Determining optimum sowing date for maize using modelling approach.
The objective of this study was to determine the optimum sowing date for maize at Santo Antonio de Goiás, GO, Brazil. To optimize solar radiation and precipitation during the maize sowing period (from October to December) it was used the crop model CEREAL06 from Ecotrop plataform. To mimic the conditions of region, two scenarios were created: a) no restriction to root development (1.0 m effective root depth) and b) restrictions to root development (Al toxic in the subsoil - 0.5 m effective root depth). The crop model was run based on the climate historical date (22 years of daily data for precipitation, solar radiation, maximum and minimum temperature, maximum and minimum relative humidity, and wind speed) collected at Embrapa Rice & Beans weather station. Six different sowing dates (15/10, 01/11, 15/11, 1/12, 15/12, and 31/12) were taken into account. The decision criterions used to determine the optimum sowing date were the variability, comparison of exceedance probability and mean variation for yield and the averaged index stress factor for the reproductive period. The results obtained showed that the optimum sowing date for both scenarios was 15-Nov.
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2008-09-10
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Subjects: | Crop model, Root depth., Milho, Zea Mays., |
Online Access: | http://www.alice.cnptia.embrapa.br/alice/handle/doc/217365 |
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dig-alice-doc-2173652017-08-16T03:10:05Z Determining optimum sowing date for maize using modelling approach. HEINEMANN, A. B. STONE, L. F. ALEXANDRE BRYAN HEINEMANN, CNPAF; LUIS FERNANDO STONE, CNPAF. Crop model Root depth. Milho Zea Mays. The objective of this study was to determine the optimum sowing date for maize at Santo Antonio de Goiás, GO, Brazil. To optimize solar radiation and precipitation during the maize sowing period (from October to December) it was used the crop model CEREAL06 from Ecotrop plataform. To mimic the conditions of region, two scenarios were created: a) no restriction to root development (1.0 m effective root depth) and b) restrictions to root development (Al toxic in the subsoil - 0.5 m effective root depth). The crop model was run based on the climate historical date (22 years of daily data for precipitation, solar radiation, maximum and minimum temperature, maximum and minimum relative humidity, and wind speed) collected at Embrapa Rice & Beans weather station. Six different sowing dates (15/10, 01/11, 15/11, 1/12, 15/12, and 31/12) were taken into account. The decision criterions used to determine the optimum sowing date were the variability, comparison of exceedance probability and mean variation for yield and the averaged index stress factor for the reproductive period. The results obtained showed that the optimum sowing date for both scenarios was 15-Nov. 2016-04-05T07:25:56Z 2016-04-05T07:25:56Z 2008-09-10 2008 2016-04-05T07:25:56Z Parte de livro In: INTERNATIONAL CONFERENCE OF AGRICULTURAL ENGINEERING; BRAZILIAN CONGRESS OF AGRICULTURAL ENGINEERING, 37.; INTERNATIONAL LIVESTOCK ENVIRONMENT SYMPOSIUM - ILES, 8., 2008, Foz do Iguaçu. Technology for all: sharing the knowledge for development: proceedings... Foz do Iguaçu: SBEA, 2008. http://www.alice.cnptia.embrapa.br/alice/handle/doc/217365 pt_BR por openAccess 1 CD-ROM. |
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Crop model Root depth. Milho Zea Mays. Crop model Root depth. Milho Zea Mays. |
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Crop model Root depth. Milho Zea Mays. Crop model Root depth. Milho Zea Mays. HEINEMANN, A. B. STONE, L. F. Determining optimum sowing date for maize using modelling approach. |
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The objective of this study was to determine the optimum sowing date for maize at Santo Antonio de Goiás, GO, Brazil. To optimize solar radiation and precipitation during the maize sowing period (from October to December) it was used the crop model CEREAL06 from Ecotrop plataform. To mimic the conditions of region, two scenarios were created: a) no restriction to root development (1.0 m effective root depth) and b) restrictions to root development (Al toxic in the subsoil - 0.5 m effective root depth). The crop model was run based on the climate historical date (22 years of daily data for precipitation, solar radiation, maximum and minimum temperature, maximum and minimum relative humidity, and wind speed) collected at Embrapa Rice & Beans weather station. Six different sowing dates (15/10, 01/11, 15/11, 1/12, 15/12, and 31/12) were taken into account. The decision criterions used to determine the optimum sowing date were the variability, comparison of exceedance probability and mean variation for yield and the averaged index stress factor for the reproductive period. The results obtained showed that the optimum sowing date for both scenarios was 15-Nov. |
author2 |
ALEXANDRE BRYAN HEINEMANN, CNPAF; LUIS FERNANDO STONE, CNPAF. |
author_facet |
ALEXANDRE BRYAN HEINEMANN, CNPAF; LUIS FERNANDO STONE, CNPAF. HEINEMANN, A. B. STONE, L. F. |
format |
Parte de livro |
topic_facet |
Crop model Root depth. Milho Zea Mays. |
author |
HEINEMANN, A. B. STONE, L. F. |
author_sort |
HEINEMANN, A. B. |
title |
Determining optimum sowing date for maize using modelling approach. |
title_short |
Determining optimum sowing date for maize using modelling approach. |
title_full |
Determining optimum sowing date for maize using modelling approach. |
title_fullStr |
Determining optimum sowing date for maize using modelling approach. |
title_full_unstemmed |
Determining optimum sowing date for maize using modelling approach. |
title_sort |
determining optimum sowing date for maize using modelling approach. |
publishDate |
2008-09-10 |
url |
http://www.alice.cnptia.embrapa.br/alice/handle/doc/217365 |
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AT heinemannab determiningoptimumsowingdateformaizeusingmodellingapproach AT stonelf determiningoptimumsowingdateformaizeusingmodellingapproach |
_version_ |
1756022304391823360 |