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 Sort descending | Date | Content type | Technology | Collection Method | Engineering |
---|---|---|---|---|---|---|
Pneumatic Performance of a Non-Axisymmetric Floating Oscillating Water Column Wave Energy Conversion Device in Random Waves | Bull, D. | Conference Paper | Wave, Oscillating Water Column | Field Data | Hydrodynamics, Performance, Structural | |
Reference Model 6 (RM6): Oscillating Wave Energy Converter | Bull, D.; Smith, C.; Jenne, D.; et al. | Report | Wave, Oscillating Water Column | Lab Data, Modeling, Scale Device | Hydrodynamics, Performance, Structural | |
Resource Scalability at Wave Energy Test Sites | Cahill, B. | Conference Paper | Wave | Field Data | ||
A high resolution geospatial database for wave energy exploitation | Carballo, R.; Sanchez, M.; Ramos, V.; et al. | Journal Article | Wave | Modeling | ||
Optimisation and control of a hydraulic power take-off unit for a wave energy converter in irregular waves | Cargo, C.; Hillis, A.; Plummer, A. | Journal Article | Wave, Point Absorber | Modeling | Performance, Power Take Off | |
Carnegie Wave Energy Ltd-Annual Report 2014 | Carnegie Wave Energy | Report | Wave | |||
Measurements of Tidal Current Velocities in the Folda Fjord, Norway, With the Use of a Vessel Mounted ADCP | Carpman, N.; Leijon, M. | Conference Paper | Current, Tidal | Field Data | ||
Performance improvements of mooring systems for wave energy converters | Casaubieilh, P.; Thiebaut, F.; Bosma, B.; et al. | Conference Paper | Wave | Lab Data, Scale Device | Mooring | |
Analysis of a Cycloidal Wave Energy Converter using unsteady Reynolds Averaged Navier-Stokes Simulation | Caskey, C. | Thesis | Wave | Modeling | Hydrodynamics | |
Control of a helical cross-flow current turbine | Cavagnaro, R.; Fabien, B.; Polagye, B. | Conference Paper | Current, Cross Flow Turbine | Lab Data, Modeling | Control | |
Impact of turbulence on the control of hydrokinetic turbine | Cavagnaro, R. | Conference Paper | Current, Tidal | Modeling | Control | |
Wave Energy Converter Effects on Wave Fields: Evaluation of SNL-SWAN and Sensitivity Studies in Monterey Bay, CA | Chang, G.; Magalen, J.; Jones, C.; et al. | Report | Wave | Lab Data, Modeling | ||
Circular-slide wave energy converter in random waves | Chen, H.; DelBalzo, D. | Conference Paper | Wave, Point Absorber | Modeling | Structural | |
Methods for predicting seabed scour around marine current turbine | Chen, L.; Lam, W. | Journal Article | Current | Modeling | Hydrodynamics, Substructure | |
Modelling tidal current energy extraction in large area using a three-dimensional estuary model | Chen, Y.; Lin, B.; Lin, J. | Journal Article | Current, Tidal | Modeling | Hydrodynamics, Performance | |
Frequency/time domain modeling of a direct drive point absorber wave energy converter | Cheng, Z.; Yang, J. ; Hu, Z.; et al. | Journal Article | Wave, Point Absorber | Modeling | Power Take Off, Structural | |
Review of Methods for Modeling Wave Energy Converter Survival in Extreme Sea States | Coe, R.; Neary, V. | Conference Paper | Wave, Point Absorber | Modeling, Full Scale | Hydrodynamics, Performance, Structural | |
Nonlinear time-domain performance model for a wave energy converter in three dimensions | Coe, R.; Bull, D. | Conference Paper | Wave, Point Absorber | Modeling | Performance | |
An experimental investigation of blockage in a short fence array of tidal turbines | Cooke, S.; Willden, R.; Byrne, B.; et al. | Conference Paper | Current, Tidal | Array Effects, Performance | ||
Oscillating Water Column Structural Model | Copeland, G.; Bull, D.; Jepsen, R.; et al. | Report | Wave, Oscillating Water Column | Lab Data, Modeling | Structural | |
The Contribution of Environmental Siting and Permitting Requirements to the Cost of Energy for Wave Energy Devices Reference Model #5 | Copping, A.; Geerlofs, S.; Hanna, L. | Report | Wave, Oscillating Wave Surge Converter | Full Scale, Scale Device | Hydrodynamics | |
Appraisal of IEC Standards for Wave and Tidal Energy Resource Assessment | Cornett, A.; Toupin, M.; Baker, S.; et al. | Conference Paper | Current, Wave | |||
Superstorm Sandy and the Verdant Power Rite Project | Corren, D.; Colby, J.; Adonizio, M. | Conference Paper | Current, Axial Flow Turbine | Field Data | Hydrodynamics | |
Overview of European innovation activities in marine energy technology | Corsatea, T.; Magagna, D. | Report | Current, Wave | |||
Increasing synergies between institutions and technology developers: Lessons from marine energy | Corsatea, T. | Journal Article | Current, Wave | |||
A submerged cylinder wave energy converter with internal sloshing power take off | Crowley, S.; Porter, R.; Evans, D. | Journal Article | Wave | Modeling | Hydrodynamics, Structural | |
Characterization of U.S. Wave Energy Converter (WEC) Test Sites: A Catalogue of Met-Ocean Data | Dallman, A.; Neary, V. | Report | Wave | Field Data, Test Center | ||
Upscale potential and financial feasibility of a reverse electrodialysis power plant | Daniilidis, A.; Herber, R.; Vermaas, D. | Journal Article | Salinity Gradient | Modeling | ||
Experimentally obtainable energy from mixing river water, seawater or brines with reverse electrodialysis | Daniilidis, A.; Vermaas, D.; Herber, R.; et al. | Journal Article | Salinity Gradient | Lab Data | Performance | |
Recommendations for Chile' Marine Energy Strategy-a roadmap for development | Davies, G. | Report | Current, Tidal, Wave | |||
A review of synthetic fiber moorings for marine energy applications | Davies, P.; Johanning, L.; Weller S.; et al. | Conference Paper | Current, Wave, OTEC | Materials, Mooring | ||
Durability of Composites in a Marine Environment | Davies, P.; Rajapakse, Y. | Book | Materials | |||
Accelerated Aging Tests for Marine Energy Applications | Davies, P. | Book Chapter | Current, Wave | Materials | ||
Performance of a hydrokinetic energy system using an axial-flux permanent magnet generator | Davila-Vilchis, J.; Mishra, R. | Journal Article | Current, Axial Flow Turbine | Lab Data | Performance, Power Take Off | |
Factors that influence array layout on wave energy farms | de Andres, A.; Guanche, R.; Meneses, L.; et al. | Journal Article | Wave | Modeling | Array Effects | |
Maximizing output power of linear generators for wave energy conversion | de la Villa Jaén, A.; Garcia-Santana, A.; El Montoya-Andrade, D. | Journal Article | Wave, Point Absorber | Modeling | Control | |
Stochastic modelling in wave power-equipment optimization: maximum energy production versus maximum profit | de O. Falcao, A. | Journal Article | Wave, Oscillating Water Column | Modeling | Performance | |
Tidal Stream Devices: Reliability Prediction Models During Their Conceptual & Development Phases | Delorm, T. | Thesis | Current, Tidal | Modeling | ||
Wave power extraction from a bottom-mounted oscillating water column converter with a V-shaped channel | Deng, Z.; Huang, Z.; Law, A. | Journal Article | Wave, Oscillating Water Column | Modeling | Performance, Structural | |
Ocean thermal energy resources in Colombia | Devis-Morales, A.; Montoya-Sánchez, R.; Osorio, A.; et al. | Journal Article | OTEC | Modeling | ||
The Seaspoon innovative wave energy converter | Di Fresco, L.; Traverso, A. | Conference Paper | Wave | Structural | ||
A general-purpose process modelling framework for marine energy systems | Dimopoulos, G.; Gergopoulou, C.; Stefanatos, I.; et al. | Journal Article | Modeling | |||
Numerical study of the effect of the relative depth on the overtopping wave energy converters according to constructal design | dos Santos, E.; Machado, N. ; Zanella, M.; et al. | Journal Article | Wave, Overtopping | Lab Data | ||
A note on the power potential of tidal currents in channels | Draper, S.; Adcock, T.; Borthwick, A.; et al. | Journal Article | Current | Modeling | Performance | |
An electrical analogy for the Pentland Firth tidal stream power resource | Draper, S.; Adcock, T.; Borthwick, A.; et al. | Journal Article | Current | Modeling | Hydrodynamics | |
Centred and staggered arrangements of tidal turbines | Draper, S.; Nishino, T. | Journal Article | Current, Tidal | Modeling | Array Effects | |
Estimate of the tidal stream power resource of the Pentland Firth | Draper, S.; Adcock, T.; Borthwick, A.; et al. | Journal Article | Current, Tidal | Modeling | Hydrodynamics, Performance | |
Aspects of tidal stream turbine modelling in the natural environment using a coupled BEM–CFD model | Edmunds, M.; Malki, R.; Williams, A.; et al. | Journal Article | Current, Tidal | Modeling | Array Effects, Hydrodynamics, Performance, Structural | |
Verification within wave resource assessments. Part 2: Systematic trends in the fit of spectral values | Edwards, E.; Cradden, L.; Ingram, D.; et al. | Journal Article | Wave | Modeling, Test Center | ||
Verification within wave resource assessments. Part 1: Statistical analysis | Edwards, E.; Cradden, L.; Ingram, D.; et al. | Journal Article | Wave | Modeling, Test Center |
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