Historical and future runoff changes in the Yangtze River Basin from CMIP6 models constrained by a weighting strategy

J Zhao, S He, H Wang - Environmental Research Letters, 2022 - iopscience.iop.org
Based on the ERA5-Land datasets from 1981–2020, a decadal oscillation has been found in
the variation of summer runoff in the middle and lower reaches of the Yangtze River Basin …

[HTML][HTML] Projecting hydrological responses to climate change using CMIP6 climate scenarios for the Upper Huai River Basin, China

G Bian, J Zhang, J Chen, M Song, R He… - Frontiers in …, 2021 - frontiersin.org
The influence of climate change on the regional hydrological cycle has been an
international scientific issue that has attracted more attention in recent decades due to its …

[HTML][HTML] Projection of Streamflow Changes Under CMIP6 Scenarios in the Urumqi River Head Watershed, Tianshan Mountain, China

M Yang, Z Li, MN Anjum, R Kayastha… - Frontiers in Earth …, 2022 - frontiersin.org
Analyzing climate change impacts on hydrology and future water supply projections is
essential for effective water resource management and planning in the large river basins of …

Climate change impacts on runoff in the Fujiang River Basin based on CMIP6 and SWAT Model

Y Wang, HM Xu, YH Li, LL Liu, ZH Hu, C Xiao, TT Yang - Water, 2022 - mdpi.com
Understanding the responses of the hydrological cycle and extreme events to climate
change is essential for basin water security. This study systematically assessed climate …

Wetter trend in source region of Yangtze River by runoff simulating based on Grid-RCCC-WBM

Z Ning, N Wu, J Zhang, Y Ruan, Z Tang, J Sun, J Shi… - Journal of …, 2024 - Elsevier
Exploring the future hydroclimatic conditions of source region of Yangtze River (SRYaR), an
alpine affected by climate change significantly, is essential for basin water resources …

Quantifying the impact of future climate change on runoff in the Amur river basin using a distributed hydrological model and CMIP6 GCM projections

K Wen, B Gao, M Li - Atmosphere, 2021 - mdpi.com
The Amur River is one of the top ten longest rivers in the world, and its hydrological
response to future climate change has been rarely investigated. In this study, the outputs of …

Future changes in high and low flows under the impacts of climate and land use changes in the Jiulong River Basin of southeast China

S Yang, D Yang, B Zhao, T Ma, W Lu… - Atmosphere, 2022 - mdpi.com
Climate change and human activities have profoundly affected the world with extreme
precipitation, heat waves, water scarcity, frequent floods and intense droughts. It is …

Past variations and future projection of runoff in typical basins in 10 water zones, China

X Guan, J Zhang, Z Bao, C Liu, J Jin, G Wang - Science of The Total …, 2021 - Elsevier
Understanding the historical and future changing characteristics of key climatic variables
and runoff in 10 major river zones in China is essential for water resources evaluation and …

Future changes in precipitation over the upper Yangtze River basin based on bias correction spatial downscaling of models from CMIP6

H Wu, H Lei, W Lu, Z Liu - Environmental Research …, 2022 - iopscience.iop.org
Global climate change will change the temporal and spatial distribution of precipitation, as
well as the intensity and frequency of extreme precipitation. The Yangtze River basin is one …

Projection of China's future runoff based on the CMIP6 mid-high warming scenarios

J Zhou, H Lu, K Yang, R Jiang, Y Yang, W Wang… - Science China Earth …, 2023 - Springer
Abstract The latest Coupled Model Intercomparison Project Phase 6 (CMIP6) proposes new
shared pathways (SSPs) that incorporate socioeconomic development with more …