Modeling of the CO2 long-term periodic injection experiment (CO2LPIE) into stratified hard clay rock at Mont Terri

CO2 Long-term Periodic Injection Experiment (CO2LPIE) aims at investigating the caprock sealing capacity in geologic carbon storage in a highly monitored environment at the field scale. The experiment is carried out in the sandy facies of Opalinus Clay at the Mont Terri rock laboratory, Switzerland, to gain knowledge on the changes in the geomechanical properties induced by the geochemical reactions resulting from CO2 injection (Rebscher et al., 2019; 2020). The presence of bedding planes in Opalinus Clay is responsible for its anisotropic hydrogeological and geomechanical behavior.

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Main Authors: Sciandra, Dario, Vilarrasa, Víctor, Kivi, Iman Rahimzadeh, Makhnenko, Roman Y., Nussbaum, Christophe, Rebscher, Dorothee
Other Authors: Vilarrasa, Víctor [0000-0003-1169-4469]
Format: comunicación de congreso biblioteca
Language:English
Published: 2020-09-11
Subjects:CO2LPIE, CO2 long-term periodic injection experiment,
Online Access:http://hdl.handle.net/10261/224400
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spelling dig-idaea-es-10261-2244002022-12-12T16:25:03Z Modeling of the CO2 long-term periodic injection experiment (CO2LPIE) into stratified hard clay rock at Mont Terri Sciandra, Dario Vilarrasa, Víctor Kivi, Iman Rahimzadeh Makhnenko, Roman Y. Nussbaum, Christophe Rebscher, Dorothee Vilarrasa, Víctor [0000-0003-1169-4469] CO2LPIE CO2 long-term periodic injection experiment CO2 Long-term Periodic Injection Experiment (CO2LPIE) aims at investigating the caprock sealing capacity in geologic carbon storage in a highly monitored environment at the field scale. The experiment is carried out in the sandy facies of Opalinus Clay at the Mont Terri rock laboratory, Switzerland, to gain knowledge on the changes in the geomechanical properties induced by the geochemical reactions resulting from CO2 injection (Rebscher et al., 2019; 2020). The presence of bedding planes in Opalinus Clay is responsible for its anisotropic hydrogeological and geomechanical behavior. D.S., V.V. and I.R.K. acknowledge funding from the European Research Council (ERC) under the European Union’s Horizon 2020 Research and Innovation Program through the Starting Grant GEoREST (www.georest.eu) (Grant agreement No. 801809). R.M. is thankful for the support from US DOE through CarbonSAFE Macon County Project DE-FE0029381. Peer reviewed 2020-12-04T10:27:18Z 2020-12-04T10:27:18Z 2020-09-11 comunicación de congreso http://purl.org/coar/resource_type/c_5794 International Conference on Coupled Processes in Fractured Geological Media: Observation, Modeling, and Application, CouFrac 2020, Seoul, Republic of Korea, 11-13 November 2020 http://hdl.handle.net/10261/224400 en #PLACEHOLDER_PARENT_METADATA_VALUE# info:eu-repo/grantAgreement/EC/H2020/801809 Sí open
institution IDAEA ES
collection DSpace
country España
countrycode ES
component Bibliográfico
access En linea
databasecode dig-idaea-es
tag biblioteca
region Europa del Sur
libraryname Biblioteca del IDAEA España
language English
topic CO2LPIE
CO2 long-term periodic injection experiment
CO2LPIE
CO2 long-term periodic injection experiment
spellingShingle CO2LPIE
CO2 long-term periodic injection experiment
CO2LPIE
CO2 long-term periodic injection experiment
Sciandra, Dario
Vilarrasa, Víctor
Kivi, Iman Rahimzadeh
Makhnenko, Roman Y.
Nussbaum, Christophe
Rebscher, Dorothee
Modeling of the CO2 long-term periodic injection experiment (CO2LPIE) into stratified hard clay rock at Mont Terri
description CO2 Long-term Periodic Injection Experiment (CO2LPIE) aims at investigating the caprock sealing capacity in geologic carbon storage in a highly monitored environment at the field scale. The experiment is carried out in the sandy facies of Opalinus Clay at the Mont Terri rock laboratory, Switzerland, to gain knowledge on the changes in the geomechanical properties induced by the geochemical reactions resulting from CO2 injection (Rebscher et al., 2019; 2020). The presence of bedding planes in Opalinus Clay is responsible for its anisotropic hydrogeological and geomechanical behavior.
author2 Vilarrasa, Víctor [0000-0003-1169-4469]
author_facet Vilarrasa, Víctor [0000-0003-1169-4469]
Sciandra, Dario
Vilarrasa, Víctor
Kivi, Iman Rahimzadeh
Makhnenko, Roman Y.
Nussbaum, Christophe
Rebscher, Dorothee
format comunicación de congreso
topic_facet CO2LPIE
CO2 long-term periodic injection experiment
author Sciandra, Dario
Vilarrasa, Víctor
Kivi, Iman Rahimzadeh
Makhnenko, Roman Y.
Nussbaum, Christophe
Rebscher, Dorothee
author_sort Sciandra, Dario
title Modeling of the CO2 long-term periodic injection experiment (CO2LPIE) into stratified hard clay rock at Mont Terri
title_short Modeling of the CO2 long-term periodic injection experiment (CO2LPIE) into stratified hard clay rock at Mont Terri
title_full Modeling of the CO2 long-term periodic injection experiment (CO2LPIE) into stratified hard clay rock at Mont Terri
title_fullStr Modeling of the CO2 long-term periodic injection experiment (CO2LPIE) into stratified hard clay rock at Mont Terri
title_full_unstemmed Modeling of the CO2 long-term periodic injection experiment (CO2LPIE) into stratified hard clay rock at Mont Terri
title_sort modeling of the co2 long-term periodic injection experiment (co2lpie) into stratified hard clay rock at mont terri
publishDate 2020-09-11
url http://hdl.handle.net/10261/224400
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