Hostname: page-component-848d4c4894-p2v8j Total loading time: 0 Render date: 2024-06-09T10:33:03.090Z Has data issue: false hasContentIssue false

A shallow detachment beneath the North Greenland fold belt: implications for sedimentation and tectonics

Published online by Cambridge University Press:  01 May 2009

N. J Soper
Affiliation:
Department of Geology, University of Sheffield, Mappin Street, Sheffield SI 3JD, U.K.
A. K. Higgins
Affiliation:
Geological Survey of Greenland, Øster Voldgade 10, DK-1350, Copenhagen K., Denmark.

Abstract

In northern Greenland in early Palaeozoic time a turbidite trough (the eastward extension of the Hazen trough of Arctic Canada) was flanked to the south by a carbonate platform. The trough was deformed during the mid-Palaeozoic Ellesmerian orogeny to form the E–W trending North Greenland fold belt. This fold belt was deformed further by Eurekan (Tertiary) structures, important among which is a major fault complex, the Harder Fjord fault zone (HFFZ). The suggestion has been made that this fault zone controlled early Cambrian sedimentation, even though the fault trace does not coincide with the trough–platform facies transition in sediments of that age; this has led to some controversy.

We report new information from a mapping programme by the Geological Survey of Greenland which has established the thin-skinned nature of Ellesmerian deformation at the trough-platform transition and implies that much of the fold belt is underlain by a shallow detachment. This in turn implies that the HFFZ exists in the hanging-wall of the detachment while the early Cambrian trough-platform transition is located autochthonously in the foot-wall. We adduce evidence to show that the latter was probably controlled by syndepositional faulting with actively eroding fault scarps and suggest that these basement structures were reactivated in a dextral strike-slip mode in early Tertiary time to form the HFFZ as now observed.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1987

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Bally, A. W. 1081. Thoughts on the tectonics of folded belts. In Thrust and Nappe Tectonics (eds. McClay, K. R. & Price, N. J.), pp. 1332. Special Publications of the Geological Society of London no. 9.Google Scholar
Brewer, J. A. & Smythe, D. K. 1984. MOIST and the continuity of crustal reflector geometry along the Caledonian–Appalachian orogen. Journal of the Geological Society of London 141, 105–20.CrossRefGoogle Scholar
Dawes, P. R. 1976. Precambrian to Tertiary of northern Greenland. In Geology of Greenland (eds. Escher, A. & Watt, W. S.), pp. 248303. Copenhagen: Geological Survey of Greenland.Google Scholar
Dawes, P. R. & Soper, N. J. 1973. Pre-Quaternary history of North Greenland. In Arctic Geology (ed. Pitcher, M. G.), pp. 117–34. Memoir of the American Association of Petroleum Geologists no. 19.Google Scholar
Dawes, P. R. & Soper, N. J. 1979. Structural and stratigraphic framework of the North Greenland fold belt in Johannes V. Jensen Land, Peary Land. Rapport Grenlands Geologiske Undersøgelse 93, 40 pp.Google Scholar
Friderichsen, J. D. & Bengaard, H.-J. 1985. The North' Greenland fold belt in eastern Nansen Land. Rapport Grønlands Geologiske Undersøgelse 126, 6978.CrossRefGoogle Scholar
Friderichsen, J. D., Higgins, A. K., Hurst, J. M., Pedersen, S. A. S., Soper, N. J. & Surlyk, F. 1982. Lithostratigraphic framework of the Upper Proterozoic and Lower Palaeozoic deep water clastic deposits of North Greenland. Rapport Grønlands Geologlogiske Undersøgelse 107, 19 pp.Google Scholar
Higgins, A. K. 1986. Geology of central and eastern North Greenland. Rapport Grenlands Geologiske Undersegelse 128, 3754.CrossRefGoogle Scholar
Higgins, A. K. & Soper, N. J. 1985. Cambrian–Lower Silurian slope and basin stratigraphy between northern Nyeboe Land and western Amundsen Land, North Greenland. Rapport Gronlands Geologiske Undersogelse 126, 7986.CrossRefGoogle Scholar
Higgins, A. K., Friderischsen, J. D. & Soper, N. J. 1981. The North Greenland fold belt between central Johannes V. Jensen Land and eastern Nansen Land. Rapport Grønlands Geologiske Undersøgelse 106, 3545.CrossRefGoogle Scholar
Higgins, A. K., Mayr, U. & Soper, N. J. 1982. Fold belts and metamorphic zones of northern Ellesmere Island and North Greenland. In Nares Strait and the Drift of Greenland: A Conflict in Plate Tectonics (eds. Dawes, P. R. & Kerr, J. W.), pp. 159–66. Meddelelser om Gronland, Geoscience 8.Google Scholar
Higgins, A. K., Soper, N. J. & Friderichsen, J. D. 1985. North Greenland fold belt in eastern North Greenland. In The Caledonide Orogen–Scandinavia and Related Areas (eds. Gee, D. G. & Sturt, B. A.), pp. 1017–29. John Wiley & Sons Ltd.Google Scholar
Hurst, J. M. & Surlyk, F. 1982. Stratigraphy of the Silurian turbidite sequence of North Greenland. Bulletin Grenlands Geologiske Undersogelse 145, 121 pp.Google Scholar
Hurst, J. M. & Surlyk, F. 1983. Initiation, evolution and destruction of an early Palaeosoic carbonate shelf, eastern North Greenland. Journal of Geology 91, 671–91.CrossRefGoogle Scholar
Hurst, J. M. & Surlyk, F. 1984. Tectonic control of Silurian carbonate-shelf margin morphology and facies, North Greenland. American Association of Petroleum Geologists Bulletin 68, 117.Google Scholar
Hurst, J. M., McKerrow, W. S., Soper, N. J. & Surlyk, F. 1983. The relationship between Caledonian nappe tectonics and Silurian turbidite deposition in North Greenland. Journal of the Geological Society of London 140, 123–31.CrossRefGoogle Scholar
Ineson, J. R. 1980. Carbonate debris flows in the Cambrian of south-west Peary Land, eastern North Greenland. Rapport Grønlands Geologiske Undersegelse 99, 43–9.CrossRefGoogle Scholar
Ineson, J. R. & Peel, J. S. 1980. Cambrian stratigraphy in Pearly Land, eastern North Greenland. Rapport Gronlands Geologiske Undersøgelse 99, 3342.CrossRefGoogle Scholar
McKenzie, D. 1978. Some remarks on the development of sedimentary basins. Earth and Planetary Science Letters 40, 2532.CrossRefGoogle Scholar
Parsons, I. 1981. Volcanic centres between Frigg Fjord and Midtkap, eastern North Greenland. Rapport Grønlands Geologiske Undersøgelse 106, 6975.CrossRefGoogle Scholar
Pedersen, S. A. S. 1980. Regional geology and thrust fault tectonics in the southern part of the North Greenland fold belt, north Peary Land. Rapport Grønlands Geologiske Undersøgelse 99, 7987.CrossRefGoogle Scholar
Peel, J. S. 1982. The Lower Paleozoic of Greenland. Memoir of the Canadian Society of Petroleum Geologists 8, 309–30.Google Scholar
Schuchert, C. 1923. Sites and nature of the North American geosynclines. Bulletin of the Geological Society of America 34, 151229.CrossRefGoogle Scholar
Soper, N. J. & Higgins, A. K. 1985. Thin-skinned structures at the trough-platform transition in North Greenland. Rapport Grenlands Geologiske Undersegelse 126, 8794.CrossRefGoogle Scholar
Soper, N. J. & Higgins, A. K. in press. Eurekan deformation – Greenland. In The Innuitian Region (ed. Trettin, H. P.). Geological Survey of Canada, The Geology of North America, volume E.Google Scholar
Soper, N. J., Higgins, A. K. & Friderichsen, J. D. 1980. The North Greenland fold belt in eastern Johannes V. Jensen Land. Rapport Grenlands Geologiske Undersøgelse 99, 8998.CrossRefGoogle Scholar
Soper, N. J., Dawes, P. R. & Higgins, A. K. 1982. Cretaceous–Tertiary magmatic and tectonic events in North Greenland and the history of adjacent ocean basins. In Nares Strait and the Drift of Greenland: A Conflict in Plate Tectonics (eds. Dawes, P. R. & Kerr, J. W.), pp. 205–20. Meddelelser om Grønland, Geoscience 8.Google Scholar
Surlyk, F. & Hurst, J. M. 1983. Evolution of the early Paleozoic deep-water basin of north Greenland–Aulacogen or narrow ocean? Geology 11, 7781.2.0.CO;2>CrossRefGoogle Scholar
Surlyk, F. & Hurst, J. M. 1984. The evolution of the early Paleozoic deep-water basin of North Greenland. Bulletin of the Geological Society of America 95, 131–54.2.0.CO;2>CrossRefGoogle Scholar
Surlyk, F., Hurst, J. M. & Bjerreskov, M. 1980. First age-diagnostic fossils from the central part of the North Greenland foldbelt. Nature 286, 800–3.CrossRefGoogle Scholar
Trettin, H. P. 1971. Geology of lower Paleozoic formations, Hazen Plateau and southern Grant Land Mountains, Ellesmere Island, Arctic Archipelago. Bulletin of the Geological Survey of Canada 203, 134 pp.Google Scholar
Trettin, H. P. & Balkwill, H. R. 1979. Contributions to the tectonic history of the Innuitian Province, Arctic Canada. Canadian Journal of Earth Sciences 16, 748–69.CrossRefGoogle Scholar
Trettin, H. P., Barnes, C. R., Kerr, J. W., Norford, B. S., Pedder, A. E. H., Riva, J., Tipnis, R. S. & Uyeno, T. T. 1979. Progress in lower Paleozoic stratigraphy, northern Ellesmere Island, District of Franklin. Paper 79–1B, Geological Survey of Canada, pp. 269–79.Google Scholar