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Auteur Konstantia Tolika |
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Titre : Climate variability and change in the 21th Century Type de document : Monographie Auteurs : Stefanos Stefanidis, Éditeur scientifique ; Konstantia Tolika, Éditeur scientifique Editeur : Bâle [Suisse] : Multidisciplinary Digital Publishing Institute MDPI Année de publication : 2021 Importance : 384 p. Format : 15 x 22 cm ISBN/ISSN/EAN : 978-3-0365-0109-3 Note générale : bibliographie Langues : Français (fre) Descripteur : [Vedettes matières IGN] Applications de télédétection
[Termes IGN] bassin hydrographique
[Termes IGN] Caucase
[Termes IGN] chaleur
[Termes IGN] changement climatique
[Termes IGN] climatologie
[Termes IGN] Côte d'Ivoire
[Termes IGN] cultures irriguées
[Termes IGN] gestion de l'eau
[Termes IGN] Guinée
[Termes IGN] image NPP-VIIRS
[Termes IGN] image Sentinel-OLCI
[Termes IGN] image Terra-MODIS
[Termes IGN] incendie
[Termes IGN] modèle hydrographique
[Termes IGN] précipitation
[Termes IGN] ressources en eau
[Termes IGN] sécheresse
[Termes IGN] série temporelleRésumé : (auteur) Water resources management should be assessed under climate change conditions, as historic data cannot replicate future climatic conditions. - Climate change impacts on water resources are bound to affect all water uses, i.e., irrigated agriculture, domestic and industrial water supply, hydropower generation, and environmental flow (of streams and rivers) and water level (of lakes). - Bottom-up approaches, i.e., the forcing of hydrologic simulation models with climate change models’ outputs, are the most common engineering practices and considered as climate-resilient water management approaches. - Hydrologic simulations forced by climate change scenarios derived from regional climate models (RCMs) can provide accurate assessments of the future water regime at basin scales. - Irrigated agriculture requires special attention as it is the principal water consumer and alterations of both precipitation and temperature patterns will directly affect agriculture yields and incomes. - Integrated water resources management (IWRM) requires multidisciplinary and interdisciplinary approaches, with climate change to be an emerging cornerstone in the IWRM concept. Note de contenu : 1- Study on temporal variations of surface temperature and rainfall at Conakry Airport, Guinea: 1960–2016
2- Ushering in the new era of radiometric intercomparison of multispectral sensors with precision SNO analysis
3- The 10-year return levels of maximum wind speeds under frozen and unfrozen soil forest conditions in Finland
4- Characterization of meteorological droughts occurrences in Côte d’Ivoire: Case of the Sassandra watershed
5- Constraints to vegetation growth reduced by region-specific changes in seasonal climate
6- Influence of bias correction methods on simulated Köppen−Geiger climate zones in Europe
7- Analysis of climate change in the Caucasus region: End of the 20th–beginning of the 21st century
8- Assessing heat waves over Greece using the Excess Heat Factor (EHF)
9- Statistical analysis of recent and future rainfall and temperature variability in the Mono River watershed (Benin, Togo)
10- Multi-model forecasts of very-large fire occurences during the end of the 21st Century
11- Objective definition of climatologically homogeneous areas in the Southern Balkans based on the ERA5 data set
12- Time series analysis of MODIS-derived NDVI for the Hluhluwe-Imfolozi Park, South Africa: Impact of recent intense drought
13- Selecting and downscaling a set of climate models for projecting climatic change for impact assessment in the upper indus basin (UIB)
14- Estimating the impact of artificially injected stratospheric aerosols on the global mean surface temperature in the 21th Century
15- A proposal to evaluate drought characteristics using multiple climate models for multiple timescales
16- Spatial and temporal rainfall variability over the mountainous central Pindus (Greece)
17- Intercomparison of univariate and joint bias correction methods in changing climate from a hydrological perspective
18- Projected changes in precipitation, temperature, and drought across California’s hydrologic regions in the 21st CenturyNuméro de notice : 28454 Affiliation des auteurs : non IGN Thématique : FORET/IMAGERIE Nature : Recueil / ouvrage collectif DOI : 10.3390/books978-3-0365-0109-3 En ligne : https://doi.org/10.3390/books978-3-0365-0109-3 Format de la ressource électronique : URL Permalink : https://documentation.ensg.eu/index.php?lvl=notice_display&id=99023