Results 51 to 60 of about 1,530,414 (189)
Budyko framework: towards non-steady state conditions
The Budyko framework was firstly developed to estimate actual evaporation as a function of precipitation and the aridity index at steady state conditions.
Pourreza-Bilondi, Mohsen (author) +3 more
core +1 more source
The parsimony of the Budyko water balance model has prompted its extensive use for analyzing climate–vegetation–water interactions. Existence of time–space symmetry in the Budyko model, governing the hydrological predictions across both temporal (short ...
Qingqing Fang +8 more
doaj +1 more source
Changing Water Resources in the Indus Basin: A Multi‐Model Budyko‐Based Analysis
Budyko‐based analysis evaluates historical (1962–2005) and future hydroclimatic change across the Indus River Basin. Budyko shifts indicate rising atmospheric evaporative demand and increasing energy limitation under future scenarios. ABSTRACT Assessing hydroclimatic variability and future water availability is crucial for sustainable water‐resource ...
Muhammad Arif +3 more
wiley +1 more source
Systematic shifts in Budyko relationships caused by groundwater storage changes [PDF]
. Traditional Budyko analysis is predicated on the assumption that the watershed of interest is in dynamic equilibrium over the period of study, and thus surface water partitioning will not be influenced by changes in storage.
Laura E. Condon, Reed M. Maxwell
core +3 more sources
At present, climate change and human activities (CCHU) affect runoff to varying degrees, and the extent of this impact varies across regions and evaluation methods.
Zhifeng Jia +7 more
doaj +1 more source
The Tumen River Basin (TRB), a critical China border region, has experienced a complex evolution of runoff due to climate change and human activities. This study aims to quantify the main drivers of runoff variations in the TRB based on the Budyko framework to assess the relative contributions of climate change and human activities to runoff ...
Dongqing Huo +6 more
openaire +2 more sources
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
Climate changes and underlying surface of the watershed have affected the evolution of streamflow to a different degree. It is of great significance to quantitatively evaluate main drivers of streamflow change for development, utilization, and planning ...
Xizhi Lv +5 more
doaj +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
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

