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Deformation of Anhydrite–gypsum rocks in central Spitsbergen

Published online by Cambridge University Press:  01 May 2009

W. B. Harland
Affiliation:
Cambridge Arctic Shelf Programme, West Building, Department of Earth Sciences, University of Cambridge, Gravel Hill, Huntingdon Road, Cambridge CB3 0DJ, U.K.
A. Mann
Affiliation:
Cambridge Arctic Shelf Programme, West Building, Department of Earth Sciences, University of Cambridge, Gravel Hill, Huntingdon Road, Cambridge CB3 0DJ, U.K.
C. Townsend
Affiliation:
Cambridge Arctic Shelf Programme, West Building, Department of Earth Sciences, University of Cambridge, Gravel Hill, Huntingdon Road, Cambridge CB3 0DJ, U.K.

Abstract

Early Permian anhydrite–gypsum strata in central Spitsbergen show deformation of sulphate nodules in dolostone (chicken-wire structure) to varying degrees from imbricate to extreme flattening and elongation. These shear zones often occur between undeformed layers of apparently similar strata.

The shear zones indicate a minimum displacement of between 0.5 and 1.5 km to the ENE of Zechstein and later strata over the Nordfjorden Block. Resultant folding and faulting over the Billefjorden Fault Zone represent an eastward manifestation of the Eocene West Spitsbergen Orogeny.

Type
Articles
Copyright
Copyright © Cambridge University Press 1988

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References

Cobbold, P. R. & Quinquis, H. 1980. Development of sheath folds in shear regimes. Journal of Structural Geology 2, 119–26.CrossRefGoogle Scholar
Cutbill, J. L. & Challinor, A. 1965. Revision of the stratigraphical scheme for the Carboniferous and Permian Rocks of Spitsbergen and Bjørnøya. Geological Magazine 102 (5), 418–39.CrossRefGoogle Scholar
Forbes, C. L., Harland, W. B. & Hughes, N. F. 1958. Palaeontological evidence for the age of the Carboniferous and Permian rocks of central Vestspitsbergen. Geological Magazine 95, (6), 465–90, map.CrossRefGoogle Scholar
Gee, E. R., Harland, W. B. & McWhae, J. R. H. 1953 a. Geology of central Vestspitsbergen. I. Review of the geology of Spitsbergen with special reference to central Vestspitsbergen. Tansactions of the Royal Society of Edinburgh 62, part 2, no. 9, for 1951–2, pp. 299321, plates i–vii.Google Scholar
Gee, E. R., Harland, W. B. & McWhae, J. R. H. 1953 b. Geology of Central Vestspitsbergen. Part II. Carboniferous to Lower Permian of Billefjorden. Transactions of the Royal Society of Edinburgh 62, part 2, no. 9, for 1951–2, pp. 321–56.Google Scholar
Harland, W. B. 1985. Caledonide Svalbard. In The Caledonide Orogen – Scandinavia and Related Areas (ed. Gee, D. G. & Sturt, P. A.), pp. 9991016. London: Wiley.Google Scholar
Harland, W. B., Cutbill, J. L., Friend, P. F., Gobbett, D. J., Holliday, D. W., Maton, P. I., Parker, J. R. & Wallis, R. H. 1974. The Billefjorden Fault Zone, Spitsbergen: the long history of a major tectonic lineament. Norsk Polarinstitutt Skrifter, no. 161, 72 pp.Google Scholar
Harland, W. B. & Horsfield, W. T. 1974. West Spitsbergen Orogen. In Mesozoic–Cenozoic Orogenic Belts. Data for Orogenic Studies (ed. Spencer, A. M.), pp. 747–55. Geological Society, London, Special Publication no. 4.Google Scholar
Harland, W. B. & Wright, N. J. R. 1979. Alternative hypothesis for the pre-Carboniferous evolution of Svalbard. Norsk Polarinstitutt Skrifter 1967, pp. 89117. (Symposium on Svalbard's Geology, Oslo, June 1975, Chairman, T. S. Winsnes.)Google Scholar
Holliday, D. W. 1966. Nodular gypsum and anhydrite rocks in the Billefjorden region, Spitsbergen. Norsk Polarinstitutt Årbok, 1965, pp. 6573.Google Scholar
Holliday, D. W. 1967. Secondary gypsum in Middle Carboniferous rocks of Spitsbergen. Geological Magazine 104, (2), 171–77.CrossRefGoogle Scholar
Holliday, D. W. 1968. Early diagenesis in Middle Carboniferous Nodular Anhydrite of Spitsbergen. Proceedings of the Yorkshire Geological Society 36, (3), 277–83 (discussion 283–92).CrossRefGoogle Scholar
Holliday, D. W. & Cutbill, J. L. 1972. The Ebbadalen Formation (Carboniferous), Spitsbergen. Proceedings of the Yorkshire Geological Society 39, (1), 132.CrossRefGoogle Scholar
Kendall, A. C. 1984. Evaporites. In Facies Models, 2nd ed. (ed. Walker, R. G.), pp. 259–96. Geoscience Canada, Reprint Series 1.Google Scholar
Lauritzen, Ø. 1977.Development patterns of gypsum/ anhydrite in Lower Permian sediments of central Spitsbergen – a suggested classification. Norsk Polarinstitutt Årbok, Oslo 1976, pp. 520.Google Scholar
Lauritzen, Ø. 1981. Investigations of Carboniferous and Permian sediments in Svalbard. I: The development of the Gipshuken Formation (Lower Permian) at Trogull-fughfjella in Central Spitsbergen, Svalbard. II: The Carboniferous and Permian stratigraphy of the Wahlen-lugfjorden Nordaustlandet, Svalbard. Norsk Polarinstitutt Skrifter, 176, 44 pp.Google Scholar
Maher, H. D., Craddock, C. & Maher, K. 1986. Kinematics of Tertiary structures in upper Paleozoic and Mesozoic Strata on Midterhuken, West Spitsbergen. Bulletin of the Geological Society of America 97, 1411–21.2.0.CO;2>CrossRefGoogle Scholar
McWhae, J. R. H. 1953. The Carboniferous breccias of Billefjorden, Vestspitsbergen. Geological Magazine 95, 287–98.CrossRefGoogle Scholar
Nathorst, A. G. 1910. Beiträge zur Geologie der Baren Insel, Spitzbergens und des König-Karl-Landes. Bulletin of the Geological Institute of the University of Uppsala, 10, 1910–11, pp. 261415 (plates xiv and xv). [10, 1910–11, Uppsala 1910.]Google Scholar
Ramsay, J. G. 1967. Folding and Fracturing of Rocks. New York: McGraw-Hill.Google Scholar
Schreiber, G. C. 1986. Arid shorelines and evaporites. In Sedimentary Environments and Facies (ed. Reading, H. G.), 2nd edition, pp. 189228. London: Scientific Publications.Google Scholar
Woodcock, N. H. 1987. Kinematics of strike-slip faulting, Builth Inlier, Mid Wales. Journal of Structural Geology, 9, (3), 353–63.CrossRefGoogle Scholar
Worsley, D. & Aga, O. J. 1986. The Geological History of Sualbard. Evolution of an Arctic Archipelago. Den Norsk Stats Oljeselskap a.a., Stavanger, 121 pp.Google Scholar