데이터셋 상세
미국
TEAMER: Numerical Analysis of a Novel Nearshore at-surface WEC
This dataset comprises of raw numerical simulation data conducted on a novel nearshore at-surface wave energy converter (WEC). The testing aimed and was intended to provide a calibration then optimization regime through numerical analysis. This project is part of the TEAMER RFTS 10 (request for technical support) program. This data builds upon the research and publication carried out in RFTS 4 regarding a unique half submerged, biconcave buoy that extracts surge and heave motions, but with further modifications that allow for a low number of moving parts, a passive severe force protection system and a more manufacturable design. To produce this raw data, Laminar Scientific Inc. worked with AMOG Consulting to carry out numerical analysis to analyze the performance of the concave buoy, novel nearshore at-surface WEC, analyze sensitivities to varied damping coefficients and stiffness, along with testing the different configurations of the severe force protection system. This subset of data provides the raw data and scripts used through multiple phases of the project as specified through the scope of work stated in the report (TEAMER-Laminar_AMOG Test Plan Report). The Test Plan Report will be attached once available. The folders provided are as follows: - Calibrated_Model_Phase - Sensitivity_Model_Phase - Final_Model_Normal - Final_Model_Capitulated - Final_Model_Extended_Scope In the folders, there consists of raw data in .csv files with names specified as nm2023.j517_###_Model.001.#.##.Time_Histories_FM#.csv (see included README File for more information).These files are named according to the model phase, WEC orientation, wave height and wave period specific to its respective model phase wave matrix and comparing file. In each csv., data that was deemed necessary for the conduct of the project are labeled with units in SI. Accompanying each iteration folder, there provides a Julia Script that was used to create the plots used in the final report.
데이터 정보
연관 데이터
TEAMER: Wave Energy Converter SIMulator (WEC-SIM) Support for an Adaptive Wave Energy Converter by Ocean Motion Technologies
공공데이터포털
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 adaptive wave energy converter through CAD, FEA, and analysis code. All materials in this submission are considered proprietary subject to terms and conditions detailed in the CRADA Agreement.
TEAMER: Numerical Modeling of WECs to Support OES Task 10
공공데이터포털
This submission contains the files for reproducing the waves only and sphere test article simulations for the experimental setup (three different wave conditions) associated with the Teamer Request for Technical Support 9 (RFTS 9) fluid dynamics simulations to support the Ocean Energy Systems Energy Technology Collaboration Program (OES) Task 10 Wave Energy Converters Modeling Verification and Validation effort. - The 'data' directory contains the experimental validation data, the paddle input signal data, and representative output data from the OpenFOAM simulations. - The 'images' directory contains images of representative results for the three test cases, and were generated using the python .py files located in the main directory. - The 'openFoamCaseFiles' directory contains cleaned OpenFOAM case files for the three test conditions. Refer to additional README files contained within the directories for additional details. This project is part of the TEAMER RFTS 9 (request for technical support) program: Numerical Modeling of WECs to support OES task 10.
TEAMER: Modeling, Optimization, and Design Data for a Bio-Inspired Wave Energy Converter
공공데이터포털
This dataset contains modeling files, computational results, and analysis reports from work focused on the initial optimization and design of a bio-inspired Wave Energy Converter (WEC). Data were produced using tools including WEC-Sim and WecOptTool, with supporting scripts and models related to hydrodynamic analysis and performance evaluation of various WEC configurations. The dataset includes derived transfer functions such as impedance and excitation, computational models developed in WEC-Sim, and figures and documents from the original application, test plan, and post-access report. All computational data and reports are provided, with units and methodologies documented within associated scripts and reports. This work was funded by TEAMER RFTS 10 (request for technical support) program.
TEAMER: Wave and Current Energy Converter Modeling Workshop Materials
공공데이터포털
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 the use of the SNL-Delft3D-CEC and SNL-SWAN modeling tools, which simulate the hydrodynamic and environmental impacts of current and wave energy converters, respectively. The materials were developed to support the evaluation of physical and environmental interactions of MHK devices using open-source modeling frameworks. The dataset includes presentations, tutorials, theoretical documentation, and software setup instructions related to modeling wave and current energy devices. It covers both conceptual and real-world applications, such as channel flow and riverine or coastal sites like the Tanana River and Yakutat, Alaska. Instructions for installing and customizing the Delft3D and SWAN modeling suites with the SNL-developed modules are included, along with test cases and example scenarios. All data units and modeling parameters are labeled, and the dataset assumes access to proprietary software components (e.g., Deltares license files for Delft3D FM Suite) and some familiarity with hydrodynamic modeling tools.
TEAMER: AquaHarmonics High Fidelity WEC Sim PTO and Control Model Validation, Sim Model
공공데이터포털
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 a utility scale wave energy converter (WEC). SNL and NREL in collaboration with AquaHarmonics, will set up and run WEC Simulator (WEC-Sim) models of the AquaHarmonics WEC, building off past model developments for inclusion of custom PTO (power take-off) dynamics. The intent is to review, update, and verify or validate a new WEC-Sim model against wave tank experimental data. Furthermore, the WEC-Sim model will be coupled to an energy storage system model to better understand the wave-to-wire functionality. Project is part of the TEAMER RFTS 2 (request for technical support) system of WEC research projects. Testing data can be found in the associated MHKDR link below.
TEAMER: AquaHarmonics High Fidelity WEC Sim PTO and Control Model Validation, Sim Model
공공데이터포털
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 a utility scale wave energy converter (WEC). SNL and NREL in collaboration with AquaHarmonics, will set up and run WEC Simulator (WEC-Sim) models of the AquaHarmonics WEC, building off past model developments for inclusion of custom PTO (power take-off) dynamics. The intent is to review, update, and verify or validate a new WEC-Sim model against wave tank experimental data. Furthermore, the WEC-Sim model will be coupled to an energy storage system model to better understand the wave-to-wire functionality. Project is part of the TEAMER RFTS 2 (request for technical support) system of WEC research projects. Testing data can be found in the associated MHKDR link below.
TEAMER: OpenFAST Modeling and Simulation of the Aquantis AQ10 Marine Hydrokinetic Turbine
공공데이터포털
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 enable more flexible control strategy development and expanded physics-based capabilities. The dataset includes input files and simulation cases representing key dynamic behaviors such as added mass, wave loading, rotor-to-spar coupling, tower shadow effects, and a custom mooring system. The model supports integration with MATLAB/Simulink for controller implementation. Also included is a post-access report detailing the modeling approach, validation results, and simulation findings from this work. his work was funded by TEAMER RFTS 2 (request for technical support) program.
Laboratory Experiments for Highly Nonlinear WEC-Wave Conditions
공공데이터포털
This document describes the experiments carried out in December 2019 and February-March 2020 in the Directional Wave Basin at the O.H. Hinsdale Wave Research Laboratory, Oregon State University. Regular and irregular waves were generated in the absence and presence of a WEC, including regular and irregular waves using different wave generation and control strategies, emphasizing nonlinear wave conditions and nonlinear PTO control. Results of standard linear and 2nd-order wave generation are compared with results of a newly developed fully nonlinear wave generation technique using the Nonlinear Schrodinger (NLS) equation.
MBARI WEC 2021 deployment
공공데이터포털
This dataset includes data from the Monterey Bay Aquarium Research Institute (MBARI) wave energy converter (WEC) and a nearby located Sofar Spotter buoy. The Monterey Bay Aquarium Research Institute has developed and deployed a small two-body point absorber wave energy device suitable to autonomous underwater vehicle, sensor system, and even aquaculture farm needs. For more information on the MBARI WEC see the research journal attached in the submission.
Evaluation of 1/100th Scale Mooring Systems for Wave Energy Converters
공공데이터포털
This study evaluates the feasibility, accuracy, and limitations of using 1/100th scale physical mooring systems to represent full-scale mooring behavior for wave energy converters (WECs) during small-scale tank testing. The work focuses on an RM3-style point absorber deployed in conditions representative of the PacWave South test site and examines whether small-scale physical testing can reliably inform numerical modeling, design decisions, and future prototype development. Testing occurred in the National Lab of the Rockies' 13,000 gal wave tank. The data channels captured were: Wave height, mooring line tension, 6DOF orientation and position of two WEC bodies. The tests conducted were: three wave cases, free decay, forced displacement, tank characterization, and mooring line spring constant characterization For more information on the project and the dataset please see the "Dataset Description" resource below.