The DSSAT cropping system model
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Alagarswamy, 2000, Evaluation and application of the CROPGRO-Soybean simulation model in vertic inceptisol, Agricultural Systems, 63, 19, 10.1016/S0308-521X(99)00070-0
Alexandrov, 2001, The impact of climate variability and change on crop yield in Bulgaria, Agricultural and Forest Meteorology, 104, 315, 10.1016/S0168-1923(00)00166-0
Alocilja, 1990, The application of SIMOPT2:RICE to evaluate profit and yield-risk in upland-rice production, Agricultural Systems, 33, 315, 10.1016/0308-521X(90)90058-X
Andales, 2000, Incorporating tillage effects into soybean model, Agricultural Systems, 66, 69, 10.1016/S0308-521X(00)00037-8
Baethgen, 1997, Vulnerability of the agricultural sector of Latin America to climate change, Climate Research, 9, 1, 10.3354/cr009001
Barbour, 1995, A model of competition for light between peanut (Arachis hypogaea) and broadleaf weeds, Weed Science, 43, 247, 10.1017/S0043174500081145
Barbour, 1994, Peanut acclimation to simulated shading by weeds, Agronomy Journal, 86, 874, 10.2134/agronj1994.00021962008600050022x
Batchelor, 1993, Extending the use of crop models to study pest damage, Transactions of the ASAE, 36, 551, 10.13031/2013.28372
Beckie, 1995, Testing effectiveness of four simulation models for estimating nitrates and water in two soils, Canadian Journal of Soil Sciences, 75, 135, 10.4141/cjss95-017
Ben Nouna, 2000, Using the CERES-Maize model in a semi-arid Mediterranean environment. Evaluationof model performance, European Journal of Agronomy, 13, 309, 10.1016/S1161-0301(00)00063-0
Booltink, 1997, Using decision support systems to optimize barley management on spatial variable soil, 2, 219
Booltink, 2001, Tools for optimizing management of spatially-variable fields, Agricultural Systems, 70, 445, 10.1016/S0308-521X(01)00055-5
Boote, K.J., Bennett, J.M., Jones, J.W., Jowers, H.E., 1989. On-farm testing of peanut and soybean models in Florida. ASAE P No. 89-4040. Am. Soc. Agr. Engr. (ASAE), St. Joseph, MI, pp. 54.
Boote, 1998, Simulation of crop growth: CROPGRO model, 651
Boote, 1998, The CROPGRO model for grain legumes, 99
Boote, 1996, Potential uses and limitations of crop models, Agronomie Journal, 88, 704, 10.2134/agronj1996.00021962008800050005x
Boote, 2002, Adapting the CROPGRO-legume model to simulate growth of faba bean, Agronomy Journal, 94, 743, 10.2134/agronj2002.0743
Boote, 1994, Modeling photosynthesis of row crop canopies, HortScience, 29, 1423, 10.21273/HORTSCI.29.12.1423
Boote, 2001, Physiology and modeling of traits in crop plants: implications for genetic improvement, Agricultural Systems, 70, 395, 10.1016/S0308-521X(01)00053-1
Boote, 1983, Coupling pests to crop growth simulators to predict yield reductions, Phytopathology, 73, 1581, 10.1094/Phyto-73-1581
Boote, K.J., Jones, J.W., Mishoe, J.W., Wilkerson, G.G., 1986. Modeling growth and yield of groundnut. Agrometeorology of Groundnut: Proceedings of an International Symposium, ICRISAT Sahelian Center, Niamey, Niger. 21–26 Aug, 1985, ICRISAT, Patancheru, A.P. 502 324, India, pp. 243–254.
Boote, 1997, Plant modeling: advances and gaps in our capability to project future crop growth and yield in response to global climate change, 179
Boote, 1994, Modeling genetic yield potential, 533
Bowen, W.T., Jones, J.W., Thornton P.K., 1992. Crop simulation as a potential tool for evaluating sustainable land management. Utilization of Soil Survey Information for Sustainable Land Use Proceedings: 11–24 July.
Braga, R., 2000. Predicting the spatial pattern of grain yield under water limiting conditions. PhD Dissertation, Agricultural and Biological Engineering Department, University of Florida, Gainesville, FL, pp. 176.
Brisson, 1989, A soybean crop simulation model: validation and adaptation to varieties cultivated in southern Europe, Agronomie, 9, 27, 10.1051/agro:19890103
Cabrera, 1994, N-show: an educational computer program that displays dynamic graphs of nitrogen in soil, Journal of Natural Resources and Life Scince Education, 23, 43, 10.2134/jnrlse.1994.0043
Carbone, 1993, Considerations of meteorological time-series in estimating regional-scale crop yield, Journal of Climate, 6, 1607, 10.1175/1520-0442(1993)006<1607:COMTSI>2.0.CO;2
Carbone, 1996, Application of remote sensing and GIS technologies with physiological crop models, American Society for Photogrammetry and Remote Sensing, 62, 171
Castrignano, 1997, Tillage effects on plant extractable soil–water in a silty clay vertisol in southern Italy, Soil and Tillage Research, 40, 227, 10.1016/S0167-1987(96)01054-9
Castrignano, 1998, A modified version of CERES-Maize model for predicting crop response to salinity stress, Ecological Modelling, 111, 107, 10.1016/S0304-3800(98)00084-2
Castelan Ortega, 2000, Evaluation of the CERES-Maize model in simulating Campesino farmer yields in the highlands of central Mexico, Experimental Agriculture, 36, 479, 10.1017/S0014479700001058
Chipanshi, 1997, Early prediction of spring wheat yields in Saskatchewan from current and historical weather data using the CERES-wheat model, Agricultural and Forest Meteorology, 84, 223, 10.1016/S0168-1923(96)02363-5
Chipanshi, 1999, Large-scale simulation of wheat yields in a semi-arid environment using a crop-growth model, Agricultural Systems, 59, 57, 10.1016/S0308-521X(98)00082-1
Colson, 1995, Soybean reproductive development: adapting a model for European cultivars, Agronomy Journal, 87, 1129, 10.2134/agronj1995.00021962008700060015x
Conde, 1997, Vulnerability of rainfed maize crops in Mexico to climate change, Climate Research, 9, 17, 10.3354/cr009017
Diaz, 1997, Climate change and its impact on the properties of agricultural soils in the Argentinean rolling pampas, Climate Research, 9, 25, 10.3354/cr009025
Doorenbos, J., Pruitt, W.D., 1977. Guidelines for predicting crop water requirements. Food and Agriculture Organization of the United Nations, Rome. Irrigation and Drainage Paper No. 24.
Duchon, 1986, Corn yield prediction using climatology, Journal of Climate and Applied Meteorology, 25, 581, 10.1175/1520-0450(1986)025<0581:CYPUC>2.0.CO;2
Egli, 1992, Planting date and soybean yield: evaluation of environmental effects with a crop simulation model: SOYGRO, Agricultural and Forest Meteorology, 62, 19, 10.1016/0168-1923(92)90003-M
Epperson, 1993, Dynamic programming for improving irrigation scheduling strategies of maize, Agricultural Systems, 42, 85, 10.1016/0308-521X(93)90070-I
Fechter, 1991, An evaluation of the SWATRER and CERES-Millet models for southwest Niger, 505
Ferreyra, 2000, Modeling peanut leaf gas exchange for the calibration of crop models for different cultivars, Ecological Modelling, 131, 285, 10.1016/S0304-3800(00)00252-0
Ferreyra, 2001, A linked-modeling framework to estimate maize production risk associated with ENSO-related climate variability in Argentina, Agricultural and Forest Meteorology, 107, 177, 10.1016/S0168-1923(00)00240-9
Fleisher, D.H., Cavazzoni, J., Giacomelli, G.A., Ting K.C., 2000. Adaption of SUBTOR for hydroponic, controlled environment white potato production. ASAE Paper 00-4089. American Society of Agricultural Engineers, St. Joseph, MI.
Gabrielle, 1996, Analysis and field-evaluation of the CERES models’ soil components: nitrogen transfer and transformations, Soil Science Society of American Journal, 60, 142, 10.2136/sssaj1996.03615995006000010023x
Gabrielle, 1998, Development and evaluation of a CERES-type model for winter oilseed rape, Field Crops Research, 57, 95, 10.1016/S0378-4290(97)00120-2
Gadgil, 1999, Modelling impact of climate variability on rainfed groundnut, Current Science, 76, 557
Geng, 1986, A simple method for generating daily rainfall data, Agricultural and Forest Meteorology, 36, 363, 10.1016/0168-1923(86)90014-6
Geng, S., Auburn, J., Brandstetter, E., Li, B., 1988. A program to simulate meteorological variables. Documentation for SIMMETEO. Agronomy Report No. 204. University of California, Davis Crop Extension, Davis, CA.
Georgiev, 1999, Near real-time agricultural simulations on the web, Simulation, 73, 22, 10.1177/003754979907300104
Gerakis, 1998, Simulation of atrazine leaching in relation to water-table management using the CERES model, Journal of Environmental Management, 52, 241, 10.1006/jema.1997.0172
Gerdes, 1994, Overestimation of soybean crop transpiration by sap flow measurements under field conditions in central Portugal, Irrigation Science, 14, 135, 10.1007/BF00193135
Giraldo, 1998, Adaptation of the DSSAT model for simulation of Brachiaria decumbens production, Pasturas Tropicales, 20, 2
Gijsman, 2002, Modifying DSSAT for low-input agricultural systems, using a soil organic matter—residue module from CENTURY, Agronomy Journal, 94, 462, 10.2134/agronj2002.0462
Godwin, 1991, Nitrogen dynamics in soil–plant systems, 287
Godwin, 1998, Nitrogen balance and crop response to nitrogen in upland and lowland cropping systems, 55, 10.1007/978-94-017-3624-4_4
Godwin, 1994, Simulation of the effect of chilling injury and nitrogen supply on floret fertility and yield in rice, Australian Journal Experimental Agricultural, 34, 921, 10.1071/EA9940921
Grimm, 1994, Modeling the occurrence of reproductive stages after flowering for four soybean cultivars, Agronomy Journal, 86, 31, 10.2134/agronj1994.00021962008600010007x
Grimm, 1993, Parameter estimation for predicting flowering date of soybean cultivars, Crop Scince, 33, 137, 10.2135/cropsci1993.0011183X003300010025x
Han, 1995, Linking a geographic information system with a potato simulation model for site-specific crop management, Journal of Environmental Quality, 24, 772, 10.2134/jeq1995.00472425002400040031x
Hansen, 2000, Scaling-up crop models for climate variability applications, Agricultural Systems, 65, 43, 10.1016/S0308-521X(00)00025-1
Hartkamp, 2002, Adaptation of the CROPGRO growth model to velvet bean as a green manure cover crop: I. Model development, Field Crops Research, 78, 9, 10.1016/S0378-4290(02)00091-6
Hasegawa, 2000, Testing CERES model predictions of crop growth and N dynamics, in cropping systems with leguminous green manures in a Mediterranean climate, Field Crops Research, 67, 239, 10.1016/S0378-4290(00)00099-X
Hasegawa, 1999, Testing CERES model predictions of N release from legume cover crop residue, Field Crops Research, 63, 255, 10.1016/S0378-4290(99)00043-X
Hatch, 1999, Potential effects of climate change on agricultural, water use in the southeast US, Journal of the American Water Resources Association, 35, 1551, 10.1111/j.1752-1688.1999.tb04237.x
Heinemann, 2000, Center pivot irrigation management optimization of dry beans in humid areas, Transactions of the ASAE, 43, 1507, 10.13031/2013.3050
Hoffmann, 1993, Model for slurry and manure in CERES and similar models, Journal Agronomy and Crop Science, 170, 330, 10.1111/j.1439-037X.1993.tb01093.x
Hodges, 1998, Water and nitrogen applications for potato: commercial and experimental rates compared to a simulation model, Journal of Sustainable Agriculture, 13, 79, 10.1300/J064v13n02_07
Hoogenboom, 1999, Decision support system for agrotechnology transfer v3.5, 4, 1
Hoogenboom, 1997, Evaluation of a crop simulation model that incorporates gene action, Agronomy Journal, 89, 613, 10.2134/agronj1997.00021962008900040013x
Hoogenboom, 1994, Crop models, 2, 95
Hoogenboom, 1994, BEANGRO: A process-oriented dry bean model with a versatile user interface, Agronomy Journal, 86, 182, 10.2134/agronj1994.00021962008600010032x
Hook, 1994, Using crop models to plan water withdrawals for irrigation in drought years, Agricultural Systems, 45, 271, 10.1016/0308-521X(94)90142-3
Hundal, 1997, Application of the CERES-Wheat model to yield predictions in the irrigated plains of the Indian Punjab, Journal of Agricultural Science, 129, 13, 10.1017/S0021859697004462
Hunkár, 1994, Validation of crop simulation model CERES-Maize, Quarterly Journal of Hungarian Meteorology Series, 98, 37
Hunt, 1998, Data for model operation, calibration, and evaluation, 9
Hunt, 2001, Agronomic data: advances in documentation and protocols for exchange and use, Agricultural Systems, 70, 477, 10.1016/S0308-521X(01)00056-7
Iglesias, 2000, Agricultural impacts of climate change in Spain: developing tools for a spatial analysis, Global Environmental Change, 10, 69, 10.1016/S0959-3780(00)00010-8
International Benchmark Sites Network for Agrotechnology Transfer. 1993. The IBSNAT Decade. Department of Agronomy and Soil Science, College of Tropical Agriculture and Human Resources, University of Hawaii, Honoluly, Hawaii.
Irmak, 1999, Evaluating methods for simulating soybean culitvar responses using cross validation, Agronomy Journal, 92, 1140, 10.2134/agronj2000.9261140x
Irmak, 2001, Linking multiple layers of information for diagnosing causes of spatial yield variability, Trans. ASAE, 45, 839
Jagtap, 1999, Long-term assessment of nitrogen and variety technologies on attainable maize yields in Nigeria using CERES-maize, Agricultural Systems, 60, 77, 10.1016/S0308-521X(99)00019-0
Jame, 1996, Crop growth-models for decision-support systems, Canadian Journal of Plant Science, 76, 9, 10.4141/cjps96-003
Jinghua, 1996, The impacts of potential climate change and climate variability on simulated maize production in China, Water, Air and Soil Pollution, 92, 75, 10.1007/BF00175554
Jintrawet, 1995, A decision support system for rapid assessment of lowland rice-based cropping alternatives in Thailand, Agricultural Systems, 47, 245, 10.1016/0308-521X(94)P4414-W
Jones, 1986
Jones, 1991, EPIC: an operational model for evaluation of agricultural sustainability, Agricultural Systems, 37, 341, 10.1016/0308-521X(91)90057-H
Jones J.W. Ritchie, J.T., 1991. Crop growth models In: Hoffman, G.J, Howell, T.A., Solomon, K.H. (Eds.), Management of Farm Irrigation Systems, American Society for Agricultural Engineering, pp. 63–89.
Jones, 1993, Decision support systems for agricultural development, 459, 10.1007/978-94-011-2840-7_28
Jones, J.W., Boote, K.J., Hoogenboom, G., Jagtap, S.S., Wilkerson, G.G., 1989. SOYGRO V5.42, Soybean Crop Growth Simulation Model. User's Guide. Fl. Agric. Exp. Sta., Journal No. 8304. University of Florida, Gainesville. pp. 53.
Jones, 1998, Decision support system for agrotechnology transfer; DSSAT v3, 157
Jones, 2000, Potential benefits of climate forecasting to agriculture, Agriculture Ecosystems and Environment, 82, 169, 10.1016/S0167-8809(00)00225-5
Jones, 1994, Input and output files, 2, 1
Jones, 2001, Approaches to modular model development, Agricultural Systems, 70, 421, 10.1016/S0308-521X(01)00054-3
Kamel, 1995, Integrated wheat crop management based on generic task knowledge-based systems and CERES numerical-simulation, AI Applications, 9, 17
Kaur, 1999, Forecasting growth and yield of groundnut (Arachis hypogaea) with a dynamic simulation model ‘PNUTGRO’ under Punjab conditions, Journal of Agricultural Science, 133, 167, 10.1017/S0021859699006796
Keating, 1991, Optimising nitrogen inputs in response to climatic risk
Kovács, 1995, Testing simulation models for the assessment of crop production and nitrate leaching in Hungary, Agricultural Systems, 49, 385, 10.1016/0308-521X(95)00032-Z
Kraalingen, D.W.G. van, 1990. The fortran version of CSMP MACROS (Modules for Annual CRop Simulation). Simulation reports CABO-TT; nr. 21. Centre for Agrobiological Research and Deptarment of Theoretical Production Ecology, Agricultural University, Wageningen, the Netherlands.
Kraalingen, D.W.G. van, 1991. The FSE system for crop simulation. Simulation reports CABO-TT; nr. 23. Centre for Agrobiological Research and Deptarment of Theoretical Production Ecology, Agricultural University, Wageningen, the Netherlands.
Kraalingen, D.W.G. van. 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.
Kraalingen, D.W.G. van, Rappoldt C., Van Laar, H.H., 2003. The Fortran simulation translator, a simulation language. European Journal of Agronomy 18, 359–361.
Lacey, 1989
Lal, 1998, Vulnerability of rice and wheat yields in NW India to future changes in climate, Agricultural and Forest Meteorology, 89, 101, 10.1016/S0168-1923(97)00064-6
Lal, 1999, Growth and yield responses of soybean in Madhya Pradesh, India to climate variability and change, Agricultural and Forest Meteorology, 93, 53, 10.1016/S0168-1923(98)00105-1
Landau, 1998, Testing winter wheat simulation models’ predictions against observed UK grain yields, Agricultural and Forest Meteorology, 89, 85, 10.1016/S0168-1923(97)00069-5
Luo, 1995, Simulation studies on risk analysis of rice leaf blast epidemics associated with global climate-change in several Asian countries, Journal of Biogeography, 22, 673, 10.2307/2845969
Luo, 1997, A rice-leaf blast combined model for simulation of epidemics and yield loss, Agricultural Systems, 53, 27, 10.1016/S0308-521X(96)00038-8
Luo, 1998, The effects of global temperature change on rice leaf blast epidemics: a simulation study in three agroecological zones, Agriculture Ecosystems and Environment, 68, 187, 10.1016/S0167-8809(97)00082-0
MacRobert, 1998, The use of a crop simulation model for planning wheat irrigation in Zimbabwe, 205
Magrin, 1997, Vulnerability of the agricultural systems of Argentina to climate change, Climate Research, 9, 31, 10.3354/cr009031
Mavromatis, 2001, Developing genetic coefficients for crop simulation models with data from crop performance trials, Crop Science, 41, 40, 10.2135/cropsci2001.41140x
Mavromatis, 2002, Repeatability of model genetic coefficients derived from soybean performance trials cross different states, Crop Sci., 42, 76, 10.2135/cropsci2002.0076
Maytin, 1995, Potential effects of global climatic-change on the phenology and yield of maize in Venezuela, Climatic Change, 29, 189, 10.1007/BF01094016
Mbabaliye, 1994, Problems and perspectives on the use of a crop simulation model in an African research station, Experimental Agriculture, 30, 441, 10.1017/S0014479700024686
Mearns, 2001, Comparative responses of EPIC and CERES crop models to high and low spatial resolution climate change scenarios, Journal of Geophysical Research, 104, 6623, 10.1029/1998JD200061
Mearns, 1996, The effect of changes in daily and interannual climatic variability of CERES-Wheat: a sensitivity study, Climatic Change, 32, 257, 10.1007/BF00142465
Messina, 1999, Land allocation conditioned on El Nino-Southern Oscillation phases in the Pampas of Argentina, Agricultural Systems, 60, 197, 10.1016/S0308-521X(99)00032-3
McClendon, 1996, Optimal control and neural networks applied to peanut irrigation management, Transactions of the ASAE, 39, 275, 10.13031/2013.27507
McCown, 1996, APSIM: a novel software system for model development, model testing and simulation in agricultural systems research, Agricultural Systems, 50, 255, 10.1016/0308-521X(94)00055-V
McCown, 2001, Learning to bridge the gap between science-based decision support and the practice of farming: evolution in paradigms of model-based research and intervention from design to dialogue, Australian Journal of Agricultural Research, 52, 549, 10.1071/AR00119
Meira, 1997, Application of SOYGRO in Argentina, 235
Meisner, 1991, Using crop models in a beginning crop science laboratory, Journal of Agronomic Education, 20, 157, 10.2134/jae1991.0157
Mishoe, 1984, Using crop and pest models for management applications, Agricultural Systems, 15, 153, 10.1016/0308-521X(84)90025-8
Monteith, 1986, How do crops manipulate water supply and demand?, Philosophical Transactions of the Royal Society London A, 316, 245, 10.1098/rsta.1986.0007
Moulin, 1993, Evaluation of the CERES and EPIC models for predicting spring wheat grain yield over time, Canadian Journal Plant Sciences, 73, 713, 10.4141/cjps93-093
Muchena, 1995, Vulnerability of maize yields to climate change in different farming sectors in Zimbabwe, 229
Ortiz, 1998, Crop simulation models as an educational tool, 383
Pang, 1998, Evaluation of nitrate leaching potential in Minnesota glacial outwash soils using the CERES-Maize model, Journal of Environmental Quality, 27, 75, 10.2134/jeq1998.00472425002700010012x
Penning de Vries, 1982, Simulation of growth processes and the model BACROS, 114
Parton, 1988, Dynamics of C, N, P and S in grassland soils: a model, Biogeochemistry, 5, 109, 10.1007/BF02180320
Parton, 1994, A general model for soil organic matter dynamics: sensitivity to litter chemistry, texture and management, 147
Paz, 1998, Analysis of water stress effects causing spatial yield variability, Transactions of the ASAE, 41, 1527, 10.13031/2013.17284
Paz, 1999, Model-based technique to determine variable rate nitrogen for corn, Agricultural Systems, 61, 69, 10.1016/S0308-521X(99)00035-9
Paz, 2001, A modeling approach to quantifying the effects of spatial soybean yield limiting factors, Trans. ASAE, 44, 1329
Paz, 2001, Estimating potential economic return for variable rate management in soybeans, Trans. ASAE, 44, 1335
Pfeil, 1992, Calibration of the simulation model ‘Ceres Wheat’ under conditions of soils with shallow watertable and temperate climate. Part 1: limitations in the applicability of the original model and necessary modifications, Zeitschrift fuer Pflanzenernähr Bodenk, 155, 323, 10.1002/jpln.19921550414
Pfeil, 1992, Calibration of the simulation model ‘Ceres Wheat’ under conditions of soils with shallow watertable and temperate climate. Part 2: verification of the modified model ‘Ceres Wheat’, Zeitschrift fuer Pflanzenernähr Bodenk, 155, 327, 10.1002/jpln.19921550415
Phillips, 1998, ENSO, seasonal rainfall patterns and simulated maize yield variability in Zimbabwe, Agricultural and Forest Meteorology, 90, 39, 10.1016/S0168-1923(97)00095-6
Pinnschmidt, 1995, Simulation of multiple species pest damage in rice using CERES-rice, Agricultural Systems, 48, 193, 10.1016/0308-521X(94)00012-G
Piper, 1996, Comparison of two phenology models for predicting flowering and maturity date of soybean, Crop Science, 36, 1606, 10.2135/cropsci1996.0011183X003600060033x
Piper, 1998, Evaluation and improvement of crop models using regional cultivar trial data, Applied Engineering in Agriculture, 14, 435, 10.13031/2013.19391
Piper, 1996, The role of daily minimum temperature in modulating the development rate to flowering in soybean, Field Crop Research, 47, 211, 10.1016/0378-4290(96)00015-9
Pisani, 1987, The CERES-MAIZE model as a potential tool for drought assessment in South Africa, Water SA, 13, 159
Podesta, G., Letson, D., Messina, C.D., Royce, F., Ferreyra, R.A., Jones, J.W., Jones, J.W., Llovet, I., Grondona, M., O'Brien, J.J., 2002. Use of ENSO-related climate information in agricultural decision making in Argentina. Agricultural Systems (in press).
Porter, C., Jones, J.W., Braga, R., 2000. An approach for modular crop model development. International Consortium for Agricultural Systems Applications, 2440 Campus Rd., 527 Honolulu, HI 96822, pp. 13. Available from http://www.icasanet.org/modular/index.html.
Priestley, 1972, On the assessment of surface heat flux and evaporation using large scale parameters, Monthly Weather Review, 100, 81, 10.1175/1520-0493(1972)100<0081:OTAOSH>2.3.CO;2
Quemada, 1995, CERES-N model predictions of nitrogen mineralized from cover crop residues, Soil Science Society of American Journal, 59, 1059, 10.2136/sssaj1995.03615995005900040015x
Richardson, 1981, Stochastic simulation of daily precipitation, temperature, and solar radiation, Water Resources Research, 17, 182, 10.1029/WR017i001p00182
Richardson, 1985, Weather simulation for crop management models, Transactions of the ASAE, 28, 1602, 10.13031/2013.32484
Ritchie, 1972, Model for predicting evaporation from a row crop with incomplete cover, Water Resources Research, 8, 1204, 10.1029/WR008i005p01204
Ritchie, 1998, Soil water balance and plant stress, 41
Ritchie, 1985, Description and performance of CERES-Wheat: a user-oriented wheat yield model, 159
Ritchie, 1998, Cereal growth, development and yield, 79
Rosenzweig, 1996, Effects of changes in minimum and maximum temperature on wheat yields in the central US—a simulation study, Agricultural and Forest Meteorology, 80, 215, 10.1016/0168-1923(95)02299-6
1995, 382
Royce, 2002, Model-Based Optimization of Crop Management for Climate Forecast Applications, Trans. ASAE, 44, 1319
Ruiz-Nogueria, 2001, Calibration and use of CROPGRO-soybean model for improving soybean management under rainfed conditions, Agricultural Systems, 68, 151, 10.1016/S0308-521X(01)00008-7
Saarikko, 2000, Applying a site based crop model to estimate regional yields under current and changed climates, Ecological Modelling, 131, 191, 10.1016/S0304-3800(00)00257-X
Sadler, 2000, Sit-specific modeling of corn yield in the SE coastal plain, Agricultural Systems, 64, 189, 10.1016/S0308-521X(00)00022-6
Salam, 2001, Predicting nursery growth and transplanting shock in rice, Experimental Agriculture, 37, 65, 10.1017/S0014479701001016
Sau, 1999, Evaluation and improvement of CROPGRO-soybean model for a cool environment in Galicia, northwest Spain, Field Crops Research, 61, 273, 10.1016/S0378-4290(98)00168-3
Savin, 1995, Assessing strategies for wheat cropping in the monsoonal climate of the Pampas using the CERES-Wheat simulation model, Field Crops Research, 42, 81, 10.1016/0378-4290(95)00029-P
Scholberg, 1997, Adaptation of the CROPGRO model to simulate the growth of field-grown tomato, 133, 10.1007/978-94-017-0754-1_9
Seidl, 2001, GIS-crop model based decision support system to evaluate corn and soybean prescriptions, Applied Engineering in Agriculture, 17, 721, 10.13031/2013.6904
Seligman, 1981, PAPRAN: a simulation model of annual pasture production limited by rainfall and nitrogen, 192
Semenov, 1996, Comparison of wheat simulation models under climate change. II. Application of climate change scenarios, Climate Research, 7, 271, 10.3354/cr007271
Sexton, 1998, Evaluation of CROPGRO for prediction of soybean nitrogen balance in a Midwestern environment, Transactions of the ASAE, 41, 1543, 10.13031/2013.17286
Singh, 1999, Soybean (Glycine max) yield prediction from current and historical weather data using CROPGRO model, Indian Journal of Agricultural Sciences, 69, 639
Singh, 1994, Evaluation of the groundnut model PNUTGRO for crop response to plant population and row spacing, Field Crops Research, 39, 163, 10.1016/0378-4290(94)90018-3
Singh, 1994, Evaluation of the groundnut model PNUTGRO for crop response to water availability, sowing dates, and seasons, Field Crops Research, 39, 147, 10.1016/0378-4290(94)90017-5
Singh, 1999, Soybean–chickpea rotation on vetric inceptisols: 2. Long-term simulation of water balance and crop yields, Field Crops Research, 63, 225, 10.1016/S0378-4290(99)00038-6
Singh, 1999, Soybean–chickpea rotation on vertic inceptisols: 1. Effect of soil depth and landform on light interception, water balance and crop yields, Field Crops Research, 63, 211, 10.1016/S0378-4290(99)00037-4
Singh, 1990, Modelling the impact of climate change on agricultural production in the South Pacific, 521
Singh, 1993, Maize modeling in Malawi: a tool for soil fertility research and development, 253, 10.1007/978-94-011-2840-7_15
Singh, 1994, Modeling growth and yield of chickpea (Cicer arietinum L.), Field Crops Research, 46, 1
Singh, 1998, Modeling growth and development of root and tuber crops, 129
Soil Conservations Service (SCS) 1972. National Engineering Handbook, Hydrology Section 4, Chapters 4–10.
Southworth, 2000, Consequences of future climate change and changing climate variability on maize yields on the midwestern United States, Agriculture Ecosystems and Environment, 82, 139, 10.1016/S0167-8809(00)00223-1
Steele, 2000, Irrigation management for corn in the northern Great Plains, USA, Irrigation Science, 19, 107, 10.1007/PL00006709
Swaney, 1983, Real-time irrigation decision analysis using simulation, Transactions of the ASAE, 26, 562, 10.13031/2013.33979
Thornton, 1995, Application of a maize crop simulation model in the central region of Malawi, Experimental Agriculture, 31, 213, 10.1017/S0014479700025291
Thornton, 1997, Estimating millet production for famine early warning: an application of crop simulation modelling using satellite and ground-based data in Burkina Faso, Agricultural and Forest Meteorology, 83, 95, 10.1016/S0168-1923(96)02348-9
Travasso, 1998, Utility of CERES-Barley under Argentine conditions, Field Crops Research, 57, 329, 10.1016/S0378-4290(98)00079-3
Travasso, 1996, Yield prediction using the substor-potato model under Argentinean conditions, Potato Research, 39, 305, 10.1007/BF02360922
1994
Tsuji, 1998, Network management and information dissemination for agrotechnology transfer, 367
1998, 400
Tubiello, 1995, Interactions of CO2 temperature and management practices: simulations with a modified version of CERES-Wheat, Agricultural Systems, 49, 135, 10.1016/0308-521X(94)00044-R
Tubiello, 2001, Testing CERES-wheat with free-air carbon dioxide enrichment (FACE) experiment data: CO2 and water interactions, Agronomy Journal, 91, 247, 10.2134/agronj1999.00021962009100020012x
Uehara, 1989, Technology transfer in the tropics, Outlook Agricultural, 18, 38, 10.1177/003072708901800107
Uehara, 1998, Synthesis, 389
Uehara, 1998, Overview of IBSNAT, 1
Vos, 1987, Preliminary evaluation of two maize (Zea mays L.) growth-simulation models, South African Journal of Plant Soil, 4, 131, 10.1080/02571862.1987.10634959
Wafula, 1995, Applications of crop simulation in agricultural extension and research in Kenya, Agricultural Systems, 49, 399, 10.1016/0308-521X(95)00033-2
Wagner-Riddle, 1997, Modeling a rye cover crop and subsequent soybean yield, Agronomy Journal, 89, 208, 10.2134/agronj1997.00021962008900020010x
Welch, 2002, PCYield: Model-Based Decision Support for PRIVATE Soybean Production, Agricultural Systems, 74, 79, 10.1016/S0308-521X(02)00022-7
White, 1996, Simulating effects of genes for physiological traits in a process-oriented crop model, Agronomy Journal, 88, 416, 10.2134/agronj1996.00021962008800030009x
White, 1995, Evaluation of the dry bean model BEANGRO V1.01 for crop production research in a tropical environment, Experimental Agriculture, 31, 241, 10.1017/S001447970002531X
Wilkerson, 1983, Modeling soybean growth for crop management, Transactions of the ASAE, 26, 63, 10.13031/2013.33877
Williams, 1984, A modeling approach to determining the relationships between erosion and soil productivity, Transactions of the ASAE, 27, 129, 10.13031/2013.32748
Wolf, 1996, Comparison of wheat simulation models under climate change. I. Model calibration and sensitivity analyses, Climate Research, 7, 253, 10.3354/cr007253
Zalud, 2000, Change of spring barley production potential using crop model CERES-Barley, Rostlinna Vyroba, 46, 423
Zalud, 2001, Estimation of winter wheat nitrogen stress using the CERES crop model, Rostlinna Vyroba, 47, 253