Evaluation of three models in the estimation of cumulative infiltration

Main Article Content

Arnaldo Manuel Guerrero Alega

Abstract

Research was carried out during 2012-2015 years. The objective of this work is to evaluate the exactitude of empirical model of Kostiakov, Kostiakov-Lewis and Philip in the simulation of cumulative infltration in a fluvisol soil. The area of research belonging to UBPC Grito de Yara, with coordinates 20o 25’ Latitude N and 76o 53’ Longitude O at 6 m.s.n.m. Research area was divided into 3 plots with nine furrows with 0.8 m width and 100 m length. Evaluation area was made up by three center furrows of each plot. The Kostiakov, Kostiakov-Lewis and Philip model showed to be suitable for the simulation of infltration what is supported from the high values of statistical indicator utilized to evaluate de models exactitude. Although three models showed to be suitable, Kostiakov-Lewis was relevant as occupied the frst play in the ranking of all statistical indicator.

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How to Cite
Guerrero Alega, A. M. (2018). Evaluation of three models in the estimation of cumulative infiltration. Ingeniería Agrícola, 6(3), 41–47. Retrieved from https://revistas.unah.edu.cu/index.php/IAgric/article/view/826
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Artículos Originales

References

BEIBEI, Z., QUANJIU, W. & SHUAI, T.: “Estimation of Infltration Parameters and the Irrigation Coeffcients with the Surface Irrigation Advance Distance”, Plos One, ISSN-1932-6203, http://dx.doi.org/10.1371/journal.pone.0101274, 9(7):1-8, 2014.

ELLIOTT, R. L. & WALKER, W. R., “Field evaluation of furrow infltration and advance functions”, T. ASAE, DOI: http://dx.doi. org/10.13031/2013.33748 25: 396-400, 1982.

GIREI, A. H., ABDULKADIR, A. & ABDU, N.: “Goodness of ft of three infltration models of a soil under long-term trial in Samaru, Northern Guinea Savanna of Nigeria” Journal of Soil Science and Environmental Management, DOI: http://dx.doi.org/10.5897/JSSEM2015.0525, 7(5): 64-72, 2016.

HAGHIGHI, F.; GORJI, M.; SHORAFA, M.; SARMADIAN, F. & M. MOHAMMADI, H. “Evaluation of some infltration models and hydraulic parameters” Spanish Journal of Agricultural Research, DOI: http://dx.doi.org/10.5424/sjar/2014121-4659, 8(1): 210-217, 2010.

HAIS, E. M., R. DE SOUZA, EDIVAN & MONTENEGRO, A. A.: “Modeling of soil water infltration with rainfall simulator in different agricultural systems”, Revista Brasileira de Engenharia Agrícola e Ambiental, ISSN 1807-1929, 20(6): 513-518, 2016.

HELBER, M., ORJUELA-MATTA, Y., RUBIANO, S. y JESÚS, H. Comportamiento de la infltración en un oxisol, Rev. U.D.C.A Act. & Div. Cient, ISSN-0123-4226, 13 (2): 31-39, 2010.

HERNÁNDEZ, A.; PÉREZ, J.; BOSCH, D.; RIVERO, L.; CAMACHO, E.: Nueva versión de clasifcación genética de los suelos de Cuba., ed. L.L Barcaz, Ed. AGRINFOR, t. 1, ISBN-959-246-022-1, La Habana, Cuba, 1999.

KANNAN, N. & ABATE, B.: “Studies on hydraulic performance of furrow irrigation to optimise design parameters suitable to onion feld in Hawassa, Ethiopia”, Water Utility Journal, ISSN-1792-748X, 11: 17-30, 2015.

KRAUSE, P.; BOYLE, D. P. & BASE, F.: “Comparison of different effciency criteria for hydrological model assessment” Advances In Geosciences, ISSN-1680-7359, 5: 89–97, 2005.

KUMAR, P. P.: “Another look at Kostiakov, modifed Kostiakov and revised modifed Kostiakov infltration models in water resources applications”, International Journal of Agricultural Sciences, ISSN: 2167-0447, 4(3): 138-142, 2014.

MACHIWAL, D.; JHA, M. & MAL, B. C.: “Modelling infltration and quantifying spatial soil variability in a wasteland of Kharagpur, India”, Biosystems Engineering, ISSN-1537-5110, 95(4): 569-582. 2006.

MIRZAEE, A. S., ZOLFAGHARI, A. A., MANOOCHEHR, G. B., MILES, D. & SHOJA, G. D.: “Evaluation of infltration models with different numbers of ftting parameters in different soil texture classes., Archives of Agronomy and Soil Science, DOI: http://dx.doi.org/10.1 080/03650340.2013.823477, 60(5): 681-693, 2013 2013.

MOHAMMADI, M. H. & REFAHI, H. G. “Estimation of infltration through soil physical characteristics”, J. Iranian Agr. Sci., ISSN: 1017- 5652, 36: 1391-1398, 2006.

MORIASI, D. N., ARNOLD, J. G., LIEW, M. W., BINGNER, R. L., HARMEL, R. D. & VEITH T. L.: “Model evaluation guidelines for systematic quantifcation of accuracy in watershed simulations, Transactions of The ASABE, ISSN 0001-2351, 50: 885–900, 2007.

RAHIMI, A.: “Evaluation of soil infltration in furrow irrigation”, Australian Journal of Basic and Applied Sciences, ISSN 1991-8178, 5(11): 1542-1545, 2011.

RODRÍGUEZ-VÁSQUEZ, A. F., ARISTIZÁBAL-CASTILLO, A. M. y CAMACHO, T. J.: Variabilidad espacial de los modelos de infltración de Philip y Kostiakov en un suelo ándico. Engenharia Agrícola, 28(1): 64-75.ISSN: 1809-4430, 2008.

RUTH, U. A., CHIGOZIE, S. & IGBOKWE, K. K.: “Estimation of Kostiakov’s Infltration Model Parameters of Some Sandy Loam Soils of Ikwuano – Umuahia, Nigeria” Open Transactions on Geoscienc-es, ISSN: 2372-6466, 1(1):34-38, 2014.

SHEPARD, J. S., WALLENDER W.W. & HOPMANS J.W., “Onemethod for estimating furrow infltration”, T. ASAE, DOI: http://dx.doi. org/10.13031/2013.28351, 36(2), 395-404, 1993.

SOROUSH, F., FENTON, J. D., MOSTAFAZADEH-FARD, MOUSAVI, B. & ABBASI, F.: “Simulation of furrow irrigation using the Slow change/slow-flow equation”, Agricultural Water Management, http://dx.doi.org/10.1016/j.agwat.2012.07.008, 116: 160–174, 2013.

STEWART, D. RYAN., DAVID, E. R., MAJDI, R. NAJM., & JOHN S. SELKER.: “Modeling effect of initial soil moisture on sorptivity and infltration”, Water Resources Research, DOI: http://dx.doi.org/10.1002/wrcr.20508, 49: 7037–7047, 2013

WEBER, J. F. & APESTEGUI, L.: “Relaciones entre parámetros de los modelos de infltración de Kostiakov y Lewis-Kostiakov”, Tecnología y Ciencias del Agua, ISSN: 2007-2422, 7(2): 115-13, 2016.

ZOLFAGHARI, A. A.; MIRZAEE, S. & GORJI, M.: “Comparison of different models for estimating cumulative infltration”, Int. J. Soil Sci.,DOI:http://dx.doi.org/10.3923/ijss.2012.108.115, 7: 108–115, 2012.