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dc.creatorAlmendros González, Francisco Javier
dc.creatorAbella Meléndez, Rafael
dc.creatorMora Fernández, Mauricio
dc.creatorLesage, Philippe
dc.date.accessioned2022-09-14T20:52:47Z
dc.date.available2022-09-14T20:52:47Z
dc.date.issued2014-06-06
dc.identifier.citationhttps://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2013JB010628es_ES
dc.identifier.issn2169-9356
dc.identifier.urihttps://hdl.handle.net/10669/87361
dc.description.abstractWe use wavefield decomposition methods (time domain cross correlation and frequency domain multiple-signal classification) to analyze seismic data recorded by a dense, small-aperture array located 2 km West of Arenal volcano, Costa Rica, and operated during 2.5 days. The recorded wavefield is dominated by harmonic tremor and includes also spasmodic tremor and long-period (LP) events. We find that the initial stages of LP events are characterized by three different wave arrivals. These arrivals propagate with similar back azimuths pointing to the volcano summit (∼80°N) and increasing apparent slowness of 0.4, 1.1, and 1.7 s/km. Spasmodic tremors cannot be regarded as coherent signals. On the contrary, harmonic tremors are highly coherent, characterized by the stability of the apparent slowness vector estimates. Apparent slowness lays in the range 1–2 s/km. Back azimuths point in the general direction of the volcano but with a large variability (40–120°N). Nevertheless, there are long-term variations and evidences of multiple simultaneous components in the harmonic tremor wavefield. These observations suggest that LP events and tremor are generated in a shallow source area near the volcano summit, although they do not share exactly the same source region or source processes. The tremor source is located in the shallowest part of the plumbing system, beneath the lava crust. This dynamic region is subject to complex fluctuations of the physical conditions. Degassing events at different locations of this region might generate variable seismic radiation patterns. The effects of topography and heterogeneous shallow structure of the volcano may amplify these variations and produce the wide directional span observed for volcanic tremor. On the other hand, the LP source seems to be more repeatable. LP events are likely triggered by fragmentation of the fluid flow in a slightly deeper portion of the volcanic conduits.es_ES
dc.description.sponsorshipUniversidad de Costa Ricaes_ES
dc.language.isoenges_ES
dc.sourceJournal of Geophysical Research: SolidEarth, 119(17).es_ES
dc.subjectArenal volcanoes_ES
dc.subjectwavefield decomposition methodses_ES
dc.subjectAnalyze seismic data recordedes_ES
dc.subjectSpasmodic tremores_ES
dc.subjectEffects of topographes_ES
dc.titleArray analysis of the seismic wavefield of long-period events and volcanic tremor at Arenal volcano, Costa Ricaes_ES
dc.typeartículo originales_ES
dc.identifier.doihttps://doi.org/10.1002/2013JB010628
dc.description.procedenceUCR::Vicerrectoría de Docencia::Ciencias Básicas::Facultad de Ciencias::Escuela Centroamericana de Geologíaes_ES
dc.identifier.codproyecto113-A4-501
dc.identifier.codproyecto113-A6-503
dc.identifier.codproyecto113-B4-082


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