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 Sort descending | Collection Method | Engineering |
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Experimental modelling of a multi-use floating platform for wave and wind energy harvesting | Sarmiento, J.; Iturrioz, A.; Ayllón, V.; et al. | Journal Article | Modeling | Hybrid Devices, Hydrodynamics, Mooring | ||
A review of marine renewable energy storage | Wang, Z.; Carriveau, R.; Ting, D.; et al. | Journal Article | Modeling | Control, Performance, Structural | ||
Turbulent Stresses and Secondary Currents in a Tidal-Forced Channel with Significant Curvature and Asymmetric Bed Forms | Fong, D.; Monismith, S.; Stacey, M. ; et al. | Journal Article | Field Data | |||
Development of an adaptable monitoring package for marine renewable energy projects Part II: Hydrodynamic performance | Joslin, J.; Polagye, B.; Stewart, A.; et al. | Conference Paper | Modeling | Hydrodynamics | ||
Kinematics and Statistics of Breaking Waves Observed Using SWIFT Buoys | Brown, A.; Thomson, J.; Ellenson, A.; et al. | Journal Article | Field Data | Hydrodynamics | ||
Benchmarking sensor fusion capabilities of an integrated instrumentation package | Cotter, E. ; Murphy, P.; Polagye, B. | Journal Article | Field Data | |||
Benchmarking sensor fusion capabilities of an integrated monitoring package | Cotter, E. ; Matzner, S.; Horne, J.; et al. | Conference Paper | Field Data | |||
Performance of three hydrophone flow shields in a tidal channel | Cotter, E. ; McVey, J.; Weicht, L.; et al. | Journal Article | Field Data | |||
HarshLab | Benguria, P. | Presentation | Field Data | Mooring | ||
A Pitch Wave Force Prediction Algorithm for the Inertial Sea Wave Energy Converter | Cerone, V.; Regruto, D.; Abdalla, T.; et al. | Conference Paper | Wave | Modeling | Control, Performance | |
Numerical simulation of a simple OWC problem for turbine performance | Moñino, A.; Medina-Lopez, E.; Clavero, M.; et al. | Journal Article | Wave, Oscillating Water Column | Lab Data, Modeling, Scale Device | Performance, Power Take Off | |
Design of a physical point-absorbing WEC model on which multiple control strategies will be tested at large scale in the MASK basin | Bull, D.; Coe, R.; Monda, M.; et al. | Conference Paper | Wave | Modeling | Control, Structural | |
Real-Time Wave Excitation Forces Estimation: An Application on the ISWEC Device | Bonfanti, M.; Hillis, A.; Sirigu, S.; et al. | Journal Article | Wave, Point Absorber | Modeling | Control, Performance | |
Wave data analysis for a semi-sheltered site in the Inner Hebrides of Scotland suitable for small scale WEC development | Vogler, A.; Venugopal, V. | Journal Article | Wave | Field Data | Hydrodynamics | |
Case Studies: Wave Energy Converters | Lynn, P. | Book Chapter | Wave | Field Data, Full Scale | ||
Offshore underwater substation for wave energy converter arrays | Rahm, M.; Boström, C.; Svensson, O.; et al. | Journal Article | Wave | Field Data, Lab Data | Grid Integration | |
Coastal Defence Integrating Wave-Energy-Based Desalination: A Case Study in Madagascar | Contestabile, P.; Vicinanza, D. | Journal Article | Wave, Overtopping, Salinity Gradient | Field Data, Full Scale | Performance | |
The application of temporal gating in the measurement of response amplitude operators | Cazzolato, B.; Sergiienko, N.; Cohen, N.; et al. | Conference Paper | Wave | Lab Data, Modeling | ||
Full-scale prototype of an overtopping breakwater for wave energy conversion | Contestabile, P.; Vincenzo, F. ; Di Lauro, E.; et al. | Conference Paper | Wave, Overtopping | Field Data, Full Scale | Performance | |
ANTEIA WAVE BUOY: Integrated solution to meet market needs | Arraibi-Landa, I,; Garcia-Corcuera, A. | Conference Paper | Wave | Field Data | ||
Optimal design of sensor networks for enhanced ocean wave energy conversion | Alnajjab, B.; Blum, R. | Conference Paper | Wave | Modeling | Performance | |
Modeling and analysis of a sea wave energy converter | Machado, I.; Watanabe, E. ; Garcia-Rosa, P. | Conference Paper | Wave | Modeling | Grid Integration | |
Development of ocean wave energy converter for gulf of Thailand | Phaoharuhansa, D. | Conference Paper | Wave, Point Absorber | Modeling | Performance | |
A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simulink platform | Hossain, J. ; Sikander, S. ; Hossain, E. | Conference Paper | Wave, Oscillating Wave Surge Converter, Reverse Electrodialysis | Modeling | Grid Integration | |
Analysis of power generation for direct wave energy converter | Park, J.; Kim, J.; Hyon, B.; et al. | Conference Paper | Wave | Modeling | Performance | |
New method for converting sea wave energy | Enferad, E. ; Farsadi, M. ; Enferad, S. | Conference Paper | Wave | Modeling | Performance | |
Acoustic life cycle assessment of offshore renewables-Implications from a wave-energy converter deployment in Falmouth Bay, UK | Blondel, P.; Walsh, J.; Garrett, J.; et al. | Journal Article | Wave | Field Data, Modeling, Full Scale | ||
A control-orientated analytical model for a cyclorotor wave energy device with N hydrofoils | Ermakov, A.; Ringwood, J. | Journal Article | Wave | Modeling | Control, Hydrodynamics, Power Take Off | |
Experimental wave propagation over obstacles of varying depth and length under linear and weakly linear conditions | Camacho, J.; Johnstone, C.; Sanchez, S. | Conference Paper | Wave | Modeling | ||
High-Fidelity Numerical Study of In-Line Excitation Force Estimation for Wave Energy Converters | Zou, S.; Abdelkhalik, O. | Conference Paper | Wave | Modeling | Hydrodynamics, Structural | |
Wave-to-ROV: Simulation of a Free-Floating WEC Powering a Remotely Operated Vehicle | Leary, M.; Zou, S.; Rusch, C.; et al. | Conference Paper | Wave | Modeling | Hydrodynamics, Power Take Off | |
Comparison among passive and active rectifier for seawave energy production | Gruosso, G.; Zhou, Q. ; Bizzozero, F. | Conference Paper | Wave, Point Absorber | Modeling | Power Take Off | |
Mooring system influence on the efficiency of wave energy converters | Cerveira, F. ; Fonseca, N.; Pascoal, R. | Journal Article | Wave | Modeling | Hydrodynamics | |
Deployment and Maintenance of Wave Energy Converters at the Lysekil Research Site: A Comparative Study on the Use of Divers and Remotely-Operated Vehicles | Rémouit, F. ; Chatzigiannakou, M.; Bender, A. ; et al. | Journal Article | Wave | Field Data | ||
A Hamiltonian Surface-Shaping Approach for Control System Analysis and the Design of Nonlinear Wave Energy Converters | Darani, S. ; Abdelkhalik, O.; Robinett, R.; et al. | Journal Article | Wave | Modeling | Control | |
Wave energy production in Italian offshore: Preliminary design of a point absorber with tubular linear generator | Bozzi, S.; Miquel, A.; Scarpa, F.; et al. | Conference Paper | Wave, Point Absorber | Modeling | Performance | |
A resonant two body system for a point absorbing wave energy converter with direct-driven linear generator | Engström, J.; Kurupath, V. ; Isberg, J.; et al. | Journal Article | Wave, Point Absorber | Modeling | Hydrodynamics | |
A new optimization procedure of heaving point absorber hydrodynamic performances | Piscopo, V.; Benassai, G.; Cozzolino, L. ; et al. | Journal Article | Wave, Point Absorber | Modeling | Hydrodynamics, Performance | |
Dynamic model, parameter extraction, and analysis of two topologies of a tubular linear generator for seawave energy production | Bizzozero, F.; Giassi, M.; Gruosso, G.; et al. | Conference Paper | Wave | Modeling | Performance | |
Three tidal turbines in interaction: An experimental study of turbulence intensity effects on wakes and turbine performance | Germain, G.; Carlier, C.; Pinon, G.; et al. | Journal Article | Current, Axial Flow Turbine | Lab Data, Modeling | Array Effects | |
Physical and Numerical Modeling of Cross-Flow Turbines | Bachant, P. | Thesis | Current, Cross Flow Turbine, Riverine | Lab Data, Modeling, Scale Device | Performance, Structural | |
Reynolds Number Dependence of Cross-Flow Turbine Performance and Near-Wake Characteristics | Bachant, P.; Wosnik, M. | Conference Paper | Current, Cross Flow Turbine, Riverine | Lab Data, Modeling, Full Scale | Performance | |
ReDAPT MC7.2 Public Domain - First Year of Operation Report | Sinclair, R. | Report | Current, Tidal | Modeling, Test Center | Grid Integration, Performance | |
Development of a Driving Electric Dynamometer Rotor Emulator for MHK In‐Stream Turbines | Laing, W.; VanSwieten, J. | Conference Paper | Current | Modeling | ||
Design and analysis of an ocean current turbine performance assessment system | VanZwieten, J.; Young, M.; von Ellenrieder, K. | Conference Paper | Current, Ocean Current | Modeling | Performance | |
Review of tidal characteristics of Uldolmok Strait and optimal design of blade shape for horizontal axis tidal current turbines | Seo, J.; Yi, J.; Park, J.; et al. | Journal Article | Current, Tidal | Modeling | Performance | |
A detailed comparison of meta-heuristic methods for optimising wave energy converter placements | Neshat, M.; Alexander, B.; Wagner, M.; et al. | Conference Paper | Current, Wave, Point Absorber | Lab Data, Modeling | ||
Testing 360 degree imaging technologies for improved animal detection around tidal energy installations | Pattison, L.; Serrick, A.; Brown, C. | Report | Current, Tidal | Field Data | ||
Developing Enhanced Marine Operations (DEMO) in High Flow Tidal Environments | NSCC | Report | Current, Tidal | Field Data, Modeling | ||
Strategic Research and Innovation Agenda for Ocean Energy | Villate, J.; Ruiz-Minguela, P.; Berque, J.; et al. | Report | Current, Tidal, Wave, Salinity Gradient, OTEC | Field Data, Modeling | Control, Grid Integration, Mooring, Power Take Off, Structural |
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