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Dive into the research topics where Mateo Alejandro Acosta is active.

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Featured researches published by Mateo Alejandro Acosta.


Scientific Reports | 2017

Porosity evolution at the brittle-ductile transition in the continental crust: Implications for deep hydro-geothermal circulation

Marie Violay; Michael J. Heap; Mateo Alejandro Acosta; Claudio Madonna

Recently, projects have been proposed to engineer deep geothermal reservoirs in the ductile crust. To examine their feasibility, we performed high-temperature (up to 1000 °C), high-pressure (130 MPa) triaxial experiments on granite (initially-intact and shock-cooled samples) in which we measured the evolution of porosity during deformation. Mechanical data and post-mortem microstuctural characterisation (X-ray computed tomography and scanning electron microscopy) indicate that (1) the failure mode was brittle up to 900 °C (shear fracture formation) but ductile at 1000 °C (no strain localisation); (2) only deformation up to 800 °C was dilatant; (3) deformation at 900 °C was brittle but associated with net compaction due to an increase in the efficiency of crystal plastic processes; (4) ductile deformation at 1000 °C was compactant; (5) thermally-shocking the granite did not influence strength or failure mode. Our data show that, while brittle behaviour increases porosity, porosity loss is associated with both ductile behaviour and transitional behaviour as the failure mode evolves from brittle to ductile. Extrapolating our data to geological strain rates suggests that the brittle-ductile transition occurs at a temperature of 400 ± 100 °C, and is associated with the limit of fluid circulation in the deep continental crust.


Archive | 2018

Rock /fluid interaction during induced earthquakes: Where does frictional heat go?

Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Axandre Schubnel; Marie Violay


Archive | 2018

Nucleation of laboratory earthquakes: Implications for EGS induced seismicity

Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Alexandre Schubnel; Benoit Gibert; Marie Violay


Archive | 2018

Fluid thermodynamics control fault healing and weakening under crustal stress conditions

Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Alexandre Schubnel; Marie Violay


EGU 2018 | 2018

Influence of fluid pressure level on the nucleation of laboratory earthquakes

Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Alexandre Schubnel; Benoit Gibert; Marie Violay


SCCER – SoE meeting 2017 | 2017

Fluid thermodynamics control the dynamics of induced earthquakes

Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Alex Schubnel; Marie Violay


Archive | 2017

Effect of pore pressure on earthquake dynamic rupture: insights from stick slip experiments on granite.

Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Alexandre Schubnel; Marie Violay


EMRP Division Outstanding ECS Award Lecture, EGU 2017 | 2017

Effect of water on slip weakening of cohesive rocks during earthquakes

Marie Violay; Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Alexandre Schubnel


Cargese School 2017 Earthquakes: nucleation, triggering, rupture, and relationships to aseismic processes. | 2017

Fluid thermodynamics control fault heating and weakening under upper crustal stress conditions

Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Alex Schubnel; Marie Violay


AGU annual meeting 2017 | 2017

Fluid thermodynamics control thermal weakening during earthquake rupture

Mateo Alejandro Acosta; François Xavier Thibault Passelègue; Alex Schubnel; Marie Violay

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Marie Violay

École Polytechnique Fédérale de Lausanne

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Alex Schubnel

École Normale Supérieure

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Benoit Gibert

University of Montpellier

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