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Experimental study on rainfall-runoff relation for porous pavements

机译:多孔路面降雨-降雨关系的试验研究

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Impervious surfaces have long been implicated in the decline of watershed integrity in urban and urbanizing areas. Porous pavement is one solution to mitigating the problem of stormwater runoff problems. In this research, three available porous pavement systems were investigated to evaluate their infiltration capability of precipitation. Experiments were conducted to simulate different kinds of porous pavements having different sub-base materials in different cells. The discharge volumes were monitored from each cell, and the relationship between rainfall intensity, outflow and outflow duration was analyzed. Results show that these three porous pavements increased infiltration and decreased runoff. The optimum thickness of the porous pavement was 31 cm, which consisted of a 6 cm top layer of porous concrete and a 25 cm sub-base (10 cm concrete without sand and 15 cm aggregate base). Furthermore, under a rainfall rate of 59.36 mm/h, the runoff coefficient of the above porous pavement was zero, while the coefficient of the impervious pavement was 0.85. These results provide a clear indication of the value of porous pavement systems for broad expanses of the human engineered environment.
机译:长期以来,不透水的表面与城市和城市化地区流域完整性的下降有关。多孔路面是缓解雨水径流问题的一种解决方案。在这项研究中,对三种可用的多孔路面系统进行了研究,以评估其对降水的渗透能力。进行实验以模拟在不同单元中具有不同基层材料的不同种类的多孔路面。监测每个单元的排放量,并分析降雨强度,流出量和流出持续时间之间的关系。结果表明,这三个多孔路面增加了入渗,减少了径流。多孔路面的最佳厚度为31厘米,由6厘米的多孔混凝土顶层和25厘米的次基层组成(10厘米的无砂混凝土和15厘米的骨料基层)。此外,在59.36mm / h的降雨率下,上述多孔路面的径流系数为零,而不透水路面的径流系数为0.85。这些结果清楚地表明了多孔铺装系统对于人类工程环境的广阔发展的价值。

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