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Hill, Philip R., Mudie, Peta J., Moran, Kate, Blasco, Steve M. (1985) A sea-level curve for the Canadian Beaufort Shelf. Canadian Journal of Earth Sciences, 22 (10) 1383-1393 doi:10.1139/e85-146

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Reference TypeJournal (article/letter/editorial)
TitleA sea-level curve for the Canadian Beaufort Shelf
JournalCanadian Journal of Earth Sciences
AuthorsHill, Philip R.Author
Mudie, Peta J.Author
Moran, KateAuthor
Blasco, Steve M.Author
Year1985 (October 1)Volume22
Issue10
PublisherCanadian Science Publishing
DOIdoi:10.1139/e85-146Search in ResearchGate
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Mindat Ref. ID478402Long-form Identifiermindat:1:5:478402:3
GUID0
Full ReferenceHill, Philip R., Mudie, Peta J., Moran, Kate, Blasco, Steve M. (1985) A sea-level curve for the Canadian Beaufort Shelf. Canadian Journal of Earth Sciences, 22 (10) 1383-1393 doi:10.1139/e85-146
Plain TextHill, Philip R., Mudie, Peta J., Moran, Kate, Blasco, Steve M. (1985) A sea-level curve for the Canadian Beaufort Shelf. Canadian Journal of Earth Sciences, 22 (10) 1383-1393 doi:10.1139/e85-146
In(1985, October) Canadian Journal of Earth Sciences Vol. 22 (10) Canadian Science Publishing
Abstract/Notes Radiocarbon-dated peat and peaty clay samples from geotechnical boreholes in the Canadian Beaufort continental shelf have been used to reconstruct a late Quaternary relative sea-level (RSL) curve. The samples were carefully selected and evaluated using palynological techniques, to ensure that reasonable age error limits could be given to each sample. The dated samples were then related to the local geological setting, using seismic profiles to determine the environment of deposition. The resulting data show a rise of 140 m in RSL since 27 000 years BP. A minor lowering of RSL at some time between 20 000 and 10 000 years BP is inferred from acoustic data. Contributions from basin subsidence, sediment loading, and consolidation account for 35 m of the total RSL rise. The RSL curve is interpreted in the light of recent models of the isostatic and eustatic responses of the Earth's crust at the Laurentide ice-sheet margin. Ice may have been more extensive during the middle Wisconsinan than previously thought and may have caused the major lowering of sea level in the shelf area. This ice may have advanced to within several hundred kilometres of the Mackenzie Delta – Tuktoyaktuk Peninsula coast. An ice readvance of late Wisconsinan age probably caused a subsequent minor lowering of RSL.


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