常显着的阈值,因为这些值分别代表了研究区域的81%和91%百分比。在径流管理和水渗透方面确认了系统性能。该示范案例研究代表了整合社会,经济和环境方面的城市改造行动的参考例。

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