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河南省主要河川径流变化归因

竹磊磊 王纪军 吴璐 杨婷 苏晓乐 李芳

南水北调与水利科技(中英文)2024,Vol.22Issue(2):228-236,9.
南水北调与水利科技(中英文)2024,Vol.22Issue(2):228-236,9.DOI:10.13476/j.cnki.nsbdqk.2024.0024

河南省主要河川径流变化归因

Attribution of runoff variation of main river basins in Henan Province

竹磊磊 1王纪军 1吴璐 1杨婷 1苏晓乐 1李芳1

作者信息

  • 1. 中国气象局河南省农业气象保障与应用技术重点开放实验室,郑州 450003||河南省气候中心,郑州 450003
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摘要

Abstract

With the rapid development of the social economy in Henan Province,runoff reduction is more serious.Attribution analysis of runoff variation can provide a scientific basis for water resources management.Henan Province spans the Yangtze River,the Yellow River,the Huaihe River,and the Haihe River,the water system is complex.The climate is diverse,and the economic development is unbalanced among different places,so the impact of climate change and human activities on runoff variation is different.In the past,some studies on the attribution analysis of runoff variation were carried out in Henan Province,but the conclusions are not consistent.To get a relatively comprehensive and objective attribution rate,it is necessary to carry out the attribution analysis of runoff variation in representative basins in Henan Province based on accurate meteorological and hydrological data. The Weihe River basin,Yiluohe River basin,Hongruhe River basin,and Tanghe River basin in Henan Province were selected as study basins,which are sub-basins of the Haihe River basin,the Yellow River basin,the Huaihe River basin,and the Yangtze River basin,respectively,and their control hydrologic stations are Yuancun station,Heishiguan station,Bantai station,and Guotan station.Based on annual runoff and precipitation data of the four study basins from 1961 to 2022,and annual potential evapotranspiration by the Penman-Monteith method from National Climate Center,the Mann-Kendall mutation test and double cumulative curves method were used to analyze the mutation years of annual runoff depth series of control hydrologic stations,and the change trends of annual runoff depth of control stations,annual precipitation and annual potential evapotranspiration of the study basins were also analyzed.Annual potential evapotranspiration was compared with observed annual evaporation.The elastic coefficient method based on the Budyko hypothesis was applied to assess the attribution rate of climate change and human activities to runoff variation. The results showed that:(1)The annual runoff depth of the four hydrologic stations showed a decreasing trend.The annual precipitation of the four study basins showed an insignificant decreasing trend.The potential evapotranspiration also indicated a decreasing trend and the decreasing trend was significant in the Weihe River basin,Hongruhe River basin,and Tanghe River basin,but not significant in the Yiluohe River basin.The changing trend of annual potential evapotranspiration and observed annual evaporation at the four weather stations was consistent.(2)The mutation of annual runoff of Yuancun station,Heishiguan station,Bantai sation,and Guotan station occurred in 1977,1985,2008,and 2010,respectively.(3)The contribution rates of climate change to runoff reduction were less than 7%in the Weihe River and Yiluohe River basins,and about 12%-18%in the Hongruhe River and Tanghe River basins.The contribution rates of human activities were about 93%-97%in the Weihe River and Yiluohe River basins,and about 82%-88%in the Weihe River and Tanghe River basins.The climate change showed low contribution rates because of the insignificant decrease in precipitation and the decrease in potential evapotranspiration.Therefore,it can be seen that human activities were the main influencing factor of runoff reduction in the four study river basins.

关键词

弹性系数法/气候变化/人类活动/径流变化/卫河/伊洛河/洪汝河/唐河

Key words

elastic coefficient method/climate change/human activity/runoff variation/Weihe River/Yiluohe River/Hongruhe River/Tanghe River

分类

天文与地球科学

引用本文复制引用

竹磊磊,王纪军,吴璐,杨婷,苏晓乐,李芳..河南省主要河川径流变化归因[J].南水北调与水利科技(中英文),2024,22(2):228-236,9.

基金项目

中国气象局气候变化专项项目(CCSF201911) (CCSF201911)

中国气象局·河南省农业气象保障与应用技术重点开放研究室开放研究基金项目(AMF201509) (AMF201509)

南水北调与水利科技(中英文)

OA北大核心CSTPCD

2096-8086

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