Results 61 to 70 of about 1,927 (195)
Abstract Stratospheric Aerosol Injection (SAI) is one of the alternative approaches to counteract anthropogenic warming by introducing reflective aerosols into the stratosphere. SAI‐induced surface cooling and altered hydrological cycle have been widely investigated.
Sung‐Bin Park +3 more
wiley +1 more source
Evaluation of water-energy balance frameworks to predict the sensitivity of streamflow to climate change [PDF]
Long term average change in streamflow is a major concern in hydrology and water resources management. Some simple analytical methods exist for the assessment of the sensitivity of streamflow to climatic variations.
M. Renner, R. Seppelt, C. Bernhofer
doaj +1 more source
The Kaidu River plays an important role in the water development and utilization in the Tarim River basin in northwestern China. In this study, we used a modified Budyko framework, which considered the snowmelt to analyze and attribute the runoff change ...
Guosen Shi, Bing Gao
doaj +1 more source
Abstract Climate change and human activities jointly affect runoff generation and non‐point source pollutant transport in river basins. Quantifying their relative roles is essential for explaining pollutant‐load changes and informing water resources management. Here, this study developed an integrated framework combining Budyko runoff attribution, Soil
Yuhan Shen +5 more
wiley +1 more source
Abstract Alumina is proposed for Stratospheric Aerosol Injection (SAI)‐based solar radiation modification due to its presumed ability to scatter sunlight strongly while absorbing weakly. Alumina is assigned negligible solar shortwave absorption in climate models; this assumption is not validated owing to technological challenges in quantifying its weak
Taveen Singh Kapoor +13 more
wiley +1 more source
Budyko's treatment of the long-term water balance of watersheds was based on the competition between water availability and energy supply. It assumes, in the long-term, that precipitation is the only source of water availability for evapotranspiration ...
Chen, Hang +3 more
core +1 more source
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 experienced Sahelian hydrological paradoxes (SHP). Budyko framework was employed to
Y. Patrick Gbohoui +6 more
doaj +1 more source
Abstract Runoff responds differently to rainfall events depending on antecedent wetness conditions and catchment properties. One major characteristic of the response is the runoff event timescale, herein defined as the ratio of event volume to peak runoff rate.
Adriane Hövel +4 more
wiley +1 more source
Calibrating a Hydrological Model in an Ungauged Mountain Basin with the Budyko Framework
Calibrating spatially distributed hydrological models in ungauged mountain basins is complicated due to the paucity of information and the uncertainty in representing the physical characteristics of a drainage area. In this study, an innovative method is
Jiefeng Wu, Xiaohong Chen, Zexing Yu
core +1 more source
Due to its role in intercepting and evaporating water, vegetation has a great influence on the catchment hydrological process, and an increased quantitative understanding of how vegetation changes affect the terrestrial water cycle is of considerable ...
Henian Wang, Xizhi Lv, Manyin Zhang
doaj +1 more source

