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产流模式空间分布对城市雨洪过程模拟的影响

刘成帅 许营营 孙悦 赵晨晨 解添宁 李文忠 胡彩虹

水资源保护2024,Vol.40Issue(2):28-34,116,8.
水资源保护2024,Vol.40Issue(2):28-34,116,8.DOI:10.3880/j.issn.1004-6933.2024.02.005

产流模式空间分布对城市雨洪过程模拟的影响

Effect of spatial distribution of runoff generation patterns on urban storm flood process simulation

刘成帅 1许营营 1孙悦 1赵晨晨 1解添宁 1李文忠 1胡彩虹1

作者信息

  • 1. 郑州大学水利与交通学院,河南 郑州 450001
  • 折叠

摘要

Abstract

The GRGM-SWMM model was constructed by coupling the grid runoff generation model(GRGM)and the rainstorm flood management model(SWMM).Taking the control basin of Zhongmou Hydrological Station on the Jialu River(including the central urban area of Zhengzhou City)as the study area,based on 18 measured rainstorm and flood data,the impact of spatial distribution of runoff generation modes on the accuracy of flood process simulation was explored.The results show that the spatial distribution of the infiltration-excess runoff generation pattern in the study area accounts for up to 72%,and the urban underlying surface is still dominated by the infiltration-excess runoff generation pattern.Compared to the SWMM that only considers the infiltration-excess runoff generation for runoff calculations,the GRGM-SWMM model,which considers different runoff generation patterns such as infiltration,saturation,and mixing,significantly improves the accuracy of peak flood discharge and flow process simulation.The relative error of runoff generation decreased by an average of 33.26%,and the determination coefficient increased by an average of 0.089.The root mean square error of simulated discharge also decreased by an average of 5.13 m3/s,while the Nash-Sutcliffe efficiency coefficient and the determination coefficient increased by an average of 0.227 and 0.207,respectively.

关键词

城市雨洪过程模拟/产流模式/SWMM/GRGM-SWMM/郑州市

Key words

urban storm flood process simulation/runoff generation pattern/SWMM/GRGM-SWMM/Zhengzhou City

分类

土木建筑

引用本文复制引用

刘成帅,许营营,孙悦,赵晨晨,解添宁,李文忠,胡彩虹..产流模式空间分布对城市雨洪过程模拟的影响[J].水资源保护,2024,40(2):28-34,116,8.

基金项目

国家自然科学基金项目(51979250,U2243219) (51979250,U2243219)

水资源保护

OA北大核心CSTPCDEI

1004-6933

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