Projected increase in global runoff dominated by land surface changes

S Zhou, B Yu, BR Lintner, KL Findell, Y Zhang - Nature Climate Change, 2023 - nature.com
Increases in atmospheric CO2 concentration affect continental runoff through radiative and
physiological forcing. However, how climate and land surface changes, and their …

The cooling effect of oasis reservoir‐riparian forest systems in arid regions

Y Jiao, G Zhu, S Lu, L Ye, D Qiu, G Meng… - Water Resources …, 2024 - Wiley Online Library
In arid regions with limited water resources, numerous reservoirs have been built to support
economic and social development. However, how the construction of reservoirs interacts …

A novel approach for predicting water demand with complex patterns based on ensemble learning

Z Xu, Z Lv, J Li, A Shi - Water Resources Management, 2022 - Springer
Predicting urban water demand is important in rationalizing water allocation and building
smart cities. Influenced by multifarious factors, water demand is with high-frequency noise …

Improved understanding of how catchment properties control hydrological partitioning through machine learning

S Cheng, L Cheng, S Qin, L Zhang… - Water Resources …, 2022 - Wiley Online Library
Long‐term hydrological partitioning of catchments can be well described by the Budyko
framework with a parameter (eg, Fu's equations with parameter ω). The Budyko framework …

[HTML][HTML] Attribution analysis of runoff change based on Budyko-type model with time-varying parameters for the Lhasa River Basin, Qinghai–Tibet Plateau

X Sun, Q Dong, X Zhang - Journal of Hydrology: Regional Studies, 2023 - Elsevier
Abstract Study region The Lhasa River Basin (LRB), Qinghai–Tibet Plateau (QTP), China
Study focus This study investigates the application of three Budyko-type models with time …

Decomposing the impacts of climate change and human activities on runoff changes in the Yangtze River Basin: Insights from regional differences and spatial …

T Chen, L Zou, J **a, H Liu, F Wang - Journal of Hydrology, 2022 - Elsevier
On large scales, runoff changes are complex due to the regional differences in basin
characteristics and interactions among multiple influencing factors. Accurately and …

Partitioned soil water balance and its link with water uptake strategy under apple trees in the Loess‐covered region

P Shi, H Gai, Z Li - Water Resources Research, 2023 - Wiley Online Library
It is important, but challenging, to partition soil water balance (SWB) to understand the
impacts of afforestation on soil hydrological processes. This study will investigate the …

[HTML][HTML] Impacts of climate and environmental changes on water resources: A multi-scale study based on Nakanbé nested watersheds in West African Sahel

YP Gbohoui, JE Paturel, F Tazen, LA Mounirou… - Journal of Hydrology …, 2021 - Elsevier
Abstract Study region Nakanbé River watershed in the West Africa Sahel (WAS). Study focus
This study aims to better understand the hydrological behavior of WAS watersheds, which …

Attribution of runoff changes in the main tributaries of the middle Yellow River, China, based on the Budyko model with a time-varying parameter

H Li, C Shi, P Sun, Y Zhang, AL Collins - Catena, 2021 - Elsevier
Discerning the controlling factors of spatial and temporal changes in runoff is critical for
water resources management. This study investigated runoff changes and related them to …

Using the Budyko hypothesis for detecting and attributing changes in runoff to climate and vegetation change in the soft sandstone area of the middle Yellow River …

H Li, C Shi, Y Zhang, T Ning, P Sun, X Liu, X Ma… - Science of the Total …, 2020 - Elsevier
Understanding catchment hydrological response to intensive land use/cover change
(LUCC) and climate change provides a basis for taking effective measures for the future …