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The Vectron2 Project: Turbulence Measurements for the In-stream Tidal Energy Industry

March 2019 – November 2021

The Vectron is a new sensor used for measuring turbulence velocity within a tidal turbine’s swept area.  The Vectron has been successfully prototyped, where next steps are to take the technology to the ‘industry-ready’ stage of development and the focus of this project.

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

Seismic Reconstruction and Petroleum Systems Modeling of the Nova Scotia-Morocco Conjugate Margin

April – December 2019

Seismic Reconstruction

The Seismic Reconstruction project is a stand-alone element of the Conjugate Margin Program undertaken by the consulting firm Beicip Franlab. A number of subprojects and data streams are inputs to this project.

Geoscience » Seismic & Marine Sound

Establishment of Baseline Biological Data on Snow Crab (Chionoecetes opilio) Offshore Cape Breton for Future Assessment of Potential Impacts of Seismic Noise on Snow Crab

April 2012 – February 2015

The study investigates the impact of sound energy generated by acoustic/seismic arrays on snow crabs.

Geoscience » Seismic & Marine Sound

Test Snow Crab Response to Seismic Stress

February 2012 – September 2013

There is concern in Atlantic Canada that there is insufficient information on the potential effects of seismic noise on snow crab.

Tidal Energy Resource Assessment Map for Nova Scotia

March – October 2012

This project used numerical simulations and theoretical calculations to predict not only the power that can be extracted from the flow through a passage but also the reduction in flow through the passage.