Simulation the effect of the water stress in the sorghum in Red Ferralitic soils

Main Article Content

Felicita González-Robaina
Rosabel Delgado-Acosta
Yunier Díaz-Pérez
Julián Herrera-Puebla
Teresa López-Seijas
Greco Cid-Lazo

Abstract

The prediction of the yield of cultivations has been a high-priority objective, so much with the purpose of increasing the knowledge of the relationships climate-water-soil-cultivation, like to generate information that can take advantage in the planning and management of the agricultural production. AquaCrop is a simulation model designed for the analysis of the productivity of different cultivations in answer to the available water. The pattern carries out a balance of water in the floor and it evaluates impacts of the water stress on the production. The goal of the work was evaluate the model prediction capacity to simulate water stress for the sorghum in Red Ferralitic soil. The data were obtained of field experiments carried out in the experimental station of the Institute of Investigations of Irrigation and Draining, Alquizar. The grain yield predictions of the model were good with a value of 0,5 t ha-1 for the root mean square error (RMSE), modeling efficiency of 0,80 and Will mott´s index of agreement (d) of 0,95. The simulation with water stress showed a decrease of canopy cover, biomass production and yield of the sorghum in a 11, 16,5 and 18,8% respectively with relationship to the one obtained without water stress. For the two categories of selected year (dry and humid), with single watering guarantees to replace the critical stages of the cultivation the agricultural yield in the humid year was superior in 17,8% with values of 4,77 t ha-1 in comparison to the dry one.

Article Details

How to Cite
González-Robaina, F., Delgado-Acosta, R., Díaz-Pérez, Y., Herrera-Puebla, J., López-Seijas, T., & Cid-Lazo, G. (2018). Simulation the effect of the water stress in the sorghum in Red Ferralitic soils. Ingeniería Agrícola, 8(1), 3–12. Retrieved from https://revistas.unah.edu.cu/index.php/IAgric/article/view/845
Section
Artículos Originales

References

ARAYA, A.; KISEKKA, I.; HOLMAN, J.: Evaluating deficit irrigation management strategies for grain sorghum using AquaCrop. Irrig Sci, DOI 10.1007/s00271-016-0515-7, Springer-Verlag Berlin Heidelberg, 17pp. 2016.

CANET, R.; RIVERO, L.; ARMENTEROS, M.: Guía técnica para el cultivo del sorgo (Sorghum bicolor L. Moench). Instituto de Investigaciones de Granos. ISBN: 978-959-7248-03-3, 36 pp., 2016.

CID, G.; LÓPEZ, T.; GONZÁLEZ, F.; HERRERA, J.; RUÍZ, M.: “Propiedades físicas de algunos suelos de Cuba y su uso en modelos de simulación”, Revista Ciencias Técnicas Agropecuarias, ISSN-1010-2760, RNPS-0111, 20(2): 42-46., 2011.

DOORENBOS, J.; KASSAM, A.: Yield response to water. Irrigation and Drainage, Paper 33, Food and Agriculture Organization of the United Nations, Rome, 193 pp., ISBN 92-5-300744-3, 1986.

FLORES, G.; OJEDA, H.B.; FLORES, H.; SIFUENTES, E.; MEJIA, E.: Simulación del rendimiento de Maíz (Zea mays L.) en el norte de Sinaloa usando el modelo Aquacrop, Agrociencia, ISSN 1405-3195, 47(4): 347-359, 2013.

GONZÁLEZ, F.; HERRERA, J.; LÓPEZ, T.; CID, G.: “Productividad del agua en algunos cultivos agrícolas en Cuba”, Revista Ciencias Técnicas Agropecuarias , ISSN-1010-2760, RNPS-0111, 23(4) (octubre-noviembre-diciembre): 21-27, 2014.

HENG, L.; HSIAO, T.; EVETT, S.; HOWELL, T.; STEDUTO, P.: “Validating the FAO AquaCrop model for irrigated and water deficient field maize”, Agron. J., ISSN 0002-1962, 101(3): 488-498, 2009.

HERRERA, J.; OSORIO, M.; GONZÁLEZ, F.; DÍAZ. Y.: “Respuesta del sorgo (Sorgumvulgare L. Monech) al riego y la fertilización nitrogenada en dos épocas de siembra”, Revista Ingeniería Agrícola, ISSN-2306-1545, E-ISSN-2227-8761, 6(3): 3-10, (julio-agosto-septiembre), 2016.

HSIAO, T.; HENG, L.; STEDUTO, P.; ROJAS-LARA, B.; RAES, D.; FERERES, E.: “AquaCrop - The FAO crop model to simulate yield response to water: III. Parameterization and testing for maize”. Agron. J., ISSN 0002-1962, 101(3): 448-459, 2009.

LAMM, F.; ROGERS, D.; MANGES, H.: “Irrigation scheduling with planned soil water depletion”, Trans. of the ASAE, ISSN: 0001-2351, 37: 1491-1497, 1994.

LÓPEZ, G.; HERRERA, J.; CASTELLANOS, A.: “Agrupamiento de los suelos cubanos en clases hidrológicas para el cálculo del escurrimeinto mediante el método de la curva número”, Ingeniería Hidráulica, vol. XIX, no. 4, 22-26, ISSN 1680-0338, 1998.

LÓPEZ, T.; RUIZ, M. E.; CID, G.; GONZÁLEZ, F.: “Caracterización del movimiento del agua en suelos irrigados del Sur de La Habana: Constitución metodológica en la determinación de los balances hídricos”, Revista Ciencias Técnicas Agropecuarias , 12(2): 49-53, ISSN-1010-2760, RNPS-0111, 2003.

LÓPEZ-CRUZ, I.; RAMÍREZ-ARIAS, A.; ROJANO-AGUILAR, A.: “Modelos matemáticos de hortalizas en invernadero: trascendiendo la contemplación de la dinámica de cultivos”, Rev. Chapingo Serie Hortic. 11(2): 257-267, 1027-152X, 2005.

NAMUCO, O.; O’TOOLE, J.: “Reproductive stage waterstress and sterility. I. Effect of stress during meios”, Crop Science 26: 317-321, ISSN 0011-183X, 1986.

OTEGUI, M.; ANDRADE, F.; SUERO, E.: “Growth, water use, and kernel abortion of maize subjected to drought at silking”, Field Crops Res., 40: 87-94, ISSN 0378-4290, 1995.

RAES, D., STEDUTO, P., HSIAO, T.; FERERES, E.: AquaCrop - Reference Manual. Disponible en: http://www.fao.org/nr/water/aquacrop.html, 2011.

RAES, D.; STEDUTO, P.; HSIAO, T. AND FERERES, E.: “AquaCrop - The FAO crop model to simulate yield response to water: II. Main algorithms and software description”, Agronomy Journal, 101(3): 438-447, ISSN: 0002-1962, 2009.

STEDUTO, P.; HSIAO, T. Y FERERES, E.: “On the conservative behaviour of biomass water productivity” Irrigation Science, 25:189-207, ISSN: 0342-7188, 2007.

STEDUTO, P.; HSIAO, T.; FERERES, E.; RAES, D.: Respuesta del rendimiento de los cultivos al agua. Estudio FAO Riego y Drenaje 66, ISBN 978-92-5-308564-4, Rome. 510pp, 2012.

STEDUTO, P.; HSIAO, T.; RAES, D. Y FERERES, E.: AquaCrop-the FAO crop model to simulated yield response to water: I. Concepts and underlying principles. Agronomy Journal 101 (3):426-437, ISSN: 0002-1962, 2009.

WANI, S.; ALBRIZIO, R.; VAJJA, N.: Sorghum. In: Steduto P, Hsiao TC, Fereres E, Raes D (eds) Crop yield response to water. FAO, Irrigation and Drainage 66. pp 144-151, ISBN 978-92-5-308564-4, 2012.

Most read articles by the same author(s)

<< < 1 2 3 4 5