CrossRef Text and Data Mining
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One-way Coupled Response Analysis between Floating Wind-Wave Hybrid Platform and Wave Energy Converters
Hyebin Lee, Yoon Hyeok Bae, Il-Hyoung Cho
J. Ocean Eng. Technol.. 2016;30(2):84-90.   Published online April 30, 2016

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Modeling aspects of a floating wind turbine for coupled wave–wind-induced dynamic analyses
Renewable Energy. 2013;53:299-305   Crossref logo
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Coupled mooring analysis for floating wave energy converters using CFD: Formulation and validation
International Journal of Marine Energy. 2016;16:83-99   Crossref logo
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Performance Analysis of Multiple Wave Energy Converters Placed on a Floating Platform in the Frequency Domain
Energies. 2018;11(2):406   Crossref logo

Dynamic response and power performance of a combined Spar-type floating wind turbine and coaxial floating wave energy converter
Renewable Energy. 2013;50:47-57   Crossref logo
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Wave-current interaction effects on structural responses of floating offshore wind turbines
Wind Energy. 2018;22(2):327-339   Crossref logo
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Shape optimisation of floating wave energy converters for a specified wave energy spectrum
Renewable Energy. 2014;71:208-220   Crossref logo
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A high-fidelity wave-to-wire simulation platform for wave energy converters: Coupled numerical wave tank and power take-off models
Applied Energy. 2018;226:655-669   Crossref logo
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Energy Performance of Wave Energy Converters
Wave Energy Conversion. 2017;153-198   Crossref logo
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Additional List of Intermediate-Scale Prototypes of Wave Energy Converters, Tested Offshore Between 2001 and 2016
Wave Energy Conversion. 2017;203-207   Crossref logo
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Effects of higher wave harmonics on the response of monopile type offshore wind turbines
Wind Energy. 2012;n/a-n/a   Crossref logo
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