Modelación del Ciclo Hidrológico Urbano en la Localidad de Fontibón con I-TREE hydro

dc.contributor.advisorPeña Guzman, Carlos Andres
dc.contributor.authorBautista Ávila, David Santiago
dc.contributor.cvlachttp://scienti.colciencias.gov.co:8081/cvlac/visualizador/generarCurriculoCv.do?cod_rh=0001500000
dc.contributor.googlescholarhttps://scholar.google.es/citations?user=aD5MEigAAAAJ&hl=es
dc.date.accessioned2018-07-24T12:47:56Z
dc.date.available2018-07-24T12:47:56Z
dc.date.issued2018
dc.descriptionEl presente trabajo investigativo se enfocó en simular las cantidades de flujo y los impactos observados tras el aumento o la reducción de las zonas impermeables en el recurso hídrico en la localidad de Fontibón Bogotá, con el fin de evaluar el software i-Tree hydro como una herramienta técnica y de planificación urbana, que sea de uso accesible y pertinente, dando una mirada inicial al uso del mismo en la ciudad de Bogotá. Se utilizaron datos topográficos, climatológicos e hidrológicos de la zona de estudio y bibliografía específica, con el fin de definir el escenario real en el programa (cantidades de flujo tanto en las zonas permeables, impermeables y subterráneas), para posteriormente realizar la calibración del modelo y desarrollar el planteamiento de cinco escenarios futuros, como una metodología de planificación urbana, en donde se priorizó en aumentar el porcentaje de las zonas verdes en la localidad de Fontibón, teniendo en cuenta aspectos de disponibilidad de espacio y pertinencia de los mismos, para finalmente obtener una comparación con respecto a la alteración en los volúmenes de flujo tras el aumento o la reducción de dichas zonas en la localidad.spa
dc.description.abstractThe urbanization of largest cities, especially in Latin America, has produced different social and environmental impacts in the last 50 years, currently 72% of the population in Central America is urban, the reduction of biological diversity, the degradation of metropolitan ecosystems, the problems of air and water pollution, biochemical and physical changes in hydrological systems, reduction of evapotranspiration, changes in water supply, affectation to groundwater recharge, increase in peak runoff in precipitation events, the elimination of vegetation and the potential increase of unstable soils, are derived impacts.spa
dc.description.degreelevelPregradospa
dc.description.degreenameIngeniero Ambientalspa
dc.description.domainhttp://unidadinvestigacion.usta.edu.cospa
dc.format.mimetypeapplication/pdf
dc.identifier.citationBautista Ávila, D. S. (2018). Modelación del Ciclo Hidrológico Urbano en la Localidad de Fontibón con I-TREE Hydro. [Trabajo de Grado, Universidad Santo Tomás]. Repositorio Institucional.spa
dc.identifier.instnameinstname:Universidad Santo Tomásspa
dc.identifier.reponamereponame:Repositorio Institucional Universidad Santo Tomásspa
dc.identifier.repourlrepourl:https://repository.usta.edu.cospa
dc.identifier.urihttp://repository.usta.edu.co/handle/11634/12427
dc.language.isospa
dc.publisherUniversidad Santo Tomásspa
dc.publisher.branchCRAI-USTA Bogotáspa
dc.publisher.facultyFacultad de Ingeniería Ambientalspa
dc.publisher.programPregrado de Ingeniería Ambientalspa
dc.relation.referencesS. Murray, Silvicultura Urbana y Periurbana en Quito, Ecuador: Estudio de Caso, Roma: Departamento de Montes, Organización de las Naciones Unidas para la Agricultura y la Alimentación, 1998.spa
dc.relation.referencesR. Sanchez Rodriguez, Urbanización, Cambios Globales en el Ambiente y Desarrollo Sustentable en América Latina, São José dos Campos, Brasil, 2007.spa
dc.relation.referencesK. N. Niño Fierro, «Análisis para la gestión del riesgo de inundaciones en Bogotá: Un enfoque desde la construcción social del riesgo.,» Pontificia Universidad Javeriana, Bogotá, 2012.spa
dc.relation.referencesC. . E. Morelli Tucci , Gestión de Inundaciones Urbanas, Porto Alegre: World Meteorological Organization Extranet, 2007.spa
dc.relation.referencesG. Leva , INDICADORES DE CALIDAD DE VIDA URBANA Teoría y metodología, Quilmes: Universidad Nacional de Quilmes, 2005.spa
dc.relation.referencesWorld Health Organization , «Health Indicators of sustainable cities,» Rio+20 UN Conference on Sustainable Development, 2011.spa
dc.relation.referencesM. Sorensen, V. Barzetti, K. Keipi y J. Williams, «Manejo de las áreas verdes urbanas,» Banco Interamericano de Desarrollo , Washington, D.C, 1998.spa
dc.relation.referencesComisión Nacional de Medio Amiente (CONOMA), «Areas verdes en el Gran Santiago,» Santiago, Chile, Área Ordenamiento Territoial y Recursos Naturales , 2002, p. 11.spa
dc.relation.referencesA. Falcón, Espacios verdes para una ciudad sostenible, Barcelona: Gustavo Gilli, 2007.spa
dc.relation.referencesWorld Bank, «Gestión Integral de Aguas Urbanas síntesis,» Washington DC, 2012.spa
dc.relation.referencesJ. Preciado Beltrán, «Bogotá región: crecimiento urbano en la consolidación del territorio metropolitano,» Universidad Distrital Francisco José de Caldas, Bogotá, 2010.spa
dc.relation.referencesC. May, R. Horner, J. Karr, B. Mar y Welch, Effects of urbanization on small streams in the Puget soun ecoregion, Washington: University of Washington, 1998.spa
dc.relation.referencesK. C. Abbaspour, E. Rouholahnejad, S. Vaghefi, R. Srinivasan, H. Yang y B. Kløve, «A continental-scale hydrology and water quality model for Europe: Calibration and uncertainty of a high-resolution large scale SWAT model,» Journal of Hydrology, pp. 733-752, 2015.spa
dc.relation.referencesSEDATU, HERRAMIENTAS PARA UN NUEVO MODELO DE PLANIFICACIÓN URBANA Y REGIONAL, México, D. F.: Latin American Geospatial Forum 2014, 2014.spa
dc.relation.referencesG. . F. Garuma, «Review of urban surface parameterizations for numerical climate models,» Urban Climate, 2017.spa
dc.relation.referencesA. Allen, «Environmental planning and management of the peri-urban interface: perspectives on an emerging field,» ENVIRONMENTAL PLANNING AND MANAGEMENT, pp. 135 - 147, 2003.spa
dc.relation.referencesW. Rauch, C. Urich, P. M. Bach, B. C. Rogers, F. J. Haan, R. R. Brown, M. Mair, D. T. McCarthy, M. Kleidorfer, R. Sitzenfrei y A. Deletic, «Modelling transitions in urban water systems,» Water Research, pp. 501-514, 2017.spa
dc.relation.referencesP. M. Bach , W. Rauch, P. S. Mikkelsen, D. T. McCarthy y A. Deletic, «A critical review of integrated urban water modelling – Urban drainage and beyond,» Environmental Modelling & Software, pp. 88-107, 2014.spa
dc.relation.referencesM. Lvovitch, «The global water balance,» pp. 28-42, 1973.spa
dc.relation.referencesJ. Arnold, R. Srinivasan, R. S. Muttiah y P. M. Allen, «Continental scale simulation of the hydrologic balance,» Water Resour, pp. 1037-1051, 1999.spa
dc.relation.referencesJ. G. Arnold, R. Srinivasan, R. Muttiah y J. R. Williams, «Large Area Hydrologic Modelling and Assessment, Part I: Model Development,» Journal of the American Water Resources Association, pp. 34-73, 1998.spa
dc.relation.referencesUSDA, Urban Hydrology for Small Watersheds, Technical Release 55, Conservation Engineering Division, 1986.spa
dc.relation.referencesK. Schneider, An Introduction to TR-55, University of Texas at Austin , 2001.spa
dc.relation.referencesV. P. Singh y D. K. Frevert, Watershed Models, CRC Press, 2010.spa
dc.relation.referencesL. A. Rossman y EPA, Storm Water Management Model User's Manual Version 5.1, Office of Research and Development, 2015. [26] T. Endreny, J. Wang y D. Nowak, «MECHANISTICspa
dc.relation.referencesT. Endreny, J. Wang y D. Nowak, «MECHANISTIC SIMULATION OF TREE EFFECTS IN AN URBAN WATER BALANCE MODEL,» JOURNAL OF THE AMERICAN WATER RESOURCES ASSOCIATION, pp. 75-85, 2008.spa
dc.relation.referencesA. H. Elliott y S. A. Trowsdale, «A review of models for low impact urban stormwater drainage,» Environmental Modelling & Software, pp. 394-405, 2007spa
dc.relation.referencesW. Gujer, V. Krejci, R. Schwarzenbach y J. Zobrist, «Von der Kanalisation ins Grundwasser - Charakterisierung eines Regenereignisses im Glattal,» Gas-Wasser-Abwasser, pp. 298-311, 1982.spa
dc.relation.referencesW. Rauch, J. Bertrand-Krajewski, P. Krebs, O. Mark, W. Schilling, M. Schütze y P. Vanrolleghem, «Deterministic modelling of integrated urban drainage systems,» Water Science and Technology, pp. 81-94, 2002.spa
dc.relation.referencesS. Albuja y M. Ceballos, «Desplazamiento urbano y migración en Colombia,» Forced Migration Review, pp. 10 - 11, 2010.spa
dc.relation.referencesObservatorio Ambiental de Bogotá , «Indicadores del espacio público en Bogotá,» Alcaldía mayor de Bogotá, Bogotá, 2009.spa
dc.relation.referencesAlcaldia Mayor de Bogotá D.C., Plan Ambiental Local de Fontibón, Bogotá, 2017- 2020.spa
dc.relation.referencesL. V. Gómez Forero y C. C. Castañeda Rodríguez, «Estudio del Crecimiento Urbano con respecto al Efecto Isla de Calor para establecer Lineamientos de Gestión Energético Ambiental en Bogotá,» Latin American and Caribbean Conference for Engineering and Technology , pp. 14 - 16, 2013.spa
dc.relation.referencesAlcaldía Mayor de Bogotá, Plan Ambiental Local de Fontibon, Bogotá: Bogotá Humana, 2012.spa
dc.relation.referencesE. G. McPherson, D. Nowak, G. Heisler, S. Grimmond, C. Souch, R. Grant y R. Rowntree, «Results of the Chicago Urban Forest Climate Project,» Proceedings of the 7th National Urban Forest Conference, New York, pp. 12-16, 1995.spa
dc.relation.referencesH. Satoshi, I-tree eco precipitation interception model descriptions, New York, 2013.spa
dc.relation.referencesM. Lega y T. Endreny, «Quantifying the environmental impact of pollutant plumes from coastal rivers with remote sensing and river basin modellingQuantifying the environmental impact of pollutant plumes from coastal rivers with remote sensing and river basin modelling,» International Journal of Sustainable Development and Planning 11(5), pp. 651-662. doi:10.2495/SDP-V11-N5-651-662, 2016.spa
dc.relation.referencesS. Endreny y Nowak, «Development of nutrient model for i-tree hydro using sampling results from the mianus river watershed,» 2013.spa
dc.relation.referencesYang Yang, T. . A. Endreny y D. J. Nowak, «ITREE-HYDRO: SNOW HYDROLOGY UPDATE FOR THE URBAN FOREST HYDROLOGY MODEL,» JOURNAL OF THE AMERICAN WATER RESOURCES ASSOCIATION, pp. 1211-1218, 2011.spa
dc.relation.referencesK. Dooley, A. Kpachavi y E. Skinner , «The impact of land use change on lake phosphorus concentrations in dakota,» Carleton College, 2015.spa
dc.relation.referencesKirnbauer, Baetz y Kenney, «Estimating the stormwater attenuation benefits derived from planting four monoculture species of deciduous trees on vacant and underutilized urban land parcels,» Urban Forestry & Urban Greening, pp. 401-407, 2013.spa
dc.relation.referencesD. J. Nowak, A. Bodine , R. Hoehn III, Crane, Daniel, Ellis Alexis, T. Endreny y K. Shelton , «Assessing urban forest effects and values: The greater kansas city region. Newtown Square,» United States Department of Agriculture, Forest Service, Northern Research Station, 2013.spa
dc.relation.referencesE. W. Bodnaruk, C. N. Kroll, Y. Yang, S. Hirabatashi, D. J. Nowak y T. A. Endreny, «Where to plant urban trees? A spatially explicit methodology to explore ecosystem service tradeoffs,» Landscape and Urban Planning, pp. 157, 457-467, 2017.spa
dc.relation.referencesT. P. Taggart , T. A. Endreny y D. Nowak, «Modeling the effect of urban infrastructure on hydrologic processes within i-tree hydro, a statistically and spatially distributed model,» American Geophysical Union, 2014.spa
dc.relation.referencesM. Shahbaz, N. Loganathan, R. Sbia y T. Afza, «The effect of urbanitation , affluence and trade openness on energy consumption: a time series analysis in Malaysia.,» Renewable and sustainable Energy , pp. 683-693, 2015.spa
dc.relation.referencesS. Angel, S. Sheppard, D. Civco, R. Buckley, A. Chabaeva y L. Gitlin, The dynamics of global urban expansion, Washington D.C: Department of Transport and Urban Development, 2005.spa
dc.relation.referencesUnited Nations, World urbanization prospects, New York: Department of Economic and Social Affairs, 2014.spa
dc.relation.referencesL. Herrera, W. Pecht y F. Olivares, CRECIMIENTO URBANO DE AMERICA LATINA, Santiago: Centro Latinoamericano de Demografia , 1976.spa
dc.relation.referencesP. A. Cifuentes Ruiz y J. P. Londoño Linares, «Análisis del crecimiento urbano,» Gestion y Ambiente, pp. 53-64, 2010.spa
dc.relation.referencesR. Garcia Catalá, «CRECIMIENTO URBANO Y EL MODELO DE CIUDAD,» Universidad Politécnica de Catalunya, pp. 51-58, 2009.spa
dc.relation.referencesBanco Interamericano de desarrollo, Sostenibilidad urbana en america latina y el carbe, Oficina de Relaciones Externas del BID, 2011.spa
dc.relation.referencesONU HABITAT, Por un mejor futuro urbano, Nairobi, 2008.spa
dc.relation.referencesGobierno Vasco , Criterios de sosteibilidad aplicables al laneamiento urbano, Vasco: Departamento de Ordenación del Territorio y Medio Ambiente , 2003.spa
dc.relation.referencesONU HABITAT, Los objetivos de desarrollo sostenible y la iniciativa de ciudades prósperas, Nueva York, 2015.spa
dc.relation.referencesP. A. Sarricolea Espinoza, «ANÁLISIS DE LA SUSTENTABILIDAD DEL CRECIMIENTO URBANO DE LA CIUDAD DE SANTIAGO Y SUS EFECTOS SOBRE LA CONFIGURACIÓN DE LAS TEMPERATURAS SUPERFICIALES,» Universidad de Chile, pp. 8-15, 2008.spa
dc.relation.referencesP. Parikh, M. A. Taylor, T. Hoagland, H. Thurston y W. Shuster, «Application of market mechanisms and incentives to reduce stormwater runoff: An integrated hydrologic, economic and legal approach,» Environmental Science & Policy, pp. 133-144, 2005.spa
dc.relation.referencesA. Schneider, M. A. Friedl y D. Potere, «A new map of global urban extent from MODIS satellite data,» Environmental Research Letters, 2009.spa
dc.relation.referencesQ. Weng, «Remote sensing of impervious surfaces in the urban areas: Requirements, methods, and trends,» Remote sens, pp. 34-49, 2012.spa
dc.relation.referencesS. Faulkner, «Urbanization impacts on the structure and function of forested,» Urban Ecosystems, pp. 89-106, 2004.spa
dc.relation.referencesC. Zoppou, «Review of urban storm water models,» Environmental Modelling & Software, pp. 195-231, 2001.spa
dc.relation.referencesP. D. Wagner, M. S. Bhallamudi, B. Narasimhan, L. N. Kantakumar, K. P. Sudheer, S. Kumar, K. Schneider y P. Fiener, «Dynamic integration of land use changes in a hydrologic assessment of a rapidly developing Indian catchment,» Science of The Total Environment, pp. 153-164, 2016.spa
dc.relation.referencesF. Yuan y Bauer, «Comparison of impervious surface area and normalized difference vegetation index as indicators of surface urban heat island effects in Landsat imagery,» Remote Sensing of Environment, pp. 375-386, 2007.spa
dc.relation.referencesH. Wouters, M. Demuzere, K. D. Ridder y N. P. Van Lipzig, «The impact of impervious water-storage parametrization on urban climate modelling,» Urban Climate, pp. 24-50, 2015.spa
dc.relation.referencesA. M. Ali, M. E. Shafiee y E. Z. Berglund, «Agent-based modeling to simulate the dynamics of urban water supply: Climate, population growth, and water shortages,» Sustainable Cities and Society, pp. 420-434, 2017.spa
dc.relation.referencesP. Rahardjo, D. M. Hartono, E. Suganda y H. S. Arifin, «Conservation of Underground Water with the Ecosystem approach to the Development of the New Towns in Bogor, Tangerang, Bekasi (Botabek) Region,» Procedia - Social and Behavioral Sciences, pp. 720-727, 2016spa
dc.relation.referencesA. Endreny , «Land Use and Land Cover Effects on Runoff Processes: Urban and Suburban Development,» Encyclopedia of Hydrological Sciences, pp. 110-122, 2006spa
dc.relation.referencesM. W. Gitau, J. Chen y Z. Ma, «Water Quality Indices as Tools for Decision Making and Management,» Water Resources Management, pp. 2591-2610, 2016.spa
dc.relation.referencesG. H. Parandvash y H. Chang, «Analysis of long-term climate change on per capita water demand in urban versus suburban areas in the Portland metropolitan area, USA,» Journal of Hydrology, pp. 574-586, 2016.spa
dc.relation.referencesA. Riley, Restoring Streams in Cities: A Guide for Planners Policymakers and Citizens, Washington, D.C: Island Press, 1998.spa
dc.relation.referencesM. Burns, T. Fletcher, C. Walsh, A. Ladson y B. Hatt, «Hydrologic shortcomings of conventional urban stormwater management and opportunities for reform,» Landscape and Urban Planning, pp. 230-240, 2012.spa
dc.relation.referencesS. Rose y N. E. Peters, «Effects of urbanization on streamflow in the Atlanta area (Georgia, USA): a comparative hydrological approach,» Hydrological Processes, pp. 1441-1457, 2001.spa
dc.relation.referencesY. Xiao , T.-t. Zhang , D. Liang y J. Chen , «Experimental study of water and dissolved pollutant runoffs on impervious surfaces,» Journal of Hydrodynamics, pp. 162-165, 2016.spa
dc.relation.referencesD. Butler y J. W. Davies, « Urban Drainage,» E & FN Spon, p. 489, 2000.spa
dc.relation.referencesD. J. Nowak y E. J. Greenfield , «Tree and impervious cover in the United States,» Landscape and Urban Planning, pp. 21-30, 2012.spa
dc.relation.referencesL. Boqiang y Z. Junpeng, «Changes in urban air quality during urbanization in China,» Journal of Cleaner Production, pp. 312 - 321, 2018.spa
dc.relation.referencesY. Li, Y. Li, Y. Zhou, Y. Shi y X. Zhu, «Investigation of a coupling model of coordination between urbanization and the environment,» Journal of Environmental Management, pp. 127 - 133, 2012.spa
dc.relation.referencesM. J. Molina y L. T. Molina, «Critical review: megacities and atmospheric pollution,» 2004.spa
dc.relation.referencesL. Han, W. Zhou, W. Li y L. Li, «Impact of urbanization level on urban air quality: A case of fine particles (PM2.5) in Chinese cities,» Environmental Pollution, pp. 163 - 170, 2014.spa
dc.relation.referencesD. . F. Petry Becker, R. Linden y J. L. Schmitt, «Richness, coverage and concentration of heavy metals in vascular epiphytes along an urbanization gradient,» Science of The Total Environment, pp. 48 - 54, 2017.spa
dc.relation.referencesP. Singh, N. Kikon y P. Verma, «Impact of land use change and urbanization on urban heat island in Lucknow city, Central India. A remote sensing based estimate,» Sustainable Cities and Society, pp. 100 - 114, 2017.spa
dc.relation.referencesR. Kotharkar, A. Ramesh y A. Bagade, «Urban Heat Island studies in South Asia: A critical review,» Urban Climate, 2018.spa
dc.relation.referencesE. Erell, D. Pearlmutter, T. J. Williamson y J. Terr, «Urban microclimate: Designing the Spaces between Buildings,» 2011.spa
dc.relation.referencesUnited States Environmental Protection Agency EPA, «Heat Island Impacts,» Washington D. C., Estados Unidos, 2017.spa
dc.relation.referencesE. A. Pappas, D. R. Smith, C. Huang, W. D. Shuster y J. V. Bonta, «Impervious surface impacts to runoff and sediment discharge under laboratory rainfall simulation,» CATENA, pp. 146 - 152, 2008.spa
dc.relation.referencesQ. Ma, J. Wu, C. He y G. Hu, «Spatial scaling of urban impervious surfaces across evolving landscapes: From cities to urban regions,» Landscape and Urban Planning, pp. 50 - 61, 2018.spa
dc.relation.referencesR. Carol y Jacobson, «Identification and quantification of the hydrological impacts of imperviousness in urban catchments: A review,» Journal of Environmental Management, pp. 1438-1448, 2011.spa
dc.relation.referencesA. Chin, A. P. O'Dowd y K. J. Gregory, «Reference Module in Earth Systems and Environmental Sciences,» de 9.39 Urbanization and River Channels, San Diego, Academic Press, 2013, pp. 809 - 827.spa
dc.relation.referencesB. J. Adams y F. Papa, Urban Stormwater Management Planning With Analytical Probabilistic Models, New York : John Wiley, 2000.spa
dc.relation.referencesDPAE, «Instrumentos para la gestión del riesgo en Bogotá,» de REDES DE MONITOREO DE AMENAZAS: RED HIDROMETEOROLÓGICA DE BOGOTÁ – RHB. RED DE ACELERÓGRAFOS DE BOGOTÁ – RAB. , Bogotá, 2008, pp. 66-67.spa
dc.relation.referencesSecretaría Distrital de Salud, «Diagnostico Local con Participacion Social,» de Localidad de Fontibón, Bogotá, Alcaldia Mayor de Bogotá, 2010, pp. 29 - 45. [91] Camara de Comercio de Bogotá, «Perfil económico y empresarial Localidad Fontibón,» de Factores asociados al entorno económico, Bogotà, 2007, pp. 17-28. [92] F. Chianucci, N. Puletti, E. Giacomello, A. Cutini y P. Corona, «Estimation of leaf area index in isolated trees with digital photography and its application to urban forestry,» Urban Forestry & Urban Greening, pp. 377 - 382, 2015. [93]spa
dc.relation.referencesCamara de Comercio de Bogotá, «Perfil económico y empresarial Localidad Fontibón,» de Factores asociados al entorno económico, Bogotà, 2007, pp. 17-28.spa
dc.relation.referencesF. Chianucci, N. Puletti, E. Giacomello, A. Cutini y P. Corona, «Estimation of leaf area index in isolated trees with digital photography and its application to urban forestry,» Urban Forestry & Urban Greening, pp. 377 - 382, 2015.spa
dc.relation.referencesUnited Bank of Carbon, A BRIEF GUIDE TO THE BENEFITS OF URBAN GREEN SPACES, University of Leeds , 2015.spa
dc.relation.referencesA. Chiesura, «The role of urban parks for the sustainable city,» Landscape and Urban Planning, pp. 129 - 138, 2004.spa
dc.relation.referencesB. W. Carrasco Cruz, S. Cruzalegui Delgado, B. A. Cueva Vásquez y J. C. Tueros Fernandez, «Area foliar, indice de area foliar, metodos para su estimación,» Zacualtipán, 2015.spa
dc.relation.referencesC. Mendoza Pérez, C. Ramírez Ayala, W. Ojeda Bustamante, J. Flores Velásquez, H. Flores Magdaleno y E. Sifuentes Ibarra, «COMPARACIÓN DE DOS MÉTODOS PARA MEDIR EL ÍNDICE DE ÁREA FOLIAR DE CHILE POBLANO EN INVERNADERO,» TERCER CONGRESO INTERNACIONAL DE INVESTIGACIÓN EN CIENCIAS BÁSICAS Y AGRONOMICOAS, UNIVERSIDAD AUTONOMA DE CHAPINGO, 2014.spa
dc.relation.referencesD. J. Nowak, «Air pollution removal by Chicago's urban forest,» pp. 63 - 81, 1994.spa
dc.relation.referencesQ. XIAO, E. G. MCPHERSON, S. L. USTING y E. M. GRISMER, «A New approach to modelling tree rainfall interception,» Journal of Geophysical research, p. 188, 2000.spa
dc.relation.referencesD. J. Sailor, «A green roof model for building energy simulation programs,» Energy and Buildings, pp. 1466 - 1478, 2008.spa
dc.relation.referencesUSDA Forest Service , i-Tree Hydro Users Manual, 2006.spa
dc.relation.referencesS. Hirabayashi y T. A. Endreny, «Surface and Upper Weather Pre-processor for i-Tree Eco and Hydro,» State University of New York, 2016.spa
dc.relation.referencesE. Kuehler y P. Erwin, «Rock Creek Watershed Stormwater Runoff Analysis: i-Tree Hydro Report,» Urban Forestry South, 2015.spa
dc.relation.referencesE. Stephan, T. Taggart y T. Endreny, «i-Tree Hydro: Training Workshop,» SUNY College of Environmental Science and Forestry, Atlanta, 2010.spa
dc.relation.referencesJ. Wang, J. M. Hassett y T. A. Endreny, «An object oriented approach to the description and simulation of watershed scale hydrologic processes,» Computers & Geosciences, pp. 425-435, 2005.spa
dc.relation.referencesK. Beven y J. Kirkby, «A Physically Based, Variable Contributing Area Model of Basin Hydrology,» Hydrological Sciences Bulletin, pp. 43-69, 1979.spa
dc.relation.referencesW. J. Shuttleworth, Evaporation models in hydrology, New York: McGraw-Hill, 1992.spa
dc.relation.referencesi-Tree, «i-Tree Hydro,» 2012. [En línea]. Available: http://www.itreetools.org/hydro/.spa
dc.relation.referencesSecretaría Distrital de Planeación, «Conociendo la localidad de Fontibón,» de Diagnóstico de los aspectos físicos, demográficos y socioeconómicos, Bogota, Alcaldía mayor de Bogotá, 2009, pp. 12-18.spa
dc.relation.referencesH. Kimm y Y. Ryu, «Seasonal variations in photosynthetic parameters and leaf area index in an urban park,» Urban Forestry & Urban Greening, pp. 1059 - 1067, 2015spa
dc.relation.referencesInstituto de Hidrología, Meteorología y Estudios Ambientales IDEAM, «Estudio de la caracterización climática de Bogotá y cuenca alta del río Tunjuelo,» Alcaldia mayor de Bogotá, Bogotá, 2005.spa
dc.relation.referencesS. C. French y B. L. Appleton, «A Guide to Successful Pruning Pruning Evergreen Trees,» Virginia Polytechnic Institute and State University, Virginia, 2009.spa
dc.relation.referencesJ. Doherty, «PEST-ASP User’s Manual,» de Watermark Numerical, Brisbane, Australia., 2001.spa
dc.relation.referencesJ. Doherty, «Model-Independent Parameter Estimation User Manual: 5th Edition,» Australia, 2004.spa
dc.relation.referencesCámara de Comercio de Bogotá, Observatorio del espacio público, Bogota, 2005.spa
dc.relation.referencesS. Galarza-Molina, P. Rengifo, A. Puentes, E. Cárcamo-Hernández, A. Torres, S. Méndez-Fajardo y C. Devia, «The benefits of an eco-productive green roof in Bogota, Colombia,» Indoor and Built Environment, 2016.spa
dc.rightsAtribución-NoComercial-SinDerivadas 2.5 Colombia
dc.rights.accessrightsinfo:eu-repo/semantics/openAccess
dc.rights.coarhttp://purl.org/coar/access_right/c_abf2
dc.rights.localAbierto (Texto Completo)spa
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/2.5/co/
dc.subject.keywordUrban Hydrologyspa
dc.subject.keywordUrban Developmentspa
dc.subject.keywordQuality-Water Resourcesspa
dc.subject.keywordWater Quality Managementspa
dc.subject.lembHidrologíaspa
dc.subject.lembIngeniería Ambientalspa
dc.subject.lembRecursos Hídricosspa
dc.subject.lembCalidad del Aguaspa
dc.subject.proposalCiclo Urbanospa
dc.subject.proposalDinámicas de Flujospa
dc.subject.proposalI-tree Hydrospa
dc.subject.proposalCantidades de Flujospa
dc.titleModelación del Ciclo Hidrológico Urbano en la Localidad de Fontibón con I-TREE hydrospa
dc.typebachelor thesis
dc.type.categoryFormación de Recurso Humano para la Ctel: Trabajo de grado de pregradospa
dc.type.coarhttp://purl.org/coar/resource_type/c_7a1f
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aa
dc.type.driveinfo:eu-repo/semantics/bachelorThesis
dc.type.localTesis de pregradospa
dc.type.versioninfo:eu-repo/semantics/acceptedVersion

Archivos

Bloque original

Mostrando 1 - 3 de 3
Cargando...
Miniatura
Nombre:
2018davidbautista.pdf
Tamaño:
3.3 MB
Formato:
Adobe Portable Document Format
Descripción:
Cargando...
Miniatura
Nombre:
cartadeautorización.pdf
Tamaño:
695.84 KB
Formato:
Adobe Portable Document Format
Descripción:
Cargando...
Miniatura
Nombre:
2018cartadederechosdeautor.pdf
Tamaño:
71.1 KB
Formato:
Adobe Portable Document Format
Descripción:

Bloque de licencias

Mostrando 1 - 1 de 1
Cargando...
Miniatura
Nombre:
license.txt
Tamaño:
1.71 KB
Formato:
Item-specific license agreed upon to submission
Descripción: