Distributed Watershed Model Compatible with Remote Sensing and GIS Data. I: Description of Model
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. du 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%2891%29
Reference61 articles.
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2. Abbott M. B. Bathurst J. C. Cunge J. A. O'Connell P. E. and Rasmussen J. ( 1986b). . “An introduction to the European Hydrological System—Système Hydrologique Européen `SHE ' 2: Structure of a physically-based distributed modelling system.” J. Hydro. Amsterdam 87(1) 61–77.
3. 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).
4. Beven K. J. ( 1989). “Interflow.” Unsaturated flow in hydrologic modeling: Theory and practice. NATO ASI series series C: Mathematical and physical sciences H. J. Morel-Seytoux ed. 275 Kluwer Academic Boston 191–219.
5. Beven K. J. and Kirkby M. J. ( 1979). “A physically-based variable contributing area model of basin hydrology.” Hydro. Sci. Bull. 24(1) 43–69.
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