The Knowledge Base provides access to information about technical and engineering aspects of marine energy. Relevant documents from around the world are compiled into a user-friendly table that displays all content available in Tethys Engineering. Results can be narrowed using the keyword filters on the right, or with search terms entered in the text box, including targeted searches (e.g., org:DOE, author:polagye). Content may also be sorted alphabetically by clicking on column headers. Some entries will appear on the next page.
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Title | Author | Date | Content type | Technology | Collection Method | Engineering |
---|---|---|---|---|---|---|
Wave energy conversion energizing offshore aquaculture: Prospects along the Portuguese coastline | Clemente, D.; Rosa-Santos, P.; Ferradosa, T.; et al. | Journal Article | Wave | Performance | ||
Model tests on a floating coaxial-duct OWC wave energy converter with focus on the spring-like air compressibility effect | Portillo, J.; Henriques, J.; Gato, L.; et al. | Journal Article | Wave, Oscillating Water Column | Modeling | Hydrodynamics, Power Take Off, Structural | |
Wave energy resource classification system for US coastal waters | Ahn, S.; Haas, K.; Neary, V. | Journal Article | Wave | |||
Wave Energy Prize Final Presentation | LaBonte, A. | Presentation | Wave | Scale Device | Hydrodynamics, Performance, Structural | |
Impact of sediments on wear performance of critical sliding components of hydrokinetic devices | Ali, M.; Ravens, T.; Petersen, T.; et al. | Journal Article | Current, Wave | Field Data | Materials | |
A Hybridized Triboelectric–Electromagnetic Water Wave Energy Harvester Based on a Magnetic Sphere | Wu, Z.; Guo, H.; Ding, W.; et al. | Journal Article | Wave, Oscillating Wave Surge Converter | Field Data | Performance | |
Model testing of a floating wave energy converter with an internal U-shaped oscillating water column | Silva, S.; Gomes, R.; Lopes, B.; et al. | Journal Article | Wave, Oscillating Water Column | Modeling, Test Center, Scale Device | Hydrodynamics, Performance | |
Combining wave energy with wind and solar: Short-term forecasting | Reikard, G.; Robertson, B.; Bidlot, J. | Journal Article | Wave | Modeling | Hybrid Devices | |
Characterizing Dangerous Waves for Ocean Wave Energy Converter Survivability | Hovland, J.; Paasch, R.; Haller, M. | Conference Paper | Wave | Field Data | ||
Case study on the novel permitting and authorization of PacWave South, a US grid-connected wave energy test facility: Development, challenges, and insights | Freeman, M.; O'Neil, R.; Garavelli, L.; et al. | Journal Article | Wave | Test Center | ||
Hydrodynamics of an asymmetric heave plate for a point absorber wave energy converter | Rusch, C.; Mundon, T.; Maurer, B; et al. | Journal Article | Wave, Point Absorber | Lab Data, Test Center, Scale Device | Hydrodynamics, Structural | |
The near future expected wave power in the coastal environment of the Iberian Peninsula | Rusu, L. | Journal Article | Wave | Field Data | ||
Multivariate analysis of the reliability, availability, and maintainability characterizations of a Spar–Buoy wave energy converter farm | Rinaldi, G.; Portillo, J.; Khalid, F.; et al. | Journal Article | Wave, Oscillating Water Column | Performance | ||
Energy assessment of potential locations for OWC instalation at the Portuguese coast | Anastas, G.; Santos, J.; Fortes, C.; et al. | Journal Article | Wave, Oscillating Water Column | Modeling | Performance | |
Optimizing offshore renewable portfolios under resource variability | de Faria, V.; de Queiroz, A.; DeCarolis, J. | Journal Article | Current, Wave | Modeling | Grid Integration, Hybrid Devices, Performance | |
Wave Energy Resource Characterization at the U.S. Navy Wave Energy Test Site and Other Locations in Hawaii | Li, N.; Cheung, K-F. | Report | Wave | Field Data, Modeling | ||
Wave Power Analysis for Makapuʻu Point, Oʻahu | Li, N.; Stopa, J. | Report | Wave | Field Data | ||
Geophysical Surveys of the Wave Energy Test Site at MCBH, Kāneʻohe | Sea Engineering Inc | Report | Wave | Lab Data | ||
Wave Energy Integration into Small Islanded Electrical Grids | University of Alaska Fairbanks | Report | Wave | Grid Integration | ||
Site-specific Modeling of self-reacting point absorber in real wave spectrum | Kalidoss, S.; Banerjee, A. | Journal Article | Wave, Point Absorber | Modeling | Hydrodynamics, Performance, Structural | |
Hybrid machine learning models for predicting short-term wave energy flux | Lu, H.; Xi, D.; Ma, X.; et al. | Journal Article | Wave | Modeling | ||
Review of Hybrid Offshore Wind and Wave Energy Systems | McTiernan, K.; Sharman, K. | Journal Article | Wave, Oscillating Water Column | Scale Device | Hybrid Devices | |
Towards reliable and survivable ocean wave energy converters | Brown, A. | Thesis | Wave | Structural | ||
Development and Field Testing of PTO Control Strategies for Two Body Flexibly Connected WECs | Rosenberg, B.; Mundon, T.; Cavagnaro, R.; et al. | Conference Paper | Wave, Point Absorber | Field Data, Modeling, Full Scale | Power Take Off | |
Self-rectifying air turbines for wave energy conversion: A comparative analysis | Falcao, A.; Henriques, J.; Gato, L. | Journal Article | Wave, Oscillating Water Column | Lab Data | Performance, Structural | |
Model-prototype similarity of oscillating-water-column wave energy converters | Falcao, A.; Henriques, J. | Journal Article | Wave, Oscillating Water Column | Lab Data, Modeling, Scale Device | Performance, Structural | |
Searay Autonomous Offshore Power System AOPS: Results of Sea Trials and Payload Support Demonstration | Leeseman, A.; Hammagren, E. | Conference Paper | Wave | Test Center | Hybrid Devices, Performance | |
Wave Power Density Hotspot Distribution and Correlation Pattern Exploration in the Gulf of Mexico | Gu, C.; Li, H. | Journal Article | Wave | Field Data | ||
A novel radial self-rectifying air turbine for use in wave energy converters. Part 2. Results from model testing | Falcao, A.; Gato, L.; Nunes, E. | Journal Article | Wave, Oscillating Water Column | Modeling | Performance, Structural | |
Significant Wave Height and Energy Flux Prediction for Marine Energy Applications: A Grouping Genetic Algorithm - Extreme Learning Machine Approach | Cornejo-Bueno, L.; Nieto-Borge, J.; García-Díaza, P.; et al. | Journal Article | Wave | Modeling | ||
The method of imbedded Lagrangian element to estimate wave power absorption by some submerged devices | Nihous, G. | Journal Article | Wave | Modeling | Hydrodynamics, Power Take Off | |
Wave Energy Resources for Representative Sites Around the Hawaiian Islands | Vega, L. | Report | Wave | |||
Influence of platform design and power take-off characteristics on the performance of the E-Motions wave energy converter | Clemente, D.; Rosa-Santos, P.; Taveira-Pinto, F.; et al. | Journal Article | Wave | Modeling | Materials, Performance, Power Take Off, Structural, Substructure | |
The Pico OWC wave power plant: Its lifetime from conception to closure 1986–2018 | Falcao, A.; Sarmento, A.; Gato, L.; et al. | Journal Article | Wave, Oscillating Water Column | Modeling | Grid Integration, Performance | |
Direct-drive ocean wave-powered batch reverse osmosis | Brodersen, k.; Bywater, E.; Lanter, A.; et al. | Journal Article | Wave | Modeling | Power Take Off | |
Advancing Marine Renewable Energy Monitoring Capabilities | Joslin, J. | Thesis | Ocean Current, Wave | Scale Device | Materials, Structural | |
Wave Energy Task Force | Holland, J.; Cyr, J.; Vo, D. | Website | Wave, Oscillating Wave Surge Converter | Modeling, Test Center | Performance, Power Take Off, Structural | |
Non-Linear Control Strategy for a Two-Body Point Absorber Wave Energy Converter Using Q Actor-Critic Learning | Zadeh, L.; Glennon, D.; Brekken, T. | Conference Paper | Wave, Point Absorber | Modeling | Control, Power Take Off | |
Demonstration of the Recent Additions in Modeling Capabilities for the WEC-Sim Wave Energy Converter Design Tool | Tom, N.; Lawson, M.; Yu, Y. | Conference Paper | Wave | Modeling | Hydrodynamics | |
Initial Characterization of the Wave Resource at Several High Energy U.S. Sites | Dallman, A.; Neary, V. | Conference Paper | Wave | |||
Investigating the Impact of Power-Take-Off System Parameters and Control Law on a Rotational Wave Energy Converter's Peak-To-Average Power Ratio Reduction | Yu, Y.; Tom, N.; Karayaka, H.; et al. | Conference Paper | Wave, Point Absorber | Modeling | Control, Performance, Power Take Off | |
Optimization of Power Performance of a Wave Energy Converter | Valderrama, L.; Harrison, C.; Tubuntoeng, P.; et al. | Presentation | Wave | Modeling, Test Center, Scale Device | Performance, Structural | |
Linear PM Generator system for wave energy conversion in the AW | Polinder, H.; Damen, H.; Gardner, F. | Journal Article | Wave | Field Data | Performance, Structural | |
Air turbine optimization for a bottom-standing oscillating-water-column wave energy converter | Falcao, A.; Henriques, J.; Gato, L. | Journal Article | Wave, Oscillating Water Column | Control, Hydrodynamics, Structural | ||
Geospatial Analysis of Technical U.S. Wave Power Potential | Robertson, B.; Zou, S.; Paudel, S. | Presentation | Wave | Modeling | ||
WEC-UUV: successes and lessons learned from sea trials | Rusch, C.; Chen, M.; Hammagren, E.; et al. | Presentation | Wave, Attenuator | Field Data | Performance | |
Coupled Modeling of Hydrodynamics and Sound in Coastal Ocean for Renewable Ocean Energy Development | Long, W.; Jung, K.; Yang, Z.; et al. | Journal Article | Current, Wave | Modeling | Hydrodynamics | |
Characterizing the Great Lakes marine renewable energy resources: Lake Michigan surge and wave characteristics | Sogut, D.; Farhadzadeh, A.; Jensen, R. | Journal Article | Wave | Field Data, Modeling | Hydrodynamics | |
Direct drive in wave energy conversion — AWS full scale prototype case study | Prado, M.; Polinder, H. | Conference Paper | Wave, Pressure Differential | Field Data, Full Scale | Power Take Off | |
Characterizing Lake Ontario Marine Renewable Energy Resources | Sogut, D.; Jensen, R.; Farhadzadeh, A. | Journal Article | Wave | Field Data | Hydrodynamics |
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