Search results for "geophysic"

showing 10 items of 2684 documents

A Low-Cost Smartphone Sensor-Based UV Camera for Volcanic SO2 Emission Measurements

2017

Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modification of sensors designed for the smartphone market. These units are built around modified Raspberry Pi cameras (PiCams; ≈USD 25), and usable system sensitivity was demonstrated in the UVA and UVB spectral regions, of relevance to a number of application areas. Here, we report on the first deployment of PiCam devices in one such field: UV remote sensing of sulphur dioxide emissions from volcanoes; such data provide important insights into magmatic processes and are applied in hazard assessments. In particular, we report on field trials on Mt. Etna, where the utility of these devices in quantif…

volcanic gas emissionsgeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesvolcano monitoringRaspberry Pilow-cost ultraviolet camera010502 geochemistry & geophysicsUSable01 natural sciences7. Clean energyRaspberry piVolcanoApplication areassulphur dioxideGeneral Earth and Planetary SciencesEnvironmental sciencelcsh:QSO<sub>2</sub> camera; Raspberry Pi; low-cost ultraviolet camera; volcanic gas emissions; sulphur dioxide; volcano monitoringlcsh:ScienceSO2 camera0105 earth and related environmental sciencesRemote sensingRemote Sensing
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A model of degassing for Stromboli volcano

2010

International audience; A better understanding of degassing processes at open-vent basaltic volcanoes requires collection of new datasets of H2O–CO2–SO2 volcanic gas plume compositions, which acquisition has long been hampered by technical limitations. Here, we use the MultiGAS technique to provide the best-documented record of gas plume discharges from Stromboli volcano to date. We show that Stromboli's gases are dominated by H2O (48–98 mol%; mean, 80%), and by CO2 (2–50 mol%; mean, 17%) and SO2 (0.2–14 mol%; mean, 3%). The significant temporal variability in our dataset reflects the dynamic nature of degassing process during Strombolian activity; which we explore by interpreting our gas m…

volcanic gase010504 meteorology & atmospheric sciencesEarth science010502 geochemistry & geophysics01 natural sciencesVolcanic Gasesvolcanic degassing; Stromboli; volcanic gases; CO2 fluxingGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)eventStromboliPetrology0105 earth and related environmental sciencesBasaltevent.disaster_typegeographygeography.geographical_feature_categoryStrombolian eruptionSettore GEO/08 - Geochimica E VulcanologiaPlumeGeophysicsVolcanovolcanic gases13. Climate actionSpace and Planetary ScienceMagmaCO2 fluxingInclusion (mineral)[SDU.OTHER]Sciences of the Universe [physics]/OtherSaturation (chemistry)volcanic degassingGeologyEarth and Planetary Science Letters
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A CO2-gas precursor to the March 2015 Villarrica volcano eruption

2017

We present here the first volcanic gas compositional time-series taken prior to a paroxysmal eruption of Villarrica volcano (Chile). Our gas plume observations were obtained using a fully autonomous Multi-component Gas Analyser System (Multi-GAS) in the 3 month-long phase of escalating volcanic activity that culminated into the 3 March 2015 paroxysm, the largest since 1985. Our results demonstrate a temporal evolution of volcanic plume composition, from low CO$_2$/SO$_2$ ratios (0.65-2.7) during November 2014-January 2015 to CO$_2$/SO$_2$ ratios up to ≈ 9 then after. The H$_2$O/CO$_2$ ratio simultaneously declined to &lt;38 in the same temporal interval. We use results of volatile saturatio…

volcanic gaseGeochemistry and Petrologyvolcanic gasesVillarrica volcanolava lakelava lakesmulti-GASprecursor CO2/SO2variationGeophysicprecursor CO2/SO2 variations
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Spatially resolved SO2 flux emissions from Mt Etna

2016

Abstract We report on a systematic record of SO2 flux emissions from individual vents of Etna volcano (Sicily), which we obtained using a permanent UV camera network. Observations were carried out in summer 2014, a period encompassing two eruptive episodes of the New South East Crater (NSEC) and a fissure‐fed eruption in the upper Valle del Bove. We demonstrate that our vent‐resolved SO2 flux time series allow capturing shifts in activity from one vent to another and contribute to our understanding of Etna's shallow plumbing system structure. We find that the fissure eruption contributed ~50,000 t of SO2 or ~30% of the SO2 emitted by the volcano during the 5 July to 10 August eruptive inter…

volcanic gaseGeologicalRemote Sensing and DisastersVolcanologyVolcano SeismologyVolcano MonitoringResearch LettersVolcanic GasesVolcanic Hazards and Risksvolcanic SO2 fluxSO2 camerasResearch LetterEtnaRemote Sensing of VolcanoesInstruments and TechniquesDisaster Risk Analysis and AssessmentSO2 cameraGeophysicEarth and Planetary Sciences (all)volcanic degassingNatural HazardsSeismologySolid EarthGeophysical Research Letters
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Sulfur Degassing From Steam-Heated Crater Lakes: El Chichón (Chiapas, Mexico) and Víti (Iceland)

2018

The composition of the gases released by El Chichón (Chiapas, Mexico) and Víti (Askja volcano, Iceland) volcanic lakes is examined by Multi-GAS for the first time. Our results demonstrate that H2S and SO2 are degassed by these pH 2–3 lakes. We find higher CO2/H2S and H2/H2S ratios in the lakes' emissions (31–5,685 and 0.6–35, respectively) than in the fumarolic gases feeding the lakes (13–33 and 0.08–0.5, respectively), evidencing that only a fraction (0.2–5.4% at El Chichón) of the H2S(g) contributed by the subaquatic fumaroles ultimately reaches the atmosphere. At El Chichón, we estimate a H2S output from the crater lake of 0.02–0.06 t/day. Curiously, SO2 is also detected at trace levels …

volcanic lake010504 meteorology & atmospheric sciencesGeochemistrychemistry.chemical_elementVíti010502 geochemistry & geophysicssulfur degassing01 natural sciencesSulfurEl ChichónGeophysicsImpact craterchemistryGeneral Earth and Planetary SciencesGeophysicEarth and Planetary Sciences (all)Multi-GASGeology0105 earth and related environmental sciencesGeophysical Research Letters
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Volcanic Plume CO2 Flux Measurements at Mount Etna by Mobile Differential Absorption Lidar

2017

Volcanic eruptions are often preceded by precursory increases in the volcanic carbon dioxide (CO2) flux. Unfortunately, the traditional techniques used to measure volcanic CO2 require near-vent, in situ plume measurements that are potentially hazardous for operators and expose instruments to extreme conditions. To overcome these limitations, the project BRIDGE (BRIDging the gap between Gas Emissions and geophysical observations at active volcanoes) received funding from the European Research Council, with the objective to develop a new generation of volcanic gas sensing instruments, including a novel DIAL-Lidar (Differential Absorption Light Detection and Ranging) for remote (e.g., distal) …

volcanic plumes010504 meteorology & atmospheric sciencesFlux010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesVolcanic plumeVolcanic CO2 fluxImpact craterDifferential Absorption Lidar (DIAL);Remote sensing;Volcanic CO2 flux;Volcanic plumesGas compositionDifferential Absorption Lidar (DIAL)0105 earth and related environmental sciencesRemote sensinggeographygeography.geographical_feature_categoryvolcanic plumes; volcanic CO<sub>2</sub> flux; remote sensing; Differential Absorption Lidar (DIAL)lcsh:QE1-996.5ElevationRemote sensingPlumelcsh:GeologyLidarVolcanoVolcanic plume13. Climate actionGeneral Earth and Planetary SciencesEarth and Planetary Sciences (all)GeologyGeosciences; Volume 7; Issue 1; Pages: 9
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Ultraviolet imaging of volcanic plumes: A new paradigm in volcanology

2017

Ultraviolet imaging has been applied in volcanology over the last ten years or so. This provides considerably higher temporal and spatial resolution volcanic gas emission rate data than available previously, enabling the volcanology community to investigate a range of far faster plume degassing processes than achievable hitherto. To date, this has covered rapid oscillations in passive degassing through conduits and lava lakes, as well as puffing and explosions, facilitating exciting connections to be made for the first time between previously rather separate sub-disciplines of volcanology. Firstly, there has been corroboration between geophysical and degassing datasets at ≈1 Hz, expeditin…

volcanic plumes010504 meteorology & atmospheric sciencesLavaEarth scienceFlow (psychology)010502 geochemistry & geophysicsmedicine.disease_cause01 natural sciencesVolcanic plumeInterdisciplinary volcanology; Ultraviolet cameras; Volcanic plumes; Earth and Planetary Sciences (all)medicineinterdisciplinary volcanology0105 earth and related environmental sciencesgeographygeography.geographical_feature_categoryultraviolet cameraslcsh:QE1-996.5Gas releaseVolcanologyGeophysicsPlumelcsh:GeologyDynamic modelsVolcano13. Climate actionGeneral Earth and Planetary SciencesEarth and Planetary Sciences (all)GeologyUltravioletUltraviolet camera
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Evolution of Seismicity During a Stalled Episode of Reawakening at Cayambe Volcano, Ecuador

2021

Cayambe Volcano is an ice-capped, 5,790 m high, andesitic-dacitic volcanic complex, located on the equator in the Eastern Cordillera of the Ecuadorian Andes. An eruption at Cayambe would pose considerable hazards to surrounding communities and a nationally significant agricultural industry. Although the only historically documented eruption was in 1785, it remains persistently restless and long-period (LP) seismicity has been consistently observed at the volcano for over 10 years. However, the sparse monitoring network, and complex interactions between the magmatic, hydrothermal, glacial, and tectonic systems, make unrest at Cayambe challenging to interpret. In June 2016 a seismic “crisis” …

volcano-tectonic interactionsgeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesScienceEquatorQvolcano-glacier interactionsInduced seismicityFault (geology)010502 geochemistry & geophysics01 natural sciencesTectonicsVolcanoMagmavolcano-seismic swarmsGeneral Earth and Planetary SciencesGlacial periodlong-period seismicityVolcanic coneGeologySeismology0105 earth and related environmental sciencesvolcanic monitoringFrontiers in Earth Science
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Atmospheric circulation modulates the spatial variability of temperature in the Atlantic-Arctic region

2019

International audience; The Arctic region has experienced significant warming during the past two decades with major implications on the cryosphere. The causes of Arctic amplification are still an open question within the scientific community, attracting recent interest. The goal of this study is to quantify the contribution of atmospheric circulation on temperature variability in the Atlantic–Arctic region at decadal to intra‐annual timescales from 1951 to 2014. Daily 20th Century reanalyses geopotential height anomalies at 500 hPa were clustered into different weather regimes to assess their contribution to observed temperature variability. The results show that in winter, 25% of the warm…

weather regimesAtmospheric Science010504 meteorology & atmospheric sciencesreanalysesAtmospheric circulationarctic amplification[SDU.STU.GP]Sciences of the Universe [physics]/Earth Sciences/Geophysics [physics.geo-ph]atmospheric circulation0207 environmental engineeringGeopotential heightClimate changeinternal climate variability02 engineering and technology01 natural sciencesAtlantic–ArcticSea iceCryosphere020701 environmental engineeringAir mass0105 earth and related environmental sciencesgeographygeography.geographical_feature_category[SHS.GEO]Humanities and Social Sciences/GeographyArctic13. Climate action[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/ClimatologyClimatologyPolar amplificationEnvironmental science
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Projet Collectif de Recherche triennal 2020-2022 : la confluence Saône / Doubs à l’âge du Fer (VIe s. av. J.-C. au Ier s. de notre ère)

2022

Le présent rapport livre les résultats obtenus dans la cadre d’un projet collectif de recherche triennal dont l’objectif visait à relancer une dynamique de recherche sur un secteur géographique clé pour l’étude des mécanismes d'organisation territoriale durant l’âge du Fer : la confluence de la Saône et du Doubs.Combinant recherches documentaires sur l’ensemble des données produites depuis les années 70 à de nouvelles opérations de terrain, ce projet a pour objectif de renouveler nos connaissances sur un certain nombre de thématiques renseignant les processus d’urbanisation durant la protohistoire à travers l’étude des deux sites majeurs que sont Bragny-sur-Saône et Verdun-sur-le-Doubs. Une…

âge du Fer[SHS.ARCHEO] Humanities and Social Sciences/Archaeology and PrehistoryDoubs[SDU.STU.GM] Sciences of the Universe [physics]/Earth Sciences/Geomorphology[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and Prehistory[PHYS.PHYS.PHYS-GEO-PH] Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph][PHYS.PHYS.PHYS-GEO-PH]Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph][SDE.ES] Environmental Sciences/Environmental and Society[SDU.STU.GM]Sciences of the Universe [physics]/Earth Sciences/GeomorphologyProtohistoireSaône[SDE.ES]Environmental Sciences/Environmental and Society
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