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Urban stormwater runoff thermal characteristics and mitigation effect of low impact development measures

机译:低影响开发措施的城市雨水径流热力特征及减缓效果

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Thermal pollution has become a severe environmental problem in China, but studies on thermal characteristics of urban stormwater runoff are scarce. The thermal enrichment of runoff from typical land surfaces was assessed during 2012-2014 in Beijing and Shenzhen, China. The temperature of stormwater runoff from rooftops, grass surfaces and different types of road surfaces was investigated under different rainfall conditions. The mitigation effects of low impact development (LID) measures were also evaluated. Impervious asphalt or concrete surfaces store and transfer heat, and were found to cause thermal enrichment of runoff from the start of a rainfall event. In addition to surface types, pre-event weather conditions and rainfall intensity influenced runoff temperature. The pervious surface of open graded friction course (OGFC) pavement postponed the time of peak runoff temperature. The retention volume of bioretention cells resulted in thermal energy mitigation by directing runoff into the soil and vegetative cover. The grass swales showed effective reduction of runoff temperature by approximately 1-2 degrees C compared to asphalt, concrete and marble pavements. Therefore, LID measures, such as OGFC porous pavements, bioretention cells and grass swales, can mitigate the thermal impacts of urban stormwater runoff and alleviate resulting ecological problems.
机译:在中国,热污染已经成为一个严重的环境问题,但是对城市雨水径流的热特征的研究却很少。在2012年至2014年期间,在中国北京和深圳对典型地表径流的热富集进行了评估。研究了在不同降雨条件下屋顶,草地和不同类型路面的雨水径流温度。还评估了低影响发展(LID)措施的缓解效果。不透水的沥青或混凝土表面会储存和传递热量,并从降雨事件开始就引起径流的热富集。除地表类型外,赛前天气状况和降雨强度还会影响径流温度。敞开的渐变摩擦层(OGFC)路面的透水表面推迟了峰值径流温度的时间。生物截留细胞的截留体积通过将径流直接引入土壤和植物覆盖层而减少了热能。与沥青,混凝土和大理石路面相比,草sw显示出径流温度有效降低了约1-2摄氏度。因此,诸如OGFC多孔人行道,生物保留单元和草丛之类的LID措施可以减轻城市雨水径流的热影响,并减轻由此带来的生态问题。

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