Hydrodynamic response analysis of a hybrid TLP and heaving-buoy wave energy converter with PTO damping

dc.contributor.authorRony, J.S.
dc.contributor.authorKarmakar, D.
dc.date.accessioned2026-02-04T12:24:51Z
dc.date.issued2024
dc.description.abstractIn the present study, the numerical investigation is performed to analyse the hydrodynamic performance of circular and concentric arrangements of cone-cylinder-type heaving point absorber wave energy converter (WEC) around a Frustum Tension-Leg Platform (FTLP) based on potential flow theory. The responses of the single FTLP and the FTLP-WEC hybrid system are analysed for the rated wind speed of a 5 MW wind turbine to observe the influence of the WECs on wind power absorption of wind turbines supported on FTLP. The presence of the FTLP floating wind turbine platform and other WECs affects the hydrodynamic coefficients of the WEC. The influence of the hybrid system on the hydrodynamic coefficients is analysed on determining the ratio of the hydrodynamic coefficients for a single WEC system to those for a hybrid system. Further, the study analyses the instantaneous wave power absorption for the WECs arranged around the FTLP in a circular and concentric pattern. The hydraulic power take-off for the hybrid system with two different control strategies is then discussed to improve the wave power absorption of the WECs. The study observed higher wave power absorption of the WECs with the influence of the PTO system. The mean interaction factor and the capture width ratio of the hybrid system are further studied to understand the influence of array arrangement for the WECs. The hybrid system is noted to have favourable dynamic responses for different environmental factors and contributes positively in increasing power output. © 2024 Elsevier Ltd
dc.identifier.citationRenewable Energy, 2024, 226, , pp. -
dc.identifier.issn9601481
dc.identifier.urihttps://doi.org/10.1016/j.renene.2024.120380
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/21150
dc.publisherElsevier Ltd
dc.subjectHydraulic motors
dc.subjectHydrodynamics
dc.subjectPower takeoffs
dc.subjectTension-leg platforms
dc.subjectWave energy conversion
dc.subjectWave power
dc.subjectWind
dc.subjectWind turbines
dc.subjectFrustum tension-leg platform
dc.subjectHydrodynamic response
dc.subjectHydrodynamics coefficients
dc.subjectInteraction factor
dc.subjectMean interaction factor
dc.subjectPower absorption
dc.subjectPower take-off
dc.subjectPower take-offs
dc.subjectWave energy converter
dc.subjectWave energy converters
dc.subjectHybrid systems
dc.subjectbuoy system
dc.subjectdamping
dc.subjecthydrodynamics
dc.subjectpotential flow
dc.subjectresponse analysis
dc.subjecttension leg platform
dc.subjectwave energy
dc.titleHydrodynamic response analysis of a hybrid TLP and heaving-buoy wave energy converter with PTO damping

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