Academic literature on the topic 'Tungurahua Volcano'

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Journal articles on the topic "Tungurahua Volcano"

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Ruiz, Mario C., Jonathan M. Lees, and Jeffrey B. Johnson. "Source constraints of Tungurahua volcano explosion events." Bulletin of Volcanology 68, no. 5 (2005): 480–90. http://dx.doi.org/10.1007/s00445-005-0023-8.

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Vila, J., R. Ortiz, M. Tárraga, et al. "Near-Real time analysis of seismic data of active volcanoes: Software implementations of time sequence data analysis." Natural Hazards and Earth System Sciences 8, no. 4 (2008): 789–94. http://dx.doi.org/10.5194/nhess-8-789-2008.

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Abstract. This paper presents the development and applications of a software-based quality control system that monitors volcano activity in near-real time. On the premise that external seismic manifestations provide information directly related to the internal status of a volcano, here we analyzed variations in background seismic noise. By continuous analysis of variations in seismic waveforms, we detected clear indications of changes in the internal status. The application of this method to data recorded in Villarrica (Chile) and Tungurahua (Ecuador) volcanoes demonstrates that it is suitable
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Le Pennec, J.-L., G. de Saulieu, P. Samaniego, D. Jaya, and L. Gailler. "A Devastating Plinian Eruption at Tungurahua Volcano Reveals Formative Occupation at ∼1100 cal BC in Central Ecuador." Radiocarbon 55, no. 3 (2013): 1199–214. http://dx.doi.org/10.1017/s0033822200048116.

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Based on archaeological and radiometric constraints, previous studies have divided pre-Columbian times of Ecuador into a succession of cultural periods. The Paleoindian and Preceramic periods encompass the time from the first Amerindian occupation to about 4000 BC. The Formative period extends from ∼4000 to ∼300 BC, while the Regional Development (∼300 BC to ∼AD 700) and Integration periods predate the Columbian period, which starts in AD 1533 in Ecuador. The Formative cultural period is poorly known from earlier studies. Here, we bring the first documentation of Formative age occupation aroun
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Hall, Minard L., Claude Robin, Bernardo Beate, Patricia Mothes, and Michel Monzier. "Tungurahua Volcano, Ecuador: structure, eruptive history and hazards." Journal of Volcanology and Geothermal Research 91, no. 1 (1999): 1–21. http://dx.doi.org/10.1016/s0377-0273(99)00047-5.

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Darack, Ed. "weatherscapes: Ecuador's Tungurahua Volcano: The ‘Throat of Fire’." Weatherwise 61, no. 4 (2008): 10–11. http://dx.doi.org/10.3200/wewi.613.4.10-11.

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Vasconez, Francisco J., Luis Maisincho, S. Daniel Andrade, et al. "Secondary Lahars Triggered by Periglacial Melting at Chimborazo Volcano, Ecuador." Revista Politécnica 48, no. 1 (2021): 19–30. http://dx.doi.org/10.33333/rp.vol48n1.02.

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Periglacial melting processes can provide the water source for secondary lahars triggered by volcanic and/or meteorological phenomena on volcanoes. Between December 2015 and April 2016, four major lahars were reported southeast of Chimborazo volcano (Ecuador). Fieldwork allowed determining the area (1.670.37 km2), volume (3E+05 to 7E+05 m3), peak discharge (100 - 150 m3/s) and mean speed (2 - 4 m/s) of these flows, which affected the local infrastructure and threatened several towns downstream (>1000 inhabitants). This case study suggests that anomalous periglacial melting could have been
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Molina, Indira, Hiroyuki Kumagai, Jean-Luc Le Pennec, and Minard Hall. "Three-dimensional P-wave velocity structure of Tungurahua Volcano, Ecuador." Journal of Volcanology and Geothermal Research 147, no. 1-2 (2005): 144–56. http://dx.doi.org/10.1016/j.jvolgeores.2005.03.011.

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Ríos, Iván. "Analysis of the Impact of the Eruptive Process of the Tungurahua Volcano on the Precipitation Patterns of Hydrographic Microbasins Located Inside and Outside the Zone of Influence." Environmental Management and Sustainable Development 6, no. 1 (2017): 132. http://dx.doi.org/10.5296/emsd.v6i1.10579.

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The relationship between eruptive processes and precipitation is a topic that lacks research studies, perhaps due to the difficulty that is to have few scenarios, which satisfy conditions for statistical testing. Most of the available literature report a global impact after significant volcanic eruptions. Robock et al. (2008) concluded that the Pinatubo volcano eruption left precipitation consequences in the medium and long term. Kravitz y Robock (2011) suggested considering weather seasons on the estimation of the impact of volcanic eruptions. Allen e Ingram (2002) concluded that volcanic gas
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Nauret, F., P. Samaniego, M. A. Ancellin, et al. "The genetic relationship between andesites and dacites at Tungurahua volcano, Ecuador." Journal of Volcanology and Geothermal Research 349 (January 2018): 283–97. http://dx.doi.org/10.1016/j.jvolgeores.2017.11.012.

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Fee, David, Milton Garces, and Andrea Steffke. "Infrasound from Tungurahua Volcano 2006–2008: Strombolian to Plinian eruptive activity." Journal of Volcanology and Geothermal Research 193, no. 1-2 (2010): 67–81. http://dx.doi.org/10.1016/j.jvolgeores.2010.03.006.

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Dissertations / Theses on the topic "Tungurahua Volcano"

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Palacios, Pablo Bolívar Palacios. "Seismo-acoustics of Tungurahua Volcano, Ecuador." Thesis, University of Bristol, 2016. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.702151.

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Explosive volcanic eruptions produce seismic and acoustic waves that travel through the ground and air, respectively, interacting at the air-ground boundary. This thesis presents a study of these signals and how they correlate during five sustained eruptions at Tungurahua volcano, Ecuador. It is well known that corrections for site effects can be necessary in the study of seismic sources. What is less well known is that acoustic waves, after coupling at the air-ground interface, are also sensitive to site effects, thereby influencing seismic records. In this study a new procedure for site effe
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Ruiz, Mario Calixto Lees Jonathan M. "Analysis of explosive activity of Tungurahua volcano using seismic-acoustic data." Chapel Hill, N.C. : University of North Carolina at Chapel Hill, 2007. http://dc.lib.unc.edu/u?/etd,757.

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Thesis (Ph. D.)--University of North Carolina at Chapel Hill, 2007.<br>Title from electronic title page (viewed Dec. 18, 2007). "... in partial fulfillment of the requirements for the degree of Doctor of Philosophy in the Department of Geological Sciences." Discipline: Geology; Department/School: Geological Sciences.
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Muller, Cyril S. "Integrated volcano geodesy : application to Arenal, Costa Rica and Tungurahua, Ecuador." Thesis, University of Bristol, 2016. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.702454.

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Geodetic techniques play a key role in the prediction and mitigation of risk posed by volcanic eruptions and volcanic collapses. However, our capacity to forecast these dramatic events remains elusive and strategies from geodetic techniques are required to enhance results. In this dissertation, I develop a new strategy that conceptualizes the design of a geodetic network using the strengths of each geodetic technique and integrate them within a 3D deformation surface. I apply this methodology to Arenal volcano in Costa Rica and Tungurahua volcano in Ecuador. In 2010, Arenal ended a four-decade
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Lane, Lucille Richards. "Hazard Vulnerability in Socio-Economic Context: An Example from Ecuador." [Tampa, Fla. : s.n.], 2003. http://purl.fcla.edu/fcla/etd/SFE0000076.

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Hayes, Sara Louise. "Volcanic risk assessments : integrating hazard and social vulnerability analysis." Thesis, University of Plymouth, 2011. http://hdl.handle.net/10026.1/2170.

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The vulnerability of communities at risk from volcanic activity at Volcan Tungurahua, Ecuador and Mount Rainier in the USA provided the focus for this thesis. The research aimed to develop an integrated approach to risk assessments that combined both hazard and vulnerability analysis. In phase one, the study developed a novel methodology to assess volcanic threat that utilised previously published data. This semi-quantitative approach integrated measures of both hazard and exposure factors, allowing the relative threat to different communities to be ranked. By avoiding the complex quantitative
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RIOS, GARCIA IVAN. "Incorporación de los efectos de erupciones volcánicas en modelos estocásticos de precipitación en cuencas hidrográficas. Caso del volcán Tungurahua en la microcuenca del río Ambato." Doctoral thesis, Universitat Politècnica de València, 2016. http://hdl.handle.net/10251/64064.

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[EN] Summary Water is a determining factor in all aspects of human life and the balance and integrity of the natural environment. Water is a vital natural resource and it is imperative to deepen research that allow us to understand what factors could affect its availability on the planet. In particular, we considered through this thesis, identify the direct relationship between the effects of a volcanic eruption process and behavior of rainfall in a watershed and, from these data, construct a stochastic time series methodology precipitation to incorporate the variable effects of the volcanic
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Books on the topic "Tungurahua Volcano"

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Pablo, Samaniego Eguiguren, Escuela Politécnica Nacional (Quito, Ecuador). Instituto Geofísico., and Institut de recherche pour le développement (France), eds. Los peligros volcánicos asociados con el Tungurahua. Corporación Editora Nacional, 2003.

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Book chapters on the topic "Tungurahua Volcano"

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Mothes, Patricia A., and James W. Vallance. "Lahars at Cotopaxi and Tungurahua Volcanoes, Ecuador." In Volcanic Hazards, Risks and Disasters. Elsevier, 2015. http://dx.doi.org/10.1016/b978-0-12-396453-3.00006-x.

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Samaniego, Pablo, Jean-Philippe Eissen, Minard L. Hall, et al. "2. Historia geológica del volcán Tungurahua." In Los peligros volcánicos asociados con el Tungurahua. IRD Éditions, 2003. http://dx.doi.org/10.4000/books.irdeditions.18107.

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Samaniego, Pablo, Jean-Philippe Eissen, Minard L. Hall, et al. "Los volcanes en el Ecuador." In Los peligros volcánicos asociados con el Tungurahua. IRD Éditions, 2003. http://dx.doi.org/10.4000/books.irdeditions.18101.

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Samaniego, Pablo, Jean-Philippe Eissen, Minard L. Hall, et al. "5. La continuación del proceso eruptivo del volcán Tungurahua." In Los peligros volcánicos asociados con el Tungurahua. IRD Éditions, 2003. http://dx.doi.org/10.4000/books.irdeditions.18116.

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Samaniego, Pablo, Jean-Philippe Eissen, Minard L. Hall, et al. "3. Tipos de fenómenos volcánicos observados en el volcán Tungurahua." In Los peligros volcánicos asociados con el Tungurahua. IRD Éditions, 2003. http://dx.doi.org/10.4000/books.irdeditions.18110.

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Samaniego, Pablo, Jean-Philippe Eissen, Minard L. Hall, et al. "Anexo 4. Resumen de la actividad histórica del volcán Tungurahua." In Los peligros volcánicos asociados con el Tungurahua. IRD Éditions, 2003. http://dx.doi.org/10.4000/books.irdeditions.18143.

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Conference papers on the topic "Tungurahua Volcano"

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Reyes, Juan Anzieta, and Carlos Jose Jimenez Mosquera. "Non-supervised classification of volcanic-seismic events for Tungurahua-Volcano Ecuador." In 2017 IEEE Second Ecuador Technical Chapters Meeting (ETCM). IEEE, 2017. http://dx.doi.org/10.1109/etcm.2017.8247446.

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Reino, Wilson, Gilson Pucha, Celso Recalde, Talia Tene, and Pedro Cadena. "Occurrence of radioactive materials in pyroclastic flows of Tungurahua volcano using gamma spectrometry." In PROCEEDINGS OF THE 2ND INTERNATIONAL CONGRESS ON PHYSICS ESPOCH (ICPE-2017). Author(s), 2018. http://dx.doi.org/10.1063/1.5050366.

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Dujardin, J. R., G. A. Douillet, M. Bano, U. Kueppers, and D. B. Dingwell. "GPR Surveys for the Characterization of the Pyroclastic Deposits from the 2006 Eruption of Tungurahua Volcano, Ecuador." In Near Surface Geoscience 2014 - 20th European Meeting of Environmental and Engineering Geophysics. EAGE Publications BV, 2014. http://dx.doi.org/10.3997/2214-4609.20142070.

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Geovanna, Vásquez, and Costa Vera Cesar. "Semi quantitative Elemental Analysis of Volcanic Ashes from Populations Surrounding the Tungurahua Volcano of the Eruptive Period 2008-2010, Using the LIBS Spectroscopy (Laser-Induced Breakdown Spectroscopy)." In Latin America Optics and Photonics Conference. OSA, 2018. http://dx.doi.org/10.1364/laop.2018.tu4a.26.

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Ortiz, Hugo D., Robin S. Matoza, Charusheela Garapaty, Kaelynn Rose, Patricio Ramón, and Mario C. Ruiz. "Multi-year regional infrasound detection of Tungurahua, El Reventador, and Sangay volcanoes in Ecuador from 2006 to 2013." In 179th Meeting of the Acoustical Society of America. ASA, 2020. http://dx.doi.org/10.1121/2.0001362.

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