Search results for "Geophysic"

showing 10 items of 2684 documents

The Proterozoic P–T–t Evolution of the Kemp Land Coast, East Antarctica; Constraints from Si-saturated and Si-undersaturated Metapelites

2007

Integrated metamorphic and geochronological data place new constraints on the metamorphic evolution of a Neoproterozoic orogen in east Antarctica. Granulite-facies rocks from a 150 km stretch of the Kemp Land coast reflect peak conditions involving T � 870^9908 Ca t P� 7� 4^10 kbar, with pressure increasing westward towards an Archaean craton. Electron microprobe-derived (Th þ U)^Pb monazite ages from metapelitic assemblages indicate that the major mineral textures in these rocks developed during the c. 940 Ma Rayner Orogeny. Complex compositional zoning in monazite suggests high-T recrystallization over c. 25 Myr. Diversity in metapelitic reaction textures reflects silica and ferromagnesia…

geographyRecrystallization (geology)geography.geographical_feature_categoryProterozoicMetamorphic rockGeochemistryengineering.materialCratonSapphirineGeophysicsGeochemistry and PetrologyMonaziteengineeringSillimaniteBiotiteGeologyJournal of Petrology
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Speculations on the impact of catastrophic subduction initiation on the Earth System

2016

Abstract The physics of subduction initiation can be studied with numerical models of lithosphere dynamics, to the extent where we can now test the potential consequences of a catastrophic subduction initiation event on the Earth System. The South American Atlantic passive margin is here used to show that, once subduction has catastrophically initiated there, a major geodynamic reconfiguration of the South American plate (SAm) is likely to take place: (1) compression in the east will be inverted to extension, because ridge push will be replaced by subduction rollback and trench retreat; (2) compression in the west will be inverted to extension due to absolute rollback; and (3) without buttr…

geographyRiftgeography.geographical_feature_category010504 meteorology & atmospheric sciencesVolcanic arcSubduction010502 geochemistry & geophysics01 natural sciencesGeophysicsRidge pushPassive marginLithosphereTrenchSouth American PlateSeismologyGeology0105 earth and related environmental sciencesEarth-Surface ProcessesJournal of Geodynamics
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Spatial response spectra and site amplification effects

2002

A simplified analysis of local site amplification effects on the seismic response of multi-support structures is presented. The site effects are modeled by considering reflections and transmission of vertically propagating shear waves from bedrock to the surface through a soil layer. A random vibration-based response spectrum of a simple oscillator on two supports, one of which is founded on rock outcrop and the other on soil layer, is formulated in order to study the influence of non-uniform excitations on multi-support structures. Joint inertial and pseudo-static effects in the overall response are studied in detail. The resulting response spectra are formulated as displacement and force …

geographyShear wavesgeography.geographical_feature_categoryComputer simulationbusiness.industryBedrockStructural engineeringMechanicsDisplacement (vector)Physics::GeophysicsSeismic analysisRandom vibrationbusinessResponse spectrumJoint (geology)GeologyCivil and Structural EngineeringEngineering Structures
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Integrating facies and structural analyses with subsidence history in a Jurassic-Cretaceous intraplatform basin: Outcome for paleogeography of the Pa…

2016

Abstract We illustrate the tectono-sedimentary evolution of a Jurassic–Cretaceous intraplatform basin in a fold and thrust belt present setting (Cala Rossa basin). Detailed stratigraphy and facies analysis of Upper Triassic–Eocene successions outcropping in the Palermo Mts (NW Sicily), integrated with structural analysis, restoration and basin analysis, led to recognize and describe into the intraplatform basin the proximal and distal depositional areas respect to the bordered carbonate platform sectors. Carbonate platform was characterized by a rimmed reef growing with progradational trends towards the basin, as suggested by the several reworked shallow-water materials interlayered into th…

geographySouthern Tethyan margingeography.geographical_feature_category010504 meteorology & atmospheric sciencesCarbonate platformStratigraphyGeologyStructural basin010502 geochemistry & geophysics01 natural sciencesCretaceousPaleontologyTectonicsTectonics vs. sedimentationContinental marginFold and thrust beltRestorationFaciesSedimentary basin analysisBasin analysiGeologyIntraplatform basinJurassic-Cretaceous paleogeography0105 earth and related environmental sciences
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Passive degassing at Nyiragongo (D.R. Congo) and Etna (Italy) volcanoes

2014

Volcanoes are well known as an impressive large natural source of trace elements into the troposphere. Etna (Italy) and Nyiragongo (D.R. Congo) are two stratovolcanoes located in different geological settings, both characterized by persistent passive degassing from their summit craters. Here, we present some results on trace element composition in volcanic plume emissions, atmospheric bulk deposition (rainwater) and their uptake by the surrounding vegetation, with the aim to compare and identify differences and similarities between these two volcanoes. Volcanic emissions were sampled by using active filter-packs for acid gases (sulfur and halogens) and specific teflon filters for particulat…

geographyTrace elementsgeography.geographical_feature_categorylcsh:QC801-809Trace elementGeochemistryMineralogyParticulatesvolcanic emissionslcsh:QC851-999Settore GEO/08 - Geochimica E VulcanologiaTroposphereAtmospherelcsh:Geophysics. Cosmic physicsGeophysicsDeposition (aerosol physics)VolcanoImpact craterrainwater biomonitoringStratovolcanolcsh:Meteorology. Climatologyvolcanic degassing trace elements biomonitoring atmospheric depositionGeology
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Thermo-mechanical role of a Cambro-Ordovician paleorift during the Variscan collision: the NE margin of the Bohemian Massif

2001

Abstract The Stare Město (SM) belt (NE margin of the Bohemian Massif) represents a preserved example of an intracontinental Cambro-Ordovician rift that has been shortened during the Variscan orogeny. The rifted sequence consists of gabbroic intrusions and a leptyno-amphibolite complex of Cambro-Ordovician protolith age. The latter suffered medium pressure, granulite facies, Cambro-Ordovician metamorphism associated with extension in a continental protorift. The Variscan tectonometamorphic event is manifested by convergent orogenesis with syn-convergent intrusion of a Carboniferous tonalitic sill, high temperature–medium pressure compressional deformation of gabbros and high temperature meta…

geographyUnderplatingRiftgeography.geographical_feature_categoryGreenschistMetamorphismOrogenyMassifGranuliteGeophysicsPetrologyProtolithGeologyEarth-Surface ProcessesTectonophysics
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High-temperature metamorphism and crustal melting at ca. 3.2 Ga in the eastern Kaapvaal craton, southern Africa

2018

Abstract The question of whether high-grade metamorphism and crustal melting in the early Archaean were associated with modern-style plate tectonics is a major issue in unravelling early Earth crustal evolution, and the eastern Kaapvaal craton has featured prominently in this debate. We discuss a major ca. 3.2 Ga tectono-magmatic-metamorphic event in the Ancient Gneiss Complex (AGC) of Swaziland, a multiply deformed medium- to high-grade terrane in the eastern Kaapvaal craton consisting of 3.66–3.20 Ga granitoid gneisses and infolded greenstone remnants, metasedimentary assemblages and mafic dykes. We report on a 3.2 Ga granulite-facies assemblage in a metagabbro of the AGC of central Swazi…

geographyUnderplatinggeography.geographical_feature_categoryP-T reconstruction010504 meteorology & atmospheric sciencesArcheanGeochemistryMetamorphismGeologyCrustKaapvaal craton010502 geochemistry & geophysicsGrey gneiss01 natural sciencesMesoarchaeanCratonZircon ageHf-Nd isotopesGeochemistry and PetrologySwazilandMaficMetamorphic faciesGeology0105 earth and related environmental sciencesTerranePrecambrian Research
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Resurgent uplift at large calderas and relationship to caldera-forming faults and the magma reservoir: New insights from the Neapolitan Yellow Tuff c…

2021

Abstract Resurgence uplift is the rising of the caldera floor, mainly due to pressure or volume changes in the magma reservoir. Identifying resurgence structures and understanding their relationship to the magmatic reservoir is challenging. We investigate the resurgence structures of the Neapolitan Yellow Tuff caldera (Italy) by integrating bathymetric data, high-resolution seismic profiles and Differential Synthetic-Aperture Radar Interferometry data. Our results show that the resurgent area is manifested as 1) a central dome constituted by two main blocks bounded by NNE-SSW trending faults, 2) an apical graben developed on top of the most uplifted block, 3) a peripheral zone including sev…

geographyVolcanic hazardsgeography.geographical_feature_category010504 meteorology & atmospheric sciencesResurgence structuresResurgent domeResurgence structureFault (geology)010502 geochemistry & geophysics01 natural sciencesResurgent domeCalderaGrabenDome (geology)GeophysicsMagmatic reservoirGeochemistry and PetrologyMagmaCalderaBathymetryPetrologyCampi FlegreiGeology0105 earth and related environmental sciences
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Phase petrology reveals shallow magma storage prior to large explosive silicic eruptions at Hekla volcano, Iceland

2017

Abstract Understanding the conditions that culminate in explosive eruptions of silicic magma is of great importance for volcanic hazard assessment and crisis mitigation. However, geological records of active volcanoes typically show a wide range of eruptive behavior and magnitude, which can vary dramatically for individual eruptive centers. In order to evaluate possible future scenarios of eruption precursors, magmatic system variables for different eruption types need to be constrained. Here we use petrological experiments and microanalysis of crystals to clarify the P – T – x state under which rhyodacitic melts accumulated prior to the H3 eruption; the largest Holocene Plinian eruption of…

geographyVulcanian eruptionExplosive eruptiongeography.geographical_feature_category010504 meteorology & atmospheric sciencesGeochemistrySilicicMagma chamber010502 geochemistry & geophysics01 natural sciencesGeophysicsVolcanoSpace and Planetary ScienceGeochemistry and PetrologyPumiceMagmaddc:550Earth and Planetary Sciences (miscellaneous)PhenocrystPetrologyGeology0105 earth and related environmental sciencesEarth and Planetary Science Letters
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The percolation threshold and permeability evolution of ascending magmas

2017

Abstract The development of gas permeability in magmas is a complex phenomenon that directly influences the style of a volcanic eruption. The emergence of permeability is linked to the concept of percolation threshold, which is the point beyond which gas bubbles are connected in a continuous network that allows gas escape. Measurements of the percolation threshold, however, range from ∼30 to 78 vol%. No known combination of parameters can explain such a wide range of threshold values, which affects our understanding of the relationship between percolation and permeability. We present permeability calculations on bubble-bearing rhyolitic melts that underwent experimental decompression. Sampl…

geographyVulcanian eruptiongeography.geographical_feature_category010504 meteorology & atmospheric sciencesBubbleMineralogyPercolation thresholdMechanicsPermeability coefficient010502 geochemistry & geophysics01 natural sciencesPhysics::GeophysicsPermeability (earth sciences)GeophysicsVolcanoSpace and Planetary ScienceGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)Conduit flowOrder of magnitudeGeology0105 earth and related environmental sciencesEarth and Planetary Science Letters
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