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 Sort descending | Author | Date | Content type | Technology | Collection Method | Engineering |
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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 | |
The pitch vulnerability of a typical wave energy converter geometry based on Melnikov and Markov approaches | Wang, H.; Falzarano, J. | Journal Article | Wave | Modeling | Hydrodynamics, Mooring, Structural | |
The Possibility of a High-Efficiency Wave Power Generation System Using Dielectric Elastomers | Chiba, S.; Waki, M.; Jiang, C.; et al. | Journal Article | Wave, Oscillating Water Column | Modeling | Performance | |
The potential for grid power integration of offshore ocean wave energy in the UK | Ahmed, T.; Nishida, K.; Nakaoka, M. | Conference Paper | Wave, Pressure Differential | Grid Integration | ||
The Potential for Integration of Wind and Tidal Power in New Zealand | Nasab, M.; Kilby, J.; Bakhtiaryfard, L. | Journal Article | Current, Tidal | Modeling | Hybrid Devices | |
The potential for power production from salinity gradients by pressure retarded osmosis | Thorsen, T.; Holt, T. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis | Lab Data, Modeling | ||
The Potential for Tidal Range Energy Systems to Provide Continuous Power: A UK Case Study | Mackie, L.; Coles, D.; Piggott, M. ; et al. | Journal Article | Current, Tidal | Modeling | Performance | |
The Potential Impacts of Biofouling on a Wave Energy Converter Using an Open Loop Seawater Power Take Off System | Blair, S.; Roberts, D.; Scantlebury, M.; et al. | Report | Wave | Power Take Off | ||
The potential of cross-stream aligned sub-arrays to increase tidal turbine efficiency | Cooke, S.; Willden, R.; Byrne, B. | Journal Article | Current, Tidal | Modeling | Array Effects, Performance | |
The potential of salinity gradient energy based on natural and anthropogenic resources in Sweden | Essalhi, M.; Avci, A.; Lipnizki, F.; et al. | Journal Article | Salinity Gradient | Modeling | ||
The Potential of Tidal Energy Production in a Narrow Channel: The Gulf of Morbihan | Thiébot, J.; Sedrati, M.; Guillou, S. | Journal Article | Current, Tidal | Modeling | Array Effects | |
The power available to tidal turbines in an open channel flow | Houlsby, G.; Vogel, C. | Journal Article | Current, Tidal | Modeling | Array Effects | |
The power balancing benefits of wave energy converters in offshore wind-wave farms with energy storage | Kluger, J.; Haji, M.; Slocum, A. | Journal Article | Wave | Modeling | Grid Integration, Hybrid Devices | |
The power extraction by flapping foil hydrokinetic turbine in swing arm mode | Karbasian, H.; Esfahani, J.; Barati, E. | Journal Article | Current, Tidal | Hydrodynamics | ||
The power flow and the wave energy flux at an operational wave farm: Findings from Mutriku, Bay of Biscay | Ibarra-Berastegi, G.; Ulazia, A.; Sáenz, J.; et al. | Journal Article | Wave, Oscillating Water Column | Field Data, Modeling | Hydrodynamics, Performance | |
The power of salinity gradients: An Australian example | Helfer, F.; Lemckert, C. | Journal Article | Salinity Gradient | Performance | ||
The power potential of tidal currents in channels | Garrett, C. ; Cummins, P. | Journal Article | Current, Tidal | Modeling | Power Take Off, Structural | |
The Power Potential of Tidal Streams including a Case Study for Masset Sound | Blanchfield, J.; Rowe, A.; Wild, P.; et al. | Conference Paper | Current, Tidal | Modeling | ||
The Power Takeoff System of the Multi-MW Wave Dragon Wave Energy Converter | Jasinski, M.; Knapp, W.; Faust, M.; et al. | Conference Paper | Wave, Overtopping | Lab Data, Modeling | Control, Power Take Off | |
The power-capture of a nearshore, modular, flap-type wave energy converter in regular waves | Wilkinson, L.; Whittaker, T.; Thies, P.; et al. | Journal Article | Wave, Oscillating Wave Surge Converter | Lab Data | Performance | |
The prediction of the hydrodynamic performance of marine current turbines | Batten, W. ; Bahaj, A.; Molland, A.; et al. | Journal Article | Lab Data, Modeling | Performance | ||
The Principle of an Integrated Generation Unit for Offshore Wind Power and Ocean Wave Energy | Chen, W.; Gao, F. | Conference Paper | Wave | Array Effects, Structural | ||
The Prospect of Combining a Point Absorber Wave Energy Converter with a Floating Offshore Wind Turbine | Skene, D.; Sergiienko, N.; Ding, B.; et al. | Journal Article | Wave, Point Absorber | Modeling | Hybrid Devices, Hydrodynamics, Performance | |
The public willingness to pay for the research and demonstration of tidal stream energy in South Korea | Choi, K-R.; Kim, J-H.; Yoo, S-H. | Journal Article | Current, Tidal | |||
The Q.U.B. Axisymmetric and Multi-Resonant Wave Energy Convertors | Whittaker, T.; Leitch, J.; Long, A.; et al. | Journal Article | Wave, Oscillating Water Column | |||
The REAPower Project: Power Production From Saline Waters and Concentrated Brines | Tamburini, A.; Cipollina, A.; Tedesco, M.; et al. | Book Chapter | Salinity Gradient, Reverse Electrodialysis | Modeling, Scale Device | Performance | |
The rebirth and eco-friendly energy production of an artificial lake: A case study on the tidal power in South Korea | Park, E.; Lee, T. | Journal Article | Current, Tidal | Lab Data, Modeling | Structural | |
The regional employment returns from wave and tidal energy: A Welsh analysis | Fanning, T. ; Jones, C.; Munday, M. | Journal Article | Wave | |||
The renewable wave energy resource in coastal regions of the Florida peninsula | Ozkan, C.; Mayo, T. | Journal Article | Wave | Field Data | ||
The Research Challenges in Delivering a Robust, Cost Effective International Tidal Energy Industry | Johnston, C. | Conference Paper | Current, Tidal | Array Effects | ||
The right size for a WEC: a study on the consequences of the most basic design choice | Pascal, R.; Gorintin, F.; Payne, G.; et al. | Conference Paper | Wave, Point Absorber | Modeling | Performance, Structural | |
The Role of Georisk Management in Marine Renewable Energy Projects | Reynolds, J.; Fernandes, A.; Catt, A. | Conference Paper | Current, Tidal | |||
The role of test centres in supporting innovation and technology development | Oag, C.; Mediavilla, D.; Wood, N. | Presentation | Current, Tidal, Wave | Test Center | ||
The Role of Tidal Asymmetry in Characterizing the Tidal Energy Resource of Orkney | Neill, S.; Hashemi, M.; Lewis, M. | Journal Article | Current, Tidal | Modeling | ||
The role of tides in shelf-scale simulations of the wave energy resource | Hashemi, M.; Neill, S. | Journal Article | Current, Tidal, Wave | Modeling | ||
The Seaspoon innovative wave energy converter | Di Fresco, L.; Traverso, A. | Conference Paper | Wave | Structural | ||
The Severn Barrage and other tidal energy options: Hydrodynamic and power output modeling | Falconer, R.; Xia, J.; Lin, B.; et al. | Journal Article | Current, Tidal | Field Data, Modeling | Hydrodynamics | |
The Shape Optimization and Experimental Research of Heave Plate Applied to the New Wave Energy Converter | Meng, Z.; Chen, Y.; Li, S. | Journal Article | Wave, Point Absorber | Lab Data, Modeling | Structural | |
The Simulation of Wave Energy Conversion by Floating Point Absorber Buoy in Indonesian Sea Waves | Aji, N.; Ekawati, E.; Haq, I. | Conference Paper | Wave, Point Absorber | Modeling | Hydrodynamics, Performance, Power Take Off | |
The Söderfors Project: Experimental Hydrokinetic Power Station Deployment and First Results | Lundin, S.; Forslund, J.; Carpman, N.; et al. | Conference Paper | Current, Ocean Current, Riverine | Test Center | ||
The spatial and temporal characteristics of the wave energy resources around Taiwan | Chiu, F.; Huang, W.; Tiao, W. | Journal Article | Wave | Field Data | ||
The spring-like air compressibility effect in oscillating-water-column wave energy converters: Review and analyses | Falcão, A.; Henriques, J. | Journal Article | Wave, Oscillating Water Column | Lab Data, Modeling, Scale Device | Hydrodynamics, Performance | |
The SSG Wave Energy Converter: Performance, Status and Recent Developments | Vicinanza, D.; Margheritini, L.; Kofoed, J.; et al. | Journal Article | Wave, Overtopping | Lab Data, Modeling, Scale Device | Performance, Power Take Off, Structural | |
The Strategy for the Next Five Years – International Energy Agency’s Ocean Energy Systems (IEA-OES) Implementing Agreement | Bhuyan, G.; Brito-Melo, A. | Conference Paper | Wave | |||
The strength and phase of the tidal stream | Woolf, D. | Journal Article | Current, Tidal | Modeling | Hydrodynamics, Performance | |
The structure design and hydrodynamic study of the multi-level overtopping wave power device | Yao, Z.; Wan, Z.; Wang, J.; et al. | Conference Paper | Wave, Overtopping | Modeling | Hydrodynamics, Structural | |
The structure of turbulence in a rapid tidal flow | Milne, I. ; Sharma, R. ; Flay, R. | Journal Article | Current, Axial Flow Turbine | Modeling | Hydrodynamics | |
The study on the anti-impact performance of the oscillating buoy with various air cushions | Song, R.; Ren, C.; Ma, X.; et al. | Journal Article | Wave | Modeling | Performance | |
The Suitability of the Pacific Islands for Harnessing Ocean Thermal Energy and the Feasibility of OTEC Plants for Onshore or Offshore Processing | Kim, H-J.; Lee, H-S.; Lim, S-T.; et al. | Journal Article | OTEC | |||
The Supply Chain for the Ocean Energy Industry in Ireland | Marine Renewables Industry Association (MRIA) | Report | Current, Wave |
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