Search results for "phreatomagmatic eruption"

showing 7 items of 17 documents

On the growth of maars and diatremes and its relevance to the formation of tuff rings

1986

Small and large maars exist associated with small and large diatremes, respectively, their subsurface feeder structures. The problem of size and growth of maar-diatreme volcanoes is discussed from a phreatomagmatic point of view from field data, some geophysical data, and short-lived historic maar eruptions. A hydrostatic pressure barrier of usually about 20–30 bars is assumed to control the maximum depth level of explosive magma/groundwater interactions. Similar to the situation in submarine and subglacial volcanism, initial maar-forming water vapour explosions are therefore assumed to occur at shallow depth and to produce a small maar with a shallow diatreme. Because of limited availabili…

geographyCinder conegeography.geographical_feature_categoryLavaHydrostatic pressureMaarDiatremeVolcanic rockGeochemistry and PetrologyPhreatomagmatic eruptionPetrologyGeomorphologyGeologyGroundwaterBulletin of Volcanology
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Maars of the Westeifel, Germany

2008

Within the Westeifel Volcanic Field 27% of the 250 Quaternary eruptive centers are maars. Maars form as a result of a highly explosive interactive process between rising melt and groundwater. In the Westeifel, probably thermal water plays an important role for the productive phreatomagmatic interaction process and, con-sequently, the high number of maars. The Westeifel maars show all transitions to scoria cones. Only the youngest maars are filled by a maar lake or a raised bog, and are well preserved. The older maars show a low diameter to depth ratio. Nearly one third of the Westeifel maars were formed during the Weichselian glaciation period. The isostatic movements during the increasing …

geographyCinder conegeography.geographical_feature_categoryVolcanoPhreatomagmatic eruptionGeochemistryGlacial periodScoriaQuaternaryWeichselian glaciationGeologyMaar
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Volcanic Lakes in Africa: The VOLADA_Africa 2.0 Database, and Implications for Volcanic Hazard

2021

Volcanic lakes pose specific hazards inherent to the presence of water: phreatic and phreatomagmatic eruptions, lahars, limnic gas bursts and dispersion of brines in the hydrological network. Here we introduce the updated, interactive and open-access database for African volcanic lakes, country by country. The previous database VOLADA (VOlcanic LAke DAta Base, Rouwet et al., Journal of Volcanology and Geothermal Research, 2014, 272, 78–97) reported 96 volcanic lakes for Africa. This number is now revised and established at 220, converting VOLADA_Africa 2.0 in the most comprehensive resource for African volcanic lakes: 81 in Uganda, 37 in Kenya, 33 in Cameroon, 28 in Madagascar, 19 in Ethiop…

geographyVolcanic hazardsgeography.geographical_feature_categoryRiftDatabaseLake NyosScienceLimnologyQVolcanismmaarcomputer.software_genreMaarhazard assessmentVolcanoAfricaAfrica volcanic lakes maar Lake Nyos database hazard assessmentPhreatomagmatic eruptionGeneral Earth and Planetary SciencesScoriacomputervolcanic lakesdatabaseFrontiers in Earth Science
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Turmoil at Turrialba Volcano (Costa Rica): Degassing and eruptive processes inferred from high-frequency gas monitoring

2016

Eruptive activity at Turrialba Volcano (Costa Rica) has escalated significantly since 2014, causing airport and school closures in the capital city of San Jose. Whether or not new magma is involved in the current unrest seems probable but remains a matter of debate as ash deposits are dominated by hydrothermal material. Here we use high-frequency gas monitoring to track the behavior of the volcano between 2014 and 2015 and to decipher magmatic versus hydrothermal contributions to the eruptions. Pulses of deeply derived CO2-rich gas (CO2/S-total>4.5) precede explosive activity, providing a clear precursor to eruptive periods that occurs up to 2weeks before eruptions, which are accompanied by…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesEarth scienceGeochemistryGas emissions010502 geochemistry & geophysics01 natural sciencesHydrothermal circulationGas monitoringMagmatic waterGeophysicsVolcano13. Climate actionSpace and Planetary ScienceGeochemistry and PetrologyCapital cityEarth and Planetary Sciences (miscellaneous)Phreatomagmatic eruptionPhreaticGeology0105 earth and related environmental sciencesJournal of Geophysical Research: Solid Earth
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The summit hydrothermal system of Stromboli: New insights from self-potential, temperature, CO2 and fumarolic fluids measurements, with structural an…

2003

International audience; Accurate and precisely located self-potential (SP), temperature (T) and COi measurements were carried out in the summit area of Stromboli along 72 straight profiles. SP data were acquired every metre and T data every 2.5 m. CO2 concentrations were acquired with the same density as T, but only along seven profiles. The high density of data and the diversity of the measured parameters allows us to study structures and phenomena at a scale rarely investigated. The shallow summit hydrothermal activity (Pizzo-Fossa area) is indicated by large positive SP, T and COi anomalies. These anomalies are focused on crater faults, suggesting that the fracture zones are more permeab…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesLava[SDU.STU.GP]Sciences of the Universe [physics]/Earth Sciences/Geophysics [physics.geo-ph]Soil gasMineralogyFault (geology)010502 geochemistry & geophysics01 natural sciencesFumaroleHydrothermal circulationImpact crater13. Climate actionGeochemistry and PetrologyPhreatomagmatic eruption[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyPetrologyGeologyPhreatic0105 earth and related environmental sciences
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Contrasting styles of deep-marine pyroclastic eruptions revealed from Axial Seamount push core records

2015

Abstract A comprehensive understanding of explosive basaltic eruption processes in the deep-sea relies upon detailed analysis and comparison of the variety of volcaniclastic lithologies on the seafloor, which has been challenged by insufficient sample recovery. A dedicated ROV-based sampling approach using long push cores offers an unparalleled opportunity to fully characterize the diversity of unconsolidated volcaniclastic lithofacies on a recently active seamount. Lithofacies from Axial Seamount record two styles of pyroclastic eruptions, strombolian and phreatomagmatic, at 1.5 km water depth. Strombolian eruptions are represented by abundant fluidal and highly vesicular (up to 50%) vitri…

geographygeography.geographical_feature_categorySeamountGeochemistryPyroclastic rockLimu o PeleLapilliStrombolian eruptionGeophysicsSpace and Planetary ScienceGeochemistry and PetrologyBrecciaEarth and Planetary Sciences (miscellaneous)Phreatomagmatic eruptionCalderaGeologyEarth and Planetary Science Letters
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Geothermal energy release at the Solfatara of Pozzuoli (Phlegraean Fields): Phreatic and phreatomagmatic explosion risk implications

1984

The H2O, CO2 and H2S outputs at the Solfatara of Pozzuoli have been measured and a map of the exhaling areas has also been made. The energy released at the surface by the fluids has been estimated to be 1019 ergs/day. The presence of aquifers at Phlegraean Fields increases the phreatic and phreatomagmatic explosion risk. Our results suggest that even if an uprising magma may interact with water at depth, an explosion could occur only at the shallow levels of a few hundred meters. Since the transfer of energy toward the surface is favoured by the presence of fractures, a detailed analysis of the deep fracture network would help to evaluate the risk levels of the various areas of Phlegraean F…

geographygeography.geographical_feature_categorybusiness.industryGeothermal energyEnergy transferMineralogyAquiferGeochemistry and PetrologyMagmaFracture (geology)Phreatomagmatic eruptionbusinessPetrologyGeologyPhreaticBulletin Volcanologique
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