On approaches and applications of the Wageningen crop models

European Journal of Agronomy - Tập 18 - Trang 201-234 - 2003
M.K van Ittersum1,2, P.A Leffelaar1,2, H van Keulen1,3,2, M.J Kropff4,2, L Bastiaans4,2, J Goudriaan1,2
1Plant Production Systems Group, Wageningen University, P.O. Box 430, 6700 AK Wageningen, The Netherlands
2C.T. de Wit Graduate School for Production Ecology and Resource Conservation, Haarweg 333, 6709 RZ Wageningen, The Netherlands
3Plant Research International, Wageningen University and Research Centre, P.O. Box 16, 6700 AA Wageningen, The Netherlands
4Crop and Weed Ecology Group, Wageningen University, P.O. Box 430, 6700 AK Wageningen, The Netherlands

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Aggarwal, 1997, Simulating genotypic strategies for increasing rice yield potential in irrigated, tropical environments, Field Crops Research, 51, 5, 10.1016/S0378-4290(96)01044-1 Akanvou, 2002, Evaluating the use of two contrasting legume species as relay intercrop in upland rice cropping systems, Field Crops Research, 74, 23, 10.1016/S0378-4290(01)00198-8 Bastiaans, 1991, Ratio between virtual and visual lesion size as a measure to describe reduction in leaf photosynthesis of rice due to leaf blast, Phytopathology, 80, 611, 10.1094/Phyto-81-611 Bastiaans, L., 1993a. Understanding yield reduction in rice due to leaf blast. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-5486-166-X, pp. 127. Bastiaans, L., 1993b. Damage by stem borer in rice: a quantitative simulation model. In: Rossing, W.A.H., Rubia, E.G., Heong, K.L., Keerati-Kasikorn, M., Reddy, P.R. (Eds.), Mechanisms of damage by stem borer, bacterial leaf blight and sheath blight, and their effects on rice yield. SARP Research Proceedings, IRRI and Wageningen University and Research Center, pp. 61–77. Bastiaans, 1991, Understanding and quantifying damage by air pollution and leaf blast, 21 Bastiaans, 1993, Effect of leaf blast on photosynthesis of rice. 2. Canopy photosynthesis, Netherlands Journal of Plant Pathology, 99, 205, 10.1007/BF01974665 Baumann, 2001, Competition and crop performance in a leek-celery intercropping system, Crop Science, 41, 764, 10.2135/cropsci2001.413764x Bergström, 1991, Simulation of nitrogen dynamics using the SOILN-model, Fertilizer Research, 27, 181, 10.1007/BF01051126 Bindraban, P.S., 1975. Bridging the gap between plant physiology and breeding. Identifying traits to increase wheat yield potential using systems approaches. PhD Thesis, Wageningen University, The Netherlands, ISBN 90 5485 752-8, pp. 145. Boogaard, H.L., Van Diepen, C.A., Rötter, R.P., Cabrera, J.C.M.A., Van Laar, H.H., 1998. WOFOST 7.1 User guide for the WOFOST 7.1 crop growth simulation model and WOFOST Control Center 5.1. Techn. Doc. 52, Alterra, WUR, Wageningen, The Netherlands, pp. 144. Boons-Prins, E.R., De Koning, G.H.J., Van Diepen, C.A., Penning de Vries, F.W.T., 1993. Crop specific simulation parameters for yield forecasting across the European Community. Simulation Reports CABO-TT, no.32, Wageningen, The Netherlands, pp. 43+10 Appendices. Boote, 1983, Coupling pests to crop growth simulators to predict yield reductions, Phytopathology, 73, 1581, 10.1094/Phyto-73-1581 Bouman, 1996, The ‘School of de Wit’ crop growth simulation models: a pedigree and historical overview, Agricultural Systems, 56, 171, 10.1016/0308-521X(96)00011-X Bouman, 2000, A toolbox for land use analysis, 213 Bouman, B.A.M., Kropff, M.J., Tuong, T.P., Wopereis, M.C.S., Ten Berge, H.F.M., Van Laar, H.H., 2001. ORYZA2000: Modeling Lowland Rice (ISBN 971-22-0171-6). International Rice Research Institute/Wageningen University and Research Centre, Los Baños (Philippines)/Wageningen, pp. 235. Breman, H., Sissoko, K., 1998. L'intensification agricole au Sahel. Karthala, IER, AB-DLO-DAN-UAW, Paris, pp. 996. Bronswijk, J.J.B., 1991. Magnitude, modeling and significance of swelling and shrinkage processes in clay soils. PhD Thesis, Wageningen University, The Netherlands, pp. 145. Brouwer, 1962, 31 Casanova, D., 1998. Quantifying the effects of land conditions on rice growth. A case study in the Elbro Delta (Spain) using remote sensing. PhD Thesis, Wageningen University, The Netherlands, pp. 219. Dane, 1975, Effect of hysteresis on the prediction of infiltration, redistribution and drainage of water in a layered soil under transient conditions, Journal of Hydrology, 25, 229, 10.1016/0022-1694(75)90023-2 Darcy, 1856. Les fontaines publiques de la ville de Dijon. Dalmont, Paris, pp. 647, et 28 planches. De Haan, J.J., Van Ittersum, M.K., De Ridder, N. (Eds.), 1999. Introductory Module Quantitative Analysis of Agro-ecosystems. Plant Production Systems Group. Wageningen University, The Netherlands, p. 343. Dekker, L.W., 1998. Moisture variability resulting from water repellency in Dutch soils. PhD Thesis, Wageningen University, The Netherlands, pp. 240, ISBN 90-5485-914-8. De Koning, G.H.J., Van Diepen, C.A., 1992. Crop production potential of rural areas within the European communities. IV. Potential, water-limited and actual crop production. Working document W68, Netherlands Scientific Council for Government Policy, The Hague, The Netherlands, pp. 83. De Wit, 1978, 141 De Wit, C.T., Penning de Vries, F.W.T., 1982. L'analyse des systèmes de production primaire. In: Penning de Vries, F.W.T., Djitèye, M.A. (Eds.) La Productivité des Pâturages Sahéliens. Agric. Res. Rep. 918, Pudoc, Wageningen, The Netherlands, pp. 20–27. Dobermann, 2000, Reversal of rice yield decline in a long-term continuous cropping experiment, Agronomy Journal, 92, 633, 10.2134/agronj2000.924633x Doorenbos, 1979, 193 Driessen, P.M., Konijn, N.T., 1992. Land-use systems analysis. WAU/INRES, pp. 230. Farquhar, 1982, Modelling of photosynthetic response to environmental conditions, 12 B, 549 Farré, 2000, Analysis of maize growth for different irrigation strategies in Northeastern Spain, European Journal of Agronomy, 12, 225, 10.1016/S1161-0301(00)00051-4 Feddes, 1988, Modelling soil water dynamics in the unsaturated zone. State of the art, Journal of Hydrology, 100, 69, 10.1016/0022-1694(88)90182-5 Fick, 1855, Ueber Diffusion, Annalen der Physik und Chemie, 170, 59, 10.1002/andp.18551700105 Fransz, 1974, 143 Goudriaan, 1977, 257 Goudriaan, 1986, A simple and fast numerical method for the computation of daily totals of canopy photosynthesis, Agricultural and Forest Meteorology, 43, 251 Goudriaan, 1996, Predicting crop yields under global change, 260 Goudriaan, 1994, Modelling potential crop growth processes. Textbook with exercises, 2, 238 Groenendijk, P., Kroes, J.G., 1999. Modelling the nitrogen and phosphorus leaching to groundwater and surface water with ANIMO 3.5. Report 144, DLO—Winand Staring Centre, Wageningen, The Netherlands. Habekotté, B., 1996. Winter oilseed rape; analysis of yield formation and crop type design for higher yield potential. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-5485-514-2, pp. 156 Habekotté, B., 1997. Description, parameterization and user guide of LINTUL-BRASNAP 1.1; A crop growth model of winter oilseed rape (Brassica napus L.). Quantitative Approaches in Systems Analysis, no 9, C.T. de Wit Graduate School for Production Ecology and Resource Conservation. Wageningen University, The Netherlands, pp. 40. Habets, 1997, NDICEA: modelling nitrogen dynamics in crop rotations in ecological agriculture, 73 Hanson, 1983, Whole plant response to water deficits: water deficits and the nitrogen economy, 331 Hassink, J., 1995. Organic matter dynamics and N mineralization in grassland soils. PhD Thesis, Wageningen University, The Netherlands, pp. 250. Haverkort, 1986, Correlation between intercepted radiation and yield of potato crops infested by Phytophthora infestans in central Africa, Netherlands Journal of Plant Pathology, 92, 239, 10.1007/BF01977690 Heinen, M., De Willigen, P., 1988. A two-dimensional simulation model for water flow, solute transport, and root uptake of water and nutrients in partly saturated porous media. Quantitative Approaches in Systems Analysis, no. 20. C.T. de Wit Graduate School for Production Ecology and Resource Conservation. Wageningen University, The Netherlands, pp. 140. Hengsdijk, 2002, A goal-oriented approach to identify and engineer land use systems, Agricultural Systems, 71, 231, 10.1016/S0308-521X(01)00049-X Hengsdijk, 1999, Quantification of land use systems using technical coefficient generators: a case study for the northern Atlantic zone of Costa Rica, Agricultural Systems, 61, 109, 10.1016/S0308-521X(99)00041-4 Heuvelink, E., 1996. Tomato growth and yield: quantitative analysis and synthesis. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-5485-498-7, pp. 326. Hoogmoed, W.B., 1994. The role of tillage in the management of problems in crusting and hardsetting soils. In: So, H.B., Smith, G.D., Raine, S.R., Schafer, B.M., Loch, R.J. (Eds.), Proceedings of the Second International Symposium on Sealing, Crusting and Hardsetting Soils: Productivity and Conservation. The University of Queensland, Brisbane, Queensland, 4072, Australia, pp. 259–277. Hoogmoed, 1980, A simulation model for predicting infiltration into a cracked clay soil, Soil Science Society of America Journal, 44, 458, 10.2136/sssaj1980.03615995004400030003x IRRI, 1989. IRRI towards 2000 and beyond. International Rice Research Institute, Los Banos, Philippines. Janssen, 1984, A simple method for calculating decomposition and accumulation of young soil organic matter, Plant and Soil, 76, 297, 10.1007/BF02205588 Janssen, 1990, A system for quantitative evaluation of the fertility of tropical soils (QUEFTS), Geoderma, 46, 299, 10.1016/0016-7061(90)90021-Z Johnson, 1987, Defoliation, disease and growth: a reply, Phytopathology, 77, 1495 Jones, J.W., Hoogenboom, G., Porter, C.H., Boote, K.J., Batchelor, W.D., Hunt, L.A., Wilkens, P.W., Singh, U., Gijsman, A.J., Ritchie, J.T., 2003. The DSSAT cropping system model. European Journal of Agronomy, 18, 235–265. Jongschaap, 1997, ROTASK 1.0, 81 Klepper, 1991, A procedure to reduce parameter uncertainty for complex models by comparison with real system output illustrated on a potato growth model, Agricultural Systems, 36, 375, 10.1016/0308-521X(91)90067-K Kooman, P.L., Haverkort, A.J., 1995. Modelling development and growth of the potato crop influenced by temperature and daylength: LINTUL-POTATO. In: Haverkort, A.J., MacKerron, D.K.L. (Eds.), Potato ecology and modelling of crops under conditions limiting growth. Current Issues in Prod. Ecology, 3, Kluwer Academic Publishers, Dordrecht, The Netherlands, pp. 41–59. Koopman, C., 1990. Quantitative soil fertility evaluation of a catena in the Tai region in Cote d'Ivoire. Report Department of Soil Science and Plant Nutrition, Wageningen University, The Netherlands, pp. 47+Appendices. Kramer, K., 1996. Phenology and growth of European trees in relation to climate change. PhD Thesis. Wageningen University, The Netherlands, ISBN 90 5485 464–2, pp. 210. Kroes, 2000, Integrated modelling of the soil-water-atmosphere-plant system using the model SWAP 2.0, an overview of theory and an application, Hydrological Processes, 14, 1993, 10.1002/1099-1085(20000815/30)14:11/12<1993::AID-HYP50>3.0.CO;2-# Kropff, 1988, Modelling the effects of weeds on crop production, Weed Research, 28, 465, 10.1111/j.1365-3180.1988.tb00829.x Kropff, M.J., 1989. Quantification of SO2 effects on physiological processes, plant growth and crop production. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-9002942-7, pp. 201. Kropff, 1989, Modelling short-term effects of sulphur dioxide. 3. Effects of SO2 on photosynthesis of leaf canopies, Netherlands Journal of Plant Pathology, 95, 265, 10.1007/BF01977731 Kropff, 1993, 274 Kropff, 1984, Competition between a maize crop and a natural population of Echinochloa crus-galli (L.), Netherlands Journal of Agricultural Science, 35, 324, 10.18174/njas.v32i4.16890 Kropff, 1994, Capacity building and human resource development for applying systems analysis in rice research, 323 Kropff, 1994, Quantitative understanding of the irrigated rice ecosystems and yield potential, 97 Kropff, 1995, The challenge of linking pest and crop models, Agricultural Systems, 49, 413, 10.1016/0308-521X(95)00034-3 Kropff, 1995, Using systems approaches to design and evaluate ideotypes for specific environments, 417 Kropff, M.J., Teng, P.S., Aggarwal, P.K., Bouma, J., Bouman, B.A.M., Jones, J.W., Van Laar, H.H. (Eds.), 1997. Applications of Systems Approaches at the Field Level Vol. 2 Systems Approaches for Sustainable Agricultural Development, vol.6. Kluwer Academic Publishers, Dordrecht, The Netherlands, pp. 465. Leffelaar, 1979, Simulation of partial anaerobiosis in a model soil in respect to denitrification, Soil Science, 128, 110, 10.1097/00010694-197908000-00008 Leffelaar, P.A., 1987. Dynamics of partial anaerobiosis, denitrification, and water in soil: Experiments and simulation. PhD Thesis, Wageningen University, The Netherlands, pp. 117. Leffelaar, 1999, On systems analysis and simulation of ecological processes; with examples in CSMP, FST and FORTRAN, 4, 318pp Metselaar, K., 1999. Auditing predictive models: a case study in crop growth. PhD Thesis, Wageningen University, The Netherlands. ISBN 90-5485-977-6, pp. 265. Mitchell, 1997, Comparison of predictions and observations to assess model performance: a method of empirical validation, 437 Mohren, G.M.J., 1987. Simulation of forest growth, applied to Douglas fir stands in the Netherlands. PhD Thesis, Wageningen University, The Netherlands. pp. 184. Mohren, 1995, Forest growth in relation to site conditions: application of the model FORGRO to the Solling spruce site, Ecological Modelling, 83, 173, 10.1016/0304-3800(95)00096-E Monteith, 1977, Climate and the efficiency of crop production in Britain, Phil. Trans. R. Soc. Lond. B, 281, 277, 10.1098/rstb.1977.0140 Muchov, 1997, Assessing the potential yield of tropical crops: role of field experimentation and simulation, 2, 101 Mulder, I.F.C., 2000. Soil degradation in Benin: Farmers’ perceptions and responses. PhD Thesis, Free University, Amsterdam, The Netherlands, pp. 241. Nonhebel, S., 1993. The importance of weather data in crop growth simulation models and assessment of climatic change effects. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-5485-114-7, pp. 144. Oerke, 1994 Oomen, G. Nitrogen management in self reliant organic farms. PhD Thesis, Wageningen University, The Netherlands (in preparation). Pathak, H., Aggarwal, P.K., Roetter, R., Kalra, N., Bandyopadhaya, S.K., Prasad, S., Van Keulen, H., 2003. Quantitative evaluation of soil nutrient supply, plant nutrient use efficiency, and fertilizer requirements in wheat in South Asia. Nutrient Cycling in Agro-ecosystems (in press). Penman, H.L., 1948. Natural evaporation from open water bare soil and grass. Proceedings of the Royal Society A, 193, pp. 120–145. Penning de Vries, 1975, The cost of maintenance processes in plant cells, Annals of Botany, 39, 77, 10.1093/oxfordjournals.aob.a084919 Penning de Vries, F.W.T., Djitèye, A.M., 1982. La productivité des pâturages sahéliens. Une étude des sols, des végétations et de l'exploitation de cette ressource naturelle. Agricultural Research Report 918, Pudoc, Wageningen, The Netherlands, pp. 525. 1982, 308 Penning de Vries, 1995, Models in research and education, planning and practice, 1 Penning de Vries, 1974, Products, requirements and efficiency of biosynthesis: a quantitative approach, Journal of Theoretical Biology, 45, 339, 10.1016/0022-5193(74)90119-2 Penning de Vries, F.W.T., Jansen, D.M., Ten Berge, H.F.M., Bakema, A., 1989. Simulation of ecophysiological processes of growth in several annual crops 29. Simulation Monographs, 29. Pudoc/IRRI, Wageningen/Los Baños, p. 271. Penning de Vries, 1995, Natural resources and limits of food production in 2040, 65 Press, 1986, 818 Rabbinge, R., 1976. Biological Control of Fruit-Tree Red Spider Mite. Simulation Monographs. Pudoc, Wageningen, The Netherlands, p. 234. Rabbinge, R., Rijsdijk, F.H., 1984. Epidemiological and crop physiological foundation of EPIPRE. In: Gallagher, E.J. (Ed.), Cereal Production. Proceedings of the Second International Summer School in Agriculture held by the Royal Dublin Society in Cooperation with W.K. Kellogg Foundation, pp. 227–235. Rabbinge, 1989, Combination models, crop growth and pests and diseases, 32, 217 Rabbinge, 1992, Long term options for land use in the European community, Agricultural Systems, 40, 195, 10.1016/0308-521X(92)90021-F Rabbinge, R., Ward, S.A., Van Laar, H.H. (Eds.), 1989. Simulation and Systems Management in Crop Protection. Simulation Monographs, vol. 32. Pudoc, Wageningen, The Netherlands, p. 420. Rappoldt, C., 1992. Diffusion in aggregated soils. PhD Thesis, Wageningen University, The Netherlands, pp. 204. Rappoldt, C., Van Kraalingen, D.W.G., 1996. The Fortran Simulation Translator. FST version 2.0, introduction and reference manual. Quantitative Approaches in Systems Analysis No. 5, C.T. de Wit Graduate School for Production Ecology and Resource Conservation, Wageningen, The Netherlands, pp. 178. Reinink, 1986, Adaptation of the AFRC wheat phenology model for Dutch conditions, Netherlands Journal of Agricultural Science, 34, 1, 10.18174/njas.v34i1.16811 Richards, 1931, Capillary conduction of liquids through porous mediums, Physics, 1, 318, 10.1063/1.1745010 Rietveld, J.J., 1978. Soil non wettability and its relevance as a contributing factor to surface runoff on sandy dune soils in Mali. Report of project ‘Production Primaire au Sahel’, Department of Theoretical Production Ecology, Wageningen University, The Netherlands, pp. 179. Rijneveld, W., 1996. On water flow: Simulation of unsaturated water flow with the tipping bucket model with special regard to the simulation of hysteresis and preferential flow. MSc Thesis, Department of Theoretical Production Ecology, Wageningen University, The Netherlands, pp. 172. Rijtema, P.E., 1969. Soil moisture forecasting. Instituut voor Cultuurtechniek en Waterhuishouding, Wageningen, The Netherlands, Nota 513, pp. 18+Appendices. Rijtema, 1970, Calculation of production of potatoes, Netherlands Journal of Agricultural Science, 18, 26, 10.18174/njas.v18i1.17353 Ritsema, C.J., 1998. Flow and transport in water repellent soils. PhD Thesis, Wageningen University, Wageningen, The Netherlands, ISBN 90-5485-915-6, pp. 213. Rodriguez, 1999, LINGRA-CC: a sink–source model to simulate the impact of climate change and management on grassland productivity, New Phytologist, 144, 359, 10.1046/j.1469-8137.1999.00521.x Roetter, R., 1993. Simulation of the biophysical limitations to maize production under rainfed conditions in Kenya. Evaluation and application of the model WOFOST. Materiel zur Ost Afrika-Forschung, Heft 12, pp. 261+Annexes. Roetter, R., Van Keulen, H.,Van Laar, H.H., 2000. Synthesis of methodology development and case studies. Sysnet Research Paper Series no. 3, International Rice Research Institute, Los Banos, Philippines, pp. 94. Rossing, W.A.H., 1993. On damage, uncertainty and risk in supervised control: aphids and brown rust in winter wheat as an example. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-5485-137-6, pp. 202. Rossing, 1997, Operationalizing sustainability: exploring options for environmentally friendly flower bulb production systems, European Journal of Plant Pathology, 103, 217, 10.1023/A:1008609624648 Schans, J., 1993. Population dynamics of potato cyst nematodes and associated damage to potato. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-5485-108-2, pp. 115. Schröder, 1997, Modelling the residual effect of slurry applied to maize land on dairy farms in the Netherlands, Netherlands Journal of Agricultural Science, 45, 477, 10.18174/njas.v45i4.507 Seligman, 1981, PAPRAN: a simulation model of annual pasture production limited by rainfall and nitrogen, 192 Seligman, 1983, Nitrogen nutrition and phenological development in field-grown wheat, Journal of Agricultural Science (Cambridge), 101, 691, 10.1017/S0021859600038727 Sinclair, 1994, Limits to crop yield?, 509 Smaling, 1993, Calibration of QUEFTS, a model predicting nutrient uptake and yields from chemical soil fertility indices, Geoderma, 49, 21, 10.1016/0016-7061(93)90060-X Smith, 1980, A model of the extent of anaerobic zones in aggregated soils and its potential to estimates of denitrification, Journal of Soil Science, 31, 263, 10.1111/j.1365-2389.1980.tb02080.x Spitters, 1990, Crop growth models: their usefulness and limitations, Acta Horticulture, 267, 349, 10.17660/ActaHortic.1990.267.42 Spitters, 1983, Simulation of competition for light and water in crop associations, Aspects of Applied Biology, 4, 467 Spitters, 1990, Evaluation of breeding strategies for drought tolerance in potato by means of crop growth simulation, Plant and Soil, 123, 193, 10.1007/BF00011268 Spitters, 1989, A simple and universal crop growth simulator: SUCROS87, 32, 147 Stol, W., Rouse, D.I., Van Kraalingen, D.W.G., Klepper, O., 1992. FSEOPT, a Fortran program for calibration and uncertainty analysis of simulation models. Simulation Reports CABO-TT 24, Wageningen, The Netherlands, pp. 24. Supit, I., 2000. An exploratory study to improve predictive capacity of the Crop Growth Monitoring System as applied by the European Commission. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-804443-5-9, pp. 180. Ten Berge, 1995, Founding a systems research network for rice, 263 Ten Berge, H.F.M., Jansen, D.M., Rappoldt, C., Stol, W., 1992. The soil water balance module SAWAH: description and users guide. Simulation Reports CABO-TT, no.22. Department of Theoretical Production Ecology, Agricultural University, The Netherlands, pp. 78+8 appendixes. Ten Berge, 1995, The SAWAH riceland hydrology model, Water Resources Research, 31, 2721, 10.1029/95WR02330 Ten Berge, 1997, Numerical optimization of nitrogen application to rice. Part I. Description of MANAGE-N, Field Crops Research, 51, 29, 10.1016/S0378-4290(96)01042-8 Ten Berge, 1997, Numerical optimization of nitrogen application to rice. Part II. Field evaluations, Field Crops Research, 51, 43, 10.1016/S0378-4290(96)01041-6 Ten Berge, 2000, Farming options for The Netherlands explored by multi-objective modelling, European Journal of Agronomy, 13, 263, 10.1016/S1161-0301(00)00078-2 Vanclooster, 1994 Van Dam, J.C., 2000. Field-scale water flow and solute transport. SWAP model concepts, parameter estimation and case studies. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-5808-256-3, pp. 167 Van Dam, 1997, Systems approaches and simulation in curricular programs: the Wageningen experience, European Journal of Agricultural Education and Extension, 4, 39, 10.1080/13892249785300141 Van Delden, A. 2001 Yielding ability and weed suppression of potato and wheat under organic nitrogen management. PhD Thesis, Wageningen University, The Netherlands, ISBN 90 5808 519–8, pp. 197. Van Delden, 2001, Modeling temperature- and radiation-driven leaf area expansion in the contrasting crops potato and wheat, Field Crops Research, 72, 119, 10.1016/S0378-4290(01)00169-1 Van der Werf, W., 1988. Yellowing viruses in sugarbeet; epidemiology and damage. PhD Thesis, Wageningen University, The Netherlands, pp. 152. Van de Ven, G.W.J., 1996. A mathematical approach to comparing environmental and economic goals in dairy farming on sandy soils in the Netherlands. PhD Thesis, Wageningen University ISBN 90 5485 489–8, pp. 239. Van Diepen, 1989, WOFOST: a simulation model of crop production, Soil Use and Management, 5, 16, 10.1111/j.1475-2743.1989.tb00755.x Van Genuchten, 1980, A closed form equation for predicting the hydraulic conductivity of unsaturated soils, Soil Science Society of America Journal, 44, 892, 10.2136/sssaj1980.03615995004400050002x Van Ittersum, 1997, Concepts in production ecology for analysis and quantification of agricultural input–output combinations, Field Crops Research, 52, 197, 10.1016/S0378-4290(97)00037-3 Van Ittersum, 1998, Exploratory land use studies and their role in strategic policy making, Agricultural Systems, 58, 309, 10.1016/S0308-521X(98)00033-X Van Keulen, H., 1975. Simulation of water use and herbage growth in arid regions. Simulation Monographs. Pudoc, Wageningen, The Netherlands, p. 184. Van Keulen, 1982, Crop production under semi-arid conditions, as determined by nitrogen and moisture availability, 234 Van Keulen, H., Dayan, E., 1993. TOMGRO, a greenhouse-tomato simulation model. Simulation Report CABO-TT no. 29, Wageningen University and Research Centre, The Netherlands, pp. 48+Annexes. Van Keulen, H., Seligman, N.G., 1987. Simulation of water use, nitrogen nutrition and growth of a spring wheat crop. Simulation Monographs. Pudoc, Wageningen, The Netherlands, p. 310. Van Keulen, 1995, Agro-ecological zonation for potato production, 357 Van Keulen, H., Van Heemst, H.D.J., 1982. Crop response to the supply of macronutrients. Agric. Res. Rep. (Verslag Landbouwkundig Onderzoek) 916, Pudoc, Wageningen, The Netherlands, pp. 46. Van Keulen, H., Wolf, J., 1986. Modelling of agricultural production: weather soils and crops. Simulation Monographs. Pudoc, Wageningen, The Netherlands, p. 479. Van Keulen, 1975, Availability of anions in the growth medium to roots of an actively growing plant, Netherlands Journal of Agricultural Science, 23, 131, 10.18174/njas.v23i2.17192 Van Keulen, 1981, Simulation of water use and herbage growth in arid regions. A re-evaluation and further development of the model ‘Arid crop’, Agricultural Systems, 6, 159, 10.1016/0308-521X(81)90001-9 Van Keulen, 1982, A summary model for crop growth, 87 Van Keulen, 1989, Modelling the effects of nitrogen on canopy development and crop growth, 83 Van Kraalingen, D.W.G., 1995. The FSE system for crop simulation, version 2.1. Quantitative Approaches in Systems Analysis, No. 1. C.T. de Wit Graduate School for Production Ecology and Resource Conservation, Wageningen University, The Netherlands, pp. 58. Van Kraalingen, D.W.G., Rappoldt, C., 2000. Reference manual of the FORTRAN utility library TTUTIL v.4. Report No. 5, Wageningen-UR, Plant Research International, pp. 97. Van Kraalingen, D.W.G., Stol, W., 1997. Evapotranspiration models for crop growth simulation. Quantitative Approaches in Systems Analysis, No. 11, C.T. de Wit Graduate School for Production Ecology and Resource Conservation, Wageningen University, The Netherlands, pp. 29. Van Kraalingen, D.W.G., Stol, W., Uithol, P.W.J., Verbeek, M.G.M., 1991. User manual of CABO-TPE Weather System. CABO/TPE internal communication report, Wageningen, The Netherlands, pp. 27. Van Kraalingen, D.W.G., Rappoldt, C., Van Laar, H.H., 2003. The Fortran simulation translator, a simulation language. European Journal of Agronomy, 18, 359–361. Van Laar, H.H., Goudriaan, J., Van Keulen, H., 1997. SUCROS97: Simulation of crop growth for potential and water-limited production situations. Quantitative Approaches in Systems Analysis, No. 14. C.T. de Wit Graduate School for Production Ecology and Resource Conservation, Wageningen, The Netherlands, pp. 52+appendices. Van Oijen, 1990, Photosynthesis is not impaired in healthy tissue of blighted potato plants, Netherlands Journal of Plant Pathology, 96, 55, 10.1007/BF02005129 Van Oijen, M, 1991. Identification of the major characteristics of potato cultivars which affect yield loss caused by late blight. PhD Thesis Wageningen University, The Netherlands, pp. 116. Van Oijen, M., Goudriaan, J., 1997. Wageningen Group Final report. ESPACE (European Stress Physiology and Climate Experiment)—Wheat. Project Individual Group Report, Wageningen, The Netherlands, pp. 25. Van Veen, J.A., 1977. The behaviour of nitrogen in soil; a computer simulation model. PhD Thesis, Vrije Universiteit, Amsterdam. The Netherlands, pp. 164. Van Veen, 1981, Simulation model of the behaviour of N in soil, 126 Verhagen, J., 1997. Spatial soil variability as a guiding principle in nitrogen management. PhD Thesis, Wageningen University, The Netherlands, pp. 107. Wagenet, R.J., Hutson, J., 1989. LEACHN, a process-based model of water and solute movement, transformations, plant uptake and chemical interactions in the unsaturated zone. Centre for Environmental Research, Cornell University, Ithaca, NY, pp. 147. Wagenmakers, P.S., 1995. Light relations in orchard systems. PhD Thesis, Wageningen University, The Netherlands, ISBN 90-5485-340-9, pp. 151. Witt, 1999, Internal nutrient efficiencies of irrigated lowland rice in tropical and subtropical Asia, Field Crops Research, 63, 113, 10.1016/S0378-4290(99)00031-3 Wolf, J., 1993. Effects of climate change on the grain maize production potential in the E.C. Report Department of Theoretical Production Ecology, Wageningen University, The Netherlands, pp. 60. Wolf, 2002, Comparison of two potato simulation models under climate change. I. Model calibration and sensitivity analyses, Climate Research, 21, 173, 10.3354/cr021173 Wolf, 1989, Modelling long-term crop response to fertilizer and soil nitrogen. II. Comparison with field results, Plant and Soil, 120, 23, 10.1007/BF02370287 Wolf, J., Van Oijen, M., 2003. Model simulation of effects of changes in climate and atmospheric CO2 and O3 on tuber yield potential of potato (cv. Bintje) in the European Union. Agriculture, Ecosystems and Environment (in press). Wolf, 1989, Modelling long-term crop response to fertilizer and soil nitrogen. I. Model description and application, Plant and Soil, 120, 11, 10.1007/BF02370286 Wolf, 1987, Modelling long-term crop response to fertilizer phosphorus. I. The model, Agronomy Journal, 79, 445, 10.2134/agronj1987.00021962007900030008x Wösten, 1995, Comparison of class and continuous pedotransfer functions to generate soil hydraulic characteristics, Geoderma, 66, 227, 10.1016/0016-7061(94)00079-P Wösten, J.H.M., Veerman, G.J., De Groot, W.J.M., Stolte, J., 2001. Waterretentie -en doorlatendheidskarakteristieken van boven -en ondergronden in Nederland: de Staringreeks. Alterra-rapport 153, Wageningen, The Netherlands, ISSN 1566-7197, pp. 86. Yang, 1997, Analysis of impact of farming practices on dynamics of soil organic matter in northern China, European Journal of Agronomy, 7, 211, 10.1016/S1161-0301(97)00047-6 Yin, 2000, A model analysis of yield differences among recombinant inbred lines in barley, Agronomy Journal, 92, 114, 10.2134/agronj2000.921114x Yoshida, 1976, Nitrogen nutrition, leaf resistance and leaf photosynthetic rate of the rice plant, Soil Science and Plant Nutrition, 22, 207, 10.1080/00380768.1976.10432983