Understanding interactions among climate, water, and vegetation with the Budyko framework

G Gan, Y Liu, G Sun - Earth-Science Reviews, 2021 - Elsevier
The Budyko models provide a transparent framework for analyzing climate-catchment
interactions and therefore have been widely used to quantify the role of vegetation …

Hydrology: The interdisciplinary science of water

RM Vogel, U Lall, X Cai, B Rajagopalan… - Water Resources …, 2015 - Wiley Online Library
We live in a world where biophysical and social processes are tightly coupled. Hydrologic
systems change in response to a variety of natural and human forces such as climate …

[HTML][HTML] Understanding the Budyko equation

G Sposito - Water, 2017 - mdpi.com
The Budyko equation has achieved iconic status in hydrology for its concise and accurate
representation of the relationship between annual evapotranspiration and long-term …

[HTML][HTML] Monitoring spatio-temporal variations of terrestrial water storage changes and their potential influencing factors in a humid subtropical climate region of …

H Deng, Y Li, Y Zhang, X Chen - Journal of Hydrology, 2024 - Elsevier
Identifying the changes in terrestrial water storage is essential for a comprehensive
understanding of the regional hydrological mass balance under global climate change. This …

Climatic and terrestrial storage control on evapotranspiration temporal variability: Analysis of river basins around the world

R Zeng, X Cai - Geophysical Research Letters, 2016 - Wiley Online Library
Abstract Knowledge of the temporal variability of evapotranspiration (ET) is fundamental to a
comprehensive understanding of hydroclimatologic processes under a changing climate …

Climate and vegetation seasonality play comparable roles in water partitioning within the Budyko framework

M Liu, K Lin, X Cai - Journal of Hydrology, 2022 - Elsevier
Climate and vegetation changes are main factors influencing water partitioning. However,
their impacts on water partitioning are still not well understood. To revisit the interactions …

Contribution of changes in vegetation composition and climate variability on streamflow across the global watersheds

X Tan, X Tan, B Liu, Z Huang - Catena, 2023 - Elsevier
Vegetation and climate play critical roles in the hydrological cycle as vital components of the
earth system. Understanding the impacts of changes in vegetation composition and climate …

Investigation of factors affecting intra-annual variability of evapotranspiration and streamflow under different climate conditions

D Zhang, X Liu, Q Zhang, K Liang, C Liu - Journal of Hydrology, 2016 - Elsevier
Investigating the factors that affect intra-annual evapotranspiration (ET) and streamflow
variability is important to regional hydrological cycles and energy balance research. In this …

A global quantitation of factors affecting evapotranspiration variability

S Feng, J Liu, Q Zhang, Y Zhang, VP Singh, X Gu… - Journal of …, 2020 - Elsevier
Scientific viewpoints on the long-term hydrological responses to factors other than climatic
change remain controversial and yet the impacts of these factors are often neglected at the …

Seasonal divergence in the sensitivity of evapotranspiration to climate and vegetation growth in the Yellow River Basin, China

T Pei, X Wu, X Li, Y Zhang, F Shi, Y Ma… - Journal of …, 2017 - Wiley Online Library
Seasonal variations in terrestrial evapotranspiration (ET) in the Yellow River Basin (YRB)
have crucial impacts on the seasonal trajectories of the regional water cycle, vegetation …