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 |
---|---|---|---|---|---|---|
Analyzing Different Methods to Increase the Natural Period of a Compact Wave Energy Converter | Vijayasankar, V.; Samad, A. | Book Chapter | Wave, Point Absorber | Performance, Structural | ||
Upscaling wave energy converters: Size vs. modularity | Scriven, J.; Cruz, J.; Cruz Atcheson Consulting Engineers, Lda. | Book Chapter | Wave, Oscillating Wave Surge Converter | Modeling | Performance, Power Take Off | |
Wave power extraction by a submerged piezoelectric plate | Zheng, S.; Greaves, D.; Meylan, M.; et al. | Book Chapter | Wave, Attenuator | Modeling | Performance, Structural | |
Application of a Phase-Resolving Wave Model to Enhance the Capabilities of a Wave Energy Converter Simulation Tool | Rollano, F.; Yu, Y.; García-Medina, G.; et al. | Presentation | Wave | Modeling | Array Effects, Performance | |
Applications of Marine Renewable Energy to Powering Ocean Observation Systems | Jenne, S.; Cavagnaro, R.; Green, R.; et al. | Presentation | Current, Tidal, Wave | Grid Integration, Hybrid Devices | ||
Characterizing Wave Energy Resources for Gulf of Mexico, Puerto Rico, and U.S Virgin Islands Using an Ultra High-Resolution Wave Model | Allahdadi, N.; He, R.; Chartrand, C.; et al. | Presentation | Wave | Field Data, Modeling | ||
The importance of local winds in wave energy resource assessment | Kilcher, L.; Yang, Z.; García-Medina, G.; et al. | Presentation | Wave | Modeling | ||
Powering the Blue Economy: Marine Energy for Enabling Applications including Ocean Observations | Copping, A.; Cavagnaro, R.; Green, R.; et al. | Presentation | Tidal, Wave | Acoustics, Grid Integration, Hybrid Devices | ||
Wave-Tide Interactions in Ocean Renewable Energy | Hashemi, M.; Lewis, M. | Book Chapter | Current, Wave | Modeling | Hydrodynamics | |
Wave and Wind Theories | Karimirad, M. | Book Chapter | Wave | |||
Design Aspects | Karimirad, M. | Book Chapter | Wave | Performance | ||
Combined Wave- and Wind-Power Devices | Karimirad, M. | Book Chapter | Wave | Array Effects | ||
Wave Energy Converters | Karimirad, M. | Book Chapter | Wave | |||
Stochastic Analyses | Karimirad, M. | Book Chapter | Wave | |||
Dynamic Response Analyses | Karimirad, M. | Book Chapter | Wave | Structural | ||
Aerodynamic and Hydrodynamic Loads | Karimirad, M. | Book Chapter | Wave | Hydrodynamics | ||
Ocean Power Technologies PowerBuoy: System-level Design, Development and Validation Methodology | Mekhiche, M.; Edwards, K.; Bretl, J. | Presentation | Wave, Point Absorber | Power Take Off, Structural | ||
Accelerated Aging Tests for Marine Energy Applications | Davies, P. | Book Chapter | Current, Wave | Materials | ||
Integrated Numerical Modelling System for Extreme Wave Events at the Wave Hub Site | Vyzikas, T.; Ransley, E.; Hann, M.; et al. | Book Chapter | Wave | Modeling | ||
Cybersecurity for Marine Renewable Energy Systems | de Peralta, F. | Presentation | Current, Wave, Salinity Gradient, OTEC | |||
The Physics and Hydrodynamic Setting of Marine Renewable Energy | Woolf, D.; Easton, M.; Bowyer, P.; et al. | Book Chapter | Current, Tidal, Wave | Hydrodynamics | ||
Marine Hydrokinetic Toolkit - MHKiT | Fao, R.; Olson, S.; Sivaraman, C.; et al. | Presentation | Current, Wave | Field Data, Lab Data, Modeling | ||
State of the Art and Future Outlook of Integrating Wave and Tidal Energy | Mundon, T.; Goldsmith, J. | Book Chapter | Current, Tidal, Wave | Field Data, Modeling | Power Take Off |
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