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Comparative study of two crop yield simulation models

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  • Xevi, E.
  • Gilley, J.
  • Feyen, J.

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  • Xevi, E. & Gilley, J. & Feyen, J., 1996. "Comparative study of two crop yield simulation models," Agricultural Water Management, Elsevier, vol. 30(2), pages 155-173, April.
  • Handle: RePEc:eee:agiwat:v:30:y:1996:i:2:p:155-173
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    References listed on IDEAS

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    1. Slabbers, P. J. & Herrendorf, V. Sorbello & Stapper, M., 1979. "Evaluation of simplified water-crop yield models," Agricultural Water Management, Elsevier, vol. 2(2), pages 95-129, June.
    2. Gulati, H. S. & Murty, V. V. N., 1979. "A model for optimal allocation of canal water based on crop production functions," Agricultural Water Management, Elsevier, vol. 2(1), pages 79-91, March.
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    Cited by:

    1. Chowdary, V.M. & Rao, N.H. & Sarma, P.B.S., 2005. "Decision support framework for assessment of non-point-source pollution of groundwater in large irrigation projects," Agricultural Water Management, Elsevier, vol. 75(3), pages 194-225, July.
    2. Singh, Uttam Kumar & Ren, Li & Kang, Shaozhong, 2010. "Simulation of soil water in space and time using an agro-hydrological model and remote sensing techniques," Agricultural Water Management, Elsevier, vol. 97(8), pages 1210-1220, August.
    3. Noemi Mancosu & Donatella Spano & Morteza Orang & Sara Sarreshteh & Richard Snyder, 2016. "SIMETAW# - a Model for Agricultural Water Demand Planning," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 30(2), pages 541-557, January.
    4. Noemi Mancosu & Donatella Spano & Morteza Orang & Sara Sarreshteh & Richard L. Snyder, 2016. "SIMETAW# - a Model for Agricultural Water Demand Planning," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 30(2), pages 541-557, January.
    5. Arora, V. K. & Gajri, P. R., 2000. "Assessment of a crop growth-water balance model for predicting maize growth and yield in a subtropical environment," Agricultural Water Management, Elsevier, vol. 46(2), pages 157-166, December.
    6. O'Neal, Monte R. & Frankenberger, Jane R. & Ess, Daniel R., 2002. "Use of CERES-Maize to study effect of spatial precipitation variability on yield," Agricultural Systems, Elsevier, vol. 73(2), pages 205-225, August.
    7. Daroub, Samira H. & Gerakis, Argyrios & Ritchie, Joe T. & Friesen, Dennis K. & Ryan, John, 2003. "Development of a soil-plant phosphorus simulation model for calcareous and weathered tropical soils," Agricultural Systems, Elsevier, vol. 76(3), pages 1157-1181, June.
    8. Kaur, Rajbir & Arora, VK, 2018. "Assessing spring maize responses to irrigation and nitrogen regimes in north-west India using CERES-Maize model," Agricultural Water Management, Elsevier, vol. 209(C), pages 171-177.

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