Research Portal
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Clean Tech » Emerging Concepts and Technologies Research Program
Programme de recherche du Nouveau-Brunswick sur les nouveaux concepts et technologies (NCT) zéro émissions nettes
April 2023 – March 2026
Un grand nombre des solutions nécessaires à l’atteinte de la carboneutralité d’ici 2050 devront être inventées, mises à l’essai puis mises en œuvre.
Clean Tech » Emerging Concepts and Technologies Research Program
Net Zero Emerging Concepts and Technologies (ECT) Research Program – New Brunswick
April 2023 – March 2026
From laboratory to market
Many of the solutions needed to achieve 2050 net-zero emissions goals must still be invented, proven and scaled up to commercial availability.
Clean Tech » Emerging Concepts and Technologies Research Program
Net Zero Emerging Concepts and Technologies (ECT) Research Program - Nova Scotia
April 2023 – March 2026
Notice of coming call for submissions: On July 8, 2024, Net Zero Atlantic will issue the third open call for submissions for Nova Scotia-based projects through the Emerging Concepts and Technology Research Program.
Clean Tech » Wind
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
Clean Tech » Wind
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.
Hydrogen » Socioeconomics
Socioeconomic Impacts of Hydrogen Production in Nova Scotia
October 2022 – April 2023
The objective of this study is to provide the Government of Nova Scotia with the information necessary to further understand the socioeconomic impacts of a large-scale, green hydrogen production facility in Nova Scotia.
Tidal Energy » Technology
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.
Tidal Energy » Infrastructure and Best Practices
Feasibility Study: Tidal Sector Service Barge/Drydock
April – November 2018
The study investigates the feasibility of developing a generic, shared-use, multi-function turbine transport deployment and retrieval barge/drydock for use by the Nova Scotia tidal energy sector.
Tidal Energy » Technology
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.
Tidal Energy » Marine Life
Using Radar to Evaluate Seabird Abundance and Habitat Use at the Fundy Ocean Research Center for Energy Site near Parrsboro, Nova Scotia
April – September 2018
Shore-based seabird surveys conducted at the Fundy Ocean Research Center for Energy (FORCE) in Parrsboro, NS, determine abundance, habitat use and potential risk to seabirds at the site.