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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 les technologies propres » études de faisabilité

The importance of ESG reporting for Nova Scotia’s energy sector supply chain

March – May 2022

Demonstrating commitment to ESG (Environmental, Social, Governance) principles and reporting has become an integral part of partner selection and investment decision making processes in many industries and jurisdictions.

Sujets en rapport avec les technologies propres » études de faisabilité

Energy Storage Policy and Practices

March – May 2022

To accommodate expanded renewable energy production and accelerated coal plant closures, Nova Scotia’s electricity grid will require additional resources that can store energy and provide reliability.  In this context, a comprehensive understanding of the policy and practices that can be use

Faits marquants sur l’énergie marémotrice » technologies

FORCE Data Management System/User Interface

April – June 2017

This project defined a Data Management System (DMS) and user interface solution for use by FORCE.

Faits marquants sur l’énergie marémotrice » technologies

Impact of Channel Blockage on the Performance of Axial and Cross-Flow Hydrokinetic Turbines

April 2017

This work investigates the effect of channel blockage on how axial and cross-flow turbines perform. The objective is to fill a gap in the literature on suitable blockage corrections for cross-flow turbines.

Faits marquants sur l’énergie marémotrice » technologies

Advancing Tidal Energy Turbine Operations through High Fidelity Tug Propulsion and Control Simulation Software

November 2016 – March 2017

The project objective was to develop a numerical model of a tug boat and its propulsion system to accurately predict its dynamic behaviour in turbulent tidal flows.

Faits marquants sur l’énergie marémotrice » plancher océanique, sédiments et domaine benthique

Impacts of Tidal Energy Extraction on Sediment Dynamics in Minas Basin, Bay of Fundy

February 2010 – December 2012

Researchers developed a numerical hydrodynamic and sediment transport model for Minas Basin in the Bay of Fundy, focusing on the sediment dynamics of the tidal inlets and flats.

Faits marquants sur l’énergie marémotrice » plancher océanique, sédiments et domaine benthique

Effects of Energy Extraction on Sediment Dynamics in Intertidal Ecosystems of the Minas Basin

January 2010 – May 2012

This project assessed how the dynamics of sedimentation change when energy is extracted from a macro-tidal system. The differences in tidal prism and energy between neap and spring tidal cycles were used as a proxy for energy extraction by in-stream tidal power devices.