长江科学院院报 ›› 2011, Vol. 28 ›› Issue (7): 13-18.

• 防洪减灾 • 上一篇    下一篇

基于 HEC—RAS 的淮河淮南段洪水漫顶风险分析

徐 伟1,2,刘 茂1 ,杨 杰1 ,李春志2 ,尚小娟3   

  1. 1. 南开大学 城市公共安全研究中心,天津 300071 ; 2. 中国石油天然气管道局 第二工程分公司 , 江苏 徐州 221008 ; 3. 天津师范大学 生命科学院,天津 300387
  • 出版日期:2011-07-01 发布日期:2012-11-08

HEC-RAS for Risk Analysis of Flood Overtopping Inundation in Huainan Reach of Huai River

XU Wei1,2 , LIU Mao1, YANG Jie1, LI Chun-zhi2 , SHANG Xiao-juan3   

  1. 1.Research Center on Urban Public Safety, Nankai University, Tianjin 300071, China ; 2.No.2 Construction Company of China Petroleum Pipeline Bureau, Xuzhou 221008, China ; 3. School of Life Sciences, Tianjin Normal University, Tianjin 300387, China
  • Online:2011-07-01 Published:2012-11-08

摘要: 淮河淮南段聚集了大量的人口、工厂、农田、建筑物等,一旦发生较大规模的洪水,将对人民生命财产安全造成严重威胁。运用 HEC-RAS 软件和 HEC-GeoRAS 模块,在 GIS 环境中,模拟现有防洪工程条件下淮河淮南段在40年、60年及100年一遇洪水周期下的洪水漫顶淹没情况,得到不同横断面的设计水位线、漫顶淹没的范围、淹没水深等数据。洪水漫顶模拟结果表明 : 淮河淮南段的防洪堤坝能够抵御 40 年、 60 年一遇的洪水,基本能抵抗100年一遇的洪水;模拟水位与设计水位吻合度高,基于 HEC-RAS 的洪水漫顶模拟合理可信,可为防洪预警、制定人员疏散方案及洪水灾害风险分析等方面提供依据。

关键词: HEC-RAS ,  , 淮河 , 洪水 , 漫顶 , 风险分析

Abstract: There are a large number of people, factories, farmlands and buildings in Huainan area, the south part of Huai River. Big floods will severely endanger people ' s life and property. In this paper, HEC---RAS software and HEC-GeoRAS module are employed in GIS to simulate the flood overtopping inundation in Huainan reach of Huai River under the existing flood protection works during floods once in 40, 60, and 100 years respectively. The designed water level of different cross-sections, the overtopping inundation area, and the inundation depth data are obtained. The simulation manifested that the flood protection works in this reach are capable of handling floods once in 40 and 60 years, and can generally withstand floods once in 100 years. The simulated water level is consistent with the designed level. Therefore it is concluded that it is reasonable and credible to use HEC-RAS to simulate flood overtopping, and thereby providing reference for the early warning, the population evacuation planning, as well as flood disaster risk analysis.

Key words: HEC-RAS ,   Huai River ,    flood  ,   overtopping  ,   risk analysis

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