首页> 外文期刊>Fresenius environmental bulletin >DRAINAGE CAPACITY OF RAINWATER PIPE NETWORK IN MOUNTAINOUS URBAN AREAS BASED ON SWMM: A CASE STUDY IN CHONGQING, CHINA
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DRAINAGE CAPACITY OF RAINWATER PIPE NETWORK IN MOUNTAINOUS URBAN AREAS BASED ON SWMM: A CASE STUDY IN CHONGQING, CHINA

机译:基于SWMM的山区城市雨水管网的排水能力 - 以重庆,中国重庆案例研究

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Urban waterlogging brings significant challenges to urban rainwater pipe networks. Chongqing represents a typical mountain forest city consisting of lakes, mountains, and rivers. Due to the topography of Chongqing, it is no uncommon for urban flooding to occur in the region. Therefore, this study used the District of Yuelai Smart as the research region and adopted Chicago Synthetic Rainfall Line to simulate different rainfall scenarios by Storm Water Management Model (SWMM). The study area's surface runoff, node overflow, pipe overloading, and water accumulation in the subcatchment area for four different design rainstorm return periods (T =1, 3, 10, and 50 years) were obtained. The results showed that with an increase of the rainfall return period, the total amount of runoff and infiltration were all increased. Although, the increase of runoff was significantly larger than that of infiltration, the risk of a flood disaster increased. The water volume of five subcatchment areas, which were prone to waterlogging during rainfall, were estimated. It was concluded that the water volume of the subcatchment area had a good exponential relationship with the recurrence period, but had little relationship with the regional area. The causes of inadequate drainage during heavy rainstorms are discussed. This issue was mainly limited by pipelines flowing full for an increase period of time and significant variations, which could provide a technical basis for the construction of urban drainage systems in mountain sponge cities.
机译:城市涝渍为城市雨水管网带来了重大挑战。重庆代表了由湖泊,山脉和河流组成的典型山林城市。由于重庆的地形,城市洪水发生在该地区并不罕见。因此,本研究使用了尤埃莱区聪明作为研究区,采用芝加哥合成降雨线来模拟雨水管理模型(SWMM)的不同降雨场景。获得了四个不同设计暴雨返回期(T = 1,3,10和50岁)的小划分区域中的表面径流,节点溢出,管道过载和水积累。结果表明,随着降雨返回期的增加,径流和渗透的总量都增加了。虽然,径流的增加显着大于渗透,洪水灾害的风险增加。估计了在降雨期间突出的五个船只区域的水量。得出结论是,船舶地区的水量与复发期具有良好的指数关系,但与区域地区几乎没有关系。讨论了大暴雨中排水不足的原因。这个问题主要受管道流动的限制,以增加一段时间和显着变化,可以为山海绵城市建设城市排水系统的建设提供技术基础。

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