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Robust performance improvement of a raft-type wave energy converter using a nonlinear stiffness mechanism
•A novel nonlinear rotation PTO system is proposed and applied to a raft-type WEC.•The nonlinear stiffness mechanism can enhance the capture efficiency and broaden the bandwidth.•The bistable mechanism can shift the resonance peak to the lower frequency region.•Phase control mechanism for the nonlin...
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Published in: | International journal of mechanical sciences 2021-12, Vol.211, p.106776, Article 106776 |
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Main Authors: | , , , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | •A novel nonlinear rotation PTO system is proposed and applied to a raft-type WEC.•The nonlinear stiffness mechanism can enhance the capture efficiency and broaden the bandwidth.•The bistable mechanism can shift the resonance peak to the lower frequency region.•Phase control mechanism for the nonlinear stiffness device is revealed.
In order to enhance the capture efficiency and broaden the bandwidth, a novel rotation Power Take-off with nonlinear stiffness is proposed and applied to a traditional raft-type wave energy converter (WEC). Refer to Cummins’ equation, the governing equations of motion for a WEC with nonlinear stiffness in the time domain is established based on linear hydrodynamic model. The harmonic balance method is employed to solve the set of nonlinear dynamic equations. The characteristics of the wave absorption in regular and irregular waves are analyzed by using numerical simulations. The effects of the systematic parameters and wave conditions on wave energy capture efficiency are analyzed. The numerical results show that the nonlinear stiffness mechanism with appropriate parameters can enhance capture efficiency and broaden frequency bandwidth of the energy capture. Robust performance improvement without complex nonlinear phenomena of jumping and multiple solutions is revealed by using the analytical solutions. The nonlinear stiffness mechanism can provide a role of phase control for the raft-type WEC.
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ISSN: | 0020-7403 1879-2162 |
DOI: | 10.1016/j.ijmecsci.2021.106776 |