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TEAMER: Techno-Economic Assessment of AWS Waveswing
The submitted information includes the final report and the supporting datasets in Excel format.
Submitted data includes:
an Excel based techno-economic model with input-output (IO) analysis, costing functions in generalized form, performance metrics and computation, and scatte...
Previsic, M. Re Vision Consulting
Mar 07, 2025
3 Resources
0 Stars
Curated
3 Resources
0 Stars
Curated
TEAMER: Electrically Engaged Undulation (EEL) System
The Electrically Engaged UnduLation (EEL) system is a buoyancy-driven submersible device for powering oceanographic instruments. Physically, EEL is a slender body whose flexible spine is made up of energy units interconnected by uniaxial hinges. Each unit consists of a pair of pie...
Lu, K. Pyro-E
Dec 01, 2021
2 Resources
0 Stars
Publicly accessible
2 Resources
0 Stars
Publicly accessible
TEAMER: Additional Degree of Freedom for WEC Model
'Additional Degree of Freedom for WEC' WEC-Sim numerical model from RFTS 1 (request for technical support) TEAMER project. An increase in wave energy converter (WEC) efficiency requires not only consideration of the nonlinear effects in the WEC dynamics and the power take-off (PTO...
McCall, A. et al Dehlsen Associates, LLC
May 26, 2022
2 Resources
0 Stars
Awaiting release
2 Resources
0 Stars
Awaiting release
TEAMER: Long Island Sound Tidal Resource Assessment Geodatabase Model
This submission includes the Long Island Sound (LIS) Tidal Energy Resource Geodatabase developed collaboratively by Integral Consulting Inc. and Future Island Impact (FII) as part of a TEAMER-supported pre-feasibility study. The geodatabase is provided as a QGIS project and includ...
Flanary, C. and Tanguay, N. Integral Consulting Inc.
Jul 10, 2025
3 Resources
0 Stars
Curated
3 Resources
0 Stars
Curated
TEAMER: Wave Energy Converter SIMulator (WEC-SIM) Support for an Adaptive Wave Energy Converter by Ocean Motion Technologies
Scripts from project git repo + tutorial slide deck generated for the TEAMER RFTS 1 (request for technical support) collaborative project between Ocean Motion Technologies, Inc. and Sandia National Laboratories + National Renewable Energy Laboratory. The project simulates an adapt...
Keester, A. et al Ocean Motion Technologies, Inc.
Jan 29, 2021
3 Resources
0 Stars
Awaiting release
3 Resources
0 Stars
Awaiting release
TEAMER: Results of Investigating Structural Design Concepts and Alternative Materials for a Wave Power System
Included here are materials from a study on the design of a three-body Wave Energy Converter (WEC) utilizing a heave plate, dual Power Take Offs (PTOs), and single point mooring. A material trade study has been conducted to evaluate the effects of introducing various metallic and ...
Whitney, C. et al Cardinal Engineering
Apr 27, 2024
4 Resources
0 Stars
Awaiting release
4 Resources
0 Stars
Awaiting release
TEAMER: Sandia and CalWave Torque Spring Assessment
Power-take-off (PTO) systems for wave energy converters (WEC) require restoring forces for efficient hydrodynamic as well as mechanical to electric power transfer. Implementation of an effective spring mechanism that can provide a restoring torque on e.g. a rotational, winch type ...
Boerner, T. et al CalWave Power Technologies Inc.
Apr 01, 2022
3 Resources
0 Stars
Awaiting release
3 Resources
0 Stars
Awaiting release
TEAMER: Investigation of Alternate Material Design Methods in WPS Ballast and Hull Systems
Data, results and final report from a study on the use of alternative materials in a floating, two-body Wave Power System (WPS). This study was focused on introduction of fiber-reinforced polymer and concrete in structural elements of the subject WPS, as well as the design and per...
Veilleux, M. et al Cardinal Engineering
Apr 22, 2025
3 Resources
1 Stars
Curated
3 Resources
1 Stars
Curated
TEAMER: MADWEC Techno-Economic Analysis
The objective of this project was for the facility to conduct a techno-economic assessment (TEA) of the Maximal Asymmetric Drag Wave Energy Converter (MADWEC), developed by the University of Massachusetts Dartmouth (UMass Dartmouth). MADWEC is used for powering remote monitoring a...
Ortega, T. and Baca, E. National Renewable Energy Laboratory
Mar 08, 2024
2 Resources
0 Stars
Publicly accessible
2 Resources
0 Stars
Publicly accessible
TEAMER: Numerical Modeling and Optimization of the iProTech Pitching Inertial Pump (PIP) Wave Energy Converter (WEC)
This project focused on developing an automated workflow to evaluate and optimize the iProTech Pitching Inertial Pump (PIP) wave energy converter (WEC) using open-source Python packages and the MATLAB/Simulink tool, WEC-Sim. The process involved parameterizing key design variables...
Wynn, N. et al National Renewable Energy Laboratory
Apr 11, 2024
2 Resources
0 Stars
Curated
2 Resources
0 Stars
Curated
TEAMER: Numerical Modeling of the Pitching Inertial Pump (PIP) Wave Energy Capture Device
This project focused on further development of a Numerical Model of the iProTech Pitching Inertial Pump (PIP) wave energy converter (WEC) using the MATLAB/Simulink tool, WEC-Sim. The process involved parameterizing key design variables, running time-domain simulations, and perform...
Wynn, N. et al IProTech
Feb 26, 2026
1 Resources
0 Stars
Curated
1 Resources
0 Stars
Curated
TEAMER: CalWave xWave New Technology Qualification and Path to Certification Final Report
CalWave is developing a wave energy converter (WEC) called xWave, which operates fully submerged and is classified as a submerged pressure differential type. As ocean waves pass over the submerged wave buoy, a pressure differential is created, exciting the absorber in multiple deg...
Petcovic, D. and Zhang, S. CalWave Power Technologies Inc.
Oct 31, 2022
2 Resources
0 Stars
Publicly accessible
2 Resources
0 Stars
Publicly accessible
TEAMER: OpenFAST Modeling and Simulation of the Aquantis AQ10 Marine Hydrokinetic Turbine
This dataset was developed under TEAMER technical support (CRD-21-17763-0) to model the Aquantis AQ10, a spar buoy-based marine hydrokinetic turbine, using the OpenFAST simulation framework. The project transitioned modeling from the proprietary Tidal Bladed tool to OpenFAST to en...
Swales, H. and Tran, T. Aquantis, Inc.
Jul 31, 2025
3 Resources
1 Stars
Curated
3 Resources
1 Stars
Curated
TEAMER: Tidal Energy Resource Modeling Assessment and Environmental Biological Analysis in Turnagain Arm, Cook Inlet, AK
The deployment and operation of a floating and/or submerged tidal technology in the United States coastal water require characterizing tidal stream resource potential and assessing environmental conditions and satisfying all environmental permitting requirements. The waters of Coo...
Yang, Z. et al Pacific Northwest National Laboratory
Jun 09, 2025
2 Resources
0 Stars
Curated
2 Resources
0 Stars
Curated
TEAMER: Wave and Current Energy Converter Modeling Workshop Materials
This dataset contains the full set of training materials used in a marine hydrokinetic (MHK) modeling workshop conducted by Sandia National Laboratories for the University of Alaska Fairbanks, funded through the U.S. Department of Energy's TEAMER program. The workshop focused on t...
McWilliams, S. et al Sandia National Laboratories
Apr 18, 2025
7 Resources
0 Stars
Curated
7 Resources
0 Stars
Curated
TEAMER: Resource Characterization for Community-Scale Tidal Instream Energy in Maine
This dataset comprises high-resolution Finite Volume Community Ocean Model (FVCOM) hydrodynamic model output for the Maine coast developed under a TEAMER RFTS 12 project with the Tide Mill Institute, with technical assistance from PNNL. It was designed to assess community-scale (u...
Spicer, P. and Yang, Z. Pacific Northwest National Laboratory
Nov 19, 2025
6 Resources
0 Stars
Curated
6 Resources
0 Stars
Curated
TEAMER: Mass of Water Turbine Current Energy Converter CFD Results
The CFD (computational fluid dynamics) results for the Mass of Water Turbine (MOWT) current energy converter from MWNW Consulting (formerly Ecosse IP). Each case is self-contained in its own tar.gz archive file. The archive contains the scripts required to perform a full simulati...
Chartrand, C. and Moir, S. Sandia National Laboratories
May 27, 2022
76 Resources
0 Stars
Curated
76 Resources
0 Stars
Curated