The Knowledge Base provides access to information about technical and engineering aspects of marine renewable 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. 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 Sort ascending||Content type||Technology||Collection Method||Application|
|Compensation of a hybrid platform dynamics using wave energy converters in different sea state conditions||Gaspar, J., Kamarlouei, M., Thiebaut, F.||Journal Article||Wave||Lab Data, Scale Device||Hybrid Devices, Power Take Off|
|Experimental and numerical study of dynamic responses of a new combined TLP type floating wind turbine and a wave energy converter under operational conditions||Ren, N., Ma, Z., Shan, B.||Journal Article||Wave||Lab Data, Modeling, Scale Device||Hybrid Devices, Hydrodynamics, Power Take Off|
|Performance Assessment of a Hybrid Wave Energy Converter Integrated into a Harbor Breakwater||Cabral, T. , Clemente, D., Rosa-Santos, P.||Journal Article||Wave, Overtopping, Oscillating Water Column||Lab Data, Modeling, Scale Device||Hybrid Devices, Performance|
|Monopile-mounted wave energy converter for a hybrid wind-wave system||Pérez-Collazo, C., Pemberton, R., Greaves, D.||Journal Article||Wave||Lab Data, Modeling, Scale Device||Hybrid Devices, Hydrodynamics, Performance|
|Integration of a semisubmersible floating wind turbine and wave energy converters: an experimental study on motion reduction||Zhu, H., Hu, C., Sueyoshi, M.||Journal Article||Wave, Oscillating Water Column||Lab Data, Scale Device||Control, Hybrid Devices|
|Hydrodynamic response of the WEC sub-system of a novel hybrid wind-wave energy converter||Pérez-Collazo, C., Greaves, D., Iglesias, G.||Journal Article||Oscillating Water Column||Lab Data, Scale Device||Hybrid Devices, Hydrodynamics|
|Experimental and numerical study of hydrodynamic responses of a new combined monopile wind turbine and a heave-type wave energy converter under typical operational conditions||Ren, N., Ma, Z., Fan, T.||Journal Article||Wave||Lab Data, Modeling, Scale Device||Hybrid Devices, Hydrodynamics|
|Comparative experimental study of the survivability of a combined wind and wave energy converter in two testing facilities||Wan, L., Gao, Z., Moan, T.||Journal Article||Wave||Lab Data, Modeling, Scale Device||Hybrid Devices|
|Comparative numerical and experimental study of two combined wind and wave energy concepts||Gao, Z., Moan, T., Wan, L.||Journal Article||Wave, Oscillating Water Column||Modeling, Scale Device||Hybrid Devices, Power Take Off|
|Feasibility and LCA for a Wave Dragon platform with wind turbines||Sorensen, H., Friis-Madsen, E., Russel, I.||Conference Paper||Wave, Overtopping||Field Data, Scale Device||Hybrid Devices|
|Experimental and numerical study of hydrodynamic responses of a combined wind and wave energy converter concept in survival modes||Wan, L., Gao, Z., Moan, T.||Journal Article||Wave||Lab Data, Scale Device||Hybrid Devices|
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