Ground-Penetrating Radar Study of Progradational Units in Holocene Coastal Plains: Carchuna Beach (SE Spain)
Abstract
:1. Introduction
2. Material and Methods
3. Results and Discussion
4. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Hine, A.C. Mechanism of development and resulting beach growth along a barrier spit complex. Sedimentology 1979, 26, 333–352. [Google Scholar] [CrossRef]
- Carter RW, G. The morphodynamics of beach-ridge formation: Magilligan, northern Ireland. Mar. Geol. 1986, 73, 191–214. [Google Scholar] [CrossRef]
- Tamura, T. Beach ridges and prograded beach deposits as palaeoenvironment records. Earth-Sci. Rev. 2012, 114, 279–297. [Google Scholar] [CrossRef]
- Gouramanis, C.; Switzer, A.D.; Bristow, C.S.; Pham, D.T.; Mauz, B.; Hoang, Q.D.; Lam, D.D.; Lee, Y.S.; Soria, J.L.A.; Pile, J.; et al. Holocene evolution of the Chan May coastal embayment, central Vietnam: Changing coastal dynamics associated with decreasing rates of progradation possibly forced by mid- to late-Holocene sea-level changes. Geomorphology 2020. [Google Scholar] [CrossRef]
- Zazo, C.; Goy, J.L.; Lario, J.; Silva, P.G. Littoral zone and rapid climatic changes during the last 20,000 years. The Iberia study case. Zeitschrift für Geomorphologie 1996, 102, 119–134. [Google Scholar]
- Zazo, C.; Dabrio, C.J.; Goy, J.L.; Lario, J.; Cabero, A.; Silva, P.G.; Bardají, T.; Mercier, N.; Borja, F.; Roquero, E. The coastal archives of the last 15 ka in the Atlantic–Mediterranean Spanish linkage area: Sea level and climatic changes. Quat. Int. 2008, 181, 72–87. [Google Scholar] [CrossRef] [Green Version]
- Rodríguez-Ramírez, A.; Pérez-Asensio, J.N.; Santos, A.; Jiménez-Moreno, G.; Villarías-Robles, J.J.; Mayoral, E.; Celestino-Pérez, S.; Cerrillo-Cuenca, E.; López-Sáez, J.A.; Ángel León, A.; et al. Atlantic extreme wave events during the last four millennia in the Guadalquivir estuary, SW Spain. Quat. Res. 2015, 83, 24–40. [Google Scholar] [CrossRef]
- Zazo, C.; Dabrio, C.J.; Goy, J.L.; Bardají, T.; Ghaleb, B.; Lario, J.; Hoyos, M.; Hillaire-Marcel, C.I.; Sierro, F.; Flores, J.A.; et al. Cambios en la dinámica litoral y nivel del mar durante el Holoceno en el Sur de Iberia y Canarias Orientales. Geogaceta 1998, 20, 1679–1782. [Google Scholar]
- Goy, J.L.; Zazo, C.; Dabrio, C.J. A beach-ridge progradation complex reflecting periodical sea-level and climate variability during the Holocene (Gulf of Almería, Western Mediterranean). Geomorphology 2003, 50, 251–268. [Google Scholar] [CrossRef] [Green Version]
- Hernández-Molina, F.J.; Fernández-Salas, L.M.; Lobo, F.J.; Somoza, L.; Díaz del Río, V.; Alveirinho Dias, J.M. The infralittoral prograding wedge: A new large-scale progradational sedimentary body in shallowmarine environments. Geo-Mar. Lett. 2000, 20, 109–117. [Google Scholar] [CrossRef]
- Lobo, F.J.; Fernández-Salas, L.M.; Hernández-Molina, F.J.; González, R.; Dias, J.M.A.; Díaz del Río, V.; Somoza, L. Holocene highstand deposits in the Gulf of Cadiz, SW Iberian Peninsula: A high-resolution record of environmental changes. Mar. Geol. 2005, 219, 119–141. [Google Scholar] [CrossRef]
- Fernández-Salas, L.M.; Dabrio, C.; Goy, J.L.; Del Río, V.D.; Zazo, C.; Lobo, F.J.; Sanz, J.L.; Lario, J. Land–sea correlation between Late Holocene coastal and infralittoral deposits in the SE Iberian Peninsula (Western Mediterranean). Geomorphology 2009, 104, 4–11. [Google Scholar] [CrossRef] [Green Version]
- Lario, J.; Zazo, C.; Dabrio, C.J.; Somoza, L.; Goy, J.L.; Bardají, T.; Silva, P.G. Record of recent holocene sediment input on spit bar and deltas of South Spain. In Holocene Cycles: Climate, Sea Levels, and Sedimentation; Core, E., Ed.; 1. Coastal Researh: Fenwick Island, DE, USA, 1995; pp. 241–245. [Google Scholar]
- Lario, J.; Zazo, C.; Goy, J.L. Fases de progradación y evolución morfosedimentaria de la flecha litoral de Calahonda (Granada) durante el Holoceno. Estud. Geol. 1999, 55, 247–250. [Google Scholar] [CrossRef]
- Ortega-Sánchez, M.; Losada, M.A.; Baquerizo, A. On the development of large-scale cuspate features on a semi-reflective beach: Carchuna beach, Southern Spain. Mar. Geol. 2002, 198, 209–223. [Google Scholar] [CrossRef]
- Ortega-Sánchez, M.; Lobo, F.J.; López-Ruiz, A.; Losada, M.A.; Fernández-Salas, L.M. The influence of shelf-indenting canyons and infralittoral prograding wedges on coastal morphology: The Carchuna system in Southern Spain. Mar.Geol. 2014, 347, 107–122. [Google Scholar] [CrossRef]
- Aldaya, F. Mapa geológico y memoria explicativa de la hoja n° 20-44 (Albuñol) del mapa Geológico de España, escala 1:50,000; Instituto Geológico y Minero de España: Madrid, Spain, 1981. [Google Scholar]
- Nordstrom, K.F.; Psuty, N.P.; Carter RW, G. (Eds.) Coastal Dunes: Form and Processes; John Wiley: Chichester, UK, 1990; p. 392. [Google Scholar]
- Bristow, C.S.; Chroston, P.N.; Bailey, S.D. The structure and development of foredunes on a locally prograding coast: Insights from ground-penetrating radar surveys, Norfolk, UK. Sedimentology 2000, 47, 923–944. [Google Scholar] [CrossRef]
- Neal, A. Ground-penetrating radar and its use in sedimentology: Principles, problems and progress. Earth-Sci. Rev. 2004, 66, 261–330. [Google Scholar] [CrossRef]
- Gómez-Ortiz, D.; Martín-Crespo, T.; Rodríguez, I.; Sánchez, M.J.; Montoya, I. The internal structure of modern barchan dunes of the Ebro River Delta (Spain) from ground penetrating radar. J. Appl. Geophys. 2009, 68, 170–179. [Google Scholar] [CrossRef]
- Clemmensen, L.B.; Nielsen, L. Internal architecture of a raised beach ridge system (Anholt, Denmark) resolved by ground-penetrating radar investigations. Sediment. Geol. 2010, 223, 281–290. [Google Scholar] [CrossRef]
- Tamura, T.; Kodama, Y.; Bateman, M.D.; Saitoh, Y.; Watanabe, K.; Matsumoto, D.; Yamaguchi, N. Coastal barrier dune construction during sea-level highstands in MIS 3 and 5a on Tottori coast-line, Japan. Palaeogeogr. Palaeoclimatol. Palaeoecol. 2011, 308, 492–501. [Google Scholar] [CrossRef]
- Montesa, A.; Bujaleskya, G.G.; Paredes, J.M. Geomorphology and internal architecture of Holocene sandy-gravel beach ridge plain and barrier spits at Río Chico area, Tierra del Fuego, Argentina. J. S. Am. Earth Sci. 2018, 18, 172–183. [Google Scholar] [CrossRef]
- Berton, F.; Guedes CC, F.; Vesely, F.F.; Souza, M.C.; Angulo, R.J.; Rosa, M.L.; Bardoza, E.G. Quaternary coastal plains as reservoir analogs: Wave-dominated sand-body heterogeneity from outcrop and ground-penetrating radar, central Santos Basin, southeast Brazil. Sediment. Geol. 2019, 379, 97–113. [Google Scholar] [CrossRef]
- Davis, J.L.; Annan, A.P. Ground-penetrating radar for high-resolution mapping of soil and rock stratigraphy. Geophys. Prospect. 1989, 37, 531–551. [Google Scholar] [CrossRef]
- Annan, A.P. Ground Penetrating Radar: Principles, Procedures & Applications; Sensors & Software Incorporated: Mississauga, ON, Canada, 2003; p. 278. [Google Scholar]
- Neal, A.; Richards, J.; Pye, K. Sedimentology of coarse-clastic beach-ridge deposits, Essex, southeast England. Sediment. Geol. 2003, 162, 167–198. [Google Scholar] [CrossRef]
- Girardi, J.D.; Davis, D.M. Parabolic dune reactivation and migration at Napeague, NY, USA: Insights from aerial and GPR imagery. Geomorphology 2010, 114, 530–541. [Google Scholar] [CrossRef]
- Muller, A.H. GPR study of pore water content and salinity in sand. Geophys. Prospect. 2001, 48, 63–85. [Google Scholar]
- Baumann, J.; Dujardin, J.R.; Duringer, P.h.; Robin, N.; Schuster, M.; Bano, M. Internal Architecture of Foredunes and their Dynamics Resolved by GPR (Regneville Inlet, Normandy, France); EGU: Vienne, Austria, 2014; Volume 16. [Google Scholar]
- Jalut, G.; Amat, A.E.; Bonnet, L.; Gauguelin, T.; Fontugne, M. Holocene climatic changes in the Western Mediterranean, from southeast France to south-east Spain. Palaeogeogr. Palaeoclimatol. Palaecol. 2000, 160, 255–290. [Google Scholar] [CrossRef]
- Dabrio, C.J. Sedimentary structures generated on the foreshore by migrating ridge and runnel systems on microtidal and mesotidal coasts on Spain. Sediment. Geol. 1982, 32, 141–151. [Google Scholar] [CrossRef] [Green Version]
- Best, J.L.; Ashworth, P.J.; Bristow, C.S.; Roden, J. Three dimensional sedimentary architecture of a large, mid-channel sand braid bar, Jamuna River, Bangladesh. J. Sediment. Res. 2003, 73, 516–530. [Google Scholar] [CrossRef]
- Zazo, C. Cambio climático y nivel del mar: La península ibérica en el contexto global. Cuaternario y Geomorfología 2006, 20, 115–130. [Google Scholar]
- Pedersen, K.; Clemmensen, L.B. Unveiling past aeolian landscapes: A ground-penetrating radar survey of a Holocene coastal dunefield system, Thy, Denmark. Sediment. Geol. 2005, 177, 57–86. [Google Scholar] [CrossRef]
- Switzer, A.D.; Bristow, C.h.S.; Jones, B.G. Investigation of large-scale washover of a small barrier system on the southeast Australian coast using ground penetrating radar. Sediment. Geol. 2006, 183, 145–156. [Google Scholar] [CrossRef] [Green Version]
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Rey, J.; Martínez, J.; Hidalgo, M.C.; Mendoza, R.; Campos, M.J. Ground-Penetrating Radar Study of Progradational Units in Holocene Coastal Plains: Carchuna Beach (SE Spain). Geosciences 2020, 10, 277. https://doi.org/10.3390/geosciences10070277
Rey J, Martínez J, Hidalgo MC, Mendoza R, Campos MJ. Ground-Penetrating Radar Study of Progradational Units in Holocene Coastal Plains: Carchuna Beach (SE Spain). Geosciences. 2020; 10(7):277. https://doi.org/10.3390/geosciences10070277
Chicago/Turabian StyleRey, Javier, Julián Martínez, Mᵃ Carmen Hidalgo, Rosendo Mendoza, and Mᵃ José Campos. 2020. "Ground-Penetrating Radar Study of Progradational Units in Holocene Coastal Plains: Carchuna Beach (SE Spain)" Geosciences 10, no. 7: 277. https://doi.org/10.3390/geosciences10070277
APA StyleRey, J., Martínez, J., Hidalgo, M. C., Mendoza, R., & Campos, M. J. (2020). Ground-Penetrating Radar Study of Progradational Units in Holocene Coastal Plains: Carchuna Beach (SE Spain). Geosciences, 10(7), 277. https://doi.org/10.3390/geosciences10070277