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GIBSI — An integrated modelling system prototype for river basin management

  • Conference paper
Assessing the Ecological Integrity of Running Waters

Part of the book series: Developments in Hydrobiology ((DIHY,volume 149))

Abstract

This paper introduces GIBSI, an integrated modelling system prototype designed to assist decision makers in their assessment of various river basin management scenarios in terms of standard water physical and chemical parameters and standards for various uses of the water. GIBSI runs on a personal computer and provides a user-friendly framework to examine the impacts of agricultural, industrial, and municipal management scenarios on water quality and yield. A database (including spatial and attribute data) and physically-based hydrological, soil erosion, agricultural-chemical transport and water quality models comprise the basic components of the system. A geographical information system and a relational database management system are also included for data management and system maintenance. This paper illustrates potential uses of GIBSI by presenting two sample applications applied to a 6680 km2 complex river basin (63.2% forest, 17.2% agricultural land, 15.3% bush, 3.1% urban development and 1.2% surface water; population: 180000) located in Quebec, Canada: (i) a timber harvest scenario and (ii) a municipal clean water program scenario. Simulation results of the timber harvest scenario showed how clear-cut activities could lead to earlier and larger spring runoff than in the investigated reference state. Results of the municipal clean water scenario revealed that substantial reduction in coliform counts and total phosphorus could be made by constructing and operating wastewater treatment plants. These applications provide a framework of how GIBSI can be used as a decision support system and ultimately as a means of incorporating sound science into political decisions involving river basin management.

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References

  • Arnold, J. G. & J. R. Williams, 1995. The EPIC model. In Singh, V. P. (ed.), Computer Models of Watershed Hydrology. Water Resources Publications, Highlands Ranch (CO): 847-908.

    Google Scholar 

  • Brown, L. C. & T. O. Barnwell Jr., 1987. The Enhanced Stream Water Quality Models QUAL2 and QUAL2E-UNCAS: Documentation and User Manual. Athens, Georgia, U. S., Environmental Protection Agency, 189 pp.

    Google Scholar 

  • Fortin, J.-P, R. Moussa, C. Bocquillon & J.-P. Villeneuve, 1995. HYDROTEL, un Modèle Hydrologique Distribué Pouvant Bénéficier des Données Fournies par la Télédétection et les Systèmes d’Information Géographique. Revue des Sciences de l’Eau, 8: 97–124.

    Google Scholar 

  • Gouvernement du Québec, 1997. Symposium sur la Gestion de l’Eau au Québec, Document de Référence. Bibliothèque nationale du Québec, 59 pp.

    Google Scholar 

  • Jamieson, D. G. & K. Fedra, 1996. The WaterWare decision-support system for river-basin planning. 1. Conceptual design. J. Hydrol., 177: 163–175.

    Article  Google Scholar 

  • L. A. S., 1996. Grassland User’s guide for Windows95 and Windows NT, Version 1.0. Logiciels et Applications Scientifiques (L. A. S.) Inc., Montréal.

    Google Scholar 

  • Ministère de l’Environnement du Québec, 1993. Critères de Qualité de l’Eau, 1990 (revised 1992). Service d’évaluation des rejets toxiques et Direction de la qualité des cours d’eau, ministère de l’Environnement du Québec, Québec, 425 pp.

    Google Scholar 

  • O’Callaghan, J. R., 1995. NELUP: an introduction. J. Environ. Planning Manage. 38(1): 5–20.

    Article  Google Scholar 

  • Simoneau, M., L. Pelletier & N. Martel, 1998. Le bassin de la rivière Chaudière: profil géographique, sources de pollution et interventions d’assainisssement. In Ministère de l’Environnement et de la Faune (ed.), Le Bassin de la Rivière Chaudière: l’État de l’Écosystème Aquatique — 1996, Direction des Écosystèmes Aquatiques, Québec, envirodoq noEN980022.

    Google Scholar 

  • Simpson, A., 1994. Microsoft Access 2. Sybex Inc., San Francisco.

    Google Scholar 

  • Smitz, J., E. Everbecq, J. F. Deliège, J. P. Descy, R. Wollast & J. P. Vanderborght, 1997. PÉGASE, une méthodologie et un outil de simulation prévisionnelle pour la gestion de la qualité des eaux de surface. Tribune de l’eau, No. 588 (4): 73.

    Google Scholar 

  • Turcotte, R., A. N. Rousseau, A. Mailhot, J.-P. Villeneuve & J. Dupont (1999). GIBSI: an integrated modelling system for sustainable watershed management. In Proceedings of the Environmental Permitting Symposium, Air & Waste Management Association (AWMA) Symposium & Courses, Research Triangle Park, NC, February 17-19, 1999. AWMA, One Gateway Center, Third Floor, Pittsburgh. PA 15222.

    Google Scholar 

  • U. S. Army Corps of Engineers — CERL, 1988. GRASS Reference Manual. Champaign, III.: U. S. Army Corps of Engineers — CERL.

    Google Scholar 

  • US EPA, 1997. Basins Fact Sheet. United States Environmental Protection Agency, Office of Water (4505), Washington, DC 20460, EPA-823-F-97-0/0, October 1997.

    Google Scholar 

  • Villeneuve, J.-P., C. Blanchette, M. Duchemin, J.-F. Gagnon, A. Mailhot, A. N. Rousseau, M. Roux, J.-F. Tremblay & R. Turcotte, 1998. Rapport Final du Projet GIBSI, Mars 1998. Rapport No. R-462. INRS-Eau, Sainte-Foy, Québec, 371 pp.

    Google Scholar 

  • Williams, J. R., 1995. The EPIC model. In Singh, V. P. (ed.), Computer Models of Watershed Hydrology. Water Resources Publications, Highlands Ranch (CO): 909-1000.

    Google Scholar 

  • Wischmeier, W. H. & D. D. Smith, 1978. Predicting Rainfall Erosion Losses — A Guide to Conservation Planning. Agricultural Handbook No. 537, U. S. Department of Agriculture, Washington, D.C. 58 pp.

    Google Scholar 

  • Yalin, Y. S., 1963. An Expression for Bed-Load Transportation. J. Hydraulic Division. ASCE, 89(HY3): 221–250.

    Google Scholar 

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M. Jungwirth S. Muhar S. Schmutz

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© 2000 Springer Science+Business Media Dordrecht

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Rousseau, A.N. et al. (2000). GIBSI — An integrated modelling system prototype for river basin management. In: Jungwirth, M., Muhar, S., Schmutz, S. (eds) Assessing the Ecological Integrity of Running Waters. Developments in Hydrobiology, vol 149. Springer, Dordrecht. https://doi.org/10.1007/978-94-011-4164-2_36

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  • DOI: https://doi.org/10.1007/978-94-011-4164-2_36

  • Publisher Name: Springer, Dordrecht

  • Print ISBN: 978-94-010-5814-8

  • Online ISBN: 978-94-011-4164-2

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