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Modeling Storm Sewer Networks and Urban Flooding in Roanoke, Virginia, with SWMM and GSSHA

机译:弗吉尼亚州Roanoke的建模风暴下水道网络和城市洪水,与SWMM和GSSHA

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摘要

Modeling urban flooding is challenging because of complex spatial variations and interactions between precipitation, land cover, and drainage networks. This paper presents a case study of the development of two hydrology and hydraulics models-the semidistributed storm water management model (SWMM) and the fully distributed gridded surface/subsurface hydrologic analysis (GSSHA) model-to simulate the hydrologic response of two neighboring urban watersheds with large storm sewer networks in the city of Roanoke, Virginia. Both models were calibrated and validated for the two watersheds based on nine events (May-October 2018), and the models were assessed on their ability to replicate measured stream discharge and storm sewer flow depths. The findings from the study indicate that both models reasonably capture the observed hydrologic responses but that each model offers unique benefits. Overall, SWMM's value to the city is its ability to provide detailed information regarding the hydraulic conditions within the city's storm sewer network, whereas GSSHA's value to the city is its ability to predict the duration and spatial extent of flooding in two dimensions.
机译:建模城市洪水由于复杂的空间变化和降水,陆地覆盖和排水网络之间的相互作用而挑战。本文提出了一种案例研究了两种水力和液压模型的发展 - 半分布式雨水管理模型(SWMM)和完全分布的网格表面/地下水文分析(GSSHA)模型 - 模拟两种邻近城市流域的水文反应与大型风暴下水道网络在弗吉尼亚州罗阿诺克市。基于九场活动(2018年5月)的两个流域(2018年10月),这两种模型都被校准并验证,并且对其复制测量流排放和风暴下水道流动深度的能力进行了评估。研究结果表明,两种模型合理地捕获观察到的水文响应,但每个模型都具有独特的益处。总体而言,SWMM对城市的价值是其提供有关城市风暴下水道网络内的液压条件的详细信息,而GSSHA对城市的价值是其能够预测两种维度洪水的持续时间和空间程度。

著录项

  • 来源
    《Journal of hydrologic engineering》 |2021年第1期|05020044.1-05020044.13|共13页
  • 作者单位

    Dept. of Civil and Environmental Engineering Virginia Tech Blacksburg VA 24060;

    Dept. of Civil and Environmental Engineering Virginia Tech Blacksburg VA 24060;

    City of Roanoke Dept. of Public Works 1802 Courtland Rd. NE Roanoke VA 24012;

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  • 正文语种 eng
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