Research Portal
Displaying 11 – 17 of 17 results
Analysis Framework for Long-Term and Cumulative Effects Monitoring
October 2018 – September 2020
This project created a framework for testing in-stream tidal turbine effects on specific marine species populations. The framework provides the basis for future assessment of far-field and cumulative environmental effects.
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
Shelburne Sub-Basin Play Fairway Analysis Update
November 2018 – June 2019
Shortly after the Scotian Shelf and Slope Play Fairway Analysis (PFA) was released in 2011, Shell Canada acquired six exploration parcels in the Shelburne Subbasin and collected approximately 10,850 square kilometers of wide azimuth 3D seismic data.
Geoscience » Source Rock & Depositional Environment
Nova Scotia-Morocco Conjugate Biostratigraphy Project
September 2018 – June 2019
Biostratigraphy, the study of fossils to determine the age and depositional conditions of the sediments from which they are recovered, is a critical input to the seismic reconstruction of the Nova Scotia and Morocco margins. Detailed biostratigraphical analyses have been completed by an internat
Optimized Combinations of Tidal, Wind and Solar Electricity Generation with Energy Storage to Meet Nova Scotia’s Electrical Demand
August 2018 – March 2019
Wind, solar and tidal-generated electricity each have different, but potentially complimentary, cyclic times.
STREEM: Sensor Testing Research for Environmental Effects Monitoring
October 2018 – March 2019
The research goal was to enhance understanding on sensor performance and sensor-to-sensor interactions to inform environmental effects monitoring (EEM) protocol for future tidal turbine deployments.
Innovative Solutions for De-risking Species Detections in Tidal Energy Environmental Effects Monitoring Programs
April 2018 – March 2019
With collaboration from Genome Atlantic, this research project is using a new environmental DNA technology to rapidly identify and determine abundance of different fish species in high-flow marine conditions. Experiments were conducted at Dalhousie University’s Aquatron facility. N