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 | Collection Method | Engineering |
---|---|---|---|---|---|---|
Study on Critical Factors Affecting Tidal Current Energy Exploitation in the Guishan Channel Area of Zhoushan | Ye, Z.; Gu, W.; Ji, Q. | Journal Article | Current, Tidal | Modeling | ||
Optimal sizing design and integrated cost-benefit assessment of stand-alone microgrid system with different energy storage employing chameleon swarm algorithm: A rural case in Northeast China | Zhou, J.; Xu, Z. | Journal Article | Current, Tidal | Modeling | Grid Integration, Hybrid Devices, Structural | |
Optimal design of horizontal axis tidal current turbine blade | Li, Z.; Li, G.; Du, L.; et al. | Journal Article | Current, Axial Flow Turbine, Tidal | Modeling | Hydrodynamics, Structural | |
Collective pitch for horizontal axis marine current turbine | Liu, H.; Li, H.; Gu, Y.; et al. | Journal Article | Current, Axial Flow Turbine | Field Data, Modeling, Full Scale | Control, Structural | |
The investigation of a coaxial twin-counter-rotating turbine with variable-pitch adaptive blades | Wu, B.; Zhan, M.; Wu, R.; et al. | Journal Article | Current, Axial Flow Turbine | Lab Data, Modeling | Hydrodynamics, Performance | |
Toward the Instrumentation and Data Acquisition of a Tidal Turbine in Real Site Conditions | Murray, R.; Simms, A.; Bharath, A.; et al. | Journal Article | Current, Tidal | Field Data | Materials, Substructure | |
Potential sites for tidal power generation: A thorough search at coast of New Jersey, USA | Tang, H.; Qu, K.; Chen, G.; et al. | Journal Article | Current, Tidal | Modeling | ||
Study of the Performance of Deep Learning Methods Used to Predict Tidal Current Movement | Zhang, K.; Wang, X.; Wu, H.; et al. | Journal Article | Tidal | Modeling | ||
High-resolution survey of tidal energy towards power generation and influence of sea-level-rise: A case study at coast of New Jersey, USA | Tang, H.; Kraatz, S.; Chen, G.; et al. | Journal Article | Current, Tidal | Modeling | ||
Effect of cavitation evolution on power characteristics of tidal current turbine | Gao, Y.; Liu, H.; Guo, G.; et al. | Journal Article | Current, Axial Flow Turbine | Modeling | Hydrodynamics, Performance | |
Multi-objective optimization of hybrid renewable energy systems with urban building energy modeling for a prototypical coastal community | Ang, Y.; Polly, A.; Kulkarni, A.; et al. | Journal Article | Current | Modeling | Grid Integration, Hybrid Devices | |
Design and on-site implementation of an off-grid marine current powered hydrogen production system | Liu, H.; Ren, H.; Gu, Y.; et al. | Journal Article | Current, Axial Flow Turbine | Field Data, Lab Data, Modeling, Scale Device | Hybrid Devices, Performance, Structural | |
Wave Energy Prize Final Presentation | LaBonte, A. | Presentation | Wave | Scale Device | Hydrodynamics, Performance, Structural | |
Design and Research of Slope-Pendulum Wave Energy Conversion Device | Wan, Z.; Li, Z.; Zhang, D.; et al. | Journal Article | Wave | Modeling | Array Effects, Performance, Structural | |
Impact of sediments on wear performance of critical sliding components of hydrokinetic devices | Ali, M.; Ravens, T.; Petersen, T.; et al. | Journal Article | Current, Wave | Field Data | Materials | |
Prediction of Wave Energy Flux in the Bohai Sea through Automated Machine Learning | Yang, H.; Wang, H.; Ma, Y.; et al. | Journal Article | Wave | Modeling | ||
An assessment of available ocean current hydrokinetic energy near the North Carolina shore | Kabir, A.; Lemongo-Tchamba, I.; Fernandes, A. | Journal Article | Current, Ocean Current | Modeling | ||
Quantifying Background Magnetic Fields at Marine Energy Sites: Challenges and Recommendations | Grear, M.; McVey, J.; Cotter, E. ; et al. | Journal Article | Current, Tidal | Field Data | ||
Puget Sound Tidal Energy In-Water Testing and Development Project Final Technical Report | Collar, C. | Report | Current, Tidal | Field Data | Structural | |
A Hybridized Triboelectric–Electromagnetic Water Wave Energy Harvester Based on a Magnetic Sphere | Wu, Z.; Guo, H.; Ding, W.; et al. | Journal Article | Wave, Oscillating Wave Surge Converter | Field Data | Performance | |
Combining wave energy with wind and solar: Short-term forecasting | Reikard, G.; Robertson, B.; Bidlot, J. | Journal Article | Wave | Modeling | Hybrid Devices | |
Characterizing Dangerous Waves for Ocean Wave Energy Converter Survivability | Hovland, J.; Paasch, R.; Haller, M. | Conference Paper | Wave | Field Data | ||
Development of a Control Co-Design Modeling Tool for Marine Hydrokinetic Turbines | Ross, H.; Hall, M.; Herber, D.; et al. | Conference Paper | Current, Tidal | Modeling | Control, Structural | |
Investigation of a low-pressure flash evaporation desalination system powered by ocean thermal energy | Wang, L.; Ma, X.; Kong, H.; et al. | Journal Article | OTEC, Hybrid-Cycle | Modeling | Hybrid Devices, Performance | |
Hydrodynamics of an asymmetric heave plate for a point absorber wave energy converter | Rusch, C.; Mundon, T.; Maurer, B; et al. | Journal Article | Wave, Point Absorber | Lab Data, Test Center, Scale Device | Hydrodynamics, Structural | |
Analysis of the wave load and dynamic response of a new semi-submersible wave-energy-powered aquaculture platform | Yue, W.; Wang, W.; Sheng, S.; et al. | Journal Article | Wave, Attenuator | Lab Data, Modeling | Hydrodynamics, Structural | |
Experimental study on hydrodynamic performance of a wave energy converter within multi‐heaving‐buoys | Liu, Z.; Qu, N.; Shi, H. | Journal Article | Wave, Point Absorber | Scale Device | Hydrodynamics, Performance | |
Exploitation potential of tidal current energy in Southern China seas | Wen, Y.; Lin, P. | Journal Article | Current, Tidal | Field Data, Modeling | Hydrodynamics, Performance | |
Modeling of a Marine Hydrokinetic Cycloturbine Vehicle | Goldschmidt, M.; Horn, J.; Jonson, M.; et al. | Journal Article | Current, Cross Flow Turbine, Tidal, Riverine | Lab Data, Modeling, Scale Device | Hydrodynamics, Structural | |
Modeling and control of tethered undersea kites | Li, H.; Olinger, D.; Demetriou, M. | Journal Article | Current, Kite | Modeling | Control, Hydrodynamics, Structural | |
A new concept in tidal turbines | Tarver, B.; Chan, J.; Jo, C. | Journal Article | Current, Tidal | Scale Device | Array Effects, Hydrodynamics, Performance | |
Wave energy assessment in the China East Adjacent Seas based on a 25-year wave-current interaction numerical simulation | Shi, X.; Liang, B.; Du, S.; et al. | Journal Article | Wave | Modeling | Performance | |
Optimizing offshore renewable portfolios under resource variability | de Faria, V.; de Queiroz, A.; DeCarolis, J. | Journal Article | Current, Wave | Modeling | Grid Integration, Hybrid Devices, Performance | |
Ocean Thermal Energy Capacity Estimation and Resource Assessment of Southeast Florida | Leland, A.; Driscoll, F.; van Zweiten, J.; et al. | Conference Paper | OTEC | Modeling | ||
Wave Energy Resource Characterization at the U.S. Navy Wave Energy Test Site and Other Locations in Hawaii | Li, N.; Cheung, K-F. | Report | Wave | Field Data, Modeling | ||
Wave Power Analysis for Makapuʻu Point, Oʻahu | Li, N.; Stopa, J. | Report | Wave | Field Data | ||
Research on Blade Design of Lift–Drag-Composite Tidal-Energy Turbine at Low Flow Velocity | Jiang, C. | Journal Article | Current, Axial Flow Turbine, Tidal | Field Data, Modeling | Hydrodynamics, Performance, Structural | |
Site-specific Modeling of self-reacting point absorber in real wave spectrum | Kalidoss, S.; Banerjee, A. | Journal Article | Wave, Point Absorber | Modeling | Hydrodynamics, Performance, Structural | |
Hybrid machine learning models for predicting short-term wave energy flux | Lu, H.; Xi, D.; Ma, X.; et al. | Journal Article | Wave | Modeling | ||
Review of Hybrid Offshore Wind and Wave Energy Systems | McTiernan, K.; Sharman, K. | Journal Article | Wave, Oscillating Water Column | Scale Device | Hybrid Devices | |
Development and Field Testing of PTO Control Strategies for Two Body Flexibly Connected WECs | Rosenberg, B.; Mundon, T.; Cavagnaro, R.; et al. | Conference Paper | Wave, Point Absorber | Field Data, Modeling, Full Scale | Power Take Off | |
A high-efficiency wave-powered marine observation buoy: Design, analysis, and experimental tests | Wang, L.; Li, H.; Jiang, J. | Journal Article | Wave | Lab Data, Modeling, Scale Device | Hydrodynamics, Mooring, Performance | |
Theoretical and experimental research on the thermal performance of ocean thermal energy conversion system using the rankine cycle mode | Chen, F.; Liu, L.; Peng, J.; et al. | Journal Article | OTEC, Closed-Cycle | Lab Data, Modeling | Performance | |
Pumping power minimization of an evaporator in ocean thermal energy conversion system based on constructal theory | Wu, Z. ; Feng, H. ; Chen, L.; et al. | Journal Article | OTEC, Closed-Cycle | Modeling | Performance | |
Wave energy assessment based on reanalysis data calibrated by buoy observations in the southern South China Sea | Li, B.; Chen, W.; Li, J.; et al. | Journal Article | Wave | Field Data, Modeling | ||
Characterization of Turbulence Anisotropy, Coherence, and Intermittency at a Prospective Tidal Energy Site: Observational Data Analysis | McCaffrey, K. ; Fox-Kemper, B.; Hamlington, P.; et al. | Journal Article | Current, Tidal | Field Data | ||
Sea Ice Collision Risk Assessment for Tidal Turbine Siting in Cook Inlet, Alaska | Branch, R.; Wang, T.; Whiting, J.; et al. | Report | Current, Tidal | Lab Data, Modeling | Hydrodynamics | |
Intermittent wave energy generation system with hydraulic energy storage and pressure control for stable power output | Song, R.; Dai, Y.; Qian, X. | Journal Article | Wave | Lab Data, Modeling | Control, Power Take Off | |
Design of a hydraulic power take-off system for the wave energy device with an inverse pendulum | Zhang, D.; Li, W.; Zhao, H.; et al. | Journal Article | Wave, Point Absorber | Lab Data, Modeling, Full Scale | Power Take Off, Structural | |
Experimental study on a pendulum wave energy converter | Qiu, S. ; Ye, J.; Wang, D.; et al. | Journal Article | Wave, Point Absorber | Modeling | Performance |
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