Structure type | Evaporite Diapir |
Deformed/Undeformed | Deformed |
Geological Setting | Basque-Cantabrian Basin, Navarra-Álava trough |
Outcropping/buried | Outcropping |
Evaporite unit/s name | Keuper facies |
Evaporite unit/s age | Carnian-Rhaetian (Upper Triassic) |
Evaporite unit/s origin | Marine |
Classif. (Hudec and Jackson, 2009) | Ductile piercement |
Classif. (Jackson and Talbot, 1986) | Salt wall |
Age of evaporite flow or deformation (when deformed) | Danian to Burdigalian, Lower Cretaceous |
Other comments | Shortened and moved passively to the South during Alpine orogeny. |
Unique ID | 28 |
Name | Ocio |
Structure type | Evaporite diapir |
Deformed/Undeformed | Deformed |
Buried/Outcropping | Outcropping |
Geological setting | Basque-Cantabrian Basin |
Geological Regional Setting | Navarra-Álava trough |
Evaporite unit/s name | Keuper facies |
Evaporite unit/s age | Carnian-Rhaetian (Upper Triassic) |
Evaporite unit/s era | Mesozoic |
Evaporite unit/s origin | Marine |
Evaporite unit/s composition | Gypsum-Halite-Anhydrite-Claystone-Ophites |
Post-kinematic unit/s (or post-evaporite units when evaporites are undeformed) | Quaternary (alluvial and colluvial detrital deposits) |
Post-kinematic unit/s age (or post-evaporite units when evaporites are undeformed) | Pleistocene-Holocene |
Classification (Hudec and Jackson, 2009) | Ductile piercement |
Classification (Jackson and Talbot, 1986) | Salt wall |
Mining activity? | Y |
Mining activity start | – |
Mining activity end | – |
Mining galleries? | – |
Mining products | Ophites |
Mining sub-products | – |
Evaporite flow? | Y |
Age of evaporite flow | Berriasian – Albian (early stage) and Danian – Burdigalian (main stage) |
Flow or deformation triggering mechanisms | South Basque-Cantabrian basin frontal thrust |
Flow-linked structures? | Y |
Halokinetic structures | Progressive unconformities / radial normal and thrust faults / radial joints / thickness variations |
Post-evaporite and pre-kinematic unit/s (overbuden) | Jurassic (dolostones, marls and oolitic limestones) |
Syn-kinematic unit/s | Upper Weald facies (sandstones) / Aptian-middle Albian (Urgonian Group: marlstones, marly limestones, packstones, carbonate brecchias, rudistid limestones; Punta del Bakio Unit: turbidites, mudstones and carbonate grainstones) / Danian-Selandian (dolomites and limestones) / Thanetian-Ypresian (limestones and marls) / Lutetian-Bartonian (limestones and marls) / Priabonian-Burdigalian (shales, sandstones and conglomerates) |
Available seismic profiles | C-17 / P-7-1 / R-50 / CA-4 / R-31-BIS / R-31-1 / R-42-1 |
Available boreholes | |
Additional comments | Shortened and moved passively to the South during Alpine orogeny |
UNIQUE_ID | 28 |
Minning exploitations within <2km? | Y |
Historical/Active | Active |
Exploitation name #1 | LAS CONCHAS |
Exploitation ID (Spanish National Mining Cadastre) #1 | 3310 |
Municipality #1 | Haro |
Province #1 | LA RIOJA |
Company #1 | OFITAS DE SAN FELICES, S.A. |
Main minning Products #1 | Ophites |
Exploitation name #2 | |
Exploitation ID (Spanish National Mining Cadastre) #2 | |
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Company #2 | |
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Exploitation ID (Spanish National Mining Cadastre) #3 | |
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UNIQUE_ID | 28 |
Outcropping area (km2) | 4.27329 |
Horizontal intersection area (km2) (when buried) | Not buried |
Depth of intersection area (km2) (when buried) | Not buried |
Max. Width (Km) | 2.6 |
Max. Length (Km) | 5.4 |
Max. Evaporites thickness (km) | 7 |
Max. Deformation age (Ma) | 145 |
Min. Deformation age (Ma) | 16 |
Deformation stages | 2 |
UNIQUE_ID | 28 |
Section source | IGME MAGNA 50. SHEET 170 (HARO) |
Well / Borehole availability #1 | Cámara, P., 2020. Inverted turtle salt anticlines in the eastern basque-cantabrian basin, Spain. Marine and Petroleum Geology, 104358. [link] |
Well / Borehole availability #2 | Poprawski, Y., Basile, C., 2018. Long-lasting diapir growth history in the Basque-Cantabrian basin (Northern Spain): a review. Conference poster, Advances in Salt Tectonics: Observations, Applications, and Perspective: In Honor of Martin P.A. Jackson. [link] |
Available data (Stratigraphy) #1 | Pedrera, A., García‐Senz, J., Ayala, C., Ruiz‐Constán, A., Rodríguez‐Fernández, L. R., Robador, A., González Menéndez, L., 2017. Reconstruction of the exhumed mantle across the North Iberian Margin by crustal‐scale 3‐D gravity inversion and geological cross section. Tectonics, 36, 3155-3177. [link] |
Available data (Stratigraphy) #2 | Cámara, P., 2020. Inverted turtle salt anticlines in the eastern basque-cantabrian basin, Spain. Marine and Petroleum Geology, 104358. [link] |
Available data (Stratigraphy) #3 | Poprawski, Y., Basile, C., 2018. Long-lasting diapir growth history in the Basque-Cantabrian basin (Northern Spain): a review. Conference poster, Advances in Salt Tectonics: Observations, Applications, and Perspective: In Honor of Martin P.A. Jackson. [link] |
Available data (Stratigraphy) #4 | Soliz, J. G., Acebo, H. J. L., Villaro, B. Á., 2001. Estudio hidrigeológico general de la unidad de Sierra de Cantabria. Estudios del Museo de Ciencias Naturales de Álava, 16, 5-42. [link] |
Available data (Stratigraphy) #5 | Alday, J. J. G., Garmilla, F. G., 1994. Caracterización de las geodas de cuarzo de Laño (Sur de Vitoria). Relación con la actividad somerizante del diapiro de Peñacerrada (cuenca Vasco-Cantábrica). Geogaceta, 16, 132-135. [link] |
Available data (Stratigraphy) #6 | Bodego, A., Iriarte, E., López-Horgue, M. A., Álvarez, I., 2018. Rift-margin extensional forced folds and salt tectonics in the eastern Basque-Cantabrian rift basin (western Pyrenees). Marine and Petroleum Geology, 91, 667-682. [link] |
Regional Stratigraphy | Pedrera, A., García‐Senz, J., Ayala, C., Ruiz‐Constán, A., Rodríguez‐Fernández, L. R., Robador, A., González Menéndez, L., 2017. Reconstruction of the exhumed mantle across the North Iberian Margin by crustal‐scale 3‐D gravity inversion and geological cross section. Tectonics, 36, 3155-3177. [link] |
Seismic data availability #1 | Poprawski, Y., Basile, C., 2018. Long-lasting diapir growth history in the Basque-Cantabrian basin (Northern Spain): a review. Conference poster, Advances in Salt Tectonics: Observations, Applications, and Perspective: In Honor of Martin P.A. Jackson. [link] |
Seismic data availability #2 | Cámara, P., 2020. Inverted turtle salt anticlines in the eastern basque-cantabrian basin, Spain. Marine and Petroleum Geology, 104358. [link] |
Seismic data availability #3 | Pedrera, A., García‐Senz, J., Ayala, C., Ruiz‐Constán, A., Rodríguez‐Fernández, L. R., Robador, A., González Menéndez, L., 2017. Reconstruction of the exhumed mantle across the North Iberian Margin by crustal‐scale 3‐D gravity inversion and geological cross section. Tectonics, 36, 3155-3177. [link] |
Available data (Structure) #1 | Cámara, P., 2020. Inverted turtle salt anticlines in the eastern basque-cantabrian basin, Spain. Marine and Petroleum Geology, 104358. [link] |
Available data (Structure) #2 | Pedrera, A., García‐Senz, J., Ayala, C., Ruiz‐Constán, A., Rodríguez‐Fernández, L. R., Robador, A., González Menéndez, L., 2017. Reconstruction of the exhumed mantle across the North Iberian Margin by crustal‐scale 3‐D gravity inversion and geological cross section. Tectonics, 36, 3155-3177. [link] |
Available data (Structure) #3 | Soliz, J. G., Acebo, H. J. L., Villaro, B. Á., 2001. Estudio hidrigeológico general de la unidad de Sierra de Cantabria. Estudios del Museo de Ciencias Naturales de Álava, 16, 5-42. [link] |
Available data (Structure) #4 | Pinto, V., Casas, A., Rivero, L., Torne, M., 2005. 3D gravity modeling of the Triassic salt diapirs of the Cubeta Alavesa (northern Spain). Tectonophysics, 405, 65-75. [link] |
Available data (Structure) #5 | Riba i Arderiu, O., 1992. Las secuencias oblicuas en el borde Norte de la Depresión del Ebro en Navarra y la Discordancia de Barbarín. Acta geológica hispánica, 55-68. [link] |
Available data (Structure) #6 | n.a. |
Available data (Analogue modelling) #1 | n.a. |
Available data (Analogue modelling) #2 | n.a. |
Available data (Analogue modelling) #3 | n.a. |
Available data (Gravimetry – Tomography) #1 | Pinto, V., Rivero, L., Ponsatí, A. C., 2000. Modelo gravimétrico de los diapiros de Estella y Alloz, y localización de nuevos diapiros no aflorantes en la zona sur de Atauri, Cubeta Alavesa. Revista de la Sociedad Geológica de España, 13(3), 529-538. [link] |
Available data (Gravimetry – Tomography) #2 | Pinto, V., Casas, A., Rivero, L., Torne, M., 2005. 3D gravity modeling of the Triassic salt diapirs of the Cubeta Alavesa (northern Spain). Tectonophysics, 405, 65-75. [link] |
Available data (Gravimetry – Tomography) #3 | Ayala, C., Bohoyo, F., Maestro, A., Reguera, M. I., Torne, M., Rubio, F., Fernández, M., García-Lobón, J. L., 2016. Updated Bouguer anomalies of the Iberian Peninsula: a new perspective to interpret the regional geology. Journal of Maps, 12(5), 1089-1092. [link] |
Available data (Geochemistry) #1 | Ortí, F., García-Veigas, J., Rossell, L., Jurado, M. J., Utrilla, R., 1996. Formaciones salinas de las cuencas triásicas en la Península Ibérica: Caracterización Petrológica y Geoquímica. Cuadernos de Geología Ibérica, 20, 13-35. [link] |
Available data (Geochemistry) #2 | Béziat, D., Joron, J.L., Monchoux, P., Treuil, M., Walgenwitz, F., 1991. Geodynamic implications of geochemical data for the Pyrenean ophites (Spain-France). Chemical Geology, 89, 243-262. [link] |
Available data (Geochemistry) #3 | n.a. |
Available data (Geochemistry) #4 | n.a. |
Available data (Petrophysics) #1 | Llamas, B., Castañeda, M. C., Laín, C., Pous, J., 2017. Study of the Basque–Cantabrian basin as a suitable region for the implementation of an energy storage system based on compressed air energy storage (CAES). Environmental Earth Sciences, 76(5), 204. [link] |
Available data (Petrophysics) #2 | Soto, R., Beamud, E., Roca, E., Carola, E., Almar, Y., 2017. Distinguishing the effect of diapir growth on magnetic fabrics of syn-diapiric overburden rocks: Basque-Cantabrian basin, Northern Spain. Terra Nova 29, 191-201. [link] |
IGME Geological Map (MAGNA50) Sheet number | 170-Haro. [link] |
Other Maps #1 (source) | Perona, J., 2016. Mineralizaciones de Pb-Zn asociadas a los diapiros de Murguía y Orduña (Cuenca Vasco-Cantábrica) [PhD thesis]: Barcelona, Universitat de Barcelona, 281 pp. [link] |
Other Maps #2 (source) | Pereda-Suberbiola, X., Corral, J. C., Astibia, H., Badiola, A., Bardet, N., Berreteaga, A., …, Torices, A., 2015. Late Cretaceous continental and marine vertebrate assemblages of the Laño Quarry (Basque-Cantabrian Region, Iberian Peninsula): an update. Journal of Iberian Geology, 41(1), 101-124. [link] |
Other related references #1 | Ábalos, B., 2016. Geologic map of the Basque-Cantabrian Basin and a new tectonic interpretation of the Basque Arc. International Journal of Earth Sciences, 105, 2327-2354. [link] |
Other related references #2 | Ábalos, B., Alkorta, A., Iríbar, V., 2008. Geological and isotopic constraints on the structure of the Bilbao anticlinorium (Basque–Cantabrian basin, North Spain). Journal of Structural Geology, 30(11), 1354-1367. [link] |
Other related references #3 | Martín-Chivelet, J., López-Gómez, J., Aguado, R., Arias, C., Arribas, J., Arribas, M. E., … , Casas-Sainz, A., 2019. The Late Jurassic–Early Cretaceous Rifting. In (Quesada C., Oliveira J., eds.): The Geology of Iberia: A Geodynamic Approach. Regional Geology Reviews. Springer, Cham. [link] |
Other related references #4 | n.a. |
UNIQUE_ID | 28 |
Seismic survey name #1 | 8C-ST-92 |
Across structure? #1 | N (within 3km) |
Seismic profile ID (IGME) #1 | 13306 |
Seismic profile code #1 | 18024 |
Seismic profile name #1 | C-17 |
Seismic survey year #1 | 1965 |
Data repository #1 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #1 | 23.34 |
Seismic survey name #2 | 8C-ST-182 |
Across structure? #2 | N (within 3km) |
Seismic profile ID (IGME) #2 | 13263 |
Seismic profile code #2 | 17981 |
Seismic profile name #2 | P-7-1 |
Seismic survey year #2 | 1958 |
Data repository #2 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #2 | 9.96 |
Seismic survey name #3 | 8C-ST-180 |
Across structure? #3 | N (within 3km) |
Seismic profile ID (IGME) #3 | 13238 |
Seismic profile code #3 | 17956 |
Seismic profile name #3 | R-50 |
Seismic survey year #3 | 1960 |
Data repository #3 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #3 | 3.18 |
Seismic survey name #4 | 8C-ST-95 |
Across structure? #4 | N (within 3km) |
Seismic profile ID (IGME) #4 | 13336 |
Seismic profile code #4 | 18054 |
Seismic profile name #4 | CA-4 |
Seismic survey year #4 | 1967 |
Data repository #4 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #4 | 4.86 |
Seismic survey name #5 | 8C-ST-180 |
Across structure? #5 | N (within 3km) |
Seismic profile ID (IGME) #5 | 13250 |
Seismic profile code #5 | 17968 |
Seismic profile name #5 | R-31-BIS |
Seismic survey year #5 | 1960 |
Data repository #5 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #5 | 6.58 |
Seismic survey name #6 | 8C-ST-180 |
Across structure? #6 | N (within 3km) |
Seismic profile ID (IGME) #6 | 13251 |
Seismic profile code #6 | 17969 |
Seismic profile name #6 | R-31-1 |
Seismic survey year #6 | 1960 |
Data repository #6 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #6 | 9.08 |
Seismic survey name #7 | 8C-ST-180 |
Across structure? #7 | N (within 3km) |
Seismic profile ID (IGME) #7 | 13245 |
Seismic profile code #7 | 17963 |
Seismic profile name #7 | R-42-1 |
Seismic survey year #7 | 1960 |
Data repository #7 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #7 | 7.90 |
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UNIQUE_ID | 28 |
X Centroid (Structure shape) | -2.826854 |
Y Centroid (Structure shape) | -2.826854 |
Xmin (Structure shape) | -2.857741 |
Xmax (Structure shape) | -2.796132 |
Ymin (Structure shape) | 42.623448 |
Ymax (Structure shape) | 42.661194 |
Xmin seismic line #1 | -2.907675 |
Xmax seismic line #1 | -2.830611 |
Ymin seismic line #1 | 42.426313 |
Ymax seismic line #1 | 42.608812 |
Xmin seismic line #2 | -2.821859 |
Xmax seismic line #2 | -2.715828 |
Ymin seismic line #2 | 42.679716 |
Ymax seismic line #2 | 42.700600 |
Xmin seismic line #3 | -2.869579 |
Xmax seismic line #3 | -2.836371 |
Ymin seismic line #3 | 42.684456 |
Ymax seismic line #3 | 42.698224 |
Xmin seismic line #4 | -2.818721 |
Xmax seismic line #4 | -2.811058 |
Ymin seismic line #4 | 42.679999 |
Ymax seismic line #4 | 42.723168 |
Xmin seismic line #5 | -2.832115 |
Xmax seismic line #5 | -2.765844 |
Ymin seismic line #5 | 42.570797 |
Ymax seismic line #5 | 42.601687 |
Xmin seismic line #6 | -2.830279 |
Xmax seismic line #6 | -2.738179 |
Ymin seismic line #6 | 42.563622 |
Ymax seismic line #6 | 42.604629 |
Xmin seismic line #7 | -2.856477 |
Xmax seismic line #7 | -2.831501 |
Ymin seismic line #7 | 42.657214 |
Ymax seismic line #7 | 42.724515 |
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