A SPLIT OPERATOR SCHEME FOR OCEAN WAVE SIMULATION

被引:5
作者
LI, CW
机构
[1] Department of Civil and Structural Engineering, Hong Kong Polytechnic
关键词
SPLIT OPERATOR SCHEME; METHOD OF CHARACTERISTICS; OCEAN WAVES; WAVE SPECTRUM;
D O I
10.1002/fld.1650150506
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
A coupled discrete spectral model was developed for the prediction of ocean waves by solving the energy conservation equation of the two-dimensional wave spectrum. The model includes the dispersion correction terms in the governing equation to account for the dispersive effect due to the frequency-dependent velocities of waves. A split operator scheme is used to deal with the numerical problems arising from different terms of the governing equation. The advection terms are solved by the proven accurate minimax characteristics method to avoid excessive numerical damping or oscillations. The dispersion correction terms are solved by central differencing. The source and sink terms are solved by a quasi-second-order explicit scheme with limitation on energy growth per time step to allow the use of a large time step. The model was verified by ideal test cases and wave-hindcasting studies under typhoon conditions in the South China Sea near Hong Kong.
引用
收藏
页码:579 / 593
页数:15
相关论文
共 50 条
[41]   Extraction of coastal ocean wave fields from SAR images [J].
Collard, F ;
Ardhuin, F ;
Chapron, B .
IEEE JOURNAL OF OCEANIC ENGINEERING, 2005, 30 (03) :526-533
[42]   Modeling Ocean Wave Transfer to Ross Ice Shelf Flexure [J].
Bennetts, L. G. ;
Liang, J. ;
Pitt, J. P. A. .
GEOPHYSICAL RESEARCH LETTERS, 2022, 49 (21)
[43]   NEW-ZEALAND OCEAN WAVE DATA INVENTORY (NOTE) [J].
STANTON, BR .
NEW ZEALAND JOURNAL OF MARINE AND FRESHWATER RESEARCH, 1992, 26 (02) :175-178
[44]   The selection of the spectrum and relax rate model in the ocean backscatter simulation [J].
Wang X.-Q. ;
Yu Y. ;
Chen Y.-Q. ;
Zhu M.-H. .
Dianzi Yu Xinxi Xuebao/Journal of Electronics and Information Technology, 2010, 32 (02) :476-480
[45]   Simulation of diffraction of ocean waves by a submerged sphere in finite depth [J].
Rahman, M .
APPLIED OCEAN RESEARCH, 2001, 23 (06) :305-317
[46]   Comprehensive review of a linear electrical generator for ocean wave energy conversion [J].
Khatri, Pooja ;
Wang, Xu .
IET RENEWABLE POWER GENERATION, 2020, 14 (06) :949-958
[47]   Marine radar ocean wave retrieval’s dependency on range and azimuth [J].
Björn Lund ;
Clarence O. Collins ;
Hans C. Graber ;
Eric Terrill ;
Thomas H. C. Herbers .
Ocean Dynamics, 2014, 64 :999-1018
[48]   Whisk-Inspired Motion Converter for Ocean Wave Energy Harvesting [J].
Pan, Qiqi ;
Wang, Biao ;
Zhang, Lingling ;
Li, Zhongjie ;
Yang, Zhengbao .
IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2022, 27 (03) :1808-1811
[49]   Ocean wave energy as a possible power source for the brazilian energy matrix [J].
De Oliveira D.M. ;
Isoldi L.A. ;
Dos Santos E.D. ;
Rocha L.A.O. ;
Das Neves Gomes M. .
Defect and Diffusion Forum, 2019, 396 :70-78
[50]   OCEAN WAVE MEASUREMENT USING SAR CROSS-TRACK INTERFEROMETRY [J].
Nadai, Akitsugu .
2019 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM (IGARSS 2019), 2019, :7965-7967