Determinación de la relación entre la Oscilación Decadal del Pacífico y la activación del ciclo ENOS en estaciones costeras e insulares del Pacífico colombiano

dc.contributor.advisorVillegas Bolaños, Nancy Liliana
dc.contributor.authorGaravito Mahecha, José David
dc.contributor.researchgroupCENITspa
dc.coverage.boxOcéano Pacífico
dc.coverage.countryColombia
dc.date.accessioned2021-10-05T17:17:43Z
dc.date.available2021-10-05T17:17:43Z
dc.date.issued2021-02-04
dc.descriptionilustraciones, gráficas, mapas, tablasspa
dc.description.abstractLa variabilidad del clima es dominada por relaciones entre fenómenos de interacción océano – atmósfera, las cuales aún no se comprenden completamente. En la presente investigación se determinó la relación entre la Oscilación Decadal del Pacífico (ODP) y la manifestación del Niño Oscilación del Sur (ENOS) en puntos de referencia costeros e insulares de la Cuenca del Pacífico Colombiano (CPC). Se analizaron variables oceánicas y atmosféricas como la Altura Superficial del Mar (ASM), la Temperatura Superficial del Mar (TSM), la Temperatura del Aire (Ta) y la Humedad Relativa (Hr) en puntos de referencia oceánicos de los cuales tres se ubicaron en el Océano Pacífico Norte (OPN), dos en el Océano Pacífico Ecuatorial (OPE) y dos en la CPC, además de un punto de referencia costero en el OPN y tres en el litoral Pacífico Colombiano. Las series mensuales de la ASM se extrajeron del Modular Ocean Model (MOM4) del Geophysical Fluid Dynamics Laboratory para el periodo 1950 – 2007. Las demás variables se analizaron para el periodo 1961 – 2014. Las series mensuales de TSM se obtuvieron del Objectively Analyzed air – sea Fluxes (OAFlux), mientras que la Ta y la Hr se obtuvieron del NCEP/NCAR Reanalysis 1. Se determinó el comportamiento temporal de las variables de estudio. Se calcularon las anomalías generales, se realizó el análisis de la densidad espectral y se extrajeron los componentes principales. Se obtuvieron series filtradas con los ciclos principales que contribuyeron en la oscilación característica de las variables de estudio. Se calcularon los coeficientes de correlación cruzada entre la ODP, ENOS y los ciclos principales hallados. Se analizó la influencia de la ODP en la manifestación de los eventos ENOS a través de correlación lineal entre los ciclos principales. Se analizó la influencia de la ODP en las ocurrencias de las anomalías absolutas de las variables de estudio en la CPC. Se demostró que las anomalías positivas y negativas de las variables analizadas en la CPC, estuvieron influidas y asociadas con las fases de la ODP y ENOS. Estas anomalías de las variables oceánicas y atmosféricas se intensificaron cuando los índices oceánicos ODP y ONI se encontraron acoplados sincrónicamente sobre el Océano Pacífico (OP). Se observó que a partir de transiciones de fase de la ODP, se presentaron cambios en las fases del ONI, las cuales generaron eventualmente eventos ENOS muy intensos acoplados con la ODP. Se encontró que desde el OPN se favoreció la manifestación de las anomalías de las variables analizadas simultáneamente en varios sectores del OPE y la CPC. Asociaciones muy fuertes se encontraron en el ciclo principal de ~5,0 años entre la ODP y las ATSM en la CPC. Se encontró que las fases de este ciclo incrementaron su longitud de onda llegando a una duración cercana entre los 7,0 y 9,0 años, lo que mostró un acoplamiento de ENOS al ciclo característico de la ODP (10 años). Se encontró que entre la ODP y las variables oceánicas y atmosféricas en los puntos de referencia existió una fuerte asociación, la cual influyó y moduló la ocurrencia de eventos ENOS y sus efectos en la variabilidad del clima en la CPC. En donde, en la CPC la ODP fue el fenómeno de interacción océano – atmósfera dominante y modulador en las anomalías de estudio y su variabilidad temporal. (Texto tomado de la fuente)spa
dc.description.abstractClimate variability is dominated by relationships between ocean – atmosphere interaction phenomena, which are not yet fully understood. In the present investigation, the relationship between the Pacific Decadal Oscillation (PDO) and the manifestation of El Niño Southern Oscillation (ENSO) in coastal and island landmarks of the Colombian Pacific Basin (CPC) was determined. Oceanic and atmospheric variables such as Sea Surface Height (ASM), Sea Surface Temperature (TSM), Air Temperature (Ta) and Relative Humidity (Hr) were analyzed in oceanic points of reference of which three were located in the North Pacific Ocean (OPN), two in the Equatorial Pacific Ocean (OPE) and two in the CPC, in addition to a coastal landmark in the OPN and three on the Colombian Pacific coast. The monthly ASM series were extracted from the Modular Ocean Model (MOM4) of the Geophysical Fluid Dynamics Laboratory for the period 1950 – 2007. The other variables were analyzed for the period 1961 – 2014. The monthly SST series were obtained from the Objectively Analyzed air - sea Fluxes (OAFlux), while the Ta and Hr were obtained from the NCEP / NCAR Reanalysis 1. The temporal behavior of the study variables was determined. General anomalies were calculated, spectral density analysis was performed and main components were extracted. Filtered series were obtained with the main cycles that contributed to the characteristic oscillation of the study variables. The cross-correlation coefficients between the PDO, ENSO and the main cycles found were calculated. The influence of the PDO on the manifestation of ENSO events was analyzed through linear correlation between the main cycles. The influence of the PDO on the occurrences of the absolute anomalies of the study variables in the CPC was analyzed. It was demonstrated that the positive and negative anomalies of the variables analyzed in the CPC were influenced and associated with the phases of the PDO and ENSO. These anomalies of the oceanic and atmospheric variables were intensified when the oceanic indices PDO and ONI were found synchronously coupled over the Pacific Ocean (OP). It was observed that from PDO phase transitions, changes occurred in ONI phases, which eventually generated very intense ENSO events coupled with PDO. It was found that the OPN favored the manifestation of the anomalies of the variables analyzed simultaneously in various sectors of the OPE and the CPC. Very strong associations were found in the main cycle of ~ 5,0 years between PDO and ATSM at CPC. It was found that the phases of this cycle increased their wavelength, reaching a close duration between 7,0 and 9,0 years, which showed a coupling of ENSO to the characteristic cycle of the PDO (10 years). It was found that a strong association existed between the PDO and the oceanic and atmospheric variables at reference points, which influenced and modulated the occurrence of ENSO events and their effects on climate variability in the CPC. Where, in the CPC, the PDO was the dominant ocean - atmosphere interaction phenomenon and modulator in the study anomalies and their temporal variability.eng
dc.description.degreelevelMaestríaspa
dc.description.degreenameMagíster en Ciencias - Meteorologíaspa
dc.description.researchareaInteracción Océano – Atmósferaspa
dc.format.extent285 páginasspa
dc.format.mimetypeapplication/pdfspa
dc.identifier.instnameUniversidad Nacional de Colombiaspa
dc.identifier.reponameRepositorio Institucional Universidad Nacional de Colombiaspa
dc.identifier.repourlhttps://repositorio.unal.edu.co/spa
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/80389
dc.language.isospaspa
dc.publisherUniversidad Nacional de Colombiaspa
dc.publisher.branchUniversidad Nacional de Colombia - Sede Bogotáspa
dc.publisher.departmentDepartamento de Geocienciasspa
dc.publisher.facultyFacultad de Cienciasspa
dc.publisher.placeBogotá, Colombiaspa
dc.publisher.programBogotá - Ciencias - Maestría en Ciencias - Meteorologíaspa
dc.relation.referencesÁlvarez, Diana and Germán Poveda. 2011. “Análisis de Frecuencia de Los Caudales Máximos Diarios En Ríos de Colombia Considerando Las Fases Del Fenómeno ENSO Germán Poveda.” XVII Seminario Nacional de Hidraulica e Hidrología 184–93.spa
dc.relation.referencesAnderson, Weston, Richard Seager, Walter Baethgen, and Mark Cane. 2018. “Trans-Pacific ENSO Teleconnections Pose a Correlated Risk to Agriculture.” Agricultural and Forest Meteorology 262(November 2017):298–309.spa
dc.relation.referencesAndreoli, Rita V. and Mary T. Kayano. 2005. “ENSO-Related Rainfall Anomalies in South America and Associated Circulation Features during Warm and Cold Pacific Decadal Oscillation Regimes.” International Journal of Climatology 25(15):2017–30.spa
dc.relation.referencesAraújo, Rosimeire, Rita Valéria Andreoli, Luiz Antonio Candido, Mary Toshie Kayano, and Rodrigo Augusto Ferreira De Souza. 2013. “A Influência Do Evento El Niño – Oscilação Sul e Atlântico Equatorial Na Precipitação Sobre as Regiões Norte e Nordeste Da América Do Sul.” Acta Amazonica 43(4):469–80.spa
dc.relation.referencesBarnett, Tim P. and David W. Pierce. 1999. “Interdecadal Interactions between the Tropics and Midlatitudes in the Pacific Basin.” Geophysical Research Letters 26(5):615–18.spa
dc.relation.referencesBarton Ramı´ rez, Jorge A., Steven B. 2004. “Effects of El Nin˜ o Southern Oscillation and Pacific Interdecadal Oscillation on Water Supply in the Columbia River Basin.” Journal of Water Resources Planning and Management d(August):9.spa
dc.relation.referencesBaxter, Marianne and Robert King. 1999. “Measuring Business Cycles: Approximate Band-Pass Filters for Economic Time Series.” 51.spa
dc.relation.referencesBirk, K., a R. Lupo, and P. Guinan. 2010. “The Interannual Variability of Midwestern Temperatures and Precipitation as Related to the ENSO and PDO.” Atmosfera 23(2):95–128.spa
dc.relation.referencesBjerknes, J. 1969. “Atmospheric Teleconnections From The Equatorial Pacific.” Monthly Weather Review 97(3):163–72.spa
dc.relation.referencesBlanco, J. a., E. a. Viloria, and B. J. Narváez. 2006. “ENSO and Salinity Changes in the Ciénaga Grande de Santa Marta Coastal Lagoon System, Colombian Caribbean.” Estuarine, Coastal and Shelf Science 66(1–2):157–67.spa
dc.relation.referencesBlanco, Juan F. 2009. “The Hydroclimatology of Gorgona Island: Seasonal and ENSO-Related Patterns.” Actual Biol 31(91):111–21.spa
dc.relation.referencesBonsal, Barrie, Amir Shabbar, and Kaz Higuchi. 2000. “Impacts of Low Frequency Variability Modes on Canadian Winter Temperature.” International Journal of Climatology 21(1):95–108.spa
dc.relation.referencesBourke, Paul. 1996. “Cross Correlation, AutoCorrelation, 2D Pattern Identification.” (August):1–10.spa
dc.relation.referencesCañón, Julio, Javier González, and Juan Valdés. 2007. “Precipitation in the Colorado River Basin and Its Low Frequency Associations with PDO and ENSO Signals.” Journal of Hydrology 333(2–4):252–64.spa
dc.relation.referencesCastillo, Patricia, Cruz Márquez, David Wiedenfeld, Howard Snell, and Alberto Jaramillo. 2004. “‘El Niño Oscilación Del Sur’ y Estado de Salud de Las Iguanas Marinas (Amblyrhynchus Cristatus) En Galápagos.” Ecología Aplicada 3:92–97.spa
dc.relation.referencesChan, Johnny C. L. and Wen Zhou. 2005. “PDO, ENSO and the Early Summer Monsoon Rainfall over South China.” Geophysical Research Letters 32(8):1–5.spa
dc.relation.referencesChang, Ni-bin, Sanaz Imen, Kaixu Bai, and Y. Je. 2017. “The Impact of Global Unknown Teleconnection Patterns on Terrestrial Precipitation across North and Central America.” 193(April):107–24.spa
dc.relation.referencesClimate Prediction Center. 2005. “EL Niño Conditions.” Retrieved October 11, 2018 (https://www.cpc.ncep.noaa.gov/products/analysis_monitoring/ensocycle/enso_schem.shtml).spa
dc.relation.referencesClimate Prediction Center. 2017. “NOAA’s Climate Prediction Center.” Retrieved May 10, 2017 (https://origin.cpc.ncep.noaa.gov/products/analysis_monitoring/ensostuff/ONI_v5.php).spa
dc.relation.referencesCollins, Henry, Austin Clark, and Egbert Walker. 1945. “The Aleutian Islands: Their People and Natural History.” Smithsonian Institution War Background Studies 3775:170.spa
dc.relation.referencesD’Arrigo, Rosanne and Rob Wilson. 2006. “On the Asian Expression of the PDO.” International Journal of Climatology 26(12):1607–17.spa
dc.relation.referencesDevis, Andrea, Ingrid García, Igor Málikov, and Nancy Liliana Villegas. 2002. COMPILACIÓN OCEANOGRÁFICA DE LA CUENCA PACÍFICA COLOMBIANA.spa
dc.relation.referencesEchevin, Vincent, Francois Colas, Alexis Chaigneau, and Pierrick Penven. 2011. “Sensitivity of the Northern Humboldt Current System Nearshore Modeled Circulation to Initial and Boundary Conditions.” Journal of Geophysical Research 116(March):1–16.spa
dc.relation.referencesEnfield, D. B. and J. S. Allen. 1980. “On the Structure and Dynamics of Monthly Mean Sea Level Anomalies along the Pacific Coast of North and South America.” Journal of Physical Oceanography 10(4):557–78.spa
dc.relation.referencesEnfield, David B. 1987. “Progress in Understanding El Nino.”spa
dc.relation.referencesEnfield, David B. 1989. “El Niño, Past and Present.” Reviews of Geophysics 27(1):159.spa
dc.relation.referencesEnríquez, O., A. Guzmán, and G. Narváez. 1998. “Análisis De Los Cambios En La Distribución Temporal De La Precipitación En El Municipio De Buenaventura (Valle Del Cauca - Colombia), Ocasionados Por Los Fenómenos Del Niño Y La Niña.” Reencuentro de Saberes Territoriales Latinoamericanos 23:16.spa
dc.relation.referencesEspino, Marco and Carmen Yamashiro. 2012. “La Variabilidad del clima y Las Pesquerías En El Pacífico Suroriental.” Lat. Am. J. Aquat. Res. 40(3):705–21.spa
dc.relation.referencesFigueroa, M. and P. Ripa. 1988. “Variación Estacional Del Balance Geostrófico En La Región Ecuatorial.” Geofísica Internacional 27(3):415–52.spa
dc.relation.referencesGershunov, a and T. P. Barnett. 1998. “Interdecadal Modulation of ENSO Teleconnections.” Bulletin of the American Meteorological Society 79(12):2715–25.spa
dc.relation.referencesGonzález, Diana. 2001. “ANÁLISIS ESPECTRAL: CONSIDERACIONES TEÓRICAS Y APLICABILIDAD.” Economía y Sociedad (16):45–60.spa
dc.relation.referencesGriffies, Stephen M., Mj J. Harrison, Ronald C. Pacanowski, and a Rosati. 2004. “A Technical Guide to MOM4.” GFDL Ocean Group Tech. Rep 5(5):371.spa
dc.relation.referencesGuevara, José Manuel. 2008. “EL ABC DE LOS ÍNDICES USADOS EN LA IDENTIFICACIÓN Y DEFINICIÓN CUANTITATIVA DEL NIÑO - OSCILACIÓN DEL SUR ( ENSO ).” Terra. XXIV(35):85–140.spa
dc.relation.referencesGuzmán, D., F. Ruíz, and M. Cadena. 2014. “Regionalización de Colombia Según La Estacionalidad de La Precipitación Media Mensual, A Través Análisis de Componentes Principales (ACP).” 1–55.spa
dc.relation.referencesHankin, Steve, Jon Callahan, Ansley Manke, Kevin O’Brien, and Jing Li. 2007. “Ferret_Users_Guide_V602.” 1–609.spa
dc.relation.referencesHernández, Benigno. 2002. “Variabilidad Interanual de Las Anomalías de La Temperatura Superficial Del Mar En Aguas Cubanas y Su Relación Con Eventos El Niño-Oscilación Del Sur (ENOS).” Investigaciones Marinas 30(2):21–31.spa
dc.relation.referencesHernández, Daniel, Nancy Villegas, and Igor Málikov. 2008. “Respuestas De Las Temperaturas Superficial Del Mar Y Del Aire De La Cuenca Del Pacífico Colombiano Producidas Por El Niño Oscilación Del Sur.” Ingeniería de Recursos Naturales y Del Ambiente (7):57–65.spa
dc.relation.referencesHidalgo, Hugo G. and John A. Dracup. 2003. “ENSO and PDO Effects on Hydroclimatic Variations of the Upper Colorado River Basin.” Journal of Hydrometeorology 4(1):5–23.spa
dc.relation.referencesHill, T. and P. Lewicki. 2007. “STATISTICS: Methods and Applications.”spa
dc.relation.referencesHu, Aixue and Susan C. Bates. 2018. “Internal Climate Variability and Projected Future Regional Steric and Dynamic Sea Level Rise.” Nature Communications 9(1):1068.spa
dc.relation.referencesInternational Research Institute for Climate and Society. 2014. “ENSO Essentials.” Retrieved January 20, 2019 (https://iri.columbia.edu/our-expertise/climate/enso/enso-essentials/).spa
dc.relation.referencesJoint Institute for the Study of the Atmosphere and Ocean. 2017. “Pacific Decadal Oscillation (PDO).” Retrieved November 24, 2018 (http://research.jisao.washington.edu/pdo/).spa
dc.relation.referencesJoseph, P. V. and S. Sijikumar. 2004. “Intraseasonal Variability of the Low-Level Jet Stream of the Asian Summer Monsoon.” Journal of Climate 17(7):1449–58.spa
dc.relation.referencesKalnay, E., M. Kanamitsu, R. Kistler, W. Collins, D. Deaven, and L. Gandin. 1996. “The NCEP / NCAR 40-Year Reanalysis Project.” Bulletin of the American Meteorological Society 1–36.spa
dc.relation.referencesKizaki, Koshiro. 1986. “Geology and Tectonics of the Kuzbas.” Tectonophysics 125(1–3):193–207.spa
dc.relation.referencesKobashi, Fumiaki and Hiroshi Kawamura. 2001. “Variation of Sea Surface Height at Periods of 65-220 Days in the Subtropical Gyre of the North Pacific.” Journal of Geophysical Research: Oceans 106(C11):26817–31.spa
dc.relation.referencesKrishnamurthy, Lakshmi and V. Krishnamurthy. 2014. “Influence of PDO on South Asian Summer Monsoon and Monsoon-ENSO Relation.” Climate Dynamics 42(9–10):2397–2410.spa
dc.relation.referencesKulkarni, M. N. and Devendraa Siingh. 2014. “The Relation between Lightning and Cosmic Rays during ENSO with and without IOD — A Statistical Study.” Atmospheric Research 143:129–41.spa
dc.relation.referencesL’Heureux, Michelle, Ken Takahashi, Andrew Watkins, Anthony Barnston, Emily Becker, Tom Di Liberto, Felicity Gamble, Jon Gottschalck, Michael Halpert, Boyin Huang, Kobi Mosquera, and Andrew Wittenberg. 2017. “Observing and Predicting the 2015/16 El Niño.” American Meteorological Society (July):1363–82.spa
dc.relation.referencesLatif, M. and T. P. Barnett. 1996. “Decadal Climate Variability over the North Pacific and North America: Dynamics and Predictability.” Journal of Climate 9(10):2407–23.spa
dc.relation.referencesLee, Jai Hong, Joon hak Lee, and Pierre Y. Julien. 2018. “Global Climate Teleconnection with Rainfall Erosivity in South Korea.” Catena 167(June 2017):28–43.spa
dc.relation.referencesLiu, Haibo, Peter Q. Olsson, Karl P. Volz, and Han Yi. 2006. “A Climatology of Mesoscale Model Simulated Low-Level Wind Jets over Cook Inlet and Shelikof Strait, Alaska.” Estuarine, Coastal and Shelf Science 70:551–66.spa
dc.relation.referencesMa, Jing, Shang Ping Xie, and Haiming Xu. 2017. “Contributions of the North Pacific Meridional Mode to Ensemble Spread of ENSO Prediction.” Journal of Climate 30(22):9167–81.spa
dc.relation.referencesMa, Tianjiao, Wen Chen, Debashis Nath, Hans-F. Graf, Lin Wang, and Jingliang Huangfu. 2018. “East Asian Winter Monsoon Impacts the ENSO-Related Teleconnections and North American Seasonal Air Temperature Prediction.” Scientific Reports 8(1):6547.spa
dc.relation.referencesMacharé, José and Luc Ortlieb. 1993. “Registros Del Fenómeno El Niño En El Perú.” Bull Inst Fr Études Andines 22(1):33–52.spa
dc.relation.referencesMagdalena, Andrés, Kwon Young-Oh, and Yang Jiayan. 2011. “Observations of the Kuroshio’s Barotropic and Baroclinic Responses to Basin-Wide Wind Forcing.” Journal of Geophysical Research: Oceans 116(4):1–12.spa
dc.relation.referencesMalikov, Igor and Nancy Villegas. 2013. “PRESENCE OF EL NINO SOUTHERN OSCILLATION IN THE SEA SURFACE TEMPERATURE ANOMALIES OF THE COLOMBO- ECUADORIAN COAST.” Notas Científicas de La Universidad Estatal de Hidrometeorología de Rusia 29:3–6.spa
dc.relation.referencesMantua, N. J. and S. R. Hare. 2002. “The Pacific Decadal Oscillation.” Journal of Oceanography 58(1):35–44.spa
dc.relation.referencesMantua, Nathan J., Steven R. Hare, Yuan Zhang, John M. Wallace, and Robert C. Francis. 1997. “A Pacific Interdecadal Climate Oscillation with Impacts on Salmon Production.” Bulletin of the American Meteorological Society 78(6):1069–79.spa
dc.relation.referencesMarín, Lina María, German Poveda, and Hernán Alonso Moreno. 2004. “Análisis Del Ciclo Diurno de La Humedad Relativa En 17 Aeropuertos de Colombia.” XVI Seminario de Hidráulica e Hidrología 1–13.spa
dc.relation.referencesMarti, Ali Ihsan, Cahit Yerdelen, and Ercan Kahya. 2010. “ENSO Modulations on Streamflow Characteristics.” Earth Sciences Research Journal 14(1):31–43.spa
dc.relation.referencesMartínez-aguilar, Tulia Isabel, Alan Giraldo, and Efraín Rodríguez-rubio. 2010. “Ictioplancton En La Zona Costera Del Pacífico Colombiano Durante La Fase Terminal del Niño 2006-2007 Ichthyoplankton from the Colombian Pacific Coastal Zone during the Terminal Phase of El Niño 2006-2007.” 38(1):151–66.spa
dc.relation.referencesMathWorks, Inc. 2011. “MATLAB - El Lenguaje Del Cálculo Técnico - MATLAB & Simulink.”spa
dc.relation.referencesMatsumura, Shinji and Takeshi Horinouchi. 2016. “Pacific Ocean Decadal Forcing of Long-Term Changes in the Western Pacific Subtropical High.” Scientific Reports 6(November):1–7.spa
dc.relation.referencesMcCabe, Gregory J. and Michael D. Dettinger. 1999. “Decadal Variations in the Strength of ENSO Teleconnections with Precipitation in the Western United States.” International Journal of Climatology 19(13):1399–1410.spa
dc.relation.referencesMcGregor, H. V., M. J. Fischer, M. K. Gagan, D. Fink, S. J. Phipps, H. Wong, and C. D. Woodroffe. 2013. “A Weak El Niño/Southern Oscillation with Delayed Seasonal Growth around 4,300 Years Ago.” Nature Geoscience 6(11):949–53.spa
dc.relation.referencesMendoza, Víctor M., Berta Oda, René Garduño, Elba E. Villanueva, and Julián Adem. 2014. “Simulation of the PDO Effect on the North America Summer Climate with Emphasis on Mexico.” Atmospheric Research 137:228–44.spa
dc.relation.referencesMessié, Monique and Francisco Chavez. 2011. “Global Modes of Sea Surface Temperature Variability in Relation to Regional Climate Indices.” Journal of Climate 24(16):4314–31.spa
dc.relation.referencesMestas-Nuñez, A. M. and D. B. Enfield. 2001. “Eastern Equatorial Pacific SST Variability: ENSO and Non-ENSO Components and Their Climatic Associations.” Journal of Climate 14(3):391–402.spa
dc.relation.referencesMizuno, Keisuke and Warren B. White. 2002. “Annual and Interannual Variability in the Kuroshio Current System.” Journal of Physical Oceanography 13(10):1847–67.spa
dc.relation.referencesMock, Cary J., Patrick J. Bartlein, and Patricia M. Anderson. 1998. “Atmospheric Circulation Patterns and Spatial Climatic Variations in Beringia.” International Journal of Climatology 18(10):1085–1104.spa
dc.relation.referencesMontenegro, Alvaro. 2009. “Análisis Espectral.”spa
dc.relation.referencesMoriyama, Takashi, Masanao Hara, Jun Suwa, Susumu Kanino, and Yasuhiro Sugimori. 2003. “The Influence of Topography on Trajetories of Mesoscale Eddy East of Okinawa Island Based on Satellite Altimetry.” Journal of Advanced Marine Science and Technology Society 8(2):67–76.spa
dc.relation.referencesMuangsong, Chotika, Binggui Cai, Nathsuda Pumijumnong, Chaoyong Hu, and Hai Cheng. 2014. “An Annually Laminated Stalagmite Record of the Changes in Thailand Monsoon Rainfall over the Past 387 Years and Its Relationship to IOD and ENSO.” Quaternary International 349:90–97.spa
dc.relation.referencesNewman, Matthew, Gilbert P. Compo, and Michael a. Alexander. 2003. “ENSO-Forced Variability of the Pacific Decadal Oscillation.” Journal of Climate 16(23):3853–57.spa
dc.relation.referencesOrsi, Joseph, Jeffrey Harding, Suzan Pool, Richard Brodeur, Lewis Haldorson, James Murphy, Jamal Moss, Edward Farley, Ruston Sweeting, John Morris, Marc Trudel, Richard Beamish, Robert Emmett, and Emily Fergusson. 2007. “Epipelagic Fish Assemblages Associated with Juvenile Pacific Salmon in Neritic Waters of the California Current and the Alaska Current.” American Fisheries Society Symposium 57:105–55.spa
dc.relation.referencesOuyang, R., W. Liu, G. Fu, C. Liu, L. Hu, and H. Wang. 2014. “Linkages between ENSO/PDO Signals and Precipitation, Streamflow in China during the Last 100 Years.” Hydrology and Earth System Sciences Discussions 11(4):4235–65.spa
dc.relation.referencesOverland, J. and T. Hiester. 1980. “Development of a Synoptic Climatology for the Northeast Gulf of Alaska.” Journal of Applied Meteorology 19(1).spa
dc.relation.referencesPalomino, Reiner, Samir Córdoba, Sonia Gámiz, Yolanda Castro, and María Jesús Esteban. 2011. “Characterization of the Monsoon and Its Influence on the Precipitation in Western Colombia.” 561–70.spa
dc.relation.referencesPapineau, John M. 2001. “Wintertime Temperature Anomalies in Alaska Correlated with ENSO and PDO.” International Journal of Climatology 21(13):1577–92.spa
dc.relation.referencesPark, Sunghyea, Peter C. Chu, and Jae Hak Lee. 2011. “Interannual-to-Interdecadal Variability of the Yellow Sea Cold Water Mass in 1967-2008: Characteristics and Seasonal Forcings.” Journal of Marine Systems 87(3–4):177–93.spa
dc.relation.referencesPiedrahíta, Catalina, John Selvaraj, and Ángela Guzmán. 2013. “Detección de Afloramientos de Algas Usando Datos Modis de Fluorescencia En El Pacífico Colombiano.” Investigación En Ciencias Del Mar Aportes de La Universidad Nacional de Colombia (January 2016):55–65.spa
dc.relation.referencesPoveda, Germán. 2002. “El Chorro Del Chocó y Su Influencia Sobre La Hidroclimatología de La Costa Pacífica y El Occidente de Colombia.” Geología y Oceanografía Del Delta Del Río San Juan 169–90.spa
dc.relation.referencesPoveda, Germán. 2004. “La Hidroclimatología de Colombia Una Síntesis Desde La Escala Inter-Decadal Hasta La Escala Diurna.” Revista Académica Colombiana de Ciencias de La Tierra 28(107):201–22.spa
dc.relation.referencesPoveda, Germán and Oscar Mesa. 1999. “La Corriente de Chorro Superficial Del Oeste (‘Del Chocó’) y Otras Dos Corrientes de Chorro En Colombia: Climatología y Variabilidad Durante Las Fases Del ENSO.” Revista Académica Colombiana de Ciencias de La Tierra 23(89):517–28.spa
dc.relation.referencesPrants, S. V., A. G. Andreev, M. V. Budyansky, and M. Yu Uleysky. 2013. “Impact of Mesoscale Eddies on Surface Flow between the Pacific Ocean and the Bering Sea across the Near Strait.” Ocean Modelling 72:143–52.spa
dc.relation.referencesQiu, Bo. 2002. “Large-Scale Variability in the Midlatitude Subtropical and Subpolar North Pacific Ocean: Observations and Causes.” Journal of Physical Oceanography 32(1):353–75.spa
dc.relation.referencesRamírez-Builes, Victor Hugo and Álvaro Jaramillo-Robledo. 2009. “Relación Entre El Índice Oceánico del Niño y La Lluvia, En La Región Andina Central de Colombia.” Cenicafé 60(2):161–72.spa
dc.relation.referencesRodionov, S. N., N. A. Bond, and J. E. Overland. 2007. “The Aleutian Low, Storm Tracks, and Winter Climate Variability in the Bering Sea.” Deep-Sea Research Part II: Topical Studies in Oceanography 54(23–26):2560–77.spa
dc.relation.referencesRodríguez, E. 2013. “A Multivariate Climate Index for the Western Coast of Colombia.” Advances in Geosciences 33:21–26.spa
dc.relation.referencesRodríguez, Efraín and Alan Giraldo. 2011. “Características Oceanográficas En La Isla Malpelo y Su Relación Con La Cuenca Oceánica Del Pacífico Colombiano.” Boletin de Investigaciones Marinas Costeras 40:19–32.spa
dc.relation.referencesRopelewski, C. F. and M. S. Halpert. 1987. “Global and Regional Scale Precipitation Patterns Associated with the El Niño/Southern Oscillation.” Monthly Weather Review 115(8):1606–26.spa
dc.relation.referencesRoxy, Mathew, Nitin Patil, K. Aparna, and Karumuri Ashok. 2013. “Revisiting the Indian Summer Monsoon-ENSO Links in the IPCC AR4 Projections: A Cautionary Outlook.” Global and Planetary Change 104:51–60.spa
dc.relation.referencesRueda, Óscar and German Poveda. 2006. “Variabilidad Espacial y Temporal Del Chorro Del ‘Choco’ y Su Efecto En La Hidroclimatología de La Región Del Pacífico Colombiano.” Meteorología Colombiana W 10(April):132–45.spa
dc.relation.referencesRuiz, Aida and José Pabón. 2013. “Efecto de Los Fenómenos del Niño y La Niña En La Precipitación y Su Impacto En La Producción Agrícola Del Departamento Del Atlántico (Colombia).” Cuadernos de Geografía Revista Colombiana de Geografía 22(2):35–54.spa
dc.relation.referencesRuiz, Mauricio. 2011. “Variabilidad de La Cuenca Colombia (Mar Caribe) Asociada Con El Niño-Oscilación Del Sur, Vientos Alisisos y Procesos Locales.” 102.spa
dc.relation.referencesSalas, Hernán, Alejandra María Carmona, and Germán Poveda. 2012. “VARIABILIDAD INTERDIARIA DE LA PRECIPITACIÓN EN MEDELLÍN (COLOMBIA) ASOCIADA CON LAS ONDAS TROPICALES DEL ESTE Y SU COMPORTAMIENTO DURANTE LAS FASES DEL ENSO.”spa
dc.relation.referencesSchwing, F., T. Murphree, L. DeWitt, and P. Green. 2002. “The Evolution of Oceanic and Atmospheric Anomalies in the Northeast Pacific during the El Niño and La Niña Events of 1995–2001.” Progress in Oceanography 54(1–4):459–91.spa
dc.relation.referencesShumway, Robert H. and David S. Stoffer. 2016. Time Series Analysis and Its Applications. Fourth Edi. Springer US.spa
dc.relation.referencesStearns, Harold. 1967. Geology of the Hawaiian Islands.spa
dc.relation.referencesStrong, Courtenay and Robert Davis. 2007. “Variability in the Position and Strength of Winter Jet Stream Cores Related to Northern Hemisphere Teleconnections.” Journal of Climate 21:584–92.spa
dc.relation.referencesStuecker, Malte F. 2018. “Revisiting the Pacific Meridional Mode.” Scientific Reports 8(1):1–9.spa
dc.relation.referencesSun, Jingru, Leo Oey, F. H. Xu, and Y. C. Lin. 2017. “Sea Level Rise, Surface Warming, and the Weakened Buffering Ability of South China Sea to Strong Typhoons in Recent Decades.” Scientific Reports 7(1):1–9.spa
dc.relation.referencesTakemoto, Ayumi and Motoyoshi Oda. 1997. “New Planktic Foraminiferal Transfer Functions for the Kuroshio-Oyashio Current Region off Japan.” Palaeontological Society of Japan 1(4):291–310.spa
dc.relation.referencesTamaddun, Kazi Ali, Ajay Kalra, Miguel Bernardez, and Sajjad Ahmad. 2017. “Multi-Scale Correlation between the Western U.S. Snow Water Equivalent and ENSO/PDO Using Wavelet Analyses.” Water Resources Management 31(9):2745–59.spa
dc.relation.referencesTang, Chunling, Dong Chen, Benjamin T. Crosby, Thomas C. Piechota, and Joseph M. Wheaton. 2014. “Is the PDO or AMO the Climate Driver of Soil Moisture in the Salmon River Basin, Idaho?” Global and Planetary Change 120:16–23.spa
dc.relation.referencesTrenberth, K. E. and D. P. Stepaniak. 2001. “Indices of El Ni??O Evolution.” Journal of Climate 14(8):1697–1701.spa
dc.relation.referencesTrenberth, Kevin. 1997. “The Definition of El Nino.” American Meteorological Society 78(12):2771–78.spa
dc.relation.referencesTrenberth, Kevin E. and James W. Hurrell. 1994. “Decadal Atmosphere-Ocean Variations in the Pacific.” Climate Dynamics 9:303–19.spa
dc.relation.referencesVásquez, Fredy and Sergio Restrepo. 2009. “Efectos de Las Técnicas de Filtrado En La Evaluación de Un Modelo de Ciclos Económicos Reales.” Lecturas de Economía 71:43–76.spa
dc.relation.referencesVillegas, Nancy and Igor Málikov. 2009. Atlas de Las Características Termohalinas y Dinámicas de Las Aguas de La Cuenca Del Pacífico Colombiano: Con Base En Simulación Matemática. Universida.spa
dc.relation.referencesVillegas, Nancy, Angela Rodríguez, and Igor Málikov. 2013. “INFLUENCE OF THE SOUTHERN OSCILLATION INDEX AND PACIFIC DECADAL OSCILLATION ON THE THERMOHALINE STABILITY OF SURFACE WATERS OVER THE COLOMBIAN PACIFIC OCEAN.” 6.spa
dc.relation.referencesWalker, Gilbert T. and E. W. Bliss. 1932. “World Weather V - NAO.” Memoirs of the Royal Meteorological Society IV(36):54–84.spa
dc.relation.referencesWang, J. and X. Cheng. 2013. “Interannual/Interdecadal Variabilities of Sea Surface Height in the South China Sea - Correlation Analysis with ENSO /PDO.” American Geophysical Union 10–11.spa
dc.relation.referencesWang, Lin, Wen Chen, and Ronghui Huang. 2008. “Interdecadal Modulation of PDO on the Impact of ENSO on the East Asian Winter Monsoon.” Geophysical Research Letters 35(20):L20702.spa
dc.relation.referencesWang, Shanshan, Jianping Huang, Yongli He, and Yuping Guan. 2014. “Combined Effects of the Pacific Decadal Oscillation and El Ni�o-Southern Oscillation on Global Land Dry-Wet Changes.” Scientific Reports 4:1–8.spa
dc.relation.referencesWang, Wuke, Katja Matthes, Nour-Eddine Omrani, and Mojib Latif. 2016. “Decadal Variability of Tropical Tropopause Temperature and Its Relationship to the Pacific Decadal Oscillation.” Scientific Reports 6(1):29537.spa
dc.relation.referencesWilks, D. S. 2006. Stadistical Methods in the Atmosferic Sciences. Vol. 100. Second Edi. Oxford, UK: Elsevier Inc.spa
dc.relation.referencesWu, Chau Ron. 2013. “Interannual Modulation of the Pacific Decadal Oscillation (PDO) on the Low-Latitude Western North Pacific.” Progress in Oceanography 110:49–58.spa
dc.relation.referencesWu, Xiaofei and Jiangyu Mao. 2018. “Spatial and Interannual Variations of Spring Rainfall over Eastern China in Association with PDO–ENSO Events.” Theoretical and Applied Climatology 134(3–4):935–53.spa
dc.relation.referencesWu, Xiaofei and Jiangyu Mao. 2019. “Decadal Changes in Interannual Dependence of the Bay of Bengal Summer Monsoon Onset on ENSO Modulated by the Pacific Decadal Oscillation.” Advances in Atmospheric Sciences 36(12):1404–16.spa
dc.relation.referencesWyrtki, Klaus. 1975. “El Niño—The Dynamic Response of the Equatorial Pacific Oceanto Atmospheric Forcing.” Journal of Physical Oceanography 5(4):572–84.spa
dc.relation.referencesWyrtki, Klaus, Edward Stroup, William Patzert, Robert Williams, and William Quinn. 1976. “Predicting and Observing El Niño.” Science 191(4225):343–46.spa
dc.relation.referencesYang, Song, K. M. Lau, and K. M. Kim. 2002. “Variations of the East Asian Jet Stream and Asian-Pacific-American Winter Climate Anomalies.” Journal of Climate 15(1):306–25.spa
dc.relation.referencesYu, Bin and F. W. Zwiers. 2007. “The Impact of Combined ENSO and PDO on the PNA Climate: A 1,000-Year Climate Modeling Study.” Climate Dynamics 29(7–8):837–51.spa
dc.relation.referencesYu, Lejiang, Shiyuan Zhong, Warren E. Heilman, and Xindi Bian. 2018. “Trends in Seasonal Warm Anomalies across the Contiguous United States: Contributions from Natural Climate Variability.” Scientific Reports 8(1):1–13.spa
dc.relation.referencesYu, Lisan, Xiangze Jin, and Robert A. Weller. 2008. “Multidecade Global Flux Datasets from the Objectively Analyzed Air-Sea Fluxes ( OAFlux ) Project : Latent and Sensible Heat Fluxes , Ocean Evaporation , and Related Surface Meteorological Variables.” Woods Hole Oceanographic Institution. OAFlux Project Technical Report (OA-2008-01) (January):1–64.spa
dc.relation.referencesZaba, Katherine D. and Daniel L. Rudnick. 2016. “The 2014-2015 Warming Anomaly in the Southern California Current System Observed by Underwater Gliders.” Geophysical Research Letters 43(3):1241–48.spa
dc.relation.referencesZambrano, Eduardo. 1996. “El Niño.Pdf.” Instituo Oceanográfico de La Armada, INOCAR 8(1):109–14.spa
dc.relation.referencesZea, Jorge. 2003. “Baja Anclada Del Pacífico.” Meteorología Colombiana 7:109–16.spa
dc.relation.referencesZebiak, Stephen E., Ben Orlove, Ángel G. Muñoz, Catherine Vaughan, James Hansen, Tara Troy, Madeleine C. Thomson, Allyza Lustig, and Samantha Garvin. 2014. “Investigating El Niño-Southern Oscillation and Society Relationships.” Wiley Interdisciplinary Reviews: Climate Change n/a-n/a.spa
dc.relation.referencesZhang, Qian and Zhaoyong Guan. 2017. “Interdecadal Change in the Eurasia–Pacific Anti-Phase Relation of Atmospheric Mass and Its Possible Link with PDO.” Journal of Meteorological Research 31(1):126–41.spa
dc.relation.referencesZhang, Rong Hua, Stephen E. Zebiak, Richard Kleeman, and Noel Keenlyside. 2005. “Retrospective El Niño Forecasts Using an Improved Intermediate Coupled Model.” Monthly Weather Review 133(9):2777–2802.spa
dc.relation.referencesZhou, Jian, Peiliang Li, and Haili Yu. 2012. “Characteristics and Mechanisms of Sea Surface Height in the South China Sea.” Global and Planetary Change 88–89:20–31.spa
dc.relation.referencesZhu, Xiao Hua, Jae Hun Park, and Da Ji Huang. 2008. “Observation of Baroclinic Eddies Southeast of Okinawa Island.” Science in China, Series D: Earth Sciences 51(12):1802–12.spa
dc.rightsDerechos reservados al autorspa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.rights.licenseAtribución-NoComercial 4.0 Internacionalspa
dc.rights.urihttp://creativecommons.org/licenses/by-nc/4.0/spa
dc.subject.ddc550 - Ciencias de la tierra::551 - Geología, hidrología, meteorologíaspa
dc.subject.proposalODPspa
dc.subject.proposalEl Niño Oscilación del Surspa
dc.subject.proposalPacífico Ecuatorialspa
dc.subject.proposalPacífico Nortespa
dc.subject.proposalTeleconexionesspa
dc.subject.proposalPDOeng
dc.subject.proposalEl Niño Southern Oscillationeng
dc.subject.proposalEquatorial pacificeng
dc.subject.proposalNorth pacificeng
dc.subject.proposalTeleconnectionseng
dc.subject.unescoCondiciones metereológicasspa
dc.subject.unescoWeathereng
dc.subject.unescoDatos climáticosspa
dc.subject.unescoClimatic dataeng
dc.titleDeterminación de la relación entre la Oscilación Decadal del Pacífico y la activación del ciclo ENOS en estaciones costeras e insulares del Pacífico colombianospa
dc.title.translatedDetermination of the relationship between the Pacific decadal oscillation and the activation of the ENSO cycle in coastal and island stations of the colombian Pacific Ingléseng
dc.typeTrabajo de grado - Maestríaspa
dc.type.coarhttp://purl.org/coar/resource_type/c_bdccspa
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aaspa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/masterThesisspa
dc.type.redcolhttp://purl.org/redcol/resource_type/TMspa
dc.type.versioninfo:eu-repo/semantics/acceptedVersionspa
dcterms.audience.professionaldevelopmentEstudiantesspa
dcterms.audience.professionaldevelopmentInvestigadoresspa
dcterms.audience.professionaldevelopmentMaestrosspa
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2spa

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