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Tidal Energy » Technology

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.

Tidal Energy » Technology

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.

Tidal Energy » Technology

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.

Tidal Energy » Technology

Development of High Performance Tidal Turbine Rotors

January 2013 – October 2015

This research investigated and informed novel and cost-effective engineering solutions to extract and deliver energy from tidal flows.

Tidal Energy » Seabed, Sediment, and Benthic

Seasonal Erodibility of Sediment in the Upper Bay of Fundy

February 2012 – January 2015

This project developed methods for studying sedimentation to the macro-tidal flats of the upper Bay of Fundy. The researchers looked at seasonal variation in the erodibility of sediments in tidal creeks and flats using a Gust Erosion Chamber and repeated grain size surveys.

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

Mi’kmaq Ecological Knowledge Study (Phase 1)

August 2009

A Mi’kmaq Ecological Knowledge Study (MEKS) was conducted by Membertou Geomatics Consultants on the Minas Channel area of the Bay of Fundy. This is a comprehensive body of knowledge documenting the collective ecological knowledge held by the Mi’kmaq people.