PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

A Marine Spatial Data Infrastructure to manage multidisciplinary, inhomogeneous and fragmented geodata in a FAIR perspective ... the Adriatic Sea experience

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The Institute of Marine Sciences (ISMAR) and the Institute of Polar Sciences (ISP) of the Italian National Research Council (CNR) have gathered a substantial amount of heterogeneous geodata through the years in the Adriatic Sea, with different methodologies and for multiple scopes regarding geological, oceanographic, biological, anthropogenic aspects, and their interactions. To overcome challenges in datasets heterogeneity and fragmentation, a Marine Spatial Data Infrastructure (MSDI) has been set up, with the aim to integrate and preserve geodata, foster their reuse (e.g. the generation of scenarios for geological past and future developments by the application of numerical models), and ensure a good degree of FAIRness (FAIR: Findable, Accessible, Interoperable, and Reusable). The MSDI consists of a Spatial Relational Database Management System (RDBMS) based on specific data models designed following in part the INSPIRE Directive data specifications, a WebGIS, a metadata catalogue, and a cloud system. This paper shows the potentialities of this MSDI and discusses the main implementation steps, the elements that make up the infrastructure, the level of FAIRness reached, the main elements promoting FAIRness, and the gaps to be covered. Compliance with the FAIR principles represents a fundamental step to developing interoperability with European and international marine data management infrastructures for handling and exchanging multidisciplinary data.
Czasopismo
Rocznik
Strony
260--277
Opis fizyczny
Bibliogr. 60 poz., map., rys., tab., wykr.
Twórcy
  • National Research Council (CNR), Institute of Marine Sciences (ISMAR), Bologna, Italy
  • National Research Council (CNR), Institute of Marine Sciences (ISMAR), Bologna, Italy
Bibliografia
  • 1. Angeletti, L., Canese, S., Franchi, F., Montagna, P., Reitner, J., Walliser, E.O., Taviani, M., 2015. The “chimney forest” of the deep Montenegrin margin, south-eastern Adriatic Sea. Mar. Pet. Geol. 66, 542-554. https://doi.org/10.1016/j.marpetgeo.2015.04.001
  • 2. Angeletti, L., Bargain, A., Campiani, E., Foglini, F., Grande, V., Leidi, E., Mercorella, A., Prampolini, M., Taviani, M., 2019. 16 - Cold-Water Coral Habitat Mapping in the Mediterranean Sea: Methodologies and Perspectives. In: Orejas, C., Jiménez, C. (Eds.), Mediterranean Cold-Water Corals: Past, Present and Future. Coral Reefs of the World 9. Springer, Cham, 173-189. https://doi.org/10.1007/978-3-319-91608-8_16
  • 3. Angeletti, L., Prampolini, M., Foglini, F., Grande, V., Taviani, M., 2020a. Chapter 49 - Cold-water coral habitat in the Bari Canyon System, Southern Adriatic Sea (Mediterranean Sea). In: Harris, P.T., Elaine Baker, E. (Eds.), Seafloor Geomorphology as Benthic Habitat (11/25/2022). Elsevier, 811-824. https://doi.org/10.1016/B978-0-12-814960-7.00049-X
  • 4. Angeletti, L., Canese, S., Cardone, F., Castellan, G., Foglini, F., Taviani, M., 2020b. A brachiopod biotope associated with rocky bottoms at the shelf break in the central Mediterranean Sea: Geobiological traits and conservation aspects. Aquat. Conserv: Mar. Freshw. Ecosyst. 30, 402-411. https://doi.org/10.1002/aqc.3255
  • 5. Argnani, A., Rovere, M., Bonazzi, C., 2009. Tectonics of the Mattinata Fault, offshore south Gargano (southern Adriatic Sea, Italy); implications for active deformation and seismotectonics in the foreland of the Southern Apennines. Geol. Soc. Am. Bull. 121 (9—10), 1421-1440. https://doi.org/10.1130/B26326.1
  • 6. Argnani, A., Tinti, S., Zaniboni, F., Pagnoni, G., Armigliato, A., Panetta, D., Tonini, R., 2011. The eastern slope of the southern Adriatic basin: A case study of submarine landslide characterization and tsunamigenic potential assessment. Mar. Geophys. Res. 32, 299-311. https://doi.org/10.1007/s11001-011-9131-3
  • 7. Artegiani, A., Bregant, D., Paschini, E., Pinardi, N., Raicich, F., Russo, A., 1997. The Adriatic sea gen-eral circulation. Part I: Air-sea interactions and water mass structure. J. Phys. Oceanogr. 27, 1492-1514. https://doi.org/10.1175/1520-0485(1997)027<1492:TASGCP>2.0.CO;2
  • 8. Earth System Changes in Marginal Seas Asioli, A., Trincardi, F., Lowe, J.J., Ariztegui, D., Langone, L., Oldfield, F., 2001. Sub-millennial scale climatic oscillations in the central adriatic during the lateglacial: Palaeoceanographic implications. Quat. Sci. Rev. 20, 1201-1221. https://doi.org/10.1016/S0277-3791(00)00147-5
  • 9. Benetazzo, A., Bergamasco, A., Bonaldo, D., Falcieri, F.M., Sclavo, M., Langone, L., Carniel, S., 2014. Response of the Adriatic Sea to an intense cold air outbreak: Dense water dynamics and wave-induced transport. Prog. Oceanogr. 128, 115-138. https://doi.org/10.1016/j.pocean.2014.08.015
  • 10. Bernabini, M., Manetti, P., 2003. CROP Project: goals and organization. Mem. Descr. Carta Geol. d’It. LXII, 9-14.
  • 11. Boero, F., Foglini, F., Fraschetti, S., Goriup, P., Macpherson, E., Planes, S., 2016. CoCoNet: towards coast to coast networks of marine protected areas (from the shore to the high and deep sea), coupled with sea-based wind energy potential. SCIRES-IT 6, 95. https://doi.org/10.2423/i22394303v6Sp1
  • 12. Cattaneo, A., Correggiari, A., Langone, L., Trincardi, F., 2003. The late-Holocene Gargano subaqueous delta, Adriatic shelf: Sediment pathways and supply fluctuations. Mar. Geol. 193, 61-91. https://doi.org/10.1016/S0025-3227(02)00614-X
  • 13. Cattaneo, A., Trincardi, F., Langone, L., Asioli, A., Puig, P., 2004. Clinoform generation on Mediterranean margins. Oceanography 17, 104-117. https://doi.org/10.5670/oceanog.2004.08
  • 14. Chiggiato, J., Bergamasco, A., Borghini, M., Falcieri, F.M., Falco, P., Langone, L., Miserocchi, S., Russo, A., Schroeder, K., 2016. Dense-water bottom currents in the Southern Adriatic Sea in spring 2012. Mar. Geol. 375, 134-145. https://doi.org/10.1016/j.margeo.2015.09.005
  • 15. Correggiari, A., Trincardi, F., Langone, L., Roveri, M., 2001. Styles of Failure in Late Holocene Highstand Prodelta Wedges on the Adriatic Shelf. J. Sediment. Res. 71, 218-236. https://doi.org/10.1306/042800710218
  • 16. Correggiari, A., Cattaneo, A., Trincardi, F., 2005. The modern Po Delta system: Lobe switching and asymmetric prodelta growth. Mar. Geol. 222-223, 49-74. https://doi.org/10.1016/j.margeo.2005.06.039C
  • 17. Correggiari, A., Aguzzi, M., Remia, A., Preti, M., 2011. Caratteristiche sedimentologiche e stratigrafiche dei giacimenti sabbiosi in Mare Adriatico Settentrionale utilizzabili per il ripascimento costiero. Studi Costieri 19, 11-31.
  • 18. Correggiari, A., Perini, L., Foglini, F., Remia, A., Gallerani, A., Campiani, E., Luciani, P., Calabrese, L., 2012. Research and exploitation of shelf marine sand deposit for coastal renourishment. Geodatabase guidelines from Emilia-Romagna experience. In: 7th EureGeo Conference - EUropean Congress on REgional GEOscientific Cartography and Information Systems 1, Regione Emilia-Romagna, Bologna, 347-348.
  • 19. Corriero, G., Pierri, C., Mercurio, M., Nonnis Marzano, C., Onen Tarantini, S., Gravina, M.F., Lisco, S., Moretti, M., De Giosa, F., Valenzano, E., Giangrande, A., Mastrodonato, M., Longo, C., Cardone, F., 2019. A Mediterranean mesophotic coral reef built by non-symbiotic scleractinians. Sci. Rep. 9, 1-17. https://doi.org/10.1038/s41598-019-40284-4
  • 20. Cushman-Roisin, B., Gacic, M., Poulain, P.M., Artegiani, A., 2001. Physical Oceanography of the Adriatic Sea: Past, Present and Future. Springer, Dordrecht, 304 pp.
  • 21. Dalla Valle, G., Gamberi, F., Foglini, F., Trincardi, F., 2015. The Gondola Slide: A mass transport complex controlled by margin topography (South-Western Adriatic Margin, Mediterranean Sea). Mar. Geol. 366, 97-113. https://doi.org/10.1016/j.margeo.2015.05.001
  • 22. de Miranda Azevedo, R., Dumontier, M., 2020. Considerations for the Conduction and Interpretation of FAIRness Evaluations. Data Intelligence 2, 285-292. https://doi.org/10.1162/dint_a_00051
  • 23. Del Bianco, F., Gasperini, L., Giglio, F., Bortoluzzi, G., Kljajic, Z., Ravaioli, M., 2014. Seafloor morphology of the Montenegro/N. Albania Continental Margin (Adriatic Sea-Central Mediterranean). Geomorphology 226, 202-216. https://doi.org/10.1016/j.geomorph.2014.08.006
  • 24. Depellegrin, D., Menegon, S., Farella, G., Ghezzo, M., Gissi, E., Sarretta, A., Barbanti, A., 2017. Multi-objective spatial tools to inform maritime spatial planning in the Adriatic Sea. Sci. Total Environ. 609, 1627-1639. https://doi.org/10.1016/j.scitotenv.2017.07.264
  • 25. FAIR Data Maturity Model Working Group, 2020. In: FAIR Data Maturity Model. Specification and Guidelines, v 1.0, 45. https://doi.org/10.15497/rda00050
  • 26. Foglini, F., Campiani, E., Trincardi, F., 2016. The reshaping of the South West Adriatic Margin by cascading of dense shelf waters. Mar. Geol. 375, 64-81. https://doi.org/10.1016/j.margeo.2015.08.011
  • 27. Freiwald, A., Beuck, L., Rüggeberg, A., Taviani, M., Hebbeln, D., 2009. The white coral community in the central Mediterranean sea revealed by ROV surveys. Oceanography 22, 58-74. https://doi.org/10.5670/oceanog.2009.06
  • 28. Koymans, M.R., van Hinsbergen, D.J.J., Pastor-Galán, D., Vaes, B., Langereis, C.G., 2020. Towards FAIR Paleomagnetic Data Management Through Paleomagnetism.org 2.0. Geochem. Geophys. Geosyst. 21, 1-7. https://doi.org/10.1029/2019GC008838
  • 29. Lannom, L., Koureas, D., Hardisty, A.R., 2020. FAIR Data and Services in Biodiversity Science and Geoscience. Data Intelligence 2 (1—2), 122-130. https://doi.org/10.1162/dint_a_00034
  • 30. Madricardo, F., Foglini, F., Campiani, E., Grande, V., Catenacci, E., Petrizzo, A., Kruss, A., Toso, C., Trincardi, F., 2019. Assessing the human footprint on the sea-floor of coastal systems: the case of the Venice Lagoon, Italy. Sci. Rep. 9, 1-13. https://doi.org/10.1038/s41598-019-43027-7
  • 31. Madricardo, F., Bassani, M., Acunto, G.D., Calandriello, A., Foglini, F., 2021. New evidence of a Roman road in the Venice Lagoon (Italy) based on high resolution seafloor reconstruction. Sci. Rep. 11, 13985. https://doi.org/10.1038/s41598-021-92939-w
  • 32. Maselli, V., Trincardi, F., Cattaneo, A., Ridente, D., Asioli, A., 2010. Subsidence pattern in the central Adriatic and its influence on sediment architecture during the last 400 kyr. J. Geophys. Res. 115 (B12106), 148-227. https://doi.org/10.1029/2010JB007687
  • 33. Minisini, D., Trincardi, F., Asioli, A., 2006. Evidence of slope instability in the Southwestern Adriatic Margin. Nat. Hazards Earth Syst. Sci. 6, 1-20. https://doi.org/10.5194/nhess-6-1-2006
  • 34. Pellegrini, C., Maselli, V., Trincardi, F., 2016. Pliocene—Quaternary contourite depositional system along the south-western Adriatic margin: changes in sedimentary stacking pattern and associated bottom currents. Geo-Mar. Lett. 36, 67-79. https://doi.org/10.1007/s00367-015-0424-4
  • 35. Pellegrini, C., Maselli, V., Gamberi, F., Asioli, A., Bohacs, K.M., Drexler, T.M., Trincardi, F., 2017. How to make a 350-m-thick lowstand systems tract in 17,000 years: The Late Pleistocene Po River (Italy) lowstand wedge. Geology 45, 327-330. https://doi.org/10.1130/G38848.1
  • 37. Pellegrini, C., Asioli, A., Bohacs, K.M., Drexler, T.M., Feldman, H.R., Sweet, M.L., Maselli, V., Rovere, M., Gamberi, F., Valle, G.D., Trincardi, F., 2018. The late Pleistocene Po River lowstand wedge in the Adriatic Sea: Controls on architecture variability and sediment partitioning. Mar. Pet. Geol. 96, 16-50. https://doi.org/10.1016/j.marpetgeo.2018.03.002
  • 38. Pellegrini, C., Bohacs, K.M., Drexler, T.M., Gamberi, F., Rovere, M., Trincardi, F., 2019. Identifying the Sequence Boundary in Over-and Under-Supplied Contexts: The Case of the Late Pleistocene Adriatic Continental Margin. In: Hart B., Rosen N. C., West D., D’Agostino A., Messina C., Hoffman M., Wild R. (Eds.). Sequence Stratigraphy: The Future Defined, SEPM 36, 160-182. https://doi.org/10.5724/gcs.17.160
  • 39. Pellegrini, C., Tesi, T., Schieber, J., Bohacs, K.M., Rovere, M., Asioli, A., Nogarotto, A., Trincardi, F., 2021. Fate of terrigenous 276 Earth System Changes in Marginal Seas/Oceanologia 65 (2023) 260-277 organic carbon in muddy clinothems on continental shelves revealed by stratal geometries: Insight from the Adriatic sedimentary archive. Glob. Planet. Change 203, 103539. https://doi.org/10.1016/j.gloplacha.2021.103539
  • 40. Piva, A., Asioli, A., Schneider, R.R., Trincardi, F., Andersen, N., Colmenero-Hidalgo, E., Dennielou, B., Flores, J.A., Vigliotti, L., 2008. Climatic cycles as expressed in sediments of the PROMESS1 borehole PRAD1-2, central Adriatic, for the last 370 ka: 1. Integrated stratigraphy. Geochem. Geophys. eosyst. 9. https://doi.org/10.1029/2007GC001713
  • 41. Prampolini, M., Angeletti, L., Grande, V., Taviani, M., Foglini, F., 2020. Chapter 48 - Tricase Submarine Canyon: cold-water coral habitats in the southwesternmost Adriatic Sea (Mediterranean Sea). In: Harris, P.T., Baker, E. (Eds.), Seafloor Geomorphology as Benthic Habitat. Elsevier, 793-810. https://doi.org/10.1016/B978-0-12-814960-7.00048-8
  • 42. Ridente, D., Trincardi, F., 2006. Active foreland deformation evidenced by shallow folds and faults affecting late Quaternary shelf-slope deposits (Adriatic Sea, Italy). Basin Res. 18, 171-188. https://doi.org/10.1111/j.1365-2117.2006.00289
  • 43. Ridente, D., Trincardi, F., Piva, A., Asioli, A., Cattaneo, A., 2008. Sedimentary response to climate and sea level changes during the past ∼400 ka from borehole PRAD1-2 (Adriatic margin). Geochem. Geophys. Geosyst. 9. https://doi.org/10.1029/2007GC001783
  • 44. Rovere, M., Pellegrini, C., Chiggiato, J., Campiani, E., Trincardi, F., 2019. Impact of dense bottom water on a continental shelf: An example from the SW Adriatic margin. Mar. Geol. 408, 123-143. https://doi.org/10.1016/j.margeo.2018.12.002
  • 45. Sievers, J., Milbradt, P., Ihde, R., Valerius, J., Hagen, R., Plüß, A., 2021. An Integrated Marine Data Collection for the German Bight — Part I: Subaqueous Geomorphology and Surface Sedimentology (1996—2016). Earth Syst. Sci. Data 13, 4053—4065. https://doi.org/10.5194/essd-13-4053-2021
  • 46. Sinha, A.K., Thessen, A.E., Barnes, C.G., 2013. Geoinformatics: Toward an integrative view of Earth as a system. In: Bickford M. E. (Ed.), The Web of Geological Sciences: Advances, Impacts, and Interactions. Geol. Soc. Am. 500, 591-604. https://doi.org/10.1130/2013.2500(19)
  • 47. Stall, S., Yarmey, L., Cutcher-Gershenfeld, J., Hanson, B., Lehnert, K., Nosek, B., Parsons, M., Robinson, E., Wyborn, L., 2019. Make scientific data FAIR. Nature 570, 27-29. https://doi.org/10.1038/d41586-019-01720-7
  • 48. Tanhua, T., Pouliquen, S., Hausman, J., O’Brien, K.M., Bricher, P., Bruin, T.de, Buck, J.J., Burger, E.F., Carval, T., Casey, K.S., Diggs, S., Giorgetti, A., Glaves, H., Harscoat, V., Kinkade, D., Muelbert, J.H., Novellino, A., Pfeil, B.G., Pulsifer, P., Van de Putte, A.P., Robinson, E., Shaap, D., Smirnov, A., Smith, N., Snowden, D.P., Spears, T., Stall, S., Tacoma, M., Thijsse, P., Tronstad, S., Vandenberghe, T., Wengren, M., Wyborn, L., Zhao, Z., 2019. Ocean FAIR data services. Front. Mar. Sci. 6. https://doi.org/10.3389/fmars.2019.00440
  • 49. Taviani, M., Angeletti, L., Campiani, E., Ceregato, A., Foglini, F., Maselli, V., Morsilli, M., Parise, M., Trincardi, F., 2012. Drowned karst landscape offshore the Apulian Margin (Southern Adriatic Sea, Italy). J. Cave Karst Stud. 74, 197-212. https://doi.org/10.4311/2011JCKS0204
  • 50. Taviani, M., Angeletti, L., Beuck, L., Campiani, E., Canese, S., Foglini, F., Freiwald, A., Montagna, P., Trincardi, F., 2016. Reprint of “On and off the beaten track: Megafaunal sessile life and Adriatic cascading processes”. Mar. Geol. 375, 146-160. https://doi.org/10.1016/j.margeo.2015.10.003
  • 51. Tesi, T., Langone, L., Giani, M., Ravaioli, M., Miserocchi, S., 2013. Source, diagenesis, and fluxes of particulate organic carbon along the western Adriatic Sea (Mediterranean Sea). Mar. Geol. 337, 156-170. https://doi.org/10.1016/j.margeo.2013.03.001
  • 52. Trincardi, F., Campiani, E., Correggiari, A., Foglini, F., Maselli, V., Remia, A., 2014. Bathymetry of the Adriatic Sea: The legacy of the last eustatic cycle and the impact of modern sediment dispersal. J. Maps 10, 151-158. https://doi.org/10.1080/17445647.2013.864844
  • 53. Trincardi, F., Amorosi, A., Bosman, A., Correggiari, A., Madricardo, F., Pellegrini, C., 2020. Ephemeral rollover points and clinothem evolution in the modern Po Delta based on repeated bathymetric surveys. Basin Res. 32, 402-418. https://doi.org/10.1111/bre.12426
  • 54. Turchetto, M., Boldrin, A., Langone, L., Miserocchi, S., Tesi, T., Foglini, F., 2007. Particle transport in the Bari Canyon (southern Adriatic Sea). Mar. Geol. 246, 231-247. https://doi.org/10.1016/j.margeo.2007.02.007
  • 55. Verdicchio, G., Trincardi, F., Alessandra, A., 2007. Mediterranean bottom-current deposits: an example from the Southwestern Adriatic Margin. Geol. Soc. London, Spec. Publ. 276, 199-224. https://doi.org/10.1144/GSL.SP.2007.276.01.10
  • 56. Vilibić, I., Orlic, M., 2002. Adriatic water masses, their rates of formation and transport through the Otranto Strait. Deep. Res. Part I Oceanogr. Res. Pap. 49, 1321-1340. https://doi.org/10.1016/S0967-0637(02)00028-6
  • 57. Vilibić, I., Supić, N., 2005. Dense water generation on a shelf: The case of the Adriatic Sea. Ocean Dynam. 55 (5), 403-415. https://doi.org/10.1007/s10236-005-0030-5
  • 58. Wang, C., Hazen, R.M., Cheng, Q., Stephenson, M.H., Zhou, C., Fox, P., Shen, S, Oberhänsli, R., Hou, Z., Ma, W., Feng, Z., Fan, J., Ma, C., Hu, X., Luo, B., Wang, J., Schiffries, C.M., 2021. The Deep-Time Digital Earth program: data-driven discovery in geosciences. Natl. Sci. Rev. 8 (9). https://doi.org/10.1093/nsr/nwab027
  • 59. Wilkinson, M., Dumontier, M., Aalbersberg, I., et al., 2016. The FAIR Guiding Principles for scientific data management and stewardship. Sci. Data 3, 160018. https://doi.org/10.1038/sdata.2016.18
  • 60. Wilson, R.J., Speirs, D.C., Sabatino, A., Heath, M.R., 2018. A synthetic map of the north-west European Shelf sedimentary environment for applications in marine science. Earth Syst. Sci. Data 10, 109-130. https://doi.org/10.5194/essd-10-109-2018
Uwagi
PL
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023). (PL) (PL) .
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d4b2b01d-c2ef-457c-98b3-91ef903f251e
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.