Simulation of Grain Yield and Biomass of Corn at Different Irrigation Regimes and Nitrogen Application

DSSAT-CMS computer model simulates growth, development and crop production under the management conditions such as variation in soil moisture, soil carbon, soil nitrogen and nitrogen leaching. In this study, first CERES-Maize model with 20% moisture depletion and then grain yield and biomass of corn...

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Main Authors: M Haghjoo, A. Bahrani
Format: Article
Language:fas
Published: Islamic Azad University, Tabriz Branch 2015-05-01
Series:Ikufīziyuluzhī-i Giyāhān-i Zirā̒ī
Subjects:
Online Access:http://jcep.iaut.ac.ir/article_516704_84fb5d4c925b9489df25017b0afd1118.pdf
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spelling doaj-539faeaa3b49475b88d553e25b4b665b2020-11-24T23:31:15ZfasIslamic Azad University, Tabriz BranchIkufīziyuluzhī-i Giyāhān-i Zirā̒ī2538-18222476-731X2015-05-0191(33) بهار167176516704Simulation of Grain Yield and Biomass of Corn at Different Irrigation Regimes and Nitrogen ApplicationM Haghjoo0A. Bahrani1Department of Agriculture, Ramhormoz Branch, Islamic Azad University, Ramhormoz, IranDepartment of Agriculture, Ramhormoz Branch, Islamic Azad University, Ramhormoz, IranDSSAT-CMS computer model simulates growth, development and crop production under the management conditions such as variation in soil moisture, soil carbon, soil nitrogen and nitrogen leaching. In this study, first CERES-Maize model with 20% moisture depletion and then grain yield and biomass of corn at harvesting time were calibrated. Calibration coefficients for corn single cross 260 were P1=169, P2=0.386, P5750, G2=775.9, G3=8.82 and PHINT39.20. Results showed that the model estimates grain yield and biomass in normalized mean root of error squares (RMSEn), Wilmot agreement index (d) and correlation (R2) coefficient at 18, 90 and 82 percent and 29, 84 and 84 percent respectively. Therefore, CERES-Maize model has the high precision in simulation of these two traits and also simulation was desirable in Shiraz region. The model simulated grain yield better than biomass. In general, the model can be used for irrigation and nitrogen management in the region.http://jcep.iaut.ac.ir/article_516704_84fb5d4c925b9489df25017b0afd1118.pdfNitrogen FertilizerSimulationValidationwater stress
collection DOAJ
language fas
format Article
sources DOAJ
author M Haghjoo
A. Bahrani
spellingShingle M Haghjoo
A. Bahrani
Simulation of Grain Yield and Biomass of Corn at Different Irrigation Regimes and Nitrogen Application
Ikufīziyuluzhī-i Giyāhān-i Zirā̒ī
Nitrogen Fertilizer
Simulation
Validation
water stress
author_facet M Haghjoo
A. Bahrani
author_sort M Haghjoo
title Simulation of Grain Yield and Biomass of Corn at Different Irrigation Regimes and Nitrogen Application
title_short Simulation of Grain Yield and Biomass of Corn at Different Irrigation Regimes and Nitrogen Application
title_full Simulation of Grain Yield and Biomass of Corn at Different Irrigation Regimes and Nitrogen Application
title_fullStr Simulation of Grain Yield and Biomass of Corn at Different Irrigation Regimes and Nitrogen Application
title_full_unstemmed Simulation of Grain Yield and Biomass of Corn at Different Irrigation Regimes and Nitrogen Application
title_sort simulation of grain yield and biomass of corn at different irrigation regimes and nitrogen application
publisher Islamic Azad University, Tabriz Branch
series Ikufīziyuluzhī-i Giyāhān-i Zirā̒ī
issn 2538-1822
2476-731X
publishDate 2015-05-01
description DSSAT-CMS computer model simulates growth, development and crop production under the management conditions such as variation in soil moisture, soil carbon, soil nitrogen and nitrogen leaching. In this study, first CERES-Maize model with 20% moisture depletion and then grain yield and biomass of corn at harvesting time were calibrated. Calibration coefficients for corn single cross 260 were P1=169, P2=0.386, P5750, G2=775.9, G3=8.82 and PHINT39.20. Results showed that the model estimates grain yield and biomass in normalized mean root of error squares (RMSEn), Wilmot agreement index (d) and correlation (R2) coefficient at 18, 90 and 82 percent and 29, 84 and 84 percent respectively. Therefore, CERES-Maize model has the high precision in simulation of these two traits and also simulation was desirable in Shiraz region. The model simulated grain yield better than biomass. In general, the model can be used for irrigation and nitrogen management in the region.
topic Nitrogen Fertilizer
Simulation
Validation
water stress
url http://jcep.iaut.ac.ir/article_516704_84fb5d4c925b9489df25017b0afd1118.pdf
work_keys_str_mv AT mhaghjoo simulationofgrainyieldandbiomassofcornatdifferentirrigationregimesandnitrogenapplication
AT abahrani simulationofgrainyieldandbiomassofcornatdifferentirrigationregimesandnitrogenapplication
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