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Numerical Study of Non-Linear Dynamic Behavior of an Asymmetric Rotor for Wave Energy Converter in Regular Waves

Authors
Ha, Yoon-JinPark, Ji-YongShin, Seung-Ho
Issue Date
8월-2021
Publisher
MDPI
Keywords
non-linear motion; restoring moment; Salter's duck-type rotor; CFD
Citation
PROCESSES, v.9, no.8
Journal Title
PROCESSES
Volume
9
Number
8
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/9566
DOI
10.3390/pr9081477
ISSN
2227-9717
2227-9717
Abstract
This study conducted a numerical investigation on the non-linear motion problems between a Salter duck-type rotor and large waves using CFD simulations. Regular waves of five different wave heights were generated. First, the linear motion of the rotor from the CFD simulation was verified by comparing it with the existing experimental and frequency domain analysis results. Then, a series of CFD simulations were performed to investigate the non-linear motions of the rotor. In the case of a lower wave height, the CFD simulation results were in good agreement with the experimental and frequency domain analysis results. However, as the wave height increased, the resonance periods were different in each other. In addition, the magnitudes of normalized pitch motions by the wave heights decreased as the wave heights increased. To investigate the aforementioned phenomena, the pitch motion equation was examined using separate CFD simulations. The results showed that changing the restoring moments induced changes in the maximum pitch motions and magnitudes of the normalized pitch motions. In the case of a higher wave height, non-linear phenomena and the changing restoring moments induced non-linear motion.
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