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Experimental results of the hydrological performance of a permeable pavement laboratory rig

机译:可渗透路面实验室钻机水文性能的实验结果

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There is an increasing number of everyday flood incidents around the world, the impact of which poses a challenge to society, the economy and the environment. Under the Water Framework Directive (2000/60/EC), green infrastructure through the use of sustainable drainage systems (SuDS) is the recommended policy to manage and treat storm water runoff. Given the limited published experimental information on permeable interlocking concrete block pavements (PICPs), this paper presents novel results from an experimental laboratory study on a permeable interlocking concrete block pavement rig, investigating the short-term hydrology of the pavement, and water quality aspects related to the retention capacity of suspended solids (SS) through the pavement structure. Results of the volume analysis demonstrate high capability of the permeable structure to reduce the concentration time and attenuate the storm. Water quality testing was employed mainly as an indicator of the tendency of the suspended solids retention by the structure, indicating increasing tendency in the sediment mass retention progressively after each rainfall event. Experimental results obtained in the present study have direct application on the implementation of PICPs in car parking lots, urbanised pavement structures and pedestrianised walkways.
机译:世界各地日常洪水事件越来越多,对社会,经济和环境构成挑战的影响。在水框架指令(2000/60 / EC)下,通过使用可持续排水系统(SUDS)的绿色基础设施是建议管理和治疗风暴水径流的政策。鉴于有限的公开的渗透互锁混凝土砌块路面(PICP)的实验信息,本文提出了一种新的渗透互锁混凝土砌块路面钻机的实验实验室研究结果,研究了路面的短期水文,以及相关的水质方面通过路面结构悬浮固体(SS)的保持能力。体积分析的结果表明了可渗透结构的高能力,以降低浓度时间并衰减风暴。水质检测主要是作为结构悬浮固体保留趋势的指标,表明每次降雨事件后逐渐增加沉积物质量保留的趋势。本研究中获得的实验结果直接应用于汽车停车场,城市化路面结构和行人走道的PICP。

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