Modelling the effect of the spatial distribution of agricultural practices on nitrogen fluxes in rural catchments

Ecological Modelling - Tập 137 - Trang 93-105 - 2001
Véronique Beaujouan1, Patrick Durand2, Laurent Ruiz2
1Laboratoire de spatialisation Numérique, ENSAR, Rennes, 65 rue de St Brieuc, 35042 Rennes Cedex, France
2Unité Sol et Agronomie Rennes Quimper, INRA, Rennes, 65 rue de St Brieuc, 35042 Rennes Cedex, France

Tài liệu tham khảo

Abbott, 1986, An introduction to the European hydrological system-Système Hydrologique Européen, ‘SHE’, 1: history and philosophy of a physically-based, distributed modelling system, J. Hydrol., 87, 45, 10.1016/0022-1694(86)90114-9 Addiscott, 1998, Modelling contaminant transport at the catchment or regional scale, Agric. Ecosystems Environ., 67, 211, 10.1016/S0167-8809(97)00120-5 Addiscott, 1985, Concepts of solute leaching in soils: a review of modelling approaches, J. Soil Sci., 36, 411, 10.1111/j.1365-2389.1985.tb00347.x Ambroise, 1996, Towards a generalisation of the TOPMODEL concepts: topographic indices of hydrological similarity, Water Resour. Res., 32, 2135, 10.1029/95WR03716 Ball, 1995, Overview of solute modelling, 3 Beaujouan, V., Aurousseau, P., Durand, P., Ruiz, L., Squividant, H., 2000. Comparaison de méthodes de définition des chemins hydrauliques pour la modélisation hydrologique à l’échelle du bassin versant. Revue internationale de Géomatique 10 (1), 39–60. Ben-Ari, 1982, 172 Beven, 1996, A discussion of distributed modelling, 255 Beven, K.J. (Ed.), 1997. Distributed modelling in hydrology: applications of the TOPMODEL Concept. Advances in Hydrological Processes. Wiley, Chichester, p. 350. Beven, 1979, A physically based variable contributing area model of basin hydrology, Hydrol. Sci. Bull., 24, 43, 10.1080/02626667909491834 Brisson, 1998, STICS: a generic model for the simulation of crops and their water and nitrogen balances. I. Theory and parameterization applied to wheat and corn, Agronomie, 18, 311, 10.1051/agro:19980501 Burns, 1974, A model for predicting the redistribution of salts applied to fallow soils after excess rainfall or evaporation, J. Soil Sci., 25, 165, 10.1111/j.1365-2389.1974.tb01113.x Christiaens, K. and Feyen, J., 1997. The integrated WAVE-MIKE SHE model as an instrument for nitrogen load modelling on a catchment scale, 2nd DHI Software User Conference, Helsingor, Denmark. Cooper, 1994 Crave, 1997, The influence of topography on time and space distribution of soil surface water content, Hydrol. Process., 11, 43, 10.1002/(SICI)1099-1085(199702)11:2<203::AID-HYP432>3.0.CO;2-K Decroux, J., Ignazi, J.-C., Puginier, M., 1991. Pour que vive l'eau, p. 25. Diekkrüger, 1995, Validity of agroecosystem models. A comparison of results of different models applied to the same data set, Ecol. Model., 81, 3, 10.1016/0304-3800(94)00157-D Durand, P., Hénault, C., Bidois, J., Trolard, F., 1998. La dénitrification en zone humide. In: Cheverry, C. (Ed.), Agriculture intensive et qualité des eaux, Science Update, pp. 157–168. Haycock, N.E., Burt, T., Goulding, K.W.T. and Pinay, G., 1996. Buffer Zones: Their Processes and Potential in water protection, Quest Environmental, Environment Agency, p. 326. Hénault, C., 1995. Quantification de la dénitrification dans les sols à l’échelle de la parcelle cultivée, à l'aide d'un modèle prévisionnel. PhD Thesis, ENSA, Montpellier, p. 132. Johnes, 1996, Evaluation and management of the impact of land use change on the nitrogen and phosphorus load delivered to surface waters: the export coefficient modelling approach, J. Hydrol., 183, 323, 10.1016/0022-1694(95)02951-6 Kauark-Leite, L.A., 1990. Réflexions sur l'utilité des modèles mathématiques dans la gestion de la pollution diffuse agricole. PhD Thesis, Ecole Nationale des Ponts et Chaussées, Paris, p. 342. Krysanova, 1998, Development and test of a spatially distributed hydrological/water quality model for mesoscale watersheds, Ecol. Model., 106, 261, 10.1016/S0304-3800(97)00204-4 Mariotti, 1997, Quelques réflexions sur le cycle biogéochimique de l'azote dans les agrosystèmes, 9 Martin, 1997, Interaction and spatial distribution of wetland nitrogen processes, Ecol. Model., 105, 1, 10.1016/S0304-3800(97)00122-1 Mérot, P., Gascuel-Odoux, C., Durand, P., 1998. Approche des processus de transfert dans les petits bassins versants ruraux. In: SHF (Ed.), Colloque d'hydrotechnique. SHF, Paris, pp. 59–68. Robson, 1992, Towards identifying sources of subsurface flow: a comparison of components identified by a physically based runoff model and those determined by chemical mixing techniques, Hydrol. Process., 6, 199, 10.1002/hyp.3360060208 Skop, 1998, GIS-based modelling of solute fluxes at the catchment scale: a case study of the agricultural contribution to the riverine nitrogen loading in the Vejle Fjord catchment, Denmark, Ecol. Model., 106, 291, 10.1016/S0304-3800(97)00205-6 Vachaud, 1988, Solute transport in the vadose zone: a review of models Van Der Linden, 1987, Modelling soil organic matter levels after long-term applications of crop residues, and farmyard and green manures, Plant Soil, 101, 21, 10.1007/BF02371026 Van Grinsven, 1995, Workshop on comparison of Forest–Soil–Atmosphere models: preface, Ecol. Model., 83, 1, 10.1016/0304-3800(95)00078-A Walter, C., Curmi, P., 1998. Les sols du bassin versant du Coët-Dan: organisation, variabilité spatiale et cartographie. In: Cheverry, C. (Ed.), Agriculture intensive et qualité des eaux, Science Update, pp. 85–105. Wolock, 1995, Comparison of single and multiple direction algorithms for computing topographic parameters in TOPMODEL, Water Resour. Res., 31, 1315, 10.1029/95WR00471