Medieval fan aggradation in the wetland fringe of Lake Shkodra, Albania
The analysis of sediment cores and auger holes from the wetland fringe of Lake Shkodra were used to interpret Late Holocene shoreline fluctuations in northwestern Albania. Dry bulk density, organic carbon, magnetic susceptibility, particle size determination, sediment composition, X-ray diffraction,...
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Published in | Geomorphology (Amsterdam, Netherlands) Vol. 320; pp. 33 - 44 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.11.2018
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Abstract | The analysis of sediment cores and auger holes from the wetland fringe of Lake Shkodra were used to interpret Late Holocene shoreline fluctuations in northwestern Albania. Dry bulk density, organic carbon, magnetic susceptibility, particle size determination, sediment composition, X-ray diffraction, and AMS 14C dating provide the basis for interpretation. The Kir River may have sourced the 50 km2 Late Pleistocene-Holocene Shtoj alluvial fan at the terminus of the 372 km2 Kir River drainage basin on the western slopes of the Bjeshkët e Namuna Mountains. However, the Kir River has not transected the fan since at least the first century BC. The vertical succession of facies in sediment cores from peat to lacustrine clay and then to over 1.1 m of alluvial silt and sand documents an expansion, then contraction of the lake to its current size after 1390 cal yr BP. Sand influx off the fan is attributed to sheetflow, rill, or gullying related to increased anthropogenic activity across the fan during Medieval time. Archaeological surveys support abandonment of hill fort dwellings for the plain around 500 CE. Since 1390 cal yr BP, the Lake Shkodra shoreline has fluctuated at least 1.5 km to the east of the present shoreline. |
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AbstractList | The analysis of sediment cores and auger holes from the wetland fringe of Lake Shkodra were used to interpret Late Holocene shoreline fluctuations in northwestern Albania. Dry bulk density, organic carbon, magnetic susceptibility, particle size determination, sediment composition, X-ray diffraction, and AMS 14C dating provide the basis for interpretation. The Kir River may have sourced the 50 km2 Late Pleistocene-Holocene Shtoj alluvial fan at the terminus of the 372 km2 Kir River drainage basin on the western slopes of the Bjeshkët e Namuna Mountains. However, the Kir River has not transected the fan since at least the first century BC. The vertical succession of facies in sediment cores from peat to lacustrine clay and then to over 1.1 m of alluvial silt and sand documents an expansion, then contraction of the lake to its current size after 1390 cal yr BP. Sand influx off the fan is attributed to sheetflow, rill, or gullying related to increased anthropogenic activity across the fan during Medieval time. Archaeological surveys support abandonment of hill fort dwellings for the plain around 500 CE. Since 1390 cal yr BP, the Lake Shkodra shoreline has fluctuated at least 1.5 km to the east of the present shoreline. |
Author | Bejko, Lorenc Galaty, Michael L. Henry, Catherine E. Galicki, Stan |
Author_xml | – sequence: 1 givenname: Stan orcidid: 0000-0001-6926-8150 surname: Galicki fullname: Galicki, Stan email: galics@millsaps.edu organization: Department of Geosciences, Millsaps College, Jackson, MS, USA – sequence: 2 givenname: Catherine E. surname: Henry fullname: Henry, Catherine E. organization: Oasis Petroleum, Houston, TX, USA – sequence: 3 givenname: Michael L. surname: Galaty fullname: Galaty, Michael L. organization: Museum of Anthropological Archaeology, University of Michigan, Ann Arbor, MI, USA – sequence: 4 givenname: Lorenc surname: Bejko fullname: Bejko, Lorenc organization: Department of Archaeology and Cultural Heritage Studies, University of Tirana, Tirana, Albania |
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Keywords | Lake Shkodra Medieval Alluvial fan aggradation Kir River |
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