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Dyke to sill deflection in the shallow heterogeneous crust during glacier retreat: part IINARA Subscribed
Changes from dyke to sill propagation in the shallow crust are often caused by dissimilar layer properties. However, most previous studies have not considered the influence of glacial loading and unloading on dyke and sill deflection processes. Here, we attempt to collectively explore mechanical (layer stiffness) and geometrical (dyke dip, layer thickness) realistic parameters subject to two different magma overpressure values...
Dyke to sill deflection in the shallow heterogeneous crust during glacier retreat: part INARA Subscribed
Dykes and sills occupy Mode I (extension), Mode II (shear), or hybrid mode fractures and most of the time transport and store magma from deep reservoirs to the surface. Subject to their successful propagation, they feed volcanic eruptions. Yet, dykes and sills can also stall and become arrested as a result of the crust’s heterogeneous and anisotropic characteristics. Dykes can become deflected at mechanical discontinuities to...
Volcanotectonics: the tectonics and physics of volcanoes and their eruption mechanicsNARA Subscribed
The physical processes that operate within, and beneath, a volcano control the frequency, duration, location and size of volcanic eruptions. Volcanotectonics focuses on such processes, combining techniques, data, and ideas from structural geology, tectonics, volcano deformation, physical volcanology, seismology, petrology, rock and fracture mechanics and classical physics. A central aim of volcanotectonics is to provide suffic...
In historic times, two catastrophic fissure eruptions originated in the Eastern Volcanic Zone of Iceland, known as Eldgjá eruption (934–940 CE) and Laki eruption (1783–1784 CE). Eldgjá produced 19.7 km 3 of lava flows and 1.3 km 3 of tephra; Laki emitted 14.7 km 3 of lavas and 0.4 km 3 of tephra. They released 232 and 122 megatons of SO 2 into the atmosphere, respectively. Abundant historic descriptions of the effects of the L...
Quaternary deformations along the ‘Engadine–Gruf tectonic system’, Swiss–Italian AlpsNARA Subscribed
The Engadine Line (EL) is a seismically active fault in southeastern Switzerland. In the field we studied its western segment, presently not affected by seismicity but characterised by features suggesting neotectonic motions, and the coterminous Gruf Line. Uphill‐ and downhill‐facing scarps, offset rivers, non‐equilibrium hydrological conditions and aligned deep‐seated gravitational slope deformations are dominant in the weste...
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