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Determining controls on shear instabilities in dehydrating gypsum

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ESRF Portal2027-01-01 更新2026-04-23 收录
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https://doi.esrf.fr/10.15151/ESRF-ES-1917568640
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The interaction between dehydration reactions and deformation in metamorphic environments is important in tectonics. While experiments have been run to understand how dehydration reactions and deformation interact, there is still a gap in our understanding because previous work could not simultaneously resolve the temporal and spatial evolution of grain-scale processes. Here we propose to use operando 4D microtomography (4DµCT) to directly document dehydration in shearing rocks on the grain scale, allowing us to unequivocally determine conditions where dehydration can lead to shear instabilities.We will react and shear gypsum fault gouge and pre-cut gypsum rocks at a range of conditions and collect discrete 4DµCT data while monitoring sample strength and permeability. The resulting data will link grain-scale processes to the macro-scale evolution of the samples allowing the formulation of models for the coupling between processes in dehydrating deforming rocks.
提供机构:
Utrecht University, Earth Sciences, Vening Meinesz Gebouw A, Princetonlaan 8a, 3584cb Utrecht, Netherlands; University of Manchester, Manchester School of Engineering, Simon Building, Oxford Road, M13 9pl Manchester, United Kingdom; RWTH Aachen University, Institute of Applied Structural Geology, Lochnerstraße 4 - 20, 52064 Aachen, Germany; RWTH, Angewandte Strukturgeologie, Lochnerstr. 4-20,, 52056 Aachen, Germany; University of Glasgow, Department of Geographical & Earth Sciences, Gregory Building, Lilybank Gardens, G12 8qq Glasgow, United Kingdom
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2027-01-01
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