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考虑超标准洪水作用的沥青心墙坝溃决生命损失评估模型

王琳 王桑蓬 刘云贺 董静

水力发电学报2024,Vol.43Issue(3):57-70,14.
水力发电学报2024,Vol.43Issue(3):57-70,14.DOI:10.11660/slfdxb.20240306

考虑超标准洪水作用的沥青心墙坝溃决生命损失评估模型

Assessment model of life loss due to asphalt core wall dam breach considering effect of super-standard flood

王琳 1王桑蓬 1刘云贺 1董静1

作者信息

  • 1. 西安理工大学 省部共建西北旱区生态水利国家重点实验室,西安 710048
  • 折叠

摘要

Abstract

Once an asphalt core wall dam with strong anti-scour capability encounters a super-standard flood,it will be faced with the risk of collapse and pose a grave threat to downstream people.Previous studies on life loss caused by asphalt core wall dam breach are still lacking,and its assessment is an urgent issue.This paper presents an analysis of the characteristics of the breach flood under the action of a super-standard flood.Considering the interaction between the influencing factors of life loss,we construct a physical model for a quantitative assessment,based on the disaster-causing mechanism of breach flood,so as to realize a rapid quantitative analysis of life loss.Through method comparison and sensitivity analysis,the roles of different life loss factors are determined.This model is applied in a case study of the Sheyuegou breach in Xinjiang.We find the breach flood features a peak flow of 3320 m3/s and a duration of 3.35 h,which agrees with the real conditions.The quantitative life loss model predicts 31 casualties and its error is within 11%,better than previous life loss models.The sensitivity indexes Imax and Imin of the at-risk population are the largest,1.44 and 0.19,respectively.They are the two most important factors of life loss caused by the Sheyuegou dam breach.Other factors are the severity of flood,whether to evacuate,alarm timing,and inundation extent.

关键词

超标准洪水/沥青心墙坝/溃决特征/生命损失/定量分析

Key words

super-standard flood/asphalt core wall dam/breach characteristics/loss of life/quantitative analysis

分类

水利科学

引用本文复制引用

王琳,王桑蓬,刘云贺,董静..考虑超标准洪水作用的沥青心墙坝溃决生命损失评估模型[J].水力发电学报,2024,43(3):57-70,14.

基金项目

国家自然科学基金重点项目(52039008) (52039008)

国家自然科学基金项目(51909214 ()

52279111) ()

水力发电学报

OA北大核心CSTPCD

1003-1243

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