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TEAMER: Advanced Wave-to-Wire OWC model in WEC-Sim
Accurate numerical models are crucial for the development of wave energy converter (WEC) technologies, providing the means for power production and lifetime assessment, site selection, and design of mooring lines, PTO systems and controllers, among other aspects. This project aims...
PeƱalba, M. et al Mondragon Goi Eskola Politeknikoa
Dec 20, 2024
6 Resources
0 Stars
Curated
6 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: Numerical Model of IProTech PIP WEC Device
iProTech PIP wave energy converter (WEC) is a slack moored, single hull device with no moving parts in the water, joints or bearings. This submission includes data of the simulation, reports, and code for the iProTech PIP (WEC) project. The organization of the data included in the...
Ogden, D. et al IProTech
Nov 02, 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
3 Resources
0 Stars
Curated
3 Resources
0 Stars
Curated
Virtual Real-Time Hybrid Simulation for WEC Mooring Lines
This submission contains the code, model files, and instructions required to virtually run a real-time hybrid simulation (RTHS) of a wave energy converter (WEC) mooring line model. The virtual RTHS couples a numerical model of the WEC with a numerical model of the mooring system i...
Robertson, B. and McConnell, A. Oregon State University
Sep 22, 2026
1 Resources
0 Stars
Awaiting curation
1 Resources
0 Stars
Awaiting curation
TEAMER: Enhancing and Optimization of MADWEC Performance Through Numerical Simulations
This set of data was the result of the TEAMER project led by Adam Keester (Sandia) and Dr. Mohamed Shabara (NREL) on 'enhancing and optimization of maximal asymmetric drag wave energy converter (MADWEC) performance through numerical simulations' in support of research efforts at U...
Raessi, M. et al University of Massachusetts Dartmouth
Oct 02, 2025
2 Resources
0 Stars
Curated
2 Resources
0 Stars
Curated
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: Techno-Economic Assessment of the Crestwing WEC Device
This dataset contains a report and an Excel file documenting a techno-economic model developed to assess the Crestwing wave energy converter (WEC), an attenuator-type device composed of two hinged rectangular barges. Funded by TEAMER and carried out by Re Vision Consulting, the st...
Previsic, M. Re Vision Consulting
Mar 14, 2025
3 Resources
0 Stars
Curated
3 Resources
0 Stars
Curated
TEAMER: Maximal Asymmetric Drag Wave Energy Converter
Boundary element method (BEM) and WEC-Sim analysis of UMass Dartmouth's maximal asymmetric drag wave energy converter (MADWEC), including its tethered ballast system and PTO (power take-off).
This project is part of the TEAMER RFTS 6 (request for technical support) program.
MacDonald, D. et al University of Massachusetts Dartmouth
Aug 18, 2023
3 Resources
0 Stars
Curated
3 Resources
0 Stars
Curated
Evaluation of a Wave Powered Water Pump Performance by Ocean Field Testing and WEC-Sim Modeling
This submission from AMEC (the Atlantic Marine Energy Center) includes data from an ocean field deployment of a wave powered water pump in March 2023. The wave pump is an upweller device, designed to enhance macroalgal aquaculture.
The wave pump device was deployed off the coast ...
Kimball, C. et al University of New Hampshire, Atlantic Marine Energy Center (AMEC)
Mar 21, 2023
4 Resources
0 Stars
Curated
4 Resources
0 Stars
Curated
Numerical Analysis of Two-Body Floating Attenuator WEC (Waveberg)
This TEAMER RFTS 9 award was used to develop a numerical model of the Waveberg floating attenuator wave energy converter (WEC) using the Wave Energy Converter-Simulator (WEC-Sim). The Waveberg is designed to generate power in the smaller waves (for wave heights of 1 2 meters) pred...
Wegener, P. DBA Waveberg Development
Mar 26, 2025
16 Resources
0 Stars
In curation
16 Resources
0 Stars
In curation
TEAMER RFTS2 ROOWaC Project Data
The submitted data were created as part of the TEAMER RFTS2 project entitled "ROOWaC". These data resulted from WEC-Sim based numerical simulations and a "READ ME" file contains a summary of the variables collected from each numerical simulation. Also, summary information can be f...
Florida Atlantic University
Jan 08, 2026
0 Resources
0 Stars
In progress
0 Resources
0 Stars
In progress
TEAMER: AquaHarmonics High Fidelity WEC Sim PTO and Control Model Validation, Sim Model
Collaborative effort between AquaHarmonics, Sandia National Laboratories (SNL), and the National Renewable Energy Laboratory (NREL) to revise and validate Aquaharmonics' full wave to wire model, allowing for reduced uncertainty and increased understanding of design requirements of...
Tom, N. and Leon, J. AquaHarmonics, Inc.
Dec 31, 2021
6 Resources
0 Stars
Publicly accessible
6 Resources
0 Stars
Publicly accessible
HERO WEC V1.0 WEC-Sim Model (July 2024)
**This submission supersedes submission MHKDR-483**
This submission file contains the files that are needed to simulate NREL's HERO WEC (hydraulic and electric reverse osmosis wave energy converter). This requires the user to have already installed WEC-Sim. In addition to the sta...
Panzarella, J. et al National Renewable Energy Laboratory
Jul 01, 2024
2 Resources
0 Stars
Publicly accessible
2 Resources
0 Stars
Publicly accessible
HERO WEC V1.0 WEC-Sim Model
This zip file contains the files that are needed to simulate NREL's HERO WEC (hydraulic and electric reverse osmosis wave energy converter). This requires the user to have already installed WEC-Sim. In addition to the standard toolboxes that are required to run WEC-Sim the user wi...
Jenne, S. National Renewable Energy Laboratory
Aug 12, 2022
2 Resources
0 Stars
Publicly accessible
2 Resources
0 Stars
Publicly accessible
Experimental Testing of a Floating Oscillating Surge Wave Energy Converter at Hinsdale Wave Research Laboratory
In order to generate a public data set that can be used to validate Wave Energy Converter (WEC) numerical codes, such as WEC-Sim, Sandia National Laboratories led an experimental testing campaign of a 1:33 scale Floating Oscillating Surge Wave Energy Converter (FOSWEC) in the Dire...
Ruehl, K. et al Sandia National Laboratories
Jun 15, 2016
3 Resources
0 Stars
Publicly accessible
3 Resources
0 Stars
Publicly accessible
Laboratory Upgrade Point Absorber WEC-Sim Model with MoorDyn Moorings
This dataset includes a WEC-Sim and MoorDyn model of the Laboratory Upgrade Point Absorber (LUPA). LUPA is an open-source wave energy converter designed and tested by Oregon State University. The files provided here constitute a stable LUPA configuration with three mooring lines. ...
Mcconnell, A. Oregon State University
Oct 08, 2024
2 Resources
0 Stars
Curated
2 Resources
0 Stars
Curated
TEAMER: AquaHarmonics High Fidelity WEC Sim PTO and Control Model Validation, Test Logs and Results
Collaborative effort between AquaHarmonics, Sandia National Laboratories (SNL), and the National Renewable Energy Laboratory (NREL) to revise and validate Aquaharmonics' full wave to wire model, allowing for reduced uncertainty and increased understanding of design requirements of...
Hagmuller, A. et al AquaHarmonics, Inc.
Dec 16, 2021
10 Resources
0 Stars
Curated
10 Resources
0 Stars
Curated
TEAMER: Triton Systems Oscillating Water Column Modeling Data and Report
This dataset provides the output of six Wave Energy Converter Simulator (WEC-Sim) simulations and accompanying documentation for the modeling of Triton Systems' oscillating water column (OWC) system at tank scale (validated using available data for tuning the model, Tests 1-2) and...
Forbush, D. et al Sandia National Laboratories
Aug 30, 2024
3 Resources
0 Stars
Awaiting release
3 Resources
0 Stars
Awaiting release
TEAMER: Numerical Modeling, Analysis, and Optimization of Oscillo-Drive Wave Energy Converter
A numerical modeling and optimization framework has been developed for the Oscillo-Drive Wave Energy Converter (WEC) being developed by Wave Water Works LLC, with technical assistance from Florida Atlantic University under the DOE TEAMER program. The primary objective was to estab...
Dhanak, M. et al Wave Water Works LLC / Florida Atlantic University
Aug 20, 2026
1 Resources
0 Stars
Curated
1 Resources
0 Stars
Curated
HERO WEC V1.0 2024 WEC-Sim Detailed Simulation Runs and Summary Data
This dataset includes results from simulations of NREL's hydraulic and electric reverse osmosis wave energy converter (HEREO WEC). Simulation runs include 135 wave cases that were based on the updated WEC-Sim model, which is linked below. The data represented in this repository i...
Panzarella, J. et al National Renewable Energy Laboratory
Jul 01, 2024
6 Resources
0 Stars
Publicly accessible
6 Resources
0 Stars
Publicly accessible
TEAMER: Wavewatts Inc. Preliminary Performance Analysis for the Wavewatts Wave Energy Converter
Renewable energy costs have declined but are still unable to consistently meet power consumption demands when needed most. The Wavewatts concept is able to consistently deliver critical dispatchable renewable energy by directly converting large and slow moving forces of wave energ...
Hon, R. et al Wavewatts Inc.
Sep 04, 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: Public Post Access Report Wavewatts Inc. Preliminary Performance Analysis for the Wavewatts Wave Energy Converter
Renewable energy costs have declined but are still unable to consistently meet power consumption demands when needed most. The Wavewatts concept is able to consistently deliver critical dispatchable renewable energy by directly converting large and slow moving forces of wave energ...
Hon, R. et al Wavewatts Inc.
Jan 05, 2026
2 Resources
0 Stars
Curated
2 Resources
0 Stars
Curated
Centipod WEC Design for PacWave, 1:20 Scale Wave Tank Test Data
This dataset contains processed data collected from 1:20 scale wave tank experiments of a floating wave energy converter model tested at the University of New Hampshire's Jere A. Chase Ocean Engineering Laboratory in May 2023. The data were collected to understand how the device m...
Flanagan, T. and McCall, A. Dehlsen Associates, LLC
Dec 04, 2025
3 Resources
0 Stars
Curated
3 Resources
0 Stars
Curated