Search results for "E64"

showing 9 items of 39 documents

Zones d'ammonites et de foraminifères du Vraconnien au Turonien : Une comparasion entre les domaines boréal et téthysien (NW Europe / Tunisie central…

2008

International audience; Depuis la fin du 19ème siècle, l'intervalle comprenant l'Albien supérieur élevé, le Cénomanien, le Turonien et le Coniacien basal a été subdivisé d'abord en zones d'ammonites puis, à partir du milieu du 20ème siècle, en zones de foraminifères planctoniques, deux groupes de macro- et de microfossiles particulièrement efficaces en bio-chronostratigraphie grâce à leur taux d'évolution rapide. Toutefois, des différences de compositions fauniques entre le domaine boréal (Europe du Nord-Ouest) et le domaine téthysien (Méditerranée) ont longtemps empêché des corrélations précises entre ces deux domaines. Aujourd'hui, dans un intervalle de temps couvrant environ 16 millions …

foraminifèresCrétacéStratigraphyzones[ SDU.STU.ST ] Sciences of the Universe [physics]/Earth Sciences/Stratigraphy[SDE.MCG.CPE] Environmental Sciences/Global Changes/domain_sde.mcg.cpe[ SDE.MCG.CPE ] Environmental Sciences/Global Changes/domain_sde.mcg.cpezonationlcsh:StratigraphyCénomanienTéthys[SDU.STU.GC] Sciences of the Universe [physics]/Earth Sciences/Geochemistrylcsh:QE701-760lcsh:QE640-699ammonitesAlbienlcsh:QE1-996.5PaleontologyGeology[ SDU.STU.GC ] Sciences of the Universe [physics]/Earth Sciences/GeochemistryVraconnienTuronienlcsh:GeologyGeographylcsh:Paleontology[SDU.STU.ST] Sciences of the Universe [physics]/Earth Sciences/StratigraphyCenomanianHumanitiesCarnets de géologie (Notebooks on geology)
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Simulating stress-dependent fluid flow in a fractured core sample using real-time X-ray CT data

2016

Various geoscientific applications require a fast prediction of fracture permeability for an optimal workflow. Hence, the objective of the current study is to introduce and validate a practical method to characterize and approximate single flow in fractures under different stress conditions by using a core-flooding apparatus, in situ X-ray computed tomography (CT) scans and a finite-volume method solving the Navier–Stokes–Brinkman equations. The permeability of the fractured sandstone sample was measured stepwise during a loading–unloading cycle (0.7 to 22.1 MPa and back) to validate the numerical results. Simultaneously, the pressurized core sample was imaged with a medical X-ray CT scanne…

lcsh:Geology550 Earth scienceslcsh:StratigraphyGeography & travellcsh:QE1-996.5550 Geowissenschaftenlcsh:QE640-699ddc:910
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Tunable diode laser measurements of hydrothermal/volcanic CO2 and implications for the global CO2 budget

2014

Quantifying the CO2 flux sustained by low-temperature fumarolic fields in hydrothermal/volcanic environments has remained a challenge, to date. Here, we explored the potential of a commercial infrared tunable laser unit for quantifying such fumarolic volcanic/hydrothermal CO2 fluxes. Our field tests were conducted between April 2013 and March 2014 at Nea Kameni (Santorini, Greece), Hekla and Krýsuvík (Iceland) and Vulcano (Aeolian Islands, Italy). At these sites, the tunable laser was used to measure the path-integrated CO2 mixing ratios along cross sections of the fumaroles' atmospheric plumes. By using a tomographic post-processing routine, we then obtained, for each manifestation, the co…

lcsh:GeologyCO2 flux Nea Kameni Hekla volcano Krysuvik Vulcano islandlcsh:Stratigraphylcsh:QE1-996.5Settore GEO/08 - Geochimica E Vulcanologialcsh:QE640-699Solid Earth
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X-ray CT analyses, models and numerical simulations: a comparison with petrophysical analyses in an experimental CO2 study

2016

An essential part of the collaborative research project H2STORE (hydrogen to store), which is funded by the German government, was a comparison of various analytical methods for characterizing reservoir sandstones from different stratigraphic units. In this context Permian, Triassic and Tertiary reservoir sandstones were analysed. Rock core materials, provided by RWE Gasspeicher GmbH (Dortmund, Germany), GDF Suez E&P Deutschland GmbH (Lingen, Germany), E.ON Gas Storage GmbH (Essen, Germany) and RAG Rohöl-Aufsuchungs Aktiengesellschaft (Vienna, Austria), were processed by different laboratory techniques; thin sections were prepared, rock fragments were crushed and cubes of 1 cm edge leng…

lcsh:Geologylcsh:Stratigraphy550 Earth scienceslcsh:QE1-996.5550 Geowissenschaftenlcsh:QE640-699
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Micro- and nano-porosity of the active Alpine Fault zone, New Zealand

2020

Porosity reduction in rocks from a fault core can cause elevated pore fluid pressures and consequently influence the recurrence time of earthquakes. We investigated the porosity distribution in the New Zealand's Alpine Fault core in samples recovered during the first phase of the Deep Fault Drilling Project (DFDP-1B) by using two-dimensional nanoscale and three-dimensional microscale imaging. Synchrotron X-ray microtomography-derived analyses of open pore spaces show total microscale porosities in the range of 0.1 %–0.24 %. These pores have mainly non-spherical, elongated, flat shapes and show subtle bipolar orientation. Scanning and transmission electron microscopy reveal the…

lcsh:Geologylcsh:Stratigraphylcsh:QE1-996.5lcsh:QE640-699Solid Earth
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Control of 3-D tectonic inheritance on fold-and-thrust belts: insights from 3-D numerical models and application to the Helvetic nappe system

2020

We apply three-dimensional (3-D) thermo-mechanical numerical simulations of the shortening of the upper crustal region of a passive margin in order to investigate the control of 3-D laterally variable inherited structures on fold-and-thrust belt evolution and associated nappe formation. We consider tectonic inheritance by employing an initial model configuration with basement horst and graben structures having laterally variable geometry and with sedimentary layers having different mechanical strength. We use a visco-plastic rheology with a temperature-dependent flow law and a Drucker–Prager yield criterion. The models show the folding, detachment (shearing off) and horizontal transport of …

lcsh:Geologylcsh:Stratigraphylcsh:QE1-996.5lcsh:QE640-699Solid Earth
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Editorial NoteA case of plagiarism: "Modelling of the wave fields by the modification of the matrix method in anisotropic media" published in Solid E…

2018

No abstract available.

lcsh:Geologylcsh:Stratigraphylcsh:QE1-996.5lcsh:QE640-699
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Squirt flow due to interfacial water films in hydrate bearing sediments

2018

Sediments containing gas hydrate dispersed in the pore space are known to show a characteristic seismic anomaly which is a high attenuation along with increasing seismic velocities. Currently, this observation cannot be fully explained albeit squirt-flow type mechanisms on the microscale have been speculated to be the cause. Recent major findings from in situ experiments, using the gas in excess and water in excess formation method, and coupled with high-resolution synchrotron-based X-ray micro-tomography, have revealed the systematic presence of thin water films between the quartz grains and the encrusting hydrate. The data obtained from these experiments underwent an image processing proc…

lcsh:Geologylcsh:Stratigraphylcsh:QE1-996.5lcsh:QE640-699Solid Earth
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Post-entrapment modification of residual inclusion pressure and its implications for Raman elastic thermobarometry

2020

Residual pressure can be preserved in mineral inclusions, e.g. quartz-in-garnet, after exhumation due to differential expansion between inclusion and host crystals. Raman spectroscopy has been applied to infer the residual pressure and provides information on the entrapment temperature and pressure conditions. However, the amount of residual pressure relaxation cannot be directly measured. An underestimation or overestimation of residual pressure may lead to significant errors between calculated and actual entrapment pressure. This study focuses on three mechanisms responsible for the residual pressure modification: (1) viscous creep; (2) plastic yield; (3) proximity of inclusion to the thi…

lcsh:Geologylcsh:Stratigraphylcsh:QE1-996.5lcsh:QE640-699
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