水力发电学报
            首 页   |   期刊介绍   |   编委会   |   投稿须知   |   下载中心   |   联系我们   |   学术规范   |   编辑部公告   |   English

水力发电学报

• •    

基于临界雨量不确定性的山洪概率预报研究

  

  • 出版日期:2024-04-24 发布日期:2024-04-24

Research on probabilistic forecasting of flash floods based on critical rainfall uncertainty

  • Online:2024-04-24 Published:2024-04-24

摘要: 水文模型作为洪水预报和水资源管理的有效途径,其参数对山洪临界雨量的确定产生显著影响。以河北柳林、西台峪和坡底三个小流域为研究对象,利用径流曲线水文模型、广义似然不确定性估计法和Sobol分析法,探究在不同模型参数组下临界雨量的变化区间,并提出一种山洪概率预报方法。结果表明:水文模型的平均纳什效率系数高于0.7,大部分洪水场次的洪峰相对误差低于12%;临界雨量的不确定性区间随着降雨历时和预警等级的增加而逐渐变宽,当土壤湿度为干旱时影响更为显著;水文模型的曲线数和初损率是影响临界雨量的主要参数,平均贡献率分别为46.23%和14.72%;相比于临界雨量法,概率预报法的综合评价指标提高了9.8%,可为山洪灾害预警提供更多的风险信息。

Abstract: The hydrological model is an effective approach for flood forecasting and water resource management, significantly impacting the determination of critical rainfall in flash flood warnings. This study focuses on three small watersheds in Hebei province: Liulin, Xitaiyu, and Podi. It utilizes the Soil Conservation Service Curve Number hydrological model, generalized likelihood uncertainty estimation method, and Sobol method to investigate the variation range of critical rainfall under different sets of hydrological model parameters, proposing a probability forecast method for flash floods. The results indicate the SCS-CN hydrological model performs well in simulating the three study areas, with an average NSE exceeding 0.7 and the relative error of most flood events' peak discharge below 12%. The uncertainty of critical rainfall gradually increases with the duration of rainfall and the warning level, especially under dry soil moisture conditions. The curve number and initial loss in the hydrological model are the primary parameters affecting the uncertainty of critical rainfall, with average contribution rates of 46.23% and 14.72%, respectively. Compared to the critical rainfall method, the probability forecast method enhances the comprehensive evaluation index by 9.8%, offering additional risk information for flash flood warnings.

京ICP备13015787号-3
版权所有 © 2013《水力发电学报》编辑部
编辑部地址:中国北京清华大学水电工程系 邮政编码:100084 电话:010-62783813
本系统由北京玛格泰克科技发展有限公司设计开发  技术支持:support@magtech.com.cn