王灵子,姜仁贵,赵勇,等. 渭河干流洪水演变趋势与变异特征研究[J]. 水利水运工程学报.. DOI: 10.12170/20231109002
引用本文: 王灵子,姜仁贵,赵勇,等. 渭河干流洪水演变趋势与变异特征研究[J]. 水利水运工程学报.. DOI: 10.12170/20231109002
(WANG Lingzi, JIANG Rengui, ZHAO Yong, et al. Research on the evolution trend and variation characteristics of flooding in the main stream of the Wei River[J]. Hydro-Science and Engineering(in Chinese)). DOI: 10.12170/20231109002
Citation: (WANG Lingzi, JIANG Rengui, ZHAO Yong, et al. Research on the evolution trend and variation characteristics of flooding in the main stream of the Wei River[J]. Hydro-Science and Engineering(in Chinese)). DOI: 10.12170/20231109002

渭河干流洪水演变趋势与变异特征研究

Research on the evolution trend and variation characteristics of flooding in the main stream of the Wei River

  • 摘要: 通过揭示渭河干流洪水演变趋势与变异特征,为流域防洪减灾和水资源管理提供参考。考虑日径流特征对洪水序列分析的影响,基于渭河干流6个典型水文站点1990—2020年逐日流量资料,采用块极值模型(Block Maxima Model,BMM)、超阈值峰量模型、Mann-Kendall检验和Pettitt突变检验分析洪水演变趋势与变异特征。结果表明:渭河干流洪水发生的时间和空间尺度上存在差异,时间尺度上,在1990—1993年、2003—2005年、2011—2013年及2018—2020年洪水出现频率较高,空间尺度上,渭河中下游地区发生洪水灾害频率较高。年最大洪峰流量总体上呈现增加趋势,超定量洪水发生次数呈减少趋势,洪水指标序列的变异点存在集聚性。研究结果可为流域防洪安全和水资源开发利用提供依据,助力流域高质量发展。

     

    Abstract: This study aims to reveal the evolution trend and variation characteristics of flooding in the main stream of the Wei River, providing references for flood control, disaster reduction, and water resources management in the basin. Considering the influence of daily runoff characteristics on flood series analysis, based on the daily flow data from six typical hydrological stations along the main stream of the Wei River from 1990 to 2020, the Block Maxima Model (BMM), the Peak Over Threshold (POT) model, Mann-Kendall test, and Pettitt test were used to analyze the evolution trend and variation characteristics of flooding. The results show that there are differences in the temporal and spatial scales of flooding occurrences in the main stream of the Wei River. In terms of temporal scale, higher flood frequencies were observed during 1990-1993, 2003-2005, 2011-2013, and 2018-2020. In terms of spatial scale, the middle and lower reaches of the Wei River are prone to frequent flooding. The annual maximum peak flow generally shows an increasing trend, while the occurrence frequency of extreme quantile floods shows a decreasing trend. The variation points of flood index sequences exhibit clustering characteristics. The findings of this study can provide a basis for flood control and water resources development, contributing to the high-quality development of the basin.

     

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