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The Application of Photogrammetric and Topographic Techniques to Investigate Submerged Caves: A Case Study of Georeferenced Point Installation at the Font of Ses Aiguades Cave (Alcúdia, Mallorca)

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Abstract

In recent decades geoarchaeological techniques have increasingly been used to document archaeological remains in terrestrial and underwater sites. However, the archaeological record in submerged caves lacks systematic documentation techniques, due to difficulties of the environment and time limitations. These methodological constraints may result in incomplete documentation of an archaeological site and its artifacts. In the present work, we aim to combine geoarchaeological techniques, photogrammetry, topography, and manual surveying to geolocate archaeological remains dated to the Roman period of Mallorca (30 BCE [Before Common Era] and 70 Common Era (CE), in one of the most important submerged sites in Europe, the Font of Ses Aiguades cave in Alcúdia (Mallorca). An innovative methodological protocol based on non-intrusive surveying was applied to improve the historical, topographical, and archaeological knowledge of the cave. Here we propose a fast, rigorous, and economic documentation protocol for the generation of a georeferenced database of submerged archaeological remains. We also demonstrate the superior cost/benefit balance of generating a georeferenced photogrammetric three-dimensional model of a site versus manually calculating the geopositions of underwater archaeological artifacts. This study also corroborates the efficacy and accuracy of photogrammetry versus manual measurement.

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Fig. 1

Adapted from Colom and Járrega 2020

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References

  • Abdelaziz M, Elsayed M (2019) Underwater photogrammetry digital surface model (DSM) of the submerged site of the ancient lighthouse near Qaitbay fort in Alexandria Egypt. Int Arch Photogr Remote Sensing Spatial Inform Sci 17(42):1–8

    Google Scholar 

  • Arroyo-Cabrales et al (2015) Underwater archaeology and prehistory: the case of the cenotes in Mexico. World Herit Heads 5:54

    Google Scholar 

  • Bahn P, Renfrew C (2008) Arqueología. Conceptos clave. Ediciones AKAL

  • Balletti C et al (2015) Photogrammetry in maritime and underwater archaeology: two marble wrecks from Sicily. Opt Arts Archit Archaeol V 9527:95270M. https://doi.org/10.1117/12.2184802

    Article  Google Scholar 

  • Barba-Meinecke H, Chávez AP, León GQ (2022) El Patrimonio cultural subacuático en la región de la Península de Yucatán México. Revista Contacto 1(3):258–292

    Google Scholar 

  • Barba-Meinecke H (2020) Proyecto de salvamento arqueológico U Lu’umil Maaya Wiiniko’ob: Un análisis del sureste mesoamericano. Proyecto marco de salvamento arqueológico “Tren Maya” estados de Chiapas, Tabasco, Campeche, Yucatán y Quintana Roo. Informe de Actividades Arqueología Subacuática de la Coordenación Nacional de Arqueología. Instituto Nacional de Antropologia e Historia (INAH): 53

  • Bitelli G et al (2017) Historical photogrammetry and terrestrial laser scanning for the 3D virtual reconstruction of destroyed structures: a case study in Italy. Int Arch Photogramm Remote Sens Spat Inf Sci 42:113–119

    Article  Google Scholar 

  • Bowens A (2009) Underwater archaeology: the NAS guide to principles and practice, Second Edition, https://doi.org/10.1002/9781444302875

  • Campbell PB (2017) An introduction to archaeology in underwater caves. In: Campbell PB (ed) The archaeology in underwater caves. The Highfield Press, Southampton, pp 5–25

    Google Scholar 

  • Campbell P B (2018) Future directions in underwater cave research. Archaeol Underw Caves-United Kingdom, 287Y293

  • Carandini A (1997) Historias en la tierra: manual de excavación arqueológica. Crítica, Barcelona

    Google Scholar 

  • Chase ASZ, Chase DZ, Chase AF (2017) LiDAR for archaeological research and the study of historical landscapes. In: Geotechnologies and the environment, pp 89–100. https://doi.org/10.1007/978-3-319-50518-3_4

  • Chibunichev AG et al (2018) Photogrammetry for archaeology: collecting pieces together. Int Arch Photogramm Remote Sens Spat Inf Sci 42:235–240

    Article  Google Scholar 

  • Colom E, Járrega R (2020) Un excepcional conjunt d’àmfores laietanes trobades a la Font de Ses Aiguades (Alcúdia,Mallorca). Estudis sobre ceràmica i arqueologia de l’arquitectura. Homenatge al Dr. Alberto López Mullor. Barcelona., pp. 253–262

  • Colom E, Járrega R (2018) Un extraordinario e inédito caso de ánfora reparada. La Dressel 2–3 de la Font de ses Aiguades (Mallorca, Illes Balears). Boletín Ex Oicina Hispana 9:19–21

    Google Scholar 

  • Davila F, Camacho E (2012) Georreferenciación de documentos cartográficos para la gestión de Archivos y Cartotecas. “Propuesta Metodológica”. http://www.ign.es/web/resources/docs/IGNCnig/CTC-Ibercarto-V-Georreferenciacion.pdf

  • Domindo I, Burke H, Smith C (2007) Manual de Campo del Arqueólogo. Ariel, Barcelona

    Google Scholar 

  • Domínguez M, Fernández Matallana F, Casaban Banaclocha JL (2013) Métodos de documentación arqueológica aplicados en arqueología subacuática: el modelo fotogramétrico y el fotomosaico del pecio fenicio Mazarrón-2 (Puerto de Mazarrón, Murcia). SAGVNTVM. Papeles Del Laboratorio De Arqueología De Valencia 44:99–109. https://doi.org/10.7203/sagvntvm.44.1683

    Article  Google Scholar 

  • Drap P et al (2013) Underwater photogrammetry for archaeology. What will be the next step? Int J Herit Digit Era 2(3):375–394. https://doi.org/10.1260/2047-4970.2.3.375

    Article  Google Scholar 

  • Fraser CS, Edmundson KL (2000) Design and implementation of a computational processing system for off-line digital close-range photogrammetry. ISPRS J Photogramm Remote Sens 55(2):94–104

    Article  Google Scholar 

  • Fumás M (2021) El Proyecto IASCM (Investigación Arqueológica Subacuática en las Cuevas de Mallorca). Una investigación multidisciplinar aplicada al campo de la arqueología subacuática prospectiva en cavidades kársticas sumergidas. Iberae Num 6:8–13

    Google Scholar 

  • Fumás M (2022a) Métodos y técnicas de prospección topográfica aplicada a la arqueología en cavidades cársticas sumergidas con visibilidad cero. El Proyecto Falconera Revista Atlántica-Mediterránea 24:61–86

    Google Scholar 

  • Fumás M (2022b) Métodos y técnicas de prospección topográfica aplicada a la arqueología subacuática en cavidades sumergidas : el estudio arqueo métrico de la Cueva del Sistema Sa Gleda – Camp des Pou ( Manacor -Mallorca- ). SPAL

  • Fumás M J (2023) Métodos y técnicas de prospección arqueológica en cavidades sumergidas. University of Cádiz

  • García D (2014) Análisis espacial de evidencia arqueológica sumergida: cenote Holtún de Chichén Itzá. Universidad Autónoma de Yucatan

  • Giaime M et al (2017) In search of Pollentia’s southern harbour: Geoarchaeological evidence from the Bay of Alcúdia (Mallorca, Spain). Palaeogeogr Palaeoclimatol Palaeoecol 466:184–201. https://doi.org/10.1016/j.palaeo.2016.11.023

    Article  Google Scholar 

  • Gómez S (2018) The sacred Island of Venus Marina an ancient sacred reference for navigation in the Bay of Cádiz. Revista Atlántica-Mediterránea 20(2018):1–227

    Google Scholar 

  • Gràcia F et al (2001) Notícia Preliminar del Jaciment Arqueològic de la Font de Ses Aiguades (Alcúdia, Mallorca). Endins Publicació D’espeleologia 24:59–74

    Google Scholar 

  • Gràcia F (2015) Les cavitats Subaquàtiques de les Zones Costaneres del Llevant i Migjorn de Mallorca, TDX. Dissertation, Universitat de les Illes Balears. http://hdl.handle.net/10803/382836

  • Green J, Gainsford M (2003) Evaluation of underwater surveying techniques. Int J Naut Archaeol. https://doi.org/10.1016/j.ijna.2003.08.007

    Article  Google Scholar 

  • Hodges R (2001) Review of the corrupting sea: a study of mediterranean history, by Peregrine Horden, Nicholas Purcell. Int Hist Rev 23(2):377–379. http://www.jstor.org/stable/40108680

    Article  Google Scholar 

  • Huber F (2009) Investigaciones Arqueológicas Subacuáticas En Cenotes y Sistemas De Cuevas Inundadas De Yucatán : Un Proyecto De Cooperación Germano-Mexicano - Campaña 2009:22–28

    Google Scholar 

  • Huber F (2014) Tauchgang in die Totenwelt : prospektions- und Dokumentationsmethoden Tauchgang in die Totenwelt. Mar pp. 366–393

  • Kister S (2017) MNEMO User guide v1.6, pp. 1–42

  • León C (2003) Metodología de la arqueología subacuática. Monte Buciero 9:109–125

    Google Scholar 

  • Maarleveld T, Guérin U, Egger B (2001) Manual para actividades dirigidas al Patrimonio Cultural Subacuático: directrices para el Anexo de la Convención de la UNESCO de 2001. UNESCO

  • Maarleveld T, Guérin U, Egger B (2013) Manual para actividades dirigidas al Patrimonio Cultural Subacuático. UNESCO

  • Marlasca R, López J (2014) Aprovisionamiento de agua y culto en la prehistoria pitiusa. Treballs del Museu Arqueològic d’Eivissa i Formentera pp. 397–411

  • McCarthy J, Benjamin J (2014) Multi-image photogrammetry for underwater archaeological site recording: an accessible, diver-based approach. J Marit Archaeol 9(1):95–114

    Article  Google Scholar 

  • Ministerio de Cultura (2009) Libro Verde del Plan Nacional de Protección del Patrimonio Cultural Subacuático Español. Subdirección General de Publicaciones, Información y Documentación. España, Secretaría General Técnica

    Google Scholar 

  • Molina De Dios R (1995) Líneas férreas industriales de las Baleares. 150 años de Ferrocarril en España. I Congreso de Historia Ferroviaria pp. 1–18

  • Moya J, Muñoz F J (2017) Fotogrametría de restos arqueológicos subacuáticos. El Modelo del Pecio Bou Ferrer. Actas de las II Jornadas de Museos y Colecciones Museográficas Permanentes de la Comunidad Valenciana. Nuevas tecnologías aplicadas a la gestión turística del patrimonio arqueológico

  • Moyes H, Montgomery S (2016) Mapping ritual landscapes using Lidar. Adv Archaeol Pract 4(3):249–267. https://doi.org/10.7183/2326-3768.4.3.249

    Article  Google Scholar 

  • Munar S, Sastre M A (2010) El portus de Pollentia. Resultats preliminars de la intervenció arqueològica al solar del carrer Corall, cantonada amb carrer Maristany (Port d’Alcúdia). VI Jornades d’Estudis Locals d’Alcúdia pp. 31–46

  • Navarro J M (2020) Resolución gráfica de explanaciones horizontales en el sistema de planos acotados. Universitat Poliècnica de València

  • Nocerino E et al (2018) Multi-camera system calibration of a low-cost remotely operated vehicle for underwater cave exploration. Int Arch Photogramm Remote Sens Spatial Inform Sci ISPRS Arch 42(1):329–337. https://doi.org/10.5194/isprs-archives-XLII-1-329-2018

    Article  Google Scholar 

  • Ogloblin I, Galili E, Shahack-Gross R (2021) Locating submerged prehistoric settlements: a new underwater survey method using water-jet coring and micro-geoarchaeological techniques. J Archaeol Sci 135:105480. https://doi.org/10.1016/j.jas.2021.105480

    Article  Google Scholar 

  • Pachas R (2009) El levantamiento topográfico: Uso del GPS y estación total. Academia 8(16):29–45. Disponible en: http://www.saber.ula.ve/bitstream/123456789/30397/1/articulo3.pdf

  • Paper (2009) Libro Verde del Plan Nacional de Protección del Patrimonio Cultural Subacuático Español. Secretaría General Técnica. Subdirección General de Publicaciones, Información y Documentación. Ministerio de Cultura. España

  • Quirós E (2014) Introducción a la Fotogrametría y Cartografía aplicadas a la Ingeniería Civil. Universida

  • Ramis D, Santandreu G (2011) Arqueologia de les cavernes de les Illes Balears. Monografies De La Societat D’historia Natural De Les Balears 17(August):317–332

    Google Scholar 

  • Ramis D et al (2002) The chronology of the first settlement of the Balearic Islands. J Mediterr Archaeol 15(1):3–24. https://doi.org/10.1558/jmea.v15i1.3

    Article  Google Scholar 

  • Renfrew C, Bahn P (1993) Arqueología: Teorías, métodos y práctica (Vol. I), Madrid: Ediciones Akal. Recuperado el p 21

  • Rissolo D et al (2015) Novel application of 3D documentation techniques at a submerged Late Pleistocene cave site in Quintana Roo, Mexico. 2015 Digital Heritage pp. 181–182. https://doi.org/10.1109/DigitalHeritage.2015.7413868

  • Shahack-Gross R (2017) Archaeological formation theory and geoarchaeology: state-of-the-art in 2016. J Archaeol Sci 79:36–43

    Article  Google Scholar 

  • Vallicrosa G et al (2020) Sparus II AUV as a sensor suite for underwater archaeology: falconera cave experiments. In: 2020 IEEE/OES autonomous underwater vehicles symposium, AUV 2020:0–1. https://doi.org/10.1109/AUV50043.2020.9267935

  • Yamafune K (2016) Efficient and effective in situ Heritage management: using 3D photogrammetric models to document and assess a site's condition. https://doi.org/10.13140/RG.2.1.4529.8324

  • Zhukovsky MO, Kuznetsov VD, Olkhovsky SV (2013) Photogrammetric techniques for 3D underwater record of the antique time ship from Phanagoria. ISPRS Int Arch Photogramm Remote Sens Spatial Inform Sci 40:717–721

    Google Scholar 

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A.B.C.F. and H collaborated in the research and wrote or helped write this article. D. E. and G made all the graphic documentation of the article.

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Correspondence to Manuel J. Fumás Soldevilla.

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Soldevilla, M.J.F., González, P.C., Lladó, F.G. et al. The Application of Photogrammetric and Topographic Techniques to Investigate Submerged Caves: A Case Study of Georeferenced Point Installation at the Font of Ses Aiguades Cave (Alcúdia, Mallorca). J Mari Arch 18, 665–684 (2023). https://doi.org/10.1007/s11457-023-09382-3

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