Distributed Watershed Model Compatible with Remote Sensing and GIS Data. II: Application to Chaudière Watershed
Author:
Affiliation:
1. Prof., INRS-Eau, C.P. 7500, Sainte-Foy, Québec, G1V 4C7, Canada.
2. Res. Asst., INRS-Eau, C.P. 7500, Sainte-Foy, Québec, Canada.
3. Res. Sci., INRA, U.R. Sci. de Sol, 2 Place Pierre Viala, 34060, Montpellier, Cedex 2, France.
Publisher
American Society of Civil Engineers (ASCE)
Subject
General Environmental Science,Water Science and Technology,Civil and Structural Engineering,Environmental Chemistry
Link
http://ascelibrary.org/doi/pdf/10.1061/%28ASCE%291084-0699%282001%296%3A2%28100%29
Reference5 articles.
1. Bernier M. Fortin J. P. Gauthier Y. Gauthier R. Bisson J. L. and Vincent P. ( 1999). “Estimation de l'équivalent en eau du couvert nival au moyen d'images radar satellitaires.” Revue des Sci. de l'Eau 12(2) (in French).
2. Dupont J. Villeneuve J. P. Fortin J. P. and Mailhot A. ( 1996). “GIBSI: an integrated modular tool for river quality management.” Int. Conf. on Application of Geographic Information Systems in Hydrol. and Water Resour. Mgmt. HydroGIS'96 98–105.
3. Fortin J. P. Bernier M. Lapointe S. Gauthier Y. De Sève D. and Beaudoin S. ( 1998). “Estimation of surface variables at the subpixel level for use as input to climate and hydrological models.” Rapport de recherche INRS-Eau No. R-483 Centre National d'Études Spatiales France.
4. Distributed Watershed Model Compatible with Remote Sensing and GIS Data. I: Description of Model
5. Rousseau A. N. et al. ( 1997). “GIBSI: a spatial decision support system for integrated watershed management.” Proc. Specialty Conf. Ser. Watershed Mgmt.: Moving from theory to Implementation Water Environment Federation Alexandria Va.
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