Tytuł artykułu
Treść / Zawartość
Pełne teksty:
Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
In the paper the use of GIS to diachronically analyse the settlement pattern detected through archaeological research is illustrated on the case study of the island of Rab (NE Adriatic, Croatia) and correlated with a model of the island's economic output, its environmental features and available data on regional changing climatic conditions. The obtained results are then interpreted within a wider Adriatic setting and a current theoretical framework which allows to correlate socio-economic and environmental indicators in the interpretation of archaeologically detected changes in the use of the landscape.
Czasopismo
Rocznik
Tom
Strony
189--207
Opis fizyczny
Bibliogr. 47 poz.
Twórcy
autor
- Cardinal Stefan Wyszynski University in Warsaw, Institute of Archaeology, Warsaw, Poland
autor
- Institute of Archaeology, Zagreb, Croatia
autor
- Cardinal Stefan Wyszynski University in Warsaw, Institute of Archaeology, Warsaw, Poland
autor
- Warsaw University, Artes Liberales Faculty, Warsaw, Poland
Bibliografia
- 1. Benac Č., Ružić I., Žic E. (2006). Ranjivost obala u području Kvarnera (The vulnerability of coasts in the Kvarner area). Pomorski zbornik, vol. 44, no. 1, pp. 201–214.
- 2. Bowden W. (2018). Villas of the eastern Adriatic and Ionian coastlands. In: A. Marzano, G.P.R Métraux (ed.), The Roman Villa in the Mediterranean Basin. Cambridge University Press, Cambridge, pp. 377–397.
- 3. Brogiolo G.P. (2015). Flooding in Northern Italy during the Early Middle Ages: resilience and adaptation. European Journal of Post-Classical Archaeologies, vol. 5, pp. 47–58.
- 4. Büntgen U., Tegel W., Nicolussi K., McCormick M., Frank D., Trouet V., Kaplan J.O., Herzig F., Heussner K.-U., Wanner H., Luterbacher J., Esper J. (2011). 2500 Years of European Climate Variability and Human Susceptibility. Science, vol. 331, pp. 578–582.
- 5. Conolly J. (2008). Geographical Information Systems and landscape archaeology. In: B. David, J. Thomas (ed.), Handbook of Landscape Archaeology. Left Coast Press, Walnut Creek (CA), pp. 583–595.
- 6. Čučković Z. (2017). Claiming the sea: Bronze Age fortified sites of the north-eastern Adriatic Sea (Cres and Lošinj islands, Croatia). World Archaeology, vol. 49, no. 4, pp. 526–546.
- 7. Faivre S., Fouache E., Ghilardi M., Antonioli F., Furlani S., Kovačić V. (2011). Relative sea level change in Istria (Croatia) during the last millennia. Quaternary International, vol. 232, no. 1–2, pp. 132–143.
- 8. Felja I., Fontana A., Furlani S., Bajraktarević Z., Paradņik A., Topolović E., Rossato S., Ćosović V., Juračić M. (2015). Environmental changes in the lower Mirna River valley (Istria, Croatia) during the Middle and Late Holocene. Geologia Croatica, vol. 68, no. 3, pp. 209–224.
- 9. Gaffney V., Stančič Z. (1996). GIS approaches to regional analysis: A case study of the island of Hvar. Oxbow Books, Oxford.
- 10. Glavaš V. (2014). Viewshed Analyses in the Prehistoric Velebit Landscapes. Archaeologia Adriatica, vol. 8, pp. 1–26.
- 11. Glavaš V., Grilj A. (2016). Rekonstrukcija ozemelj prazgodovinskih skupnosti na prostoru severnega in srednjega Velebita z uporabo GIS-ov (GIS based reconstruction of the prehistoric communities' territories of the northern and central Velebit mountain). Dela, vol. 45, pp. 65−81.
- 12. Gračanin H. (2015). The history of the eastern Adriatic region from the Vth to the VIIth centuries AD: Historical processes and historiographic problems. In: Y. Marion, F. Tassaux (ed.), AdriAtlas et l’histoire de l’espace adriatique du VIe s. a.C. au VIIIe s. a. C., Ausonius Scripta Antiqua 79. Ausonius, Bordeaux, pp. 67–98.
- 13. Ilijanić N., Miko S. (2016). Lake Vrana – Holocene climate archive. In: Lake – Basin – Evolution Stratigraphy, Geodynamics, Climate and Diversity of Past and Recent Lacustrine Systems, RCMNS Interim Colloquium 2016 Croatian Geological Society Limnogeology Workshop 20–24 May 2016, Zagreb, pp. 45–48.
- 14. Izdebski A., Holmgren K., Weiberg E., Stocker S.R., Büntgen U., Florenzano A., Gogou A., Leroy S.A.G., Luterbacher J., Martrat B., Masi A., Mercuri A.M., Montagna P., Sadori L., Schneider A., Sicre M.-A., Triantaphyllou M., Xoplaki, E. (2016). Realising consilience: How better communication between archaeologists, historians and natural scientists can transform the study of past climate change in the Mediterranean. Quaternary Science Reviews, vol. 136, pp. 5−22.
- 15. Kacanski A., Carmi I., Shemesh S., Kronfled J., Yam R., Flexer A. (2001). Late Holocene Climatic Change in the Balkans: Speleothem Isotopic Data from Serbia. Radiocarbon, vol. 43, no. 2B, pp. 647−658.
- 16. Kluiving S., Lidén K., Fredengren C. (2021). Environmental humanities a rethinking of landscape archaeology? In: S. Kluiving, K. Lidén, C. Fredengren (ed.), Environmental humanities: a rethinking of landscape archaeology? Interdisciplinary academic research related to different perspectives of landscapes, Clues vol. 6, Sidestone Press, Leiden, pp. 7−12.
- 17. Konestra A., Welc F., Dugonjić A., Androić Gračanin P., Rabiega K., Solecky R., Nowacki B. (2019). Research within the "Archaeological topography of the Islandof Rab" project at Lopar in 2018: new data on Prehistoric and late Antique sites. Annales Instituti Archaeologici, vol. XV, pp. 187−194.
- 18. Konestra A., Welc, F., Androić Gračanin P., Rabiega K., Nowacki B., Kukela A. (2020). Rab island settlement typology and organisation through a diachronic approach – First data from a multidisciplinary research. Annales Instituti Archaeologici, vol. XVI, pp. 229−244.
- 19. Konestra A., Welc F., Androić Gračanin P. (2021). Lokalitet na rtu Zidine u Loparu u kontekstu obalnih rezidencijalno-gospodarskih kompleksa otoka Raba (The site at cape Zidine in the context of residential-productive complexes of Rab island). Annales Instituti Archaeologici, vol. XVII, in press.
- 20. Kovačić M. (2013). Geothermal properties of the northern part of the island of Rab. Geologia Croatica, 66(1), pp. 29–37.
- 21. Lipovac Vrkljan G., Mušič B., Šiljeg B., Konestra A. (2015). Geofizička istraživanja antičkih struktura u uvali Mahućina na otoku Rabu (općina Lopar) 2014. godine (projekt RED, Hrvatska zaklada za znanost) (Geophysical survey of ancient structures in Mahućina Bay on the Island of Rab (Lopar municipality), 2014 (HRZZ , Croatian Science Foundation, Project RED)). Annales Instituti Archaeologici, vol. XI, pp. 80−82.
- 22. Lipovac Vrkljan G., Šiljeg B., Ožanić Roguljić I., Konestra A., Kostešić I., Šegvić N. (2014). Projekt Arheološka topografija otoka Raba: rezultati terenskog pregleda poluotoka Lopara u 2013. Godini (The "Archaeological Topography of the Island of Rab" Project: the results of the 2013 field survey of the Lopar Peninsula). Annales Instituti Archaeologici, vol. X, pp. 202−208.
- 23. Lipovac Vrkljan G., Konestra A., Šegvić N. (2017). Felix Arba – reconstructing urban and rural capacities through GIS. In: A. Plosnić Škarić (ed.), Mapping urban changes, Institute of Art History, Zagreb, pp. 314−335.
- 24. Lipovac Vrkljan G., Konestra A. (2018). Approaching the Roman economy of the province of Dalmatia through pottery production – the Liburnia case study. In: G. Lipovac Vrkljan, A. Konestra (ed.), Pottery Production, Landscape and Economy of Roman Dalmatia. Interdisciplinary approaches, Archaeopress, Oxford, pp. 14−36.
- 25. Lock G.R. (2003). Using computers in archaeology: towards virtual pasts. Routlege, London and New York.
- 26. Lončarić R., Magaš D., Surić M. (2011). Influence of water availability on historical, demographical and economical development of the Kvarner islands (Croatia).
- 27. Annales – Annals for Istrian and Mediterranean Studies, vol. 21, no. 2, pp. 425−436.
- 28. Marjanac T., Marjanac Lj. (1991). Shallow-marine clastic Paleogene on the Island of Rab (Northern Adriatic). Abstracts Dolomieu Conference on Carbonate Platforms and Dolomitization, Ortisei, pp. 159–160.
- 29. Marjana T., Marjanac Lj. (2007). Sequence stratigraphy of Eocene incised valley clastics and associated sediments, Island of Rab, northern Adriatic Sea, Croatia. Facies, vol. 53, no. 4, pp. 493−508.
- 30. Miko S., Ilijanić N., Jarić A., Brenko T., Hasan O., Šparica Miko M., Čućuzović H., Stroj A. (2015). 2400-year multi-proxy reconstruction of environmental change: the Blue Lake (Modro jezero, Imotski) sediment record. 5th Croatian Geological Congress – Osijek 2015, Abstract book, pp. 177−178.
- 31. Mlacović D. (2012). Plemstvo i otok. Pad i uspon rapskoga plemstva. Leykam International, Zagreb.
- 32. Mlinarić D. (2009). Privatni projekti isušivanja i melioracije tla u Dalmaciji i Istri od ranoga novog vijeka do 20. Stoljeća (Private projects of land improvement, drainage and amelioration in Dalmatia and Istria from early modern period to the Twentieth century). Ekonomska i ekohistorija, vol. V, no. 5, pp. 136−157.
- 33. Nedved B. (1990). Felix Arba. Pregled povijesti i spomenika otoka Raba u rano rimsko doba (Felix Arba. Review of the history and monuments of Rab island in early Roman times). SIZ za kulturu općine Rab, Arheološki muzej Zadar, Rab.
- 34. Piplović S. (2003). Prilog poznavanju dalmatinskih solana u XIX. Stoljeću (Dalmatian salt works in the XIXth century). Radovi Zavoda za povijesne znanosti HAZU Zadru, vol. 45, pp. 309−326.
- 35. Poblome J. (2015). The Economy of the Roman World as a Complex Adaptive System.
- 36. Testing the Case in Second to Fifth Century CE Sagalassos. In: P. Erdkamp, K. Verboven (ed.), Structure and Performance in the Roman Economy. Models, Methods and Case Studies, Éditions Latomus, Bruxelles, pp. 97−140.
- 37. Rothe U. (2018). The Roma Villa. Definitions and Variations. In: A. Marzano, G.P.R Métraux (ed.), The Roman Villa in the Mediterranean Basin, Cambridge University Press, Cambridge, pp. 42−60.
- 38. Rudzka D., McDermott F., Surić M. (2012). A late Holocene climate record in stalagmites from Modrič Cave (Croatia). Journal of Quaternary Science, vol. 27, no. 6, pp. 585−596.
- 39. Ružić I., Benac Č. (2016). Vulnerability of the Rab island coastline due to sea level rise, Hrvatske vode, vol. 24, no. 97, pp. 203−214.
- 40. Sadori L., Giardini M., Gliozzi E., Mazzini I., Sulpizio R., van Welden A., Zanchetta G. (2015). Vegetation, climate and environmental history of the last 4500 years at lake Shkodra (Albania/Montenegro), The Holocene, vol. 25, no. 3, pp. 435−444.
- 41. Schmidt R., Müller J., Drescher-Schneider R., Krisai R., Szeroczyńska K., Barić A. (1999). Changes in lake level and trophy at Lake Vrana, a large karstic lake on the Island of Cres (Croatia), with respect to palaeoclimate and anthropogenic impacts during the last approx. 16,000 years. Journal of Limnology, vol. 59, no. 2, pp. 113−130.
- 42. Smith D., Gaffney V., Grossman D., Howard J.A., Milošević A., Ostir K., Podobnikat T., Smith W., Tetlow E., Tingle M., Tinsley H. (2006). Assessing the later prehistoric environmental archaeology and landscape development of the Cetina Valley, Croatia. Environmental Archaeology, vol. 11, no. 2, pp. 171−186.
- 43. Šegota T., Filipčić A. (2003). Köppenova podjela klima i hrvatsko nazivlje (Köppen's Classification of Climates and the Problem of Corresponding Croatian Terminology). Geoadria, vol. 8, no. 1, pp. 203−214.
- 44. Terzić J., Peh Z., Marković T. (2010). Hydrochemical properties of transition zone between fresh groundwater and seawater in karst environment of the Adriatic islands, Croatia. Environmental Earth Sciences, vol. 59, pp. 1629−1642.
- 45. Verhagen Ph. (2018). Spatial Analysis in Archaeology: Moving into New Territories. In: C. Siart, M. Forbriger, O. Bubenzer (ed.), Digital Geoarchaeology. New Techniques for Interdisciplinary Human-Environmental Research, Springer, Cham, pp. 11−25.
- 46. Welc F. (2019). Geoarchaeological evidence of late and postantiquity (5th–9th c. AD) climate changes recorded at the Roman site in Plemići bay (Zadar region, Croatia). Studia Quaternaria, vol. 36, no. 1, pp. 1−15.
- 47. Welc F., Konestra A., Dugonjić A., Androić Gračanin P., Rabiega K., Nowacki B. (2019). Multidisciplinary insight into late Roman rural settlement on the northeastern Adriatic coast of Croatia: Island of Rab case study. Polish Archaeology in the Mediterranean, vol. 28, no. 2, pp. 481−508.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-90b9cff4-336b-48c6-a4c3-9a59ec6e8257