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Irrigation, damming, and streamflow fluctuations of the Yellow River

  • Zun Yin
  • , Catherine Ottlé
  • , Philippe Ciais
  • , Feng Zhou
  • , Xuhui Wang
  • , Polcher Jan
  • , Patrice Dumas
  • , Shushi Peng
  • , Laurent Li
  • , Xudong Zhou
  • , Yan Bo
  • , Yi Xi
  • , Shilong Piao
  • Université Versailles-Saint Quentin
  • Sorbonne Université
  • Princeton University
  • Tsinghua University
  • Campus International de Baillarguet
  • Institute of Industrial Science
  • Hohai University

Research output: Contribution to journalArticlepeer-review

36 Citations (Scopus)

Abstract

The streamflow of the Yellow River (YR) is strongly affected by human activities like irrigation and dam operation. Many attribution studies have focused on the long-term trends of streamflows, yet the contributions of these anthropogenic factors to streamflow fluctuations have not been well quantified with fully mechanistic models. This study aims to (1) demonstrate whether the mechanistic global land surface model ORCHIDEE (ORganizing Carbon and Hydrology in Dynamic EcosystEms) is able to simulate the streamflows of this complex rivers with human activities using a generic parameterization for human activities and (2) preliminarily quantify the roles of irrigation and dam operation in monthly streamflow fluctuations of the YR from 1982 to 2014 with a newly developed irrigation module and an offline dam operation model. Validations with observed streamflows near the outlet of the YR demonstrated that model performances improved notably with incrementally considering irrigation (mean square error (MSE) decreased by 56.9 %) and dam operation (MSE decreased by another 30.5 %). Irrigation withdrawals were found to substantially reduce the river streamflows by approximately 242:827:8108 m3 yr1 in line with independent census data (231:431:6108 m3 yr1). Dam operation does not change the mean streamflows in our model, but it impacts streamflow seasonality, more than the seasonal change of precipitation. By only considering generic operation schemes, our dam model is able to reproduce the water storage changes of the two large reservoirs, LongYangXia and LiuJiaXia (correlation coefficient of 0.9). Moreover, other commonly neglected factors, such as the large operation contribution from multiple medium/small reservoirs, the dominance of large irrigation districts for streamflows (e.g., the Hetao Plateau), and special management policies during extreme years, are highlighted in this study. Related processes should be integrated into models to better project future YR water resources under climate change and optimize adaption strategies.

Original languageEnglish
Pages (from-to)1133-1150
Number of pages18
JournalHydrology and Earth System Sciences
Volume25
Issue number3
DOIs
Publication statusPublished - 5 Mar 2021

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action
  2. SDG 15 - Life on Land
    SDG 15 Life on Land

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