首页> 外文期刊>Journal of hydrologic engineering >Hydrologic-Hydraulic Model for Simulating Dual Drainage and Flooding in Urban Areas: Application to a Catchment in the Metropolitan Area of Chicago
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Hydrologic-Hydraulic Model for Simulating Dual Drainage and Flooding in Urban Areas: Application to a Catchment in the Metropolitan Area of Chicago

机译:模拟城市双排涝的水文-水力模型:在芝加哥都市圈的集水区中的应用

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摘要

A one-dimensional (1D) hydrologic-hydraulic model for simulating dual drainage in urban areas is presented. It consists of four modules: (1) rainfall-runoff transformation, (2) 1D flow routing on a street network, (3) flow interception at street inlets, and (4) flow interaction between surface water on the streets and the underground storm-water system by interfacing with the EPA-SWMM5 engine (U.S. Environmental Protection Agency-Storm Water Management Model). The hydrologic model (first module) transforms rainfall to runoff using the kinematic wave approximation and simulates the infiltration process with the Green-Ampt method. The street network model (second module) is based on a finite-volume shock-capturing scheme that solves the fully conservative Saint-Venant equations and can be used to model both subcritical and supercritical flows. The inlet model (third module) computes the amount of water intercepted by inlets. The formulation of boundary conditions at the street crossings is generalized and can be used for any number of streets, any combination of inflowing and outflowing streets, and flow regime (e.g., subcritical and supercritical flows). Flow interaction between surface water on the streets and underground storm-water system is achieved by interfacing the proposed model with EPA-SWMM5. This interaction allows flow to enter from streets to the underground storm-water system and vice versa. The proposed model has several potential applications such as the identification of critical zones for flooding (e.g., zones with high water depths and flow velocities) in urban developments and can be used to take appropriate measures for drainage control (e.g., to increase number and/or size of inlets), to determine the consequences of different degrees of inlet clogging, and to assess flooding hazards through the application of suitable hazard criteria. A summary of criteria used for storm-water hazard assessment is presented. To demonstrate the dual-drainage model's potential, an application is performed in a catchment of the metropolitan area of Chicago, Illinois. The results obtained are promising and show that the model can be a useful tool for storm-water management and flooding hazard assessment in urban areas.
机译:提出了模拟城市双重排水的一维(1D)水文-水力模型。它由四个模块组成:(1)降雨-径流转换,(2)街道网络上的一维流动路径,(3)街道入口处的流动拦截,(4)街道上的地表水与地下暴雨之间的流相互作用-通过与EPA-SWMM5发动机连接(美国环境保护署-暴雨水管理模型)的水系统。水文模型(第一个模块)使用运动波近似将降雨转换为径流,并使用Green-Ampt方法模拟入渗过程。街道网络模型(第二个模块)基于有限体积的冲击捕获方案,该方案可求解完全保守的Saint-Venant方程,可用于对亚临界流和超临界流进行建模。进水口模型(第三个模块)计算进水口拦截的水量。街道过境处的边界条件的公式是通用的,可用于任何数量的街道,流入和流出的街道的任何组合以及流动状态(例如,亚临界和超临界流动)。通过将建议的模型与EPA-SWMM5接口,可以实现街道地表水与地下雨水系统之间的水流相互作用。这种相互作用使水流从街道进入地下雨水系统,反之亦然。所提出的模型具有多种潜在应用,例如在城市发展中识别洪水的关键区域(例如,水深高和流速高的区域),并可用于采取适当的排水控制措施(例如,增加排水量和/或进水口尺寸),以确定不同程度的进水口堵塞的后果,并通过应用适当的危害标准评估洪水危害。总结了用于雨水危害评估的标准。为了演示双排水模型的潜力,在伊利诺伊州芝加哥大都市集水区进行了一项应用。获得的结果是有希望的,并且表明该模型可以作为城市地区雨水管理和洪水灾害评估的有用工具。

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