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Tidal Energy » Technology

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

March – December 2020

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

Tidal Energy » Technology

Improved Analysis of Harbour Porpoise Sounds

May – December 2020

The Pathway Program - Data Automation: Passive Acoustic Monitoring Devices

Tidal Energy » Technology

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

November 2019 – June 2020

The Pathway Program - Technology Validation: Passive Acoustic Monitoring Device

Tidal Energy » Technology

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

Tidal Energy » Socio-economic and Traditional Use » Socioeconomic Studies

Community Engagement Strategies & Resource Guide To Support Small-Scale Tidal Power in Nova Scotia

March – July 2013

Community engagement strategies and a resource guide for stakeholders involved in marine renewable energy will support the success of marine renewable energy development in Nova Scotia.

Tidal Energy » Socio-economic and Traditional Use » Strategic Environmental Assessments (SEAs)

Southwest Nova Scotia Tidal Energy Resource Assessment

June 2013

This is an assessment of the in-stream tidal resources in Southwest Nova Scotia consisting of Shelburne, Yarmouth and Digby Counties.

Tidal Energy » Socio-economic and Traditional Use » Socioeconomic Studies

Community and Business Toolkit for Tidal Energy Development

November 2011 – March 2013

This toolkit covers the science, technology, business and community aspects of tidal energy development in Nova Scotia, effectively integrating the applied, natural and social sciences. It can serve as a model for future applied interdisciplinary work on tidal energy and marine renewables.