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Faits marquants sur l’énergie marémotrice » technologies

Imaging Sonar Data Automation Feasibility Study

May 2021 – June 2022

Multibeam imaging sonars can be used to monitor fish and marine mammal presence and behaviours in the near-field of tidal turbine installations, including evaluating avoidance, evasion, and potential blade strikes.

Sujets en rapport avec l’hydrogène » stratégie

Scoping an Atlantic Hydrogen Strategy

February – March 2022

Hydrogen is an energy vector that has the potential to play an important role in Atlantic Canada’s future energy system. While this role was recognized in two studies, Atlantic Canada does not have a hydrogen strategy.

Faits marquants sur l’énergie marémotrice » technologies

Field Assessment of Multi-beam Imaging Sonar Performance in Surface & Bottom Mount Deployments

March – December 2020

The Pathway Program - Technology Validation: Multibeam (Imaging) Sonars

Faits marquants sur l’énergie marémotrice » technologies

Improved Analysis of Harbour Porpoise Sounds

May – December 2020

The Pathway Program - Data Automation: Passive Acoustic Monitoring Devices

Sujets en rapport avec l’hydrogène » études de faisabilité

Net-Zero Future: A Feasibility Study of Hydrogen Production, Storage, Distribution and Use in The Maritimes

July – October 2020

This study explores hydrogen’s potential contribution to the Maritimes’ sustainable development goals. It also provides a technical and economic assessment of the role that hydrogen could play in the Maritimes’ energy transition.

Faits marquants sur l’énergie marémotrice » technologies

Data Analysis Component of Comparative Passive Acoustic Monitoring (PAM) technology assessment

November 2019 – June 2020

The Pathway Program - Technology Validation: Passive Acoustic Monitoring Device

Faits marquants sur l’énergie marémotrice » technologies

Advancements in technologies and techniques for tidal energy development 

April 2017 – March 2020

This project was funded under the Natural Resources Canada Energy Innovation Program and supported research into innovative technologies and techniques to advance the tidal energy sector.  The research was comprised of five unique research initiatives with focus areas in environment

Faits marquants sur l’énergie marémotrice » technologies

Acceleration/Particle Velocity (PA/PV) Measurement System Evaluation in a Tidal Environment

February 2017 – December 2018

The objective of this project was designing and running a field experiment to test the performance of the Particle Acceleration/Particle Velocity (PA/PV) vector sensor.

Faits marquants sur l’énergie marémotrice » technologies

Analysis of Tidal Turbine Mooring Systems in Turbulent Flows Applying the (Wind Industry) FAST Simulation Tool and DSA ProteusDS Software

March – September 2018

For floating tidal turbine platforms, the turbine forces and resulting platform motions have a direct impact on the lifetime of its moorings and cables. This means the tidal sector must predict accurate tidal turbine loading on floating platforms to determine mooring life and cable longevity.

Faits marquants sur l’énergie marémotrice » technologies

Assessing Corrosion, Wear, Fatigue and VIV on Moorings and Cabling to Reduce Risk in Marine Operations

October 2017 – August 2018

The cost of cabling and moorings over the entire life of a tidal energy project is a significant proportion of total project expenditures and the potential failure of these components remains a major risk for the emerging tidal energy sector.