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Articles

Geotechnical and sedimentary evidence for thick-grounded ice in southern Lake Vättern during deglaciation

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Pages 355-366 | Received 30 Nov 2014, Accepted 23 May 2015, Published online: 01 Oct 2015

References

  • Anjar, J., Larsen, N.K., Håkansson, L., Möller, P., Linge, H., Fabel, D. & Xu, S., 2014: A 10 be-based reconstruction of the last deglaciation in southern Sweden. Boreas 43 (1), 132–148. doi:10.1111/bor.12027.
  • ASTM, 2006: Standard test methods for one-dimensional consolidation properties of soils using incremental loading developed by subcommittee. D2435-04. ASTM, Philadelphia, PA.
  • Becker, D.E., Crooks, J.H.A., Been, K. & Jefferies, M.G., 1987: Work as a criterion for determining in situ and yield stresses in clays. Canadian Geotechnical Journal 24 (4), 549–564. doi:10.1139/t87-070.
  • Berglund, B.E., 1979: The deglaciation of southern Sweden 13,500–10,000 B.P. Boreas 8 (2), 89–117. doi:10.1111/j.1502-3885.1979.tb00789.x.
  • Björck, S. & Digerfeldt, G., 1984: Climatic changes at Pleistocene/Holocene boundary in the Middle Swedish end moraine zone, mainly inferred from stratigraphic indications. In N.-A. Mörner & W. Karlen (eds.): Climatic changes on a yearly to millennial basis, 37–56. Reidel, Dordrecht.
  • Björck, S. & Digerfeldt, G., 1989: Lake Mullsjön – a key site for understanding the final stage of the Baltic Ice Lake east of Mt. Billingen. Billingen 18, 209–219.
  • Björck, S., 1981: A stratigraphic study of Late Weichselian deglaciation, shore displacement and vegetation history in southeastern Sweden. Fossils and Strata 14, 1–93.
  • Björck, S., 1995: A review of the history of the Baltic Sea, 13.0–8.0 ka. BP: Quaternary International 27, 19–40.
  • Bjerrum, L., 1973: Problems of soil mechanics and construction of soft clays and structurally unstable soils. Proceedings of 8th International Conference of Soil Mechanics and Foundation Engineering, Moscow 3, 111–159.
  • Boone, S.J., 2010: A critical reappraisal of ‘preconsolidation pressure’ interpretations using the oedometer test. Canadian Geotechnical Journal 47 (3), 281–296. doi:10.1139/T09-093.
  • Burland, J.B., 1990: On the compressibility and shear strength of natural clays. Géotechnique 40 (3), 329–378. doi:10.1680/geot.1990.40.3.329.
  • Casagrande, A., 1936: The determination of the preconsolidation load and its practical significance, discussion D-34. Proceedings of the First International Conference on Soil Mechanics and Foundation Engineering, Cambridge 60–64.
  • Christoffersen, P. & Tulaczyk, S., 2003: Signature of palaeo-ice-stream stagnation: till consolidation induced by basal freeze-on. Boreas 32 (1), 114–129. doi:10.1111/j.1502-3885.2003.tb01433.x.
  • Christoffersen, P. & Tulaczyk, S., 2003: Response of subglacial sediments to basal freeze-on I. Theory and comparison to observations from beneath the west Antarctic Ice sheet. Journal of Geophysical Research 108 (B4), 2222. doi:10.1029/2002JB001935.
  • Greenwood, S. L., O'Regan, M., Swärd, H., Flodén, T., Ananyev, R., Chernykh, D. & Jakobsson, M., in press: Multiple re-advances of a Lake Vättern outlet glacier during Fennoscandian Ice Sheet retreat, south-central Sweden. Boreas. doi:10.1111/bor.12132.
  • Hansbo, S., 1957: A new approach to the determination of the shear strength of clay by the fall-cone test. Swedish Geotechnical Institute Proceedings, Stockholm. No. 14.
  • Hillenbrand, C.-D., Baesler, A. & Grobe, H., 2005: The sedimentary record of the last glaciation in the western Bellingshausen Sea (West Antarctica): implications for the interpretation of diamictons in a polar-marine setting. Marine Geology 216 (4), 191–204. doi:10.1016/j.margeo.2005.01.007.
  • Holtz, R.D., Kovacs, W.D. & Sheahan, T.C., 2011: An introduction to geotechnical engineering. 2nd ed Pearson Prentice-Hall, Upper Saddle River, NJ.
  • Huang, B. & Sharma, J.S., 2008: A coupled consolidation shear model for the process of formation of glaciated soils. Canadian Geotechnical Journal 45 (2), 226–237. doi:10.1139/T07-092.
  • Houmark-Nielsen, M. & Kjær, K., 2003: Southwest Scandinavia, 40–15 kyr bp: palaeogeography and environmental change. Journal of Quaternary Science 18 (8), 769–786. doi:10.1002/jqs.802.
  • Jakobsson, M., Björck, S., O'Regan, M., Flodén, T., Greenwood, S.L., Swärd, H., Lif, L., Ampel, L., Koyi, H. & Skelton, A., 2014: Major earthquake at the Pleistocene-Holocene transition in Lake Vättern, southern Sweden. Geology 42 (5), 379–382. doi:10.1130/G35499.1.
  • Karig, D.E. & Hou, G., 1992: High-stress consolidation experiments and their geologic implications. Journal of Geophysical Research 97 (B1), 289–300. doi:10.1029/91JB02247.
  • Karig, D.E. & Ask, M.V.S., 2003: Geological perspectives on consolidation of clay-rich marine sediments. Journal of Geophysical Research 108 (B4), 2197. doi:10.1029/2001JB000652.
  • Ladd, C.C. & Foott, R., 1974: New design procedure for stability of soft clays. Journal of the Geotechnical Engineering Division 100 (GT7), 763–786.
  • Larsen, N.K., Linge, H., Håkansson, L. & Fabel, D., 2012: Investigating the last deglaciation of the Scandinavian ice sheet in southwest Sweden with 10be exposure dating. Journal of Quaternary Science 27 (2), 211–220. doi:10.1002/jqs.1536.
  • Lundqvist, G., 1954: Räfflor, ändmoräner och isrecessionslinjer. In M. Lundqvist (ed.): Atlas Över Sverige, 21–22. Svenska sällskapet för antropologi och geografi, Stockholm.
  • Lundqvist, G., 1961: Beskrivning till karta över landisens anvsmältning och högsta kustlinjen i Sverige. SGU Ser. Aa 172.
  • Lundqvist, J., 1988: Late glacial ice lobes and glacial landforms in Scandinavia. In R.P. Goldthwait & C.L. Matsch (eds.): Genetic classification of glacigenic deposits, 217–225. A.A. Balkema, Rotterdam.
  • Lundqvist, J. & Wohlfarth, B., 2000: Timing and east–west correlation of south Swedish ice marginal lines during the Late Weichselian. Quaternary Science Reviews 20 (10), 1127–1148. doi:10.1016/S0277-3791(00)00142-6.
  • Lunne, T., Berre, T., Andersen, K.H., Strandvik, S. & Sjursen, M., 2006: Effects of sample disturbance and consolidation procedures on measured shear strength of soft marine Norwegian clays. Canadian Geotechnical Journal 43 (7), 726–750. doi:10.1139/t06-040.
  • Mesri, G., 1975: Discussion on new design procedure for stability of soft clays. Journal of the Geotechnical Engineering Division 101 (GT4), 409–412.
  • Moore, J.C. & Saffer, D., 2001: Updip limit of the seismogenic zone beneath the accretionary prism of SW Japan: An effect of diagenetic to low-grade metamorphic processes and increasing effective stress. Geology 29 (2), 183–186. doi:10.1130/0091-7613(2001)029 < 0183:ULOTSZ>2.0.CO;2.
  • Mulder, T. & Moran, K., 1995: Relationship among submarine instabilities, sea level variations, and the presence of an icesheet on the continental shelf: an example from the Verrill Canyon Area, Scotian Shelf. Paleoceanography 10 (1), 137–154. doi:10.1029/94PA02352.
  • Munthe, H., 1940: On the Late-Quaternary development and the Stone Age settlement of North Europe, primarily the Baltic. Royal Swedish Academy of Sciences Series 3:19:1.
  • Nilsson, E., 1953: Om södra Sveriges senkvartära historia. Geologiska föreningen i Stockholm Förhandlingar 75, 155–246.
  • Ó Cofaigh, C., Dowdeswell, J.A., Allen, C.S., Hiemstra, J.F., Pudsey, C.J., Evans, J. & Evans, J.A., 2005: Flow dynamics and till genesis associated with a marine based Antarctic palaeo-ice stream. Quaternary Science Reviews 24, 709–740.
  • O'Regan, M., Jakobsson, M. & Kirchner, N., 2010: Glacial geological implications of overconsolidated sediments on the Lomonosov Ridge and Yermak Plateau. Quaternary Science Reviews 29 (25-26), 3532–3544. doi:10.1016/j.quascirev.2010.09.009.
  • Rasmussen, S.O., Andersen, K.K., Svensson, A.M., Steffensen, J.P., Vinther, B.M., Clausen, H.B., Siggaard-Andersen, M.L., Johnsen, S.J., Larsen, L.B., Dahl-Jensen, D., Bigler, M., Röthlisberger, R., Fischer, H., Goto-Azuma, K., Hansson, M.E. & Ruth, U., 2006: A new Greenland ice core chronology for the last glacial termination. Journal of Geophysical Research 111 (D6), D06102. doi:10.1029/2005JD006079.
  • Sættem, J., Rise, L., Rokoengen, K. & By, T., 1996: Soil investigations, offshore mid Norway: a case study of glacial influence on geotechnical properties. Global and Planetary Change 12, 271–285.
  • Svendsen, J.I., Alexanderson, H., Astakhov, V.I., Demidov, I., Dowdeswell, J.A., Henriksen, M., Hjort, C., Houmark-Nielsen, M., Hubberten, H.W., Ingólfson, O., Jakobsson, M., Kjær, K., Larsen, E., Lokrantz, H., Lunkka, J.P., Lyså, A., Mangerud, J., Maslenikova, O., Matioushkov, A., Murray, A., Möller, P., Niessen, F., Saarnisto, M., Siegert, C., Stein, R., Siegert, M.J. & Spielhagen, R., 2004: Late Quaternary ice sheet history of northern. Eurasia: Quaternary Science Reviews 23 (11–13), 1229–1271.
  • Svantesson, S.-I., 1981: Beskrivning till jordartskartan Hjo. Sveriges Geologiska Undersökning Aa 44, 101.
  • Swärd, H., O'Regan, M., Ampel, L., Ananyev, R., Chernykh, D., Floden, T., Greenwood, S., Kylander, M., Mörth, C., Preto, P. & Jakobsson, M., 2015: Regional deglaciation and postglacial lake development as reflected in a 74 m sedimentary record from Lake Vättern, southern Sweden. GFF, this issue, 10.1080/11035897.2015.1055510.
  • Taylor, D.W., 1948: Fundamentals of soil mechanics. Wiley, 712 p New York.
  • Van der Wateren, F.M., Kluiving, S.J. & Bartek, L.R., 2000: Kinematic indicators of subglacial shearing. In A.J. Maltman, B.P. Hubbard & M.J. Hambrey (eds.): Deformation of Glacial Materials. , Volume 176: Geological Society Special Publication, 259–278. The Geological Society of London, London.
  • Waldemarson, D., 1986: Weichselian lithostratigraphy, depositional processes and deglaciation pattern in the southern Vättern basin, south Sweden. LUNDQUA Thesis, Vol. 17, 128pp.
  • Wood, D.M., 1991: Soil behaviour and critical state soil mechanics. Cambridge University Press, Cambridge.

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