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Sujets en rapport avec les technologies propres » énergie géothermique

Community Geothermal Resource: Capacity Assessment and Training Program (GeoCAT)

March 2022 – November 2024

Working together with our partners, Net Zero Atlantic will build project development capacity for mid-depth geothermal energy-based projects in Mi’kmaw and rural Nova Scotia communities.

This project has two parts:

Sujets en rapport avec les technologies propres » énergie géothermique

Phase III: Nova Scotia Geothermal Strategic Planning Proposal

March – May 2022

The Phase I and Phase II geothermal reports demonstrated that Nova Scotia needs to gather more subsurface data – in particular by drilling one or more exploration wells to further ‘de-risk’ the province’s mid-depth geothermal resources.  For these wells to be helpful, they must be located in

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 » vie marine

Whale Tails & Other Stories

June 2019 – December 2020

The Marine Mammal Observer Program studied the potential interactions between marine animals and Sustainable Marine Energy Canada’s floating tidal power platform located in Grand Passage, NS.  The Program also evaluated the effectiveness of various tools and equipment to detect, locate, and

Faits marquants sur l’énergie marémotrice » vie marine

Testing of 360-Degree Imaging Technologies for Improved Animal Detection around Tidal Energy Installations

May 2019 – February 2020

The research goal was to conduct a field study to test the performance of a new imaging camera system mounted on a floating tidal platform deployed in Grand Passage, Bay of Fundy.  Field testing featured testing of different camera mount locations on the platform in order to optimize fi

Faits marquants sur l’énergie marémotrice » vie marine

Multipurpose X-Band Marine Radar Network for the Minas Passage

January – November 2019

Marine X-band radar locates vessels and features, including coastlines and buoys.  It filters distracting signals (eg.

Faits marquants sur l’énergie marémotrice » vie marine

Integrated Active and Passive Acoustic System for Environmental Monitoring (ISEM)

August 2015 – May 2019

The project team will develop a novel environmental monitoring system that integrates data analysis software and active and passive acoustic sensors to provide real-time tracking of fish and marine mammals in high energy sites.

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

Going with the Flow: Advancement of Drifting Platforms for use in Tidal Energy Site Assessment & Environmental Monitoring

April 2015 – August 2017

This research project aimed to apply a simple and low cost philosophy to ocean observation by developing an inexpensive low-profile surface drifter for use in initial assessment of potential tidal energy development opportunities.  The project addressed limitations in the existing drifter de

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

Numerical Modeling of Tidal Turbine Behaviour under Real Turbulent Tidal Flow Conditions

December 2015 – December 2016

Researchers investigated and numerically quantified the behaviour of a tidal turbine under turbulent unsteady tidal flow, using flow data collected in the lower Bay of Fundy (Digby area).