Journal of Navigation and Port Research 2012;36(9):729-735.
Published online December 31, 2012.
Performance Prediction of an OWC Wave Power Plant with 3-D Characteristics in Regular Waves
Do-Chun Hong, Keyyong Hong
Abstract
The primary wave energy conversion by a three-dimensional bottom-mounted oscillating water column (OWC) wave power device in regular waves has been studied. The linear potential boundary value problem has been solved following the boundary matching method. The optimum shape parameters such as the chamber length and the depth of the front skirt of the OWC chamber obtained through two-dimensional numerical tests in the frequency domain have been applied in the design of the present OWC chamber. Time-mean wave power converted by the OWC device and the time-mean second-order wave forces on the OWC chamber structure have been presented for different wave incidence angles in the frequency-domain. It has been shown that the peak period of Pmfor the optimum damping parameter coincides with the peak period of the time –mean wave drift force when ϒ= 0.
Key Words: three-dimensional wave diffraction theory;oscillating water column (OWC);bottom-mounted OWC wave power device;oscillating pressure drop;equivalent linear damping;frequency-domain wave power response amplitude operator


ABOUT
BROWSE ARTICLES
FOR CONTRIBUTORS
Editorial Office
C1-327 Korea Maritime and Ocean University
727 Taejong-ro, Youngdo-gu, Busan 49112, Korea
Tel: +82-51-410-4127    Fax: +82-51-404-5993    E-mail: jkinpr@kmou.ac.kr                

Copyright © 2024 by Korean Institute of Navigation and Port Research.

Developed in M2PI

Close layer
prev next