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基于CMIP6的气候变化对南水北调西线工程水源区径流的影响

樊迪 曾思栋 刘欣 阳林翰 夏军

长江科学院院报2024,Vol.41Issue(3):194-202,9.
长江科学院院报2024,Vol.41Issue(3):194-202,9.DOI:10.11988/ckyyb.20230637

基于CMIP6的气候变化对南水北调西线工程水源区径流的影响

Impacts of Climate Change on Hydrological Processes in Water Source Areas of the Planning Western Route of South-to-North Water Diversion Project Based on CMIP6

樊迪 1曾思栋 1刘欣 1阳林翰 1夏军2

作者信息

  • 1. 中国科学院重庆绿色智能技术研究院,重庆 400714||中国科学院大学重庆学院,重庆 400714
  • 2. 中国科学院重庆绿色智能技术研究院,重庆 400714||中国科学院大学重庆学院,重庆 400714||武汉大学水资源与水电工程科学国家重点实验室,武汉 430072
  • 折叠

摘要

Abstract

Studying the impact of future climate change on hydrological processes in the water source areas holds immense significance for the water transfer planning,development,and utilization of the Western Route of the South-to-North Water Diversion Project.We employ predictions from 12 General Circulation Models(GCMs)under four combination scenarios of Shared Socioeconomic Pathways-Representative Concentration Pathways(SSPs-RCPs)to drive the DTVGM model in the purpose of examining how climate change influences streamflow in the three major water source areas of the Western Route Project throughout the 21st century.The findings reveal in-creasing trends in the annual average temperature,precipitation,and streamflow of the Yalong River basin,Jinsha River basin,and Dadu River basin from 2021 to 2100 under SSP1-2.6,SSP2-4.5,SSP3-7.0,and SSP5-8.5 sce-narios when compared to the base period.Moreover,such increment rises as radiative forcing intensifies,and the changes relative to the base period progressively amplify over time.Specifically,the Jinsha River exhibits greater in-terannual and decadal variability in streamflow,manifesting a more conspicuous response to climate change com-pared to the Yalong River and Dadu River.Predictions indicate an upward trend in monthly average streamflow in future,although variations across months are noticeable.In comparison to the base period,variations in streamflow in dry periods are minimal,while increases in wet periods are more substantial.Through correlation analysis of stre-amflow with temperature,and precipitation,we found that streamflow is more sensitive to precipitation,with an evi-dent impact of precipitation on streamflow.The impact of temperature on streamflow intensifies with the rise of radi-ative force.The findings offer valuable insights for adapting to climate change and integrated water resource manage-ment in the water source areas of the Western Route Project of the South-to-North Water Diversion Project.

关键词

气候变化/径流变化/DTVGM模型/CMIP6/南水北调西线工程水源区

Key words

climate change/streamflow change/DTVGM model/CMIP6/water source areas of the Western Route Project

分类

建筑与水利

引用本文复制引用

樊迪,曾思栋,刘欣,阳林翰,夏军..基于CMIP6的气候变化对南水北调西线工程水源区径流的影响[J].长江科学院院报,2024,41(3):194-202,9.

基金项目

美丽中国生态文明建设科技工程专项(XDA23040500) (XDA23040500)

重庆市博士直通车科研项目(sl202100000783) (sl202100000783)

中国科学院青年创新促进会资助项目(2021385) (2021385)

长江科学院院报

OA北大核心CSTPCD

1001-5485

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