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Stage 2 Sub-Scale Magnetic Gear
The goal of this project is to design, fabricate, and test a hermetically sealed 50 kilowatt (kW) multistage magnetically geared generator (MGG). In
order to reduce risk, a sub-scale 5kW multistage MGG was first built. This project will benefit MHK device developers by providing a...
Bird, J. Portland State University
May 30, 2021
2 Resources
0 Stars
Awaiting release
2 Resources
0 Stars
Awaiting release
Sub-Scale Stage 1 Magnetic Gear for a Marine Hydrokinetic Generator
The goal of this project is to design, fabricate, and test a hermetically sealed 50 kilowatt (kW) multistage magnetically geared generator (MGG). In
order to reduce risk, a sub-scale 5kW multistage MGG was first built. This project will benefit MHK device developers by providing a...
Bird, J. Portland State University
May 12, 2022
5 Resources
0 Stars
Awaiting release
5 Resources
0 Stars
Awaiting release
Stage 2 Full-Scale Rotary Magnetic Gear for a Marine Hydrokinetic Generator
The goal of this project is to design, fabricate, and test a hermetically sealed 50 kilowatt (kW) multistage magnetically geared generator (MGG). This project will benefit MHK device developers by providing an MHK PTO that overcomes the reliability concerns of the mechanical gears...
Bird, J. Portland State University
Jul 30, 2021
4 Resources
0 Stars
Awaiting release
4 Resources
0 Stars
Awaiting release
Magnetic Gears for a Marine Hydrokinetic Generator Component Model
The goal of this project is to design, fabricate, and test a hermetically sealed 50 kilowatt (kW) multistage magnetically geared generator (MGG). The Component Content Model provides data submitters with an easy and consistent means of uploading data and associated meta data about...
Bird, J. et al Portland State University
Jul 30, 2021
1 Resources
0 Stars
Awaiting release
1 Resources
0 Stars
Awaiting release
Current Energy Harnessing using Synergistic Kinematics of Schools of Fish-Shaped Bodies: Marine Hydrodynamics Laboratory Tank Testing Data
The objectives of the proposed work pertain to building a high power-density and high efficiency device to harness MHK energy by mimicking fish-school kinematics. Vortex Hydro Energy is collaborating with a concept formed and undergone preliminary testing at the University of Mich...
Bernitsas, M. Vortex Hydro Energy
Apr 11, 2017
20 Resources
0 Stars
Publicly accessible
20 Resources
0 Stars
Publicly accessible
Verdant Power Gen5 KHPS and TriFrame System Content Models
This submission includes the Component Content Model for Verdant Power TriFrame and the System Content Model for Verdant Power TriFrame + 3 Gen5 KHPS Turbines. The TriFrame is the foundation component of the system, which consists of a TriFrame + 3 Gen5 KHPS Turbines (TF+3T).
Corren, D. et al Verdant Power Inc.
Jul 05, 2018
2 Resources
0 Stars
Publicly accessible
2 Resources
0 Stars
Publicly accessible
Coordinated Control of Tidal Cross-flow Turbines
Initial laboratory experiments with coordinated phase control of cross-flow turbines in a dense array.
Polagye, B. University of Washington
Dec 06, 2016
5 Resources
0 Stars
Publicly accessible
5 Resources
0 Stars
Publicly accessible
Twin Ocean Power V1
These files collectively provide a comprehensive overview of the testing process, data analysis, and validation for the Twin Ocean Power device tested at the O.H. Hinsdale Wave Research Laboratory, supported by TEAMER funding.
Nguyen, J. and Nguyen, N. John Nguyen
Sep 11, 2024
52 Resources
0 Stars
In curation
52 Resources
0 Stars
In curation
TEAMER: FOSWEC Mooring Modeling and Analysis, Post Access Report and Data
Floating oscillating surge wave energy converters (FOSWECs) offer several advantages over bottom-hinged oscillating surge wave energy converters, including large wave potential at deep-water sites with fewer permitting and environmental concerns outside territorial waters. As a te...
Housner, S. et al Virginia Tech
Jun 14, 2022
10 Resources
0 Stars
Curated
10 Resources
0 Stars
Curated