2024-03-28T21:06:09Zhttp://digital.csic.es/dspace-oai/requestoai:digital.csic.es:10261/1482092021-04-30T11:52:22Zcom_10261_82com_10261_8col_10261_461
DIGITAL.CSIC
author
Andrés, Juvenal
author
Alcalde, Juan
author
Ayarza, P.
author
Saura, Eduard
author
Marzán, Ignacio
author
Martí, David
author
Martínez Catalán, J. R.
author
Carbonell, Ramón
author
Pérez-Estaún, Andrés
author
García-Lobón, J.L.
author
Rubio, F.M.
2017-04-10T10:41:11Z
2017-04-10T10:41:11Z
2016-09-12
Geotemas 16: 523-526 (2016)
http://hdl.handle.net/10261/148209
The structure of the Hontomín CO2 geological storage research facility has been addressed combining 3D seismic reflection data, borehole information and microgravity data. The integrated interpretation constrains the basement structural setting geometry and that of the sedimentary succession. The study unravels the deep structure and topography of the basement and quantifies the thickness of the Triassic Keuper evaporites. We describe a half-grabensetting filled with Keuper evaporites (up to 2000 m) forming an extensional forced fold. Three set of faults are identified with two main fault systems compartmentalizing the area into three differentiated blocks. These faults have been interpreted to be reactivated normal faults that have led to the formation of the Hontomín dome.
eng
openAccess
3D seismics
sísmica 3D
Microgravimetría
geología estructural
Microgravity
Basamento
basement
structural geology
Basement structure of the Hontomín CO2 Geological storage facility (Burgos, Spain): integration of microgravity & 3D seismic reflection data
comunicación de congreso
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URL
https://digital.csic.es/bitstream/10261/148209/1/Basement%20structure.pdf
File
MD5
eadb88e8f413358628f76341ef7cf5eb
668890
application/pdf
Basement structure.pdf