Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Improving Complementary Methods To Predict Evapotranspiration For Data Deficit Conditions and Global Applications Under Climate Change

Domaine:

climateenvironment and energygeospatial

Type de record:

paper
Créateur:
Ana
Éditeur:
Uta
Hôte:avatar
A reliable estimate of evapotranspiration (ET) in river basins is important for the purpose of water resources planning and management. ET represents a significant portion of rainfall in the water budget; therefore, the uncertainty in estimating ET can lead to the inaccurate prediction of water resources. While remote sensing techniques are available to estimate ET, such methods are expensive and necessary data may not be readily available. Classical methods of estimating ET require detailed land use/cover information that are not readily available in rural river basins. Complementary methods provide simple and reliable approaches to estimate ET using meteorological data only. However, these methods have not been investigated in detail to assess the overall applicability and the needs for revisions if any. In this work, an improved approach to use the complementary methods using readily available meteorological data is presented. The methodology is validated using 34 global FLUXNET sites with heterogeneous land use/cover, climatic, and physical conditions. The method was compared with classical methods using Ghana as a study area where original pioneering studies of ET have been performed. The work was extended to develop global maps of ET and water surplus (precipitation - ET) for the 20th century followed by climate change-induced 21st century estimates for 2040-2069 and 2070-2099 periods. The emission scenario used was the moderate A1B with the global climate models CGCM3.1 and HADGEM1. The results were assessed at different scales from global to regional such as for potential outcomes of climate change on ET and water surplus.

Visit

doi.orgdigitalcommons.usu.edu

Similaires

Agroclimatic Indicator Analysis Under Climate Change Conditions to Predict the Climatic Suitability for Wheat Production in the Upper Blue Nile Basin, EthiopiaClimate projections for southern Africa using complementary methodsGlobal determinants of coastal migration under climate changeGeostatistical methods and applications in global healthCalibration data for: Modelling climate change impacts on maize yields under low nitrogen input conditions in sub-Saharan AfricaTransferability of hydrologic model parameters for the validation of simulated evapotranspiration variable under data-scarce conditions in Nigeria

Agroclimatic Indicator Analysis Under Climate Change Conditions to Predict the Climatic Suitability for Wheat Production in the Upper Blue Nile Basin, Ethiopia

Agricultural productivity is significantly influenced by climate-related factors. Understanding the

Climate projections for southern Africa using complementary methods

Purpose The Orange River is one of the largest river basins in southern Africa. Since it plays a cr

Global determinants of coastal migration under climate change

International audience Climate change-induced sea-level rise and associated flood ris

Geostatistical methods and applications in global health

Sub-saharan Africa shares a high portion of the global disease burden and has attracted the attentio

Calibration data for: Modelling climate change impacts on maize yields under low nitrogen input conditions in sub-Saharan Africa

The dataset contains experimental data on maize growth for crop model calibration, at five sites in

Transferability of hydrologic model parameters for the validation of simulated evapotranspiration variable under data-scarce conditions in Nigeria

The objective of this study is to validate actual evapotranspiration