Research Portal
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Geoscience » Source Rock & Depositional Environment
Scotian Shelf Oils Geochemistry
December 2019 – December 2020
Twenty-five significant hydrocarbon discoveries have been made on the Scotian Shelf in shallow water. Additionally, staining is observed in many wells and over a large geographical area.
Geoscience » Source Rock & Depositional Environment
Aspy Well Geochemistry
December 2019 – September 2020
This project determines if indications of migrated hydrocarbons or potential source rocks were encountered during the 2018 drilling of BP’s deep-water well Aspy D-11 well.
Geoscience » Source Rock & Depositional Environment
Predictive Modeling of Sandstone Reservoir Distribution in the SW Scotian Basin
March 2018 – April 2020
The SW Scotian Basin is considered an under-explored passive margin sedimentary basin, however, it is also the most probable location to find oil on the Scotian Margin.
Geoscience » Play Fairway Analyses Atlases 2010–Present
Greater North Atlantic Liassic Petroleum Systems Synthesis
October 2019 – February 2020
In the absence of definitive, direct evidence for a Liassic (i.e. Lower Jurassic) petroleum system offshore Nova Scotia, information is required on source rock analogs around the greater North Atlantic region.
Geoscience » Source Rock & Depositional Environment
Piston Coring Geochemistry Program
January 2015 – January 2020
Confirming the presence of hydrocarbons from an oil-prone Jurassic age source rock would encourage exploration in the deep water portion of Nova Scotia’s offshore.
Impacts of Tidal Energy Extraction on Sediment Dynamics in Minas Basin, Bay of Fundy
February 2010 – December 2012
Researchers developed a numerical hydrodynamic and sediment transport model for Minas Basin in the Bay of Fundy, focusing on the sediment dynamics of the tidal inlets and flats.
Effects of Energy Extraction on Sediment Dynamics in Intertidal Ecosystems of the Minas Basin
January 2010 – May 2012
This project assessed how the dynamics of sedimentation change when energy is extracted from a macro-tidal system. The differences in tidal prism and energy between neap and spring tidal cycles were used as a proxy for energy extraction by in-stream tidal power devices.