Publication: Análisis del cambio en la recarga de acuíferos de la cuenca alta del rio Ariporo mediante el modelo de dos tanques de WEAP
Authors
Abstract (Spanish)
Abstract (English)
Director
Advisors/Directors
Extent
Collections
References
Amaranto, A., Munoz-Arriola, F., Corzo, G., Solomatine, D. P., & Meyer, G. (2018). Semi-seasonal groundwater forecast using multiple data-driven models in an irrigated cropland. Journal of Hydroinformatics, 20(6), 1227–1246. https://doi.org/10.2166/hydro.2018.002 Araujo, H. F. P. d., Machado, C. C. C., Pareyn, F. G. C., Nascimento, N. F. F. d., Araújo, L. D. A., Borges, L. A. d. A. P., Santos, B. A., Beirigo, R. M., Vasconcellos, A., Dias, B. de O., Alvarado, F., & Silva, J. M. C. da. (2021). A sustainable agricultural landscape model for tropical drylands. Land Use Policy, 100(March 2020), 104913. https://doi.org/10.1016/j.landusepol.2020.104913 Baiamonte, G. (2019). SCS Curve Number and Green-Ampt Infiltration Models. Journal of Hydrologic Engineering, 24(10), 1–11. https://doi.org/10.1061/(ASCE)HE.1943-5584.0001838 Ben G.J.S. Sonneveld, Max D. Merbis, Olcay Unver, A. A. (2018). Nature-Based Solutions for agricultural water management and food security. In FAO Land and Water Discussion Paper (Issue December). https://doi.org/10.13140/RG.2.2.10614.86082 Bizhanimanzar, M., Leconte, R., & Nuth, M. (2019). Modelling of shallow water table dynamics using conceptual and physically based integrated surface-water-groundwater hydrologic models. Hydrology and Earth System Sciences, 23(5), 2245–2260. https://doi.org/10.5194/hess-23-2245-2019 DANE. (2020). Geoportal del DANE - Geovisor Censo Nacional Agropecuario. Censo Nacional Agropecuario. https://geoportal.dane.gov.co/geovisores/economia/censo-nacional-agropecuario/ Dassargues, A. (2019). Hydrogeology: Groundwater Science and Engineering. In CRC Press (Ed.), Groundwater (Vol. 57, Issue 3). Taylor and Francis. DHIME, I. (2020). DHIME - IDEAM - IDEAM. Descarga de Datos Hidrometeorologicos. http://www.ideam.gov.co/inicio?p_p_id=101&p_p_lifecycle=0&p_p_state=maximized&p_p_mode=view&_101_struts_action=%2Fasset_publisher%2Fview_content&_101_assetEntryId=72968944&_101_type=content&_101_urlTitle=dhime Dinero, R. (2014). Tragedia ambiental en el Casanare. https://www.dinero.com/pais/articulo/tragedia-ambiental-casanare/199407 FAO. (2020). Integrated agriculture-aquaculture: A primer. VAC SYSTEMS. http://www.fao.org/3/Y1187E/y1187e10.htm Farrag, M., Pérez, G. C., & Solomatine, D. (2019, January). Experiments with a conceptual distributed hydrological model: impact of cell size, parameter regionalization and routing method. In Geophysical Research Abstracts (Vol. 21). Herman, M. R., Hernandez-Suarez, J. S., Nejadhashemi, A. P., Kropp, I., & Sadeghi, A. M. (2020). Evaluation of Multi- And Many-Objective Optimization Techniques to Improve the Performance of a Hydrologic Model Using Evapotranspiration Remote-Sensing Data. Journal of Hydrologic Engineering, 25(4), 1–15. https://doi.org/10.1061/(ASCE)HE.1943-5584.0001896 IDEAM. (2019). Cambio de la superficie cubierta por bosque natural ARCHIVOS RELACIONADOS - CAMBIO DE LA SUPERFICIE CUBIERTA POR BOSQUE NATURAL - IDEAM. Cambio En La Cobertura de Bosques En Colombia. http://www.ideam.gov.co/web/ecosistemas/cambio-de-la-superficie-cubierta-por-bosque-natural IDEAM. (2020). DEFORESTACIÓN EN COLOMBIA - IDEAM. Deforestación En Colombia. http://www.ideam.gov.co/web/bosques/deforestacion-colombia Li, Z., Liu, P., Feng, M., Cui, X., He, P., Wang, C., & Zhang, J. (2020). Evaluating the Effect of Transpiration in Hydrologic Model Simulation through Parameter Calibration. Journal of Hydrologic Engineering, 25(5), 1–17. https://doi.org/10.1061/(ASCE)HE.1943-5584.0001895 Majidi, B., Hemmati, O., Baniardalan, F., Farahmand, H., Hajitabar, A., Sharafi, S., ... & Manzuri, M. T. (2021). Geo-spatiotemporal intelligence for smart agricultural and environmental eco-cyber-physical systems. In Enabling AI Applications in Data Science (pp. 471-491). Springer, Cham. Mehrnegar, N., Jones, O., Singer, M. B., Schumacher, M., Bates, P., & Forootan, E. (2020). Comparing global hydrological models and combining them with GRACE by dynamic model data averaging (DMDA). Advances in Water Resources, 138, 103528. https://doi.org/10.1016/j.advwatres.2020.103528 Mohammadzadeh-Habili, J., & Khalili, D. (2020). Assessment of Artificial Recharge Dams and Improvement of Their Groundwater-Recharge Capacity. Journal of Hydrologic Engineering, 25(5). https://doi.org/10.1061/(ASCE)HE.1943-5584.0001909 Natalia Uribe and Gerald A Corzo P. (2020). Spatio temporal visualization of soil critical sources areas to assess the dynamics of source pollution in agricultural management practices. 103434. Peter, B. G., Mungai, L. M., Messina, J. P., & Snapp, S. S. (2017). Nature-based agricultural solutions: Scaling perennial grains across Africa. Environmental Research, 159(December 2016), 283–290. https://doi.org/10.1016/j.envres.2017.08.011 Uribe, N., Corzo, G., Quintero, M., van Griensven, A., & Solomatine, D. (2018). Impact of conservation tillage on nitrogen and phosphorus runoff looupled Surface Water-Groundwater Model. Journal of Water Resources Planning and Management, 146(5), 1–15. https://doi.org/10.1061/(ASCE)WR.1943-5452.0001189 Zhang, M., Zhang, J., & Song, Y. (2019). Preliminary Research and Application of MIKE SHE Model in Jialingjiang River Basin. IOP Conference Series: Earth and Environmental Science, 304(2). https://doi.org/10.1088/1755-1315/304/2/022088