Modifying DSSAT Crop Models for Low‐Input Agricultural Systems Using a Soil Organic Matter–Residue Module from CENTURY
Author:
Affiliation:
1. Centro Internacional de Agricultura Tropical (CIAT) Apartado Aéreo 6713 Cali Colombia
2. Dep. of Biol. and Agric. Eng. Univ. of Georgia Griffin GA 30223
3. Nat. Resour. Ecology Lab. Colorado State Univ. Fort Collins CO 80523
Publisher
Wiley
Subject
Agronomy and Crop Science
Link
https://onlinelibrary.wiley.com/doi/pdf/10.2134/agronj2002.4620
Reference46 articles.
1. Irrigation strategy selection based on crop yield, water, and energy use relationships: A Michigan example;Algozin K.A.;J. Soil Water Conserv.,1988
2. Aggregate-Protected and Unprotected Organic Matter Pools in Conventional- and No-Tillage Soils
3. The CROPGRO model for grain legumes
4. Evaluation of the Nitrogen Submodel of CERES‐Maize Following Legume Green Manure Incorporation
5. Bowen W.T. andP.W.Wilkens.1998.Application of a decision support system (DSSAT) at the field level: Nitrogen management in variable‐charged soils. p.23–31.InQuantitative approaches in systems analysis no. 16. Proc. Int. Workshop Inf. Technol. as a Tool to Assess Land Use Options in Space and Time Lima Peru. 28 Sept.–4 Oct. 1997. Centro Internacional de la Papa (CIP) Lima Peru.
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