[
AEMET. Agencia Estatal de Meteorologia de Espana. 2024. https://www.aemet.es/es/serviciosclimaticos/datosclimatologicos/valoresclimatologicos.
]Search in Google Scholar
[
Alcorlo P., Garcia-Tiscar., S., Vidal-Abarca M., Suárez-Alonso M.L., Santos-Martin F. 2023. Unravelling Complex Interaction among Coastal Management and Marine Biodiversity: A Case Study in Southern Spain. Sustainability, 15(8): 6544.
]Search in Google Scholar
[
Arce Chamorro C., Vidal Romaní J.R., Grandal d’Anglade A., Sanjurjo Sánchez J. 2022. Aeolization on the Atlantic coast of Galicia (NW Spain) from the end of the last glacial period to the prezent day: chronology, origin and evolution of coastal dunes linked to sea level oscillations. Earth Surface Processes and Landforms, 48(1): 198–214.
]Search in Google Scholar
[
Bardají T., Goy J.L., Zazo C., Hillaire-Marcel C., Dabrio C.J., Cabero A., Ghaleb B., Silva P.G., Lario J. 2009. Sea level and climate changes during OIS 5e in the Western Mediterranean. Geomorphology, 104, 22 – 37.
]Search in Google Scholar
[
Bardají T., Zazo C., Lario J., Goy J.L., Cabero A., Dabrio C.J., Silva P.G. 2011. Las dunas costeras del Presente y Último Interglaciar en Málaga, Almería y Murcia. [in:] Sanjaume E.S., Gracia Prieto F.J. (eds.). Las dunas en Espańa. Sociedad Espańola de Geomorfología, Cadiz: 331–358.
]Search in Google Scholar
[
Bello-Millán F.J., Somoano M., Clavero M., Gomez-Pina G., Losada M.A. 2016. El sistema dunar de Valdevaqueros: evolución histórica y alternativas de gestión. RIBAGUA – Revista Iberoamericana del Agua, 3: 46–55.
]Search in Google Scholar
[
Cailleux A. 1942. Les actions éoliennes périglaciaires en Europe. Mémoires de la Société Géologique de France, 21(1–2), Mémoire 46.
]Search in Google Scholar
[
de Andrés M., Barragán J.M., Sanabria J.G. 2017. Relationships between coastal urbanization and ecosystems in Spain. Cities, 58: 8–17.
]Search in Google Scholar
[
Dulias R. 2023. Aeolian abrasion of the coastal deposits on the Western Crete. Quaestiones Geographicae, 42(3): 161–174.
]Search in Google Scholar
[
Edwards A.C., 2001. Grain size and sorting in modern beach sands. Journal of Coastal Research 17(1): 38–52.
]Search in Google Scholar
[
Fernández J.M. 2003. The Cabo de Gata Volcanic Complex. [in:] Villalobos Megía M. (ed.) Geology of the Arid Zone of Almeria, South East Spain. An educational field guide. State Water Company for the Southern Basin S.A. (ACUSUR): 29‒31.
]Search in Google Scholar
[
Flor-Blanco G., Alcántara-Carrió J., Jackson D.W.T., Flor G., Flores-Soriano C. 2021. Coastal erosion in NW Spain: Recent patterns under extreme storm wave events. Geomorphology, 387: 107767.
]Search in Google Scholar
[
Folk R.L., Ward W.C. 1957. Brazos River bar: A study in the significance of grain size parameters. Journal of Sedimentary Petrology, 27(1): 3–26.
]Search in Google Scholar
[
García-Romero L., Delgado-Fernández I., Hesp P.A., Hernández-Calvento L., Hernández-Cordero A.I., Viera-Pérez M. 2019. Biogeomorphological processes in an arid transgressive dunefield as indicators of human impact by urbanization. Science of the Total Environment, 650: 73–86.
]Search in Google Scholar
[
Goździk J., Mycielska-Dowgiałlo E. 1982. Badania wpływu niektórych procesów geologicznych na przekształcenia powierzchni ziarn kwarcowych. Przegląd Geograficzny, 54(3): 219–241.
]Search in Google Scholar
[
Gómez-Zotano J. 2014. La degradación de dunas litorales en Andalucía: aproximación geohistórica y multiescalar. Investigaciones Geográficas, 62(62): 23–39.
]Search in Google Scholar
[
Gutiérrez-Becker L. 2008. Caracterización de los Sistemas Dunares Costeros del NW Ibérico y su Evolución Durante el Cuaternario. Ph.D. Thesis, Universidad de Coruña, A Coruña, Spain. https://dialnet.unirioja.es/servlet/tesis?codigo=45245.
]Search in Google Scholar
[
Ibarra-Marinas D., Belmonte-Serrato F., Ballesteros-Pelegrín G.A., García-Marín R. 2021. Evolution of the Beaches in the Regional Park of Salinas and Arenales of San Pedro del Pinatar (Southeast of Spain) (1899–2019). ISPRS International Journal of Geo-Information, 10: 200.
]Search in Google Scholar
[
Kalińska E., Nartišs M. 2014. Pleistocene and Holocene aeolian sediments of different location and geological history: A new insight from rounding and frosting of quartz grains. Quaternary International, 328–329: 311–322.
]Search in Google Scholar
[
Krumbein W.C. 1941. Measurement and geological significance of shape and rounded of sedimentary particles. Journal of Sedimentary Research, 11(2): 64–72.
]Search in Google Scholar
[
Labus M. 2009. Geologia Almerii – półpustynnej krainy Hiszpanii. Geoturystyka,1–2 (16–17): 33–40.
]Search in Google Scholar
[
Lhenaff R. 1977. Recherches geomorfologiques sur les Cordilleras Betiques centro-occidentalres (Espagne). Tesis Doctoral. Université Paris-Sorbone, Paris (unpublished).
]Search in Google Scholar
[
Lorenc M.W., Janusz M. 2019. Geotouristic aspects of the Geopark Cabo de Gata-Níjar (Andalusia, Spain). Geotourism, 1‒2 (56‒57): 3–10.
]Search in Google Scholar
[
Málvarez G., Lario J., Zazo C., Goy J.L., Luque L. 1998. Geomorfología litoral y cárstica en le Penibética malagueńa. [in:] Gómez A., Salvador F., Schulte L., Navarro García A. (eds.) Itinerarios geomorfológicos por Andalucía Oriental. Publicaciones de la Universidad de Barcelona, 9–28.
]Search in Google Scholar
[
Marrero-Rodríguez N., Dóniz-Páez J. 2022. Coastal Dunes Geomorphosites to Develop the Geotourism in a Volcanic Subtropical Oceanic Island, Tenerife, Spain. Land, 11: 426.
]Search in Google Scholar
[
Martorell L.G., Rodríguez-Rodríguez D., García Millán V.E. 2023. Long-term assessment of the effectiveness of coastal protection regulations in conserving natural habitats in Spain. Ocean & Coastal Management, 239: 106601.
]Search in Google Scholar
[
Mir-Gual M., Pons G.X., Delgado-Fernández I., Smyth T.A.G. 2023. Field-Measurement of Surface Wind and Sediment Transport Patterns in a Coastal Dune Environment, Case Study of Cala Tirant (Menorca, Spain). Journal of Marine Science and Engineering. 2023; 11(12): 2361.
]Search in Google Scholar
[
Molina R., Manno G., Lo Re C., Anfuso G. 2020. Dune Systems’ Characterization and Evolution in the Andalusia Mediterranean Coast (Spain). Water, 12(8): 2094.
]Search in Google Scholar
[
Molina-Gil R., Manno G., Lo Re C., Anfuso G. 2022. Caracterización y evolución del sistema playa-duna de la costa mediterránea de Andalucía (España): influencia de procesos naturales y actuaciones antrópicas. Cuadernos De Investigación Geográfica, 48 (2): 325–345.
]Search in Google Scholar
[
Molner J.V., Pérez-González R., Soria J.M., 2024. Rehabilitation of Urban Beaches on the Mediterranean Coast in Valencia (Spain) Observed by Remote Sensing. Urban Science, 8(1): 3.
]Search in Google Scholar
[
Muñoz-Perez J.J., Navarro M., Román-Sierra J., Tejedor B., Rodriguez I., Gomez-Pina G. 2009. Long-term evolution of a transgressive migrating dune using reconstruction of the EOF metod. Geomorphology, 112, 1–2: 167–177.
]Search in Google Scholar
[
Mycielska-Dowgiałło E. 1988. Cechy urzeźbienia ziarn kwarcu z plaż różnych regionów klimatycznych świata. [in:] Mycielska–Dowgiałło E. (ed.) Geneza osadów i gleb w świetle badań w mikroskopie elektronowym. Wydawnictwa Uniwersytetu Warszawskiego, Warszawa: 27–33.
]Search in Google Scholar
[
Mycielska–Dowgiałło E., Woronko B. 1998. Analiza obtoczenia i zmatowienia powierzchni ziarn kwarcowych frakcji piaszczystej i jej wartość interpretacyjna. Przegląd Geologiczny, 46: 1275–1281.
]Search in Google Scholar
[
Navarro M., Muñoz-Pérez J.J., Román-Sierra J., Tsoar H., Rodríguez I., Gómez-Pina G. 2011. Assessment of highly active dune mobility in the medium, short and very short term. Geomorphology, 129: 14–28.
]Search in Google Scholar
[
Navarro-Pons M., Muñoz-Pérez J.J., Román-Sierra J., García S. 2016. Evidence of coastal dune mobility increases over the last half century in response to historical human intervention. Scientia Marina, 80(2): 261–272.
]Search in Google Scholar
[
Pintó J., Garcia-Lozano C. 2016. Recent historical transformation and current situation of the dune landscape in Catalonia. Laboratory of Landscape Analysis and Management (LAGP). Universitat de Girona, Recerca i Territori, 8. Museu de la Mediterr{nia.
]Search in Google Scholar
[
Powers M.C. 1953. A new roundness scale for sedimentary particles. Journal of Sedimentary Petrology, 23(2): 117–119.
]Search in Google Scholar
[
Reineck H.E., Singh I.B. 1975. Depositional sedimentary environments (with reference to terrigenous). Springer Verlag, Berlin.
]Search in Google Scholar
[
Rigol J.P., Chica-Olmo M. 1998. Merging remote-sensing images for geological-environmental mapping: application to the Cabo de Gata-Níjar Natural Park, Spain. Environmental Geology, 34: 194–202.
]Search in Google Scholar
[
Rodríguez-Ramírez A., Rodríguez-Vidal J., Cáceres L., Clemente L., Belluomini G., Manfra I., Improta S., de Andrés J.R. 1996. Recent coastal evolution of the Doñana national park (SW Spain). Quaternary Science Review, 15: 803–809.
]Search in Google Scholar
[
Rodríguez-Santalla I., Sánchez García M.J., Montoya Montes I., Gómez Ortiz D., Martín Crespo T., Serra Raventos J. 2009. Internal structure of the aeolian sand dunes of El Fangar spit, Ebro Delta (Tarragona, Spain). Geomorphology, 104, 3–4: 238–252.
]Search in Google Scholar
[
Rodríguez-Vidal J., Bardají T., Zazo C., Goy J.L., Borja F., Dabrio C.J., Lario J., Cáceres L.M., Ruiz F., Abad M. 2014. Coastal Dunes and Marshes in Don˜ana National Park. F. [In:] Gutiérrez F., Gutiérrez M. (eds.) Landscapes and Landforms of Spain. World Geomorphological Landscapes. Springer Science+Business Media, Dordrecht: 229–238.
]Search in Google Scholar
[
Román-Sierra J., Navarro-Pons M., Muñoz-Perez J.J., Gomez-Pina G., Fages Antiñolo L. 2004. Ecosistemas dunares en la provincia de Cádiz: Estabilizaciones en Bolonia y Valdevaqueros, T.M. Tarifa. Revista de Obras Públicas, 151, 3450: 65–76.
]Search in Google Scholar
[
Sanjaume E.S. 1988. The dunes of Saler, Valencia, Spain. Journal of Coastal Research, Special Issue, 3 (Dune/beach interaction): 63–69.
]Search in Google Scholar
[
Sanjaume E.S., Gracia Prieto F.J. (eds.). 2011. Las dunas en Espańa. Sociedad Espańola de Geomorfología, Cadiz.
]Search in Google Scholar
[
Schwartz M.L. (ed.) 1982. The encyklopedia of beaches and coastal environments. Hutchinson Ross Publishing Company, Stroudsburg, Pensylwania.
]Search in Google Scholar
[
Setlow L.W. 1978. Age determination of reddened coastal dunes in northwest Florida, US, by use of scanning microscopy. [in:] Whalley W.B. (ed.) Scanning electron microscopy in the study of sediments. Norwich, England. Geoabstracts: 283–306.
]Search in Google Scholar
[
Toledo I., Pagán J.I., Aragonés L., Crespo M.B. 2024a. Doing nothing is no solution: Coastal erosion management in Guardamar del Segura (Spain). Marine Policy, 169: 106340.
]Search in Google Scholar
[
Toledo I., Pagán J.I., López I., Bañón L., Aragonés L. 2024b. Analysis of the factors affecting erosion in the beach-dune system of Guardamar del Segura, Spain. Catena, 243: 108212.
]Search in Google Scholar
[
Tylkowski J., Samołyk M. 2011. Zmienność przestrzenna powierzchniowych osadów plażowych brzegu morskiego wyspy Wolin. Badania fizjograficzne nad Polską Zachodnią. Seria A – Geografia Fizyczna 62: 151–163.
]Search in Google Scholar
[
Vera J.A. 2004. Geología de la Cordillera Bética. [in:] Alfaro P., Andreu J.M., Estévez A., Tent-Manclús J.E., Yébenes A. (eds) Geología de Alicante, Alicante: 17–36.
]Search in Google Scholar
[
Winkenmolen A.M. 1971. Rollability, a functional shape property of sand grains. Journal of Sedimentary Petrology, 41, 3: 703–714.
]Search in Google Scholar
[
Woronko B. 2012. Zapis procesów eolicznych w osadach piaszczystych plejstocenu na wybranych obszarach Polski środkowej i północno–wschodniej. Wydział Geografii i Studiów Regionalnych, Uniwersytet Warszawski, Warszawa.
]Search in Google Scholar
[
Zazo C., Goy J.L., Dabrio C.J., Lario L., González-Delgado J.A., Bardají Azcárete T., Hillaire-Marcel C., Cabero A., Galheb B., Borja Barrrera F., Silva P.G., Roquero E., Soler V. 2013. Retracing the Quaternary history of sea-level changes in the Spanish Mediterranean–Atlantic coasts: Geomorphological and sedimentological approach. Geomorphology, 196: 36–49.
]Search in Google Scholar
[
Žilinskas G., Jarmalavičius D., Pupienis D. 2018. The influence of natural and anthropogenic factors on grain size distribution along the southeastern Baltic spits. Geological Quarterly 62(2): 375–384.
]Search in Google Scholar