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Late Quaternary changes in sediment sources in the Labrador Sea
First-cycle sand supply and the evolution of the eastern Canadian continental margin: Insights from Pb isotopes in the Mesozoic Scotian Basin
A reworked isolated deposit of the Kos Plateau Tuff and its significance for dating raised marine terraces, Kos, Greece
Are submarine landslides an underestimated hazard on the western North Atlantic passive margin?
Geochronology and trace element mobility in rutile from a Carboniferous syenite pegmatite and the role of halogens
Paleoseismicity of the continental margin of eastern Canada: Rare regional failures and associated turbidites in Orphan Basin
Exploring the deep sea and beyond: Contributions to marine geology in honor of William R. Normark (Volume II)
Correlation of the Aptian Naskapi Member of the Scotian Basin and its regional implications
Fractured latest Devonian granites of the West Moose River pluton along the Cobequid Shear Zone, Nova Scotia: implications for regional mineralization
The provenance of Jurassic and Lower Cretaceous clastic sediments offshore southwestern Nova Scotia
Systematic mineralogical diversity in A-type granitic intrusions: Control of magmatic source and geological processes
Key Future Directions For Research On Turbidity Currents and Their Deposits
Early Carboniferous collision of the Kalamaili orogenic belt, North Xinjiang, and its implications: Evidence from molasse deposits
Lateral variation in sandstone lithofacies from conventional core, Scotian Basin: implications for reservoir quality and connectivity 1 This article is one of a series of papers published in this CJES Special Issue on the theme of Mesozoic–Cenozoic geology of the Scotian Basin . 2 Geological Survey of Canada Contribution 20120021.
Early Cretaceous volcanism in the Scotian Basin 1 This article is one of a series of papers published in this CJES Special Issue on the theme of Mesozoic–Cenozoic geology of the Scotian Basin .
Detrital zircon geochronology and polycyclic sediment sources, Upper Jurassic – Lower Cretaceous of the Scotian Basin, southeastern Canada 1 This article is one of a series of papers published in this CJES Special Issue on the theme of Mesozoic–Cenozoic geology of the Scotian Basin .
The provenance of Middle Jurassic sandstones in the Scotian Basin: petrographic evidence of passive margin tectonics 1 This article is one of a series of papers published in this CJES Special Issue on the theme of Mesozoic–Cenozoic geology of the Scotian Basin . 2 Geological Survey of Canada Contribution 20110319.
Detrital muscovite geochronology and the Cretaceous tectonics of the inner Scotian Shelf, southeastern Canada 1 This article is one of a series of papers published in this CJES Special Issue on the theme of Mesozoic–Cenozoic geology of the Scotian Basin . 2 Geological Survey of Canada Contribution 20120142.
Erosional and Depositional Features of Glacial Meltwater Discharges on the Eastern Canadian Continental Margin
Abstract Large-scale glacial meltwater discharges have long been recognized as important sedimentological agents on the eastern Canadian continental margin. Previous studies in Eastern Valley of Laurentian Fan and Orphan Basin have elucidated aspects of processes and timing of glacial discharges, principally from seismic-reflection profiles and deep-water sidescan sonar. New multibeam bathymetry and piston cores show evidence of important meltwater processes seaward of all transverse troughs on the continental shelf, from Hudson Strait to the Scotian margin. Meltwater cuts broad flat-floored valleys and sculpts residual buttes, depositing thick-bedded gravel and sand turbidites, and builds submarine fans. Based on morphology, a wide range of scales of meltwater discharge may take place. Meltwater is intimately linked with supply of fluid glacial diamict (till) that on gentler slopes (< 2.5°) creates glacigenic debris flows but on steeper slopes breaks up, entrains water, and transforms to create erosive turbidity currents. Three end-member processes are recognized on submarine fans seaward of transverse troughs that were occupied by ice streams: glacigenic debris flows, turbidity-current deposition of channel–levee complexes, and blocky mass-transport deposits resulting from debris avalanches. The relative importance of meltwater appears greater at lower than at higher latitudes, whereas the formation of glacigenic debris flows is dependent on gradient. Pleistocene processes have resulted in slopes that are graded, implying that most sand deposition was on the continental rise.