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Hydrological Modelling and the Water Cycle Coupling the Atmospheric and Hydrological Models /

This collected work reports on the state of the art of hydrological model simulation, as well as the methods for satellite-based rainfall estimation. Mainly addressed to scientists and researchers, the contributions have the structure of a standard paper appearing in most cited hydrological, atmosph...

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Détails bibliographiques
Cote:Libro Electrónico
Collectivité auteur: SpringerLink (Online service)
Autres auteurs: Sorooshian, Soroosh (Éditeur intellectuel), Hsu, Kuo-lin (Éditeur intellectuel), Coppola, Erika (Éditeur intellectuel), Tomassetti, Barbara (Éditeur intellectuel), Verdecchia, Marco (Éditeur intellectuel), Visconti, Guido (Éditeur intellectuel)
Format: Électronique eBook
Langue:Inglés
Publié: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2008.
Édition:1st ed. 2008.
Collection:Water Science and Technology Library, 63
Sujets:
Accès en ligne:Texto Completo
Table des matières:
  • General Review of Rainfall-Runoff Modeling: Model Calibration, Data Assimilation, and Uncertainty Analysis
  • General Review of Rainfall-Runoff Modeling: Model Calibration, Data Assimilation, and Uncertainty Analysis
  • Measurement of Hydrologic Variables
  • Satellite-Based Precipitation Measurement Using PERSIANN System
  • Satellite Clouds and Precipitation Observations for Meteorology and Climate
  • Advanced Techniques for Polarimetric Radar Estimation of Rainfall
  • Measurements of Hydrological Variables from Satellite: Application to Mediterranean Regions
  • Data Merging and Dowscaling
  • Geostatistical Tools for Validation of Satellite and NWP Model Rainfall Estimates
  • An Ensemble Approach to Uncertainty Estimation for Satellite-Based Rainfall Estimates
  • Hydrologic Modelling: Short and Long-Time Scale
  • Cetemps Hydrological Model (CHyM), a Distributed Grid-Based Model Assimilating Different Rainfall Data Sources
  • Rainfall Thresholds for Flood Warning Systems: A Bayesian Decision Approach
  • Watershed Hydrological Modeling: Toward Physically Meaningful Processes Representation
  • Simulating Climate Impacts on Water Resources: Experience from the Okavango River, Southern Africa.