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dc.contributor.author Rachold, Volker
dc.coverage.spatial LATITUDE: 71.786120 * LONGITUDE: 129.416970 * DATE/TIME START: 1982-01-01T00:00:00 * DATE/TIME END: 2000-12-31T00:00:00 * MINIMUM ELEVATION: 25.0 m * MAXIMUM ELEVATION: 40.0 m
dc.date.accessioned 2019-11-23T03:30:48Z
dc.date.available 2019-11-23T03:30:48Z
dc.date.issued 2000-01-30
dc.identifier https://doi.pangaea.de/10.1594/PANGAEA.58197
dc.identifier https://doi.org/10.1594/PANGAEA.58197
dc.identifier.citation Rachold, Volker; Grigoriev, Mikhail N (2000): Russian-German Cooperation System Laptev Sea 2000: The Expedition LENA 1999. Berichte zur Polarforschung = Reports on Polar Research, 354, 1-269, https://doi.org/10.2312/BzP_0354_1_2000
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/7041
dc.description.abstract This article presents a comparison of sediment input by rivers and by coastal erosion into both the Laptev Sea and the Canadian Beaufort Sea (CBS). New data on coastal erosion in the Laptev Sea, which are based on field measurements and remote sensing information, and existing data on coastal erosion in the CBS as well as riverine sediment discharge into both the Laptev Sea and the CBS are included. Strong regional differences in the percentages of coastal erosion and riverine sediment supply are observed. The CBS is dominated by the riverine sediment discharge (64.45210**6 t/a) mainly of the Mackenzie River, which is the largest single source of sediments in the Arctic. Riverine sediment discharge into the Laptev Sea amounts to 24.10210**6 t/a, more than 70% of which are related to the Lena River. In comparison with the CBS, the Laptev Sea coast on average delivers approximately twice as much sediment mass per kilometer, a result of higher erosion rates due to higher cliffs and seasonal ice melting. In the Laptev Sea sediment input by coastal erosion (58.4210**6 t/a) is therefore more important than in the CBS and the ratio between riverine and coastal sediment input amounts to 0.4. Coastal erosion supplying 5.6210**6 t/a is less significant for the sediment budget of the CBS where riverine sediment discharge exceeds coastal sediment input by a factor of ca. 10.
dc.format text/tab-separated-values, 18 data points
dc.language.iso en
dc.publisher PANGAEA
dc.relation.isbasedon Rachold, Volker; Grigoriev, Mikhail N (2000): Russian-German Cooperation System Laptev Sea 2000: The Expedition LENA 1999. Berichte zur Polarforschung = Reports on Polar Research, 354, 1-269, https://doi.org/10.2312/BzP_0354_1_2000
dc.rights CC-BY-3.0: Creative Commons Attribution 3.0 Unported
dc.rights Access constraints: unrestricted
dc.source Supplement to: Rachold, Volker; Grigoriev, Mikhail N; Are, Felix; Solomon, Steven; Reimnitz, Erk; Kassens, Heidemarie; Antonow, A (2000): Coastal erosion vs. riverine sediment discharge in the Arctic Shelf Seas. International Journal of Earth Sciences, 89(3), 450-460, https://doi.org/10.1007/s005310000113
dc.subject ACD
dc.subject ACD_Key_sites
dc.subject Arctic Coastal Dynamics
dc.subject Backshore FORM-code
dc.subject Bykovsky_Peninsula_1982
dc.subject Coastal section
dc.subject CSEC
dc.subject Date/Time of event
dc.subject Date/Time of event 2
dc.subject Description
dc.subject Distance to 100 m contour
dc.subject Distance to 100 m isobath
dc.subject Distance to 10 m contour
dc.subject Distance to 10 m isobath
dc.subject Distance to 20 m isobath
dc.subject Distance to 2 m isobath
dc.subject Distance to 500 m contour
dc.subject Frontshore FORM-code
dc.subject Ground-ice
dc.subject Ice-code
dc.subject Laptev Sea Coast, Russia
dc.subject Lithified-code
dc.subject Man-made structures
dc.subject Offshore FORM-code
dc.subject Onshore FORM-code
dc.subject Sampling on land
dc.subject Shorezone complexity
dc.subject Unlithified-code
dc.subject Visual observation
dc.title Russian-German Cooperation System Laptev Sea 2000: The Expedition LENA 1999.
dc.title.alternative Discription of coastal shape at Bykovsky Peninsula
dc.type Dataset


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