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Faits marquants sur l’énergie marémotrice » caractérisation et modélisation des ressources en énergie marémotrice

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.

Faits marquants sur l’énergie marémotrice » vie marine

Real-Time Detection of Marine Mammals in High Flow Environments

May 2019 – September 2021

The project research goal is to design and test an innovative acoustic sensor system that will feature a wireless magneto-inductive (MI) communications link – to alert users in real time of the presence and location of marine mammals in high noise tidal environments.  The research entails a

Faits marquants sur l’énergie marémotrice » infrastructures et pratiques exemplaires

Review of Nova Scotia Power Transmission System Interconnection Requirements

April – May 2021

Power Advisory was engaged by OERA on behalf of the Nova Scotia Department of Energy & Mines to review the recently released Nova Scotia Power Transmission System Interconnection Requirements (TSIR) and identify any gaps between recommendations made by Power Advisory in their August 2020 repo

Faits marquants sur l’énergie marémotrice » vie marine

Development of Acoustic Doppler Aquatic Animal Monitoring (ADAAM) for application to marine life movement in high-energy tidal channels

March 2018 – February 2021

Acoustic Doppler Current Profilers (ADCPs) are a standard tool used for measuring ocean currents.

Faits marquants sur l’énergie marémotrice » vie marine

3-D Acoustic Tracking of Fish, Sediment-Laden Ice and Large Wood Debris in the Minas Passage of the Bay of Fundy

October 2009 – December 2011

Researchers used VEMCO animal tracking technology to complete in-situ testing of the path, depth and velocity of fish and objects passing through the Minas Passage.

Faits marquants sur l’énergie marémotrice » caractérisation et modélisation des ressources en énergie marémotrice

Assessment of Hydrodynamic Impacts throughout the Bay of Fundy and Gulf of Maine due to Tidal Energy Extraction by Tidal Lagoons

January 2010 – December 2011

The researchers extended existing hydrodynamic models of tidal flows in the Bay of Fundy to simulate the presence and operation of a tidal lagoon project located in the Minas Basin.

Faits marquants sur l’énergie marémotrice » caractérisation et modélisation des ressources en énergie marémotrice

Assessment of the Potential of Tidal Power from Minas Passage and Minas Basin

October 2009 – September 2011

This project estimated the power potential of the tides and tidal currents in the Minas Basin and Minas Channel regions of the Bay of Fundy.

Faits marquants sur l’énergie marémotrice » infrastructures et pratiques exemplaires

Nova Scotia Tidal Energy Symposium - Small Tidal Workshop

July 2011

As part of the two-day Nova Scotia Tidal Symposium: Getting Power to Market held on July 7 and 8, 2011, the Province of Nova Scotia hosted a half-day small-scale tidal workshop. This workshop included a gap analysis for small-scale in-stream tidal technology.

Faits marquants sur l’énergie marémotrice » infrastructures et pratiques exemplaires

Marine Renewable Energy Legislation – A Consultative Process

September 2010 – March 2011

This consultation paper focuses on Marine Renewable Energy legislation. It was developed to guide legislation related to the renewable energy resources in the Bay of Fundy before large-scale commercial development takes place.

Faits marquants sur l’énergie marémotrice » caractérisation et modélisation des ressources en énergie marémotrice

Near Field Effects of Tidal Power Extraction on Extreme Events and Coastline Integrity in the Bay of Fundy

January 2010 – March 2011

Researchers quantified the near-field effects of power extraction on the resulting effects of extreme storm events and coastline integrity by implementing a spectral wave model to numerically simulate wave transformation for tidal current conditions with and without turbines.