Characterization of alluvial soil hydrodynamics in the upper Ipanema river basin using the Beerkan method
Caracterización de la hidrodinámica del suelo aluvial en la cuenca superior del río Ipanema mediante el método Beerkan
DOI:
https://doi.org/10.15446/dyna.v88n218.91077Palabras clave:
geostatistics, hydrodynamic parameters, spatial dependence, hydraulic conductivity (en)geoestadística, parámetros hidrodinámicos, dependencia espacial, conductividad hidráulica (es)
Descargas
The objective was to model the spatial distribution of the physical properties of the soil through geostatistics in the Brazilian semi-arid region. The study was carried out in the Experimental Basin of Ipanema River, Pernambuco, in an alluvial area with regular grid and samples of 40 points. Infiltration tests were carried out to assess hydraulic conductivity and sampling was performed to determine soil texture and soil organic carbon (SOC). The variables were subjected to descriptive and correlation statistical analyses, in addition to the geostatistical report, which indicated high variability for the hydraulic conductivity of the soil. The best fits were obtained with the Spherical model for the hydraulic conductivity, sand, silt, and clay variables, and the Gaussian model for SOC. Thus, with the geostatistics technique, it was possible to map and verify the main physical characteristics of the soil in the area, providing greater optimization in agricultural
planning
El objetivo fue modelar la distribución espacial de las propiedades físicas del suelo a través de geoestadísticas en la región semiárida brasileña. El estudio se realizó en la Cuenca Experimental del Río Ipanema, Pernambuco, en una zona aluvial con malla regular y muestras de 40 puntos. Se realizaron pruebas de infiltración para evaluar la conductividad hidráulica y muestreos para determinar la textura del suelo y el carbono orgánico del suelo (COS). Las variables fueron sometidas a análisis estadístico descriptivo y de correlación, además del informe geoestadístico, que indicó alta variabilidad para la conductividad hidráulica del suelo. Los mejores ajustes se realizaron con el modelo esférico para las variables de conductividad hidráulica, arena, limo y arcilla, y el modelo gaussiano para el COS. Así, con la técnica de geoestadística, fue posible mapear y verificar las principales características físicas del suelo en la zona, proporcionando una mayor optimización en la planificación agrícola
Referencias
Araújo, D.C.S., Montenegro, S.M.G.L., Montenegro, A.A.A., Santos, D.P. and Rodrigues, R.A.S., Temporal stability of soil moisture in banana cropping area in the Brazilian semiarid región, Revista Brasileira de Engenharia Agrícola e Ambiental, 23(11), pp. 852-859, 2019. https://doi.org/10.1590/1807-1929/agriambi.v23n11p852-859
Bagarello, V., Baiamonte, G., Caia, C. Variability of near-surface saturated hydraulic conductivity for the clay soils of a small Sicilian basin. Geoderma, 340, pp. 133–145, 2019. https://doi.org/10.1016/J.GEODERMA.2019.01.008
Bagarello, V., Di Prima, S., Iovino, M., Provenzano, G. Estimating fieldsaturated soil hydraulic conductivity by a simplified Beerkan infiltration experiment. Hydrological Processes, 28 (3), pp. 1095–1103, 2014. https://doi.org/10.1002/hyp.9649
Bhunia, G. S., Shit, P. K., Chattopadhyay, R. Assessment of spatial variability of soil properties using geostatistical approach of lateritic soil (West Bengal, India). Annals of Agrarian Science, 16 (4), pp. 436-443, 2018. https://doi.org/10.1016/j.aasci.2018.06.003
Castellini, M., Stellaci, A. M., Sisto, D., Iovino, M. The Mechanical Impact of Water Affected the Soil Physical Quality of a Loam Soil under Minimum Tillage and No-Tillage: An Assessment Using Beerkan MultiHeight Runs and BEST-Procedure. Land, 10 (195), pp. 1-16, 2021. https://doi.org/10.3390/land10020195
Cavalcanti, R. Q., Rolim, M. M., Lima, R. P., Tavares, U. E., Pedrosa, E. M. R., Cherubin, M. R. Soil physical changes induced by sugarcane cultivation in the Atlantic Forest biome, northeastern Brazil. Geoderma. 370, pp. 1-11, 2020. https://doi.org/10.1016/j.geoderma.2020.114353
Cambardella, C.A., Moorman, T. B., Parkin, T. B., Karlen, D. L., Novak, J. M., Turco, R. F., Konopka, A. E. Field-Scale Variability of Soil Properties in Central Iowa Soils. Soil Science Society of America Journal, 58, pp. 1501–1511, 1994.https://doi.org/10.2136/sssaj1994.03615995005800050033x
Ferraz Jardim, A. M. R., Silva, J. R. I., Vieira Leite, M. L. M., Teixeira, V. I., Morato, M. P., Araújo Júnior, G. N., Silva, T. G. F. Symbiotic interaction in forage crop cultivations: A review. Amazonian Journal of Plant Research, 2 (1), pp. 149-160, 2018. https://doi.org/10.26545/ajpr.2018.b00019x
Ferraz Jardim, A. M. R., Silva, T. G. F., Souza, L. S. B., Araújo Júnior, G. N., Alves, H. K. M. N., Souza, M. S., Araújo, G. G. L., Moura, M. S. B. Intercropping forage cactus and sorghum in a semi-arid environment improves biological efficiency and competitive ability through interspecific complementarity. Journal of Arid Environments, 188 (104464), pp 1-11, 2021. https://doi.org/10.1016/j.jaridenv.2021.104464
Furtunato, O. M., Montenegro, S. M. G. L., Antonino, A. C. D., Oliveira, L. M. M., Souza, E. S., Moura, A. E. S. S. Variabilidade Espacial de Atributos Físico-hídricos de Solos em uma Bacia Experimental no Estado de Pernambuco. Revista Brasileira de Recursos Hídricos, 18 (2), pp. 135–147, 2013. https://doi.org/10.21168/rbrh.v18n2.p135-147
Godoy, V. A., Zuquette, L. V., Gómez-Hernández, J. J. Spatial variability of hydraulic conductivity and solute transport parameters and their spatial correlations to soil properties. Geoderma 339, pp. 59–69, 2019. https://doi.org/10.1016/J.GEODERMA.2018.12.015
Golden Software, 2010. Surfer for windows version 9.0.
Guedes Filho, O., Vieira, S. R., Chiba, M. K., Nagumo, C. H., Dechen, S. C. F. Spatial and temporal variability of crop yield and some Rhodic Hapludox properties under no-tillage. Revista Brasileira Ciência do Solo, 34 (1), pp. 1–14, 2010. https://doi.org/10.1590/S0100-06832010000100001
Haas, J., Fenner, P. T., Schack-Kirchner, H., Lang, F. Quantifying soil movement by forest vehicles with corpuscular metal tracers. Soil Tillage Research. 181, pp. 19–28, 2018. https://doi.org/10.1016/J.STILL.2018.03.012
Haverkamp, R., Bouraoui, F., Angulo-Jaramillo, R., Zammit, C., Delleur, J. W. Soil properties and moisture movement in the unsaturated zone, in: The Handbook of Groundwater Engineering. CRC Press, Taylor & Francis Group, 6000 Broken Sound Parkway NW, Suite 300, Boca Raton, FL 33487-2742, pp. 413–440, 1998. https://doi.org/10.1201/9781315371801-15
José, J. V., Rezende, R., Marques, P. A. A., Gonçalves, A. C. A., Souza, R. S. Variabilidade espacial de variáveis físico-hídricas de dois Latossolos da região noroeste do estado do Paraná. Irriga, 17 (2), pp. 208–219, 2012. https://doi.org/10.15809/irriga.2012v17n2p208
Lan, G., Li, Y., Lesueurd, D., Wu, Z., Xie, G. Seasonal changes impact soil bacterial communities in a rubber plantation on Hainan Island, China. Science of the Total Environment. 626, pp. 826–834, 2018. https://doi.org/10.1007/s00374-010-0478-4
Lassabatere, L., Angulo-Jaramillo, R., Soria Ugalde, J. M., Cuenca, R., Braud, I., Haverkamp, R. Beerkan estimation of soil transfer parameters through infiltration experiments. Soil Science Society of America Journal, 70 (2), pp. 521–532, 2006. https://doi.org/10.2136/sssaj2005.0026
Lima, F. V., Silvino, G. S., Melo, R. S. S. M., Lira, E. C., Ribeiro, T. S. Variabilidade espacial de atributos físicos do solo em área de encosta sob processo de degradação. Revista Caatinga, 28 (4), pp. 53–63, 2015. https://doi.org/10.1590/1983-21252015v28n406rc
Lopes, I., Montenegro, A. A. A., Lima, J. L. M. P. Performance of Conservation Techniques for Semiarid Environments: Field Observations with Caatinga, Mulch, and Cactus Forage Palma. Water, 11 (4), pp. 792, 2019. https://doi.org/10.3390/w11040792
Montenegro, A. A. A., Montenegro, S. M. G. L. Variabilidade espacial de classes de textura, salinidade e condutividade hidráulica de solos em planície aluvial. Revista Brasileira de Engenharia Agrícola e Ambiental.10 (1), pp. 30–37, 2006. https://doi.org/10.1590/S1415-43662006000100005
Moore, D.M., Reynolds, R.C., 1997. X-Ray Diffraction and the Identification and Analysis of Clay Minerals, 2nd ed. Oxford University Press, New York.
Mubarak, I., Angulo-Jaramillo, R., Mailhol, J. C., Ruelle, P., Khaledian, M., Vauclin, M. Spatial analysis of soil surface hydraulic properties: Is infiltration method dependent? Agricultural Water Management, 97 (10), pp. 1517–1526, 2010. https://doi.org/10.1016/J.AGWAT.2010.05.005
Mügler, C., Ribolzi, O., Janeau, J.-L., Rochelle-Newall, E., Latsachack, K., Thammahacksa, C., Viguier, M., Jardé, E., Henri-Des-Tureaux, T., Sengtaheuanghoung, O., Valentin, C. Experimental and modelling evidence of short-term effect of raindrop impact on hydraulic conductivity and overland flow intensity. Journal of Hydrololy. 570, pp. 401–410, 2019. https://doi.org/10.1016/J.JHYDROL.2018.12.046
Oliveira Júnior, J. A. S., Souza, E. S., Correa, M. M., Lima, J. R. de S., Souza, R. M. S., Silva Filho, L. A. Variabilidade espacial de propriedades hidrodinâmicas de um Neossolo Regolítico sob pastagem e caatinga. Revista Brasileira de Engenharia Agrícola e Ambiental, 18 (6), pp. 631– 639, 2014. https://doi.org/10.1590/S1415-43662014000600010
Peixoto, D. S., Silva, L. C. M., Melo, L. B. B., Azevedo, R. P., Araújo, B. C. L., Carvalho, T. S., Moreira, S. G., Curi, N., Silva, B. M. Occasional tillage in no-tillage systems: A global meta-analysis. Science of the Total Environment, 745 (140887), pp. 1-14, 2020. https://doi.org/10.1016/j.scitotenv.2020.140887
Prima, S. D., Stewart, R. D., Castellini, M., Bagarello, V., Najm, M. R. A., Pirastru, M., Giadrossich, F., Lovino, M., Angulo-Jamarillo, R., Lassabatere. Estimating the macroscopic capillary length from Beerkan infiltration experiments and its impact on saturated soil hydraulic conductivity predictions. Journal of Hydrology, 589 (125159), pp. 1-11, 2020. https://doi.org/10.1016/j.jhydrol.2020.125159
Robertson, G.P. GS+: Geostatistics for the Environmental Sciences; Gamma Design Software: Plainwell, MI, USA, 2008.
Santos, C. A. G., Silva, J. F. C. B. C., Silva, R. M. Caracterização Hidrodinâmica dos Solos da Bacia Experimental do Riacho Guaraíra Utilizando o Método Beerkan. Revista Brasileira de Recursos Hídricos, 17 (4), pp. 149–160, 2012. https://doi.org/10.21168/rbrh.v17n4.p149-160
Cómo citar
IEEE
ACM
ACS
APA
ABNT
Chicago
Harvard
MLA
Turabian
Vancouver
Descargar cita
CrossRef Cited-by
1. Renato Augusto Soares Rodrigues, João Luis Mendes Pedroso de Lima, Abelardo Antônio Assunção Montenegro, Thayná Alice Brito Almeida, José Roberto Lopes da Silva. (2023). Assessing soil temperature and moisture fluctuations under irrigated banana (Musa spp.) cultivation in response to coconut coir mulch cover. DYNA, 90(226), p.50. https://doi.org/10.15446/dyna.v90n226.105969.
Dimensions
PlumX
Visitas a la página del resumen del artículo
Descargas
Licencia

Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial-SinDerivadas 4.0.
El autor o autores de un artículo aceptado para publicación en cualquiera de las revistas editadas por la facultad de Minas cederán la totalidad de los derechos patrimoniales a la Universidad Nacional de Colombia de manera gratuita, dentro de los cuáles se incluyen: el derecho a editar, publicar, reproducir y distribuir tanto en medios impresos como digitales, además de incluir en artículo en índices internacionales y/o bases de datos, de igual manera, se faculta a la editorial para utilizar las imágenes, tablas y/o cualquier material gráfico presentado en el artículo para el diseño de carátulas o posters de la misma revista.




