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Sujets en rapport avec les technologies propres » énergie éolienne

Creating a Workplan for Offshore Wind Pathways to Market Studies

March – September 2023

Offshore wind electricity has the potential to (1) satisfy domestic electricity demand, (2) be exported to neighbouring jurisdictions, and (3) be used for hydrogen production.  It is important for policymakers, power system operators, electricity regulators and other stakeholders to understa

Sujets en rapport avec les technologies propres » énergie éolienne

Value mapping Nova Scotia’s Offshore Wind Resources

March – April 2023

Offshore wind is an untapped resource in Nova Scotia, which, if developed, has the potential to enable energy exports, stimulate rural economies, and contribute towards meeting the province’s greenhouse gas emission reduction targets.

Sujets en rapport avec les technologies propres » Energy Storage

Energy Storage Policy and Practices: A Nova Scotia Perspective

March – June 2022

This study examined grid-scale energy storage policy and practices both internationally and locally. The work includes a review of policy and practices in other jurisdictions, an overview of the province’s current legislation, and targeted discussions with key stakeholders.

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

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 » 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 » technologies

In Situ Turbulence Replication and Measurement (InSTREAM)

October 2015 – January 2018

The In Situ Turbulence Replication and Measurement (InSTREAM) project was conceived to address some fundamental questions about the turbulence physics in tidal energy sites and laboratory tanks used to simulate these 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).