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) | Passive piercement |
Classif. (Jackson and Talbot, 1986) | Salt stock |
Age of evaporite flow or deformation (when deformed) | Lower Cretaceous, Paleocene-Eocene, Upper Cretaceous |
Other comments | Northwest-southeast alignment (Las Losas fault; Martín-Chivelet et al., 2002) of the Murguía, Orduña, and Villasana de Mena diapirs. |
Unique ID | 13 |
Name | Orduña |
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 | Halite-Red Shales-Anhydrite-Dolostones-Dolerites |
Post-kinematic unit/s (or post-evaporite units when evaporites are undeformed) | Campanian (Marls and limestones) ; Maastrichtian (limestones and sandstones) ; Oligocene (conglomerates and sandstones) ; Quaternary (alluvial and colluvial detrital deposits) |
Post-kinematic unit/s age (or post-evaporite units when evaporites are undeformed) | Campanian-Palaeocene and Quaternary |
Classification (Hudec and Jackson, 2009) | Passive piercement |
Classification (Jackson and Talbot, 1986) | Salt stock |
Mining activity? | Y |
Mining activity start | 1868 |
Mining activity end | 20th century |
Mining galleries? | Y |
Mining products | Gypsum |
Mining sub-products | Pb-Zn |
Evaporite flow? | Y |
Age of evaporite flow | Berriasian – Turonian (early stage) and Palaeocene-Eocene (main stage) |
Flow or deformation triggering mechanisms | Mesozoic extensional regime in the Basque–Cantabrian Basin (early stage) and Alpine compression (main stage) |
Flow-linked structures? | Y |
Halokinetic structures | Syncline-Anticline folding / Normal Faults / Reverse faults |
Post-evaporite and pre-kinematic unit/s (overbuden) | Berriasian (Walden facies) to Upper Cretaceous (Rhythmic Series, Gárate limestones, Zuazo Marls, Subijana limestones) |
Syn-kinematic unit/s | |
Available seismic profiles | ILIHA D-A / S82-18 / S-82-13 / S-82-20 / VA-3 / VA-4 / 22 / S82-18 / 23 / 44221 / 24 |
Available boreholes | PAUL-2 / PAUL-3 / MONTELEON-2 (SML-2) (MONT-2) / PAUL-1 / PAUL-4 / GODON-2 / MONTELEON-1 (SML-1) (MONT-1) |
Additional comments | Northwest-southeast alignment (Las Losas fault; Martín-Chivelet et al., 2002) of the Murguía, Orduña, and Villasana de Mena diapirs |
UNIQUE_ID | 13 |
Minning exploitations within <2km? | Y |
Historical/Active | Historical (not indexed in the Spanish National Minning Cadastre) |
Exploitation name #1 | n.a. |
Exploitation ID (Spanish National Mining Cadastre) #1 | n.a. |
Municipality #1 | n.a. |
Province #1 | n.a. |
Company #1 | n.a. |
Main minning Products #1 | Gypsum |
Exploitation name #2 | |
Exploitation ID (Spanish National Mining Cadastre) #2 | |
Municipality #2 | |
Province #2 | |
Company #2 | |
Main minning Products #2 | |
Exploitation name #3 | |
Exploitation ID (Spanish National Mining Cadastre) #3 | |
Municipality #3 | |
Province #3 | |
Company #3 | |
Main minning Products #3 |
UNIQUE_ID | 13 |
Outcropping area (km2) | 15.64477 |
Horizontal intersection area (km2) (when buried) | Not buried |
Depth of intersection area (km2) (when buried) | Not buried |
Max. Width (Km) | 5.7 |
Max. Length (Km) | 3.9 |
Max. Evaporites thickness (km) | 2.4 |
Max. Deformation age (Ma) | 100 |
Min. Deformation age (Ma) | 33.9 |
Deformation stages | 2 |
UNIQUE_ID | 13 |
Section source | IGME MAGNA 50. SHEET 111 (ORDUÑA) |
Well / Borehole availability #1 | 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] |
Well / Borehole availability #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 (Stratigraphy) #1 | 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] |
Available data (Stratigraphy) #2 | Serrano, A., Martínez del Olmo, W., Cámara, P., 1989. Diapirismo del Trías salino en el dominio Cántabro-Navarro. Libro homenaje a Rafael Soler: Madrid, Asociación de Geólogos y Geofísicos Españoles del Petróleo, p. 115–121. |
Available data (Stratigraphy) #3 | Nettleton, L.L., 1968. Gravity anomalies over salt diapirs, northern Spain. Geological Society of America Special Papers, 88, 75–82. [link] |
Available data (Stratigraphy) #4 | Serrano, A., Martínez del Olmo, W., 1990. Tectónica salina en el Dominio Cántabro-Navarro: Evolución, edad y origen de las estructuras salinas, in Ortí, F., and Salvany, J.M., (eds.), Formaciones evaporíticas de la Cuenca del Ebro y cadenas periféricas, y de la zona de Levante. Barcelona, ENRESA. [link] |
Available data (Stratigraphy) #5 | García-Mondéjar, J., López-Horgue, M.A., Aranburu, A., Fernández-Mendiola, P.A., 2005. Pulsating subsidence during a rift episode: Stratigraphic and tectonic consequences (Aptian-Albian, northern Spain). Terra Nova, 17, 517–525. [link] |
Available data (Stratigraphy) #6 | Frankovic, A., Eguiluz, L., Martínez-Torres, L.M., 2016. Geodynamic evolution of the Salinas de Añana diapir in the Basque-Cantabrian basin, western Pyrenees. Journal of Structural Geology, 83, 13–27. [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 | Roca, E., Muñoz, J.A., Ferrer, O., Ellouz, N., 2011. The role of the Bay of Biscay Mesozoic extensional structure in the configuration of the Pyrenean orogen: Constraints from the MARCONI deep seismic reflection survey. Tectonics, 30, 2. [link] |
Seismic data availability #2 | [Private access]: CGS, 1996. Cartografía geológico-minera a escala 1:5000 en la zona de Barambio-Monteleón-Jugo. Madrid, Diciembre 1996. Informe realizado para el Ente Vasco de la Energía. Inédito. |
Seismic data availability #3 | Cámara, P., 2017. Salt and Strike-Slip Tectonics as Main Drivers in the Structural Evolution of the Basque-Cantabrian Basin, Spain. In Permo-Triassic Salt Provinces of Europe, North Africa and the Atlantic Margins (pp. 371-393). Elsevier. [link] |
Available data (Structure) #1 | Perona, J., Canals, À., Cardellach, E., 2018. Zn-Pb mineralization associated with salt diapirs in the basque-cantabrian Basin, Northern Spain. Geology, geochemistry, and genetic model. Economic Geology, 113, 1133-1159. [link] |
Available data (Structure) #2 | Rat, P., 1988. The Basque-Cantabrian basin between the Iberian and European plates; some facts but still many problems. Revista de la Sociedad Geológica de España, 1, 327–348. [link] |
Available data (Structure) #3 | García-Mondéjar, J., Agirrezabala, L.M., Aramburu, A., Fernández-Mendiola,P.A., Gómez-Pérez, I., López-Horgue, M., Rosales, I., 1996. Aptian-Albian tectonic pattern of the Basque-Cantabrian basin (northern Spain). Geological Journal, 31, 13–45. [link] |
Available data (Structure) #4 | Cámara, P., 2017. Salt and Strike-Slip Tectonics as Main Drivers in the Structural Evolution of the Basque-Cantabrian Basin, Spain. In Permo-Triassic Salt Provinces of Europe, North Africa and the Atlantic Margins (pp. 371-393). Elsevier. [link] |
Available data (Structure) #5 | 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) #6 | 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] |
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 | Nettleton, L.L., 1968. Gravity anomalies over salt diapirs, northern Spain. Geological Society of America Special Papers, 88, 75–82. [link] |
Available data (Gravimetry – Tomography) #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 (Gravimetry – Tomography) #3 | Pinto, V., Casas, A., Rivero, L., Torné, M., 2005. 3D gravity modeling of the Triassic salt diapirs of the Cubeta Alavesa (northern Spain). Tectonophysics, 405, 65-75. [link] |
Available data (Geochemistry) #1 | Iribar, V., Ábalos, B. 2011. The geochemical and isotopic record of evaporite recycling in spas and salterns of the Basque Cantabrian basin, Spain. Applied geochemistry, 26, 1315-1329. [link] |
Available data (Geochemistry) #2 | Perona, J., Canals, À., Cardellach, E., 2018. Zn-Pb mineralization associated with salt diapirs in the basque-cantabrian Basin, Northern Spain. Geology, geochemistry, and genetic model. Economic Geology, 113, 1133-1159. [link] |
Available data (Geochemistry) #3 | 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] |
Available data (Geochemistry) #4 | Reitner, J., 1986. A comparative study of the diagenesis in diapir-influenced reef atolls and a fault block reef platform in the Late Albian of the Vasco-Cantabrian Basin (Northern Spain). In Reef diagenesis (pp. 186-209). Springer, Berlin, Heidelberg. [link] |
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 | n.a. |
IGME Geological Map (MAGNA50) Sheet number | 86-Landaco. [link] / 111-Orduña. [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) | 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 related references #1 | López-Horgue, M.A., Hernández, J.M., 2003. La cuenca terciaria continental del Diapiro de Murguía: la Formación Izarra (Oligoceno superior-Mioceno inferior, Cuenca Vasco-Cantábrica). Geogaceta, 33, 123–126. [link] |
Other related references #2 | Taviani, S., Muñoz, J.A., 2012. Mesozoic rifting in the Basque-Cantabrian basin (Spain): Inherited faults, transversal structures, and stress perturbation. Terra Nova, 24, 70–76. [link] |
Other related references #3 | Sanz, T., Lago, M., Gil, A., Galé, C., Ramajo, J., Ubide, T., Pocoví, A., Tierz, P., Larrea, P., 2013. The Upper Triassic alkaline magmatism in the NW Iberian Chain (Spain). Journal of Iberian Geology, 39, 202-222. [link] |
Other related references #4 | Cámara, P., 2020. Inverted turtle salt anticlines in the eastern basque-cantabrian basin, Spain. Marine and Petroleum Geology, 104358. [link] |
UNIQUE_ID | 13 |
Seismic survey name #1 | ILIHA D-A |
Across structure? #1 | Y |
Seismic profile ID (IGME) #1 | n.a. |
Seismic profile code #1 | n.a. |
Seismic profile name #1 | n.a. |
Seismic survey year #1 | n.a. |
Data repository #1 | SeisDARE Database: https://digital.csic.es/handle/10261/101879 |
Length (km) #1 | 842.09 |
Seismic survey name #2 | 8C4-S82 |
Across structure? #2 | Y |
Seismic profile ID (IGME) #2 | 9806 |
Seismic profile code #2 | 14379 |
Seismic profile name #2 | S82-18 |
Seismic survey year #2 | 1982 |
Data repository #2 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #2 | 10.57 |
Seismic survey name #3 | 7C1-S82 |
Across structure? #3 | N (within 3km) |
Seismic profile ID (IGME) #3 | 9457 |
Seismic profile code #3 | 14030 |
Seismic profile name #3 | S-82-13 |
Seismic survey year #3 | 1982 |
Data repository #3 | SIGEOF Data Catalogue (Section available under request). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #3 | 27.42 |
Seismic survey name #4 | 7C1-S82 |
Across structure? #4 | N (within 3km) |
Seismic profile ID (IGME) #4 | 9453 |
Seismic profile code #4 | 14026 |
Seismic profile name #4 | S-82-20 |
Seismic survey year #4 | 1982 |
Data repository #4 | SIGEOF Data Catalogue (Section available under request). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #4 | 15.76 |
Seismic survey name #5 | 7C1-VA |
Across structure? #5 | N (within 3km) |
Seismic profile ID (IGME) #5 | 9461 |
Seismic profile code #5 | 14034 |
Seismic profile name #5 | VA-3 |
Seismic survey year #5 | 1976 |
Data repository #5 | SIGEOF Data Catalogue (Section available under request). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #5 | 39.45 |
Seismic survey name #6 | 7C1-VA |
Across structure? #6 | N (within 3km) |
Seismic profile ID (IGME) #6 | 9460 |
Seismic profile code #6 | 14033 |
Seismic profile name #6 | VA-4 |
Seismic survey year #6 | 1976 |
Data repository #6 | SIGEOF Data Catalogue (Section available under request). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #6 | 25.70 |
Seismic survey name #7 | 7C-ST-98-98BIS |
Across structure? #7 | N (within 3km) |
Seismic profile ID (IGME) #7 | 12910 |
Seismic profile code #7 | 17628 |
Seismic profile name #7 | 22 |
Seismic survey year #7 | 1961 |
Data repository #7 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #7 | 4.44 |
Seismic survey name #8 | 8C4-S82 |
Across structure? #8 | N (within 3km) |
Seismic profile ID (IGME) #8 | 9806 |
Seismic profile code #8 | 14379 |
Seismic profile name #8 | S82-18 |
Seismic survey year #8 | 1982 |
Data repository #8 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #8 | 10.57 |
Seismic survey name #9 | 7C-ST-98-98BIS |
Across structure? #9 | N (within 3km) |
Seismic profile ID (IGME) #9 | 12909 |
Seismic profile code #9 | 17627 |
Seismic profile name #9 | 23 |
Seismic survey year #9 | 1961 |
Data repository #9 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #9 | 4.25 |
Seismic survey name #10 | 7C-ST-98-98BIS |
Across structure? #10 | N (within 3km) |
Seismic profile ID (IGME) #10 | 12904 |
Seismic profile code #10 | 17622 |
Seismic profile name #10 | 44221 |
Seismic survey year #10 | 1961 |
Data repository #10 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #10 | 5.03 |
Seismic survey name #11 | 7C-ST-98-98BIS |
Across structure? #11 | N (within 3km) |
Seismic profile ID (IGME) #11 | 12907 |
Seismic profile code #11 | 17625 |
Seismic profile name #11 | 24 |
Seismic survey year #11 | 1961 |
Data repository #11 | SIGEOF Data Catalogue (Private access section). ©Instituto Geológico y Minero de España (IGME). https://info.igme.es/SIGEOF/ |
Length (km) #11 | 18.25 |
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Borehole name #1 | PAUL-2 |
Company #1 | EVE |
Traget #1 | BASE METALS |
Across structure? #1 | N (within 5 km) |
Borehole name #2 | PAUL-3 |
Company #2 | EVE |
Traget #2 | BASE METALS |
Across structure? #2 | N (within 5 km) |
Borehole name #3 | MONTELEON-2 (SML-2) (MONT-2) |
Company #3 | EVE |
Traget #3 | BASE METALS |
Across structure? #3 | N (within 5 km) |
Borehole name #4 | PAUL-1 |
Company #4 | EVE |
Traget #4 | BASE METALS |
Across structure? #4 | N (within 5 km) |
Borehole name #5 | PAUL-4 |
Company #5 | EVE |
Traget #5 | BASE METALS |
Across structure? #5 | N (within 5 km) |
Borehole name #6 | GODON-2 |
Company #6 | ADARO |
Traget #6 | BASE METALS |
Across structure? #6 | N (within 5 km) |
Borehole name #7 | MONTELEON-1 (SML-1) (MONT-1) |
Company #7 | EVE |
Traget #7 | BASE METALS |
Across structure? #7 | N (within 5 km) |
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UNIQUE_ID | 13 |
X Centroid (Structure shape) | -3.001357 |
Y Centroid (Structure shape) | -3.001357 |
Xmin (Structure shape) | -3.028163 |
Xmax (Structure shape) | -2.975512 |
Ymin (Structure shape) | 42.964758 |
Ymax (Structure shape) | 43.012839 |
Xmin seismic line #1 | -8.066711 |
Xmax seismic line #1 | -2.606201 |
Ymin seismic line #1 | 37.071289 |
Ymax seismic line #1 | 43.400696 |
Xmin seismic line #2 | -3.002369 |
Xmax seismic line #2 | -2.982918 |
Ymin seismic line #2 | 42.897138 |
Ymax seismic line #2 | 42.991135 |
Xmin seismic line #3 | -3.257925 |
Xmax seismic line #3 | -2.974246 |
Ymin seismic line #3 | 42.925233 |
Ymax seismic line #3 | 43.055700 |
Xmin seismic line #4 | -3.102422 |
Xmax seismic line #4 | -3.027289 |
Ymin seismic line #4 | 42.932881 |
Ymax seismic line #4 | 43.063460 |
Xmin seismic line #5 | -3.056271 |
Xmax seismic line #5 | -2.577961 |
Ymin seismic line #5 | 43.018418 |
Ymax seismic line #5 | 43.034418 |
Xmin seismic line #6 | -3.036125 |
Xmax seismic line #6 | -2.988869 |
Ymin seismic line #6 | 43.008410 |
Ymax seismic line #6 | 43.233257 |
Xmin seismic line #7 | -3.080352 |
Xmax seismic line #7 | -3.035304 |
Ymin seismic line #7 | 43.010094 |
Ymax seismic line #7 | 43.030775 |
Xmin seismic line #8 | -3.002369 |
Xmax seismic line #8 | -2.982918 |
Ymin seismic line #8 | 42.897138 |
Ymax seismic line #8 | 42.991135 |
Xmin seismic line #9 | -3.052930 |
Xmax seismic line #9 | -3.034506 |
Ymin seismic line #9 | 43.010212 |
Ymax seismic line #9 | 43.045684 |
Xmin seismic line #10 | -3.011206 |
Xmax seismic line #10 | -2.987571 |
Ymin seismic line #10 | 43.023129 |
Ymax seismic line #10 | 43.063849 |
Xmin seismic line #11 | -3.199178 |
Xmax seismic line #11 | -3.000430 |
Ymin seismic line #11 | 43.034530 |
Ymax seismic line #11 | 43.078884 |
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Xmax seismic line #14 | |
Ymin seismic line #14 | |
Ymax seismic line #14 | |
Xmin seismic line #15 | |
Xmax seismic line #15 | |
Ymin seismic line #15 | |
Ymax seismic line #15 | |
Xmin seismic line #16 | |
Xmax seismic line #16 | |
Ymin seismic line #16 | |
Ymax seismic line #16 | |
Xmin seismic line #17 | |
Xmax seismic line #17 | |
Ymin seismic line #17 | |
Ymax seismic line #17 | |
Xmin seismic line #18 | |
Xmax seismic line #18 | |
Ymin seismic line #18 | |
Ymax seismic line #18 | |
Xmin seismic line #19 | |
Xmax seismic line #19 | |
Ymin seismic line #19 | |
Ymax seismic line #19 | |
Xmin seismic line #20 | |
Xmax seismic line #20 | |
Ymin seismic line #20 | |
Ymax seismic line #20 | |
Xmin seismic line #21 | |
Xmax seismic line #21 | |
Ymin seismic line #21 | |
Ymax seismic line #21 | |
X borehole #1 | -3.014323 |
Y borehole #1 | 42.970545 |
X borehole #2 | -3.015169 |
Y borehole #2 | 42.970941 |
X borehole #3 | -2.982969 |
Y borehole #3 | 43.007646 |
X borehole #4 | -3.014286 |
Y borehole #4 | 42.970221 |
X borehole #5 | -3.012802 |
Y borehole #5 | 42.970383 |
X borehole #6 | -2.984414 |
Y borehole #6 | 42.920431 |
X borehole #7 | -2.985926 |
Y borehole #7 | 43.009330 |
X borehole #8 | |
Y borehole #8 | |
X borehole #9 | |
Y borehole #9 | |
X borehole #10 | |
Y borehole #10 | |
X borehole #11 | |
Y borehole #11 | |
X borehole #12 | |
Y borehole #12 | |
X borehole #13 | |
Y borehole #13 | |
X borehole #14 | |
Y borehole #14 | |
X borehole #15 | |
Y borehole #15 |