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 |
---|---|---|---|---|---|---|
Novel energy saving technologies evaluation tool | Klemes, J.; Bulatov, I.; Koppejan, J. | Journal Article | Current, Tidal, Wave | |||
A 20 KW open ocean current test turbine | Driscoll, F.; Alsenas, G.; Beaujean, P.; et al. | Conference Paper | Current, Axial Flow Turbine, Ocean Current | |||
A comparative approach to the economic modelling of a large-scale wave power scheme | Stallard, T.; Rothschild, R. ; Aggidis, G. | Journal Article | Current, Tidal, Wave | Modeling, Full Scale | ||
A comparison between CFD simulations and experiments for predicting the far wake of horizontal axis tidal turbines | Harrison, M.; Batten, W. ; Bahaj, A. | Conference Paper | Current, Cross Flow Turbine | Lab Data, Modeling | Hydrodynamics | |
A dynamic model for control purposes of a wave energy power plant buoyancy system | Nielsen, K.; Pedersen, T. | Conference Paper | Wave, Overtopping | Modeling | Control | |
A free-surface and blockage correction for tidal turbines | Whelan, J. ; Graham, J.; Peiro, J. | Journal Article | Current, Tidal | Modeling | Performance | |
A fuzzy logic material selection methodology for renewable ocean energy applications | Welling, D. | Thesis | Current | Materials | ||
A generic outline for dynamic modeling of ocean wave and tidal current energy conversion systems | Khan, J.; Moshref, A.; Bhuyan, G. | Conference Paper | Current, Wave | Modeling | Grid Integration | |
A Global Wave Energy Resource Assessment | Cornett, A. | Conference Paper | Wave | Modeling | ||
A hydrodynamic study of a floating circular OWC | Skyes, R.; Lewis, A.; Thomas, G. | Conference Paper | Wave, Oscillating Water Column | Modeling | Hydrodynamics | |
A level set immersed boundary model for extreme wave im- pacts on wave energy converters | Zhang, Y.; Zou, Q.; Greaves, D. | Conference Paper | Wave | Modeling | Hydrodynamics | |
A linearized model for estimating the performance of submerged resonant wave energy converters | Filianoti, P.; Camporeale, S. | Journal Article | Wave | Modeling | Performance | |
A modelling methodology for multi-body systems with application to wave-energy devices | Cathain, M.; Leira, B.; Ringwood, J.; et al. | Journal Article | Wave | Modeling | Hydrodynamics, Mooring, Power Take Off | |
A new control strategy for tracking peak power in a wind or wave energy system | Rao, S.; Murthy, B. | Journal Article | Wave | Control | ||
A new hybrid ocean thermal energy conversion–Offshore solar pond (OTEC–OSP) design: A cost optimization approach | Straatman, P.; van Sark, W. | Journal Article | OTEC, Hybrid-Cycle | |||
A new methodology to evaluate wave energy resources in intermediate depths. Application to the Asturias coast (North Spain) | Camus, P.; Vidal, C.; Méndez, F.; et al. | Conference Paper | Wave | Field Data, Modeling | ||
A nonlinear nonconvex minimum total heat transfer area formulation for ocean thermal energy conversion (OTEC) systems | Moore, F. ; Martin, L. | Journal Article | OTEC, Closed-Cycle | Modeling | Performance | |
A novel approach to materials selection strategy case study: Wave energy extraction impulse turbine blade | Thakker, A.; Jarvis, J.; Buggy, M.; et al. | Journal Article | Wave | Materials | ||
A novel direct-drive ocean wave energy extraction concept with contact-less force transmission system | Agamloh, E.; Wallace, A.; von Jouanne, A. | Journal Article | Wave | Lab Data, Modeling | Power Take Off, Structural | |
A novel maximum power point tracking algorithm for ocean wave energy devices | Amon, E.; Schacher, A.; Brekken, T. | Conference Paper | Wave, Point Absorber | Control | ||
A parameter study of the influence of struts on the performance of a vertical-axis marine current turbine | Goude, A. ; Lundin, S.; Leijon, M. | Conference Paper | Current, Axial Flow Turbine | Modeling | ||
A Parametric Experimental Study of the 2D Performance of a Ducted Wave Energy Converter | Leybourne, M.; Batten, W. ; Bahaj, A.; et al. | Conference Paper | Wave | Lab Data, Modeling | Hydrodynamics, Performance | |
A Pilot Study into the Optimization of the Shape of a Wave Energy Collector by Genetic Algorithm | McCabe, A.; Aggidis, G.; Widden, M. | Conference Paper | Wave | Modeling | Hydrodynamics | |
A Procedure for Predicting Energy From a Tidal Turbine Farm | Li, Y.; Calisal, S. | Conference Paper | Current, Tidal | Modeling | Array Effects | |
A resource assessment of southeast Florida as related to ocean thermal energy | Leland, A. | Thesis | OTEC | Field Data | ||
A review of the tidal current energy resource in Norway | Grabbe, M.; Lalander, E.; Lundin, S.; et al. | Journal Article | Current, Tidal | Field Data, Modeling | Hydrodynamics | |
A review of wave energy converter technology | Drew, B.; Plummer, A.; Sahinkaya, M. | Journal Article | Wave, Attenuator, Oscillating Water Column, Oscillating Wave Surge Converter, Overtopping, Point Absorber, Pressure Differential | Control, Power Take Off | ||
A Study on Short-Term Sea Profile Prediction for Wave Energy Applications | Fusco, F. ; Ringwood, J. | Conference Paper | Wave | Modeling | Control | |
A Three-dimensional Hydrodynamic Model of Inland Marine Waters of Washington State, United States, for Tidal Resource and Environmental Impact Assessment | Kawase, M.; Thyng, K. | Conference Paper | Current, Tidal | Modeling | ||
A twin unidirectional impulse turbine topology for OWC based wave energy plants | Jayashankar, V.; Anand, S.; Geetha, T.; et al. | Journal Article | Wave, Oscillating Water Column | Modeling | Performance, Structural | |
A wear model for assessing the reliability of wave energy converter in heave with hydraulic power take-off | Yang, L.; Hals, J.; Moan, T. | Conference Paper | Wave, Point Absorber | Modeling | Hydrodynamics | |
Advances in Hawaii’s Ocean Energy RD&D | Gill, A.; Rocheleau, R. | Conference Paper | Wave, OTEC | |||
Algorithm for the search of the secondary converter optimum impedance in a punctual wave energy converter | Paz, M.; Simón, D.; Porteiro, J.; et al. | Conference Paper | Wave | Modeling | ||
Alternative concept for tidal power plant with reservoir restrictions | Ferreira, R.; Estefen, S. | Journal Article | Current, Tidal | |||
An assessment of axial loading on a five-turbine array | O'Doherty, T.; Egarr, D.; Mason-Jones, A.; et al. | Journal Article | Current, Axial Flow Turbine | Modeling | Array Effects | |
An assessment of tidal energy potential. The Lima estuary. | Trigo-Teixeira, A.; Rebordão, I. | Conference Paper | Current, Ocean Current, Tidal | Modeling | ||
An assessment of variable characteristics of the Pacific northwest region's wave and tidal current power resources, and their interaction with electricity demand and implications for large scale development scenarios for the region : phase 1 | Khan, J.; Bhuyan, G.; Moshref, A. | Report | Current, Tidal, Wave | Grid Integration | ||
An atmosphere-wave coupled regional climate model | Rutgersson, A.; Sætra, Ø.; Semedo, A.; et al. | Conference Paper | Wave | Modeling | ||
An Experimental Study of Closely Spaced Point Absorber Arrays | Stallard, T.; Stansby, P.; Williamson, A. | Conference Paper | Wave, Point Absorber | |||
An experimental study of the characteristics of a Darrieus turbine for tidal power generation [Conference Paper] | Freeman, C.; Teixeira, J.; Trarieux, F.; et al. | Conference Paper | Current, Tidal | Structural | ||
An Experimental Study on the Darrieus-Savonius Turbine for the Tidal Current Power Generation | Kyozuka, Y. | Journal Article | Current, Cross Flow Turbine | Lab Data, Scale Device | Hydrodynamics, Structural | |
An experimental study to assess the potential benefits of foundation based flow acceleration structures for marine current energy converters | Giles, J.; Myers, L.; Bahaj, A.; et al. | Conference Paper | Current, Tidal | Lab Data, Modeling | Structural | |
Analysis and Comparison of Tidal Datasets | Iyer, A.; Couch, S.; Harrison, G.; et al. | Conference Paper | Current, Tidal | Modeling | ||
Analysis of potential power output of a device using a wave-by- wave approach | Smith, H.; Smith, G.; Venugopal, V.; et al. | Conference Paper | Wave | Modeling | ||
Analysis of the nearshore wave energy resource | Folley, M.; Whittaker, T. | Journal Article | Wave | Modeling | ||
Analysis of Wave Drift Forces on a Floating Wave Energy Converter | Fonseca, N.; Pascoal, R.; Marinho, J.; et al. | Conference Paper | Wave | Modeling | Mooring, Power Take Off, Structural | |
Analysis of wave reflection from wave energy converters installed as breakwaters in harbour | Zanuttigh, B.; Margheritini, L.; Gambles, L.; et al. | Conference Paper | Wave, Oscillating Wave Surge Converter | Lab Data, Modeling | Hydrodynamics, Structural | |
Application of fluid–structure interaction simulation of an ocean wave energy extraction device | Agamloh, E.; Wallace, A.; Jouanne, A. | Journal Article | Wave | Modeling | Performance | |
Applications of Supercapacitor Energy Storage for a Wave Energy Converter System | Murray, D.; Egan, M.; Hayes, J.; et al. | Conference Paper | Wave, Oscillating Water Column | Modeling | ||
Assessing the Wave Energy Resource Using Remote Sensed Data | Pontes, M.; Bruck, M.; Lehner, S. | Conference Paper | Wave | Modeling | Hydrodynamics |
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