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 Sort ascending | Content type | Technology | Collection Method | Engineering |
---|---|---|---|---|---|---|
Pelamis: experience from concept to connection | Yemm, R.; Pizer, D.; Retzler, C.; et al. | Journal Article | Attenuator | Field Data | Performance, Power Take Off | |
Opening remarks and the power spectrum of ocean waves | Farley, F. | Journal Article | Wave | Field Data | Hydrodynamics | |
Nearshore oscillating wave surge converters and the development of Oyster | Whittaker, T.; Folley, M. | Journal Article | Wave, Oscillating Wave Surge Converter | Field Data, Full Scale | Hydrodynamics, Performance, Structural | |
Investigation of Wave Transmission From a Floating Wave Dragon Wave Energy Converter | Nørgaard, J.; Andersen, T. | Conference Paper | Wave, Attenuator | Field Data, Modeling | Hydrodynamics | |
Development of Wave Devices from Initial Conception to Commercial Demonstration | Heller, V. | Book Chapter | Wave | Field Data, Lab Data | ||
Offshore wave power measurements-A review | Lindroth, S.; Leijon, M. | Journal Article | Wave | Field Data | ||
Ocean Testing of a Power-Capturing Wave Buoy | Edwards, K. | Presentation | Wave | Field Data, Modeling | Performance | |
Finding and Optimal Placement Depth for a Tidal In-Stream Energy Conversion Device in an Energetic, Baroclinic Tidal Channel | Kawase, M.; Beba, P.; Fabien, B. | Report | Current, Tidal | Field Data | Hydrodynamics | |
The importance of flow and turbulence characteristics for hydrokinetic energy development on the Tanana River at Nenana, Alaska | Walsh, C.; Fochesatto, J.; Toniolo, H. | Journal Article | Current, Riverine | Field Data | Hydrodynamics | |
Tests on ducted and bare helical and straight blade Darrieus hydrokinetic turbines | Kirke, B. | Journal Article | Current, Cross Flow Turbine | Field Data, Scale Device | Performance | |
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 | |
Wave energy potential along the northern coasts of the Gulf of Oman, Iran | Sasket, A. ; Etemad-Shahidi, A. | Journal Article | Wave | Field Data | Performance | |
Whitestone Poncelet RISEC Project Final Technical Report | Hasz Consulting, LLC; Whitestone Power and Communications | Report | Current, Riverine | Field Data, Modeling | Structural | |
Underwater noise measurements of a 1/7thscale wave energy converter | Bassett, C.; Thomson, J.; Polagye, B.; et al. | Conference Paper | Wave, Point Absorber | Field Data, Scale Device | Acoustics | |
Underwater Mach wave radiation from impact pile driving: Theory and observation | Reinhall, P. | Journal Article | Field Data, Modeling | |||
Field Measurements at River and Tidal Current Sites for Hydrokinetic Energy Development: Best Practices Manual | Neary, V.; Gunawan, B.; Richmond, M.; et al. | Report | Current, Riverine, Tidal | Field Data | Hydrodynamics | |
Model-based global assessment of OTEC resources with data validation off Southeast Florida | Rauchenstein, L.; VanZwieten, J.; Hanson, H. | Conference Paper | OTEC | Field Data, Modeling | ||
Reserve Requirement Impacts of Large-Scale Integration of Wind, Solar, and Ocean Wave Power Generation | Halamay, D.; Brekken, T.; Simmons, A.; et al. | Journal Article | Wave | Field Data, Modeling | Grid Integration | |
Differences in fundamental design drivers for wind and tidal turbines | Winter, A. | Conference Paper | Current, Tidal | Field Data | Performance | |
Assessing the impact of ADCP resolution and sampling rate on tidal current energy project economics | Stiven, T.; Couch, S.; Iyer, A. | Conference Paper | Current, Tidal | Field Data | ||
Prototype testing of a hydrokinetic turbine based on oscillating hydrofoils | Kinsey, T.; Dumas, G.; Lalande, G.; et al. | Journal Article | Current, Oscillating Hydrofoil | Field Data | Performance | |
Extreme Ocean Wave Conditions for Northern California Wave Energy Conversion Device | Berg, J. | Report | Wave, Point Absorber | Field Data | ||
Developments in ducted water current turbines | Kirke, B. | Report | Current, Tidal | Field Data | Performance, Structural | |
Use of an ADCP to compute suspended-sediment discharge in the tidal Hudson River, New York | Wall, G.; Nystrom, E.; Litten, S. | Report | Field Data | Hydrodynamics | ||
OTEC biofouling-control and corrosion-protection study at the Seacoast Test Facility: 1981-1983 | Panchal, C.; Larsen-Basse, J.; Berger, L.; et al. | Report | OTEC | Field Data |
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