State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, 150090, China.
State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, 150090, China.
Environ Res. 2022 Apr 15;206:112630. doi: 10.1016/j.envres.2021.112630. Epub 2021 Dec 30.
With the acceleration of urbanization, the proportion of surface imperviousness is increasing continuously in cities, resulting in frequent waterlogging disasters. In this context, storm water management, based on the low-impact development (LID) concept, offers an effective measure for the management of urban storm waters. First, the storm water management model (SWMM) was built for a typical cold climate city (Changchun) in China. Next, the two-stage calibrated model was employed to explore the surface runoff and storm sewer control effects of four LID combination plans. Finally, these plans were put through a "cost-benefit" evaluation through an analytic hierarchy process. According to the results, after using four LID plans, the reduction rates of peak runoff exceeded 40% and the problem of overflow load of the storm sewage was significantly mitigated. The infiltration-oriented Plan I proved to be the optimal plan, with the lowest proportions of the overflow nodes and full-load pipe sections in each return period, as well as with maximum overall performance. This study offers technical and conformed methodological support to cold cities for the prevention and control of waterlogging disasters and recycling of rainwater resources.
随着城市化进程的加速,城市地表不透水面积比例不断增加,导致内涝灾害频发。在此背景下,基于低影响开发(LID)理念的雨水管理为城市雨水管理提供了一种有效措施。首先,为中国典型的寒冷气候城市(长春)构建了雨水管理模型(SWMM)。其次,采用两阶段校准模型,探讨了四种 LID 组合方案对地表径流和雨水管道控制的效果。最后,采用层次分析法对这些方案进行了“成本效益”评价。结果表明,采用四种 LID 方案后,峰值径流量的削减率超过 40%,雨水污水溢出负荷问题得到显著缓解。渗透优先的方案 I 被证明是最优方案,在每个重现期内,溢流水节点和满负荷管段的比例最低,整体性能最佳。本研究为寒冷城市的内涝灾害防治和雨水资源回收提供了技术和方法上的支持。