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A time-dependent numerical model of the mild-slope equation
作者姓名:SONG Zhiyao  ZHANG Honggui  KONG Jun  LI Ruijie  ZHANG Wei
作者单位:SONG Zhiyao1,ZHANG Honggui1,KONG Jun1,LI Ruijie1,ZHANG Wei11. State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering,Ocean College,Hohai University,Nanjing 210098,China
基金项目:This study was supported partly by the Doctor Degree Program Foundation of the Ministry of Education of China under contract No. 20050294009.
摘    要:On the basis of the previous studies, the simplest hyperbolic mild-slope equation has been gained and the linear time-dependent numerical model for the water wave propagation has been established combined with different boundary conditions. Through computing the effective surface displacement and transforming into the real transient wave motion, related wave factors will be calculated. Compared with Lin’s model, analysis shows that calculation stability of the present model is enhanced efficiently, because the truncation errors of this model are only contributed by the dissipation terms, but those of Lin’s model are induced by the convection terms, dissipation terms and source terms. The tests show that the present model succeeds the merit in Lin’s model and the computational program is simpler, the computational time is shorter, and the computational stability is enhanced efficiently. The present model has the capability of simulating transient wave motion by correctly predicting at the speed of wave propagation, which is important for the real-time forecast of the arrival time of surface waves generated in the deep sea. The model is validated against analytical solution for wave diffraction and experimental data for combined wave refraction and diffraction over a submerged elliptic shoal on a slope. Good agreements are obtained. The model can be applied to the theory research an d engineering applications about the wave propagation in a biggish area.

关 键 词:缓底坡波动方程  时间相关数值模型  有效波数  稳定性分析
收稿时间:2006-04-18
修稿时间:2006-10-13

A time-dependent numerical model of the mild-slope equation
SONG Zhiyao,ZHANG Honggui,KONG Jun,LI Ruijie,ZHANG Wei.A time-dependent numerical model of the mild-slope equation[J].Acta Oceanologica Sinica,2007,26(2):106-114.
Authors:SONG Zhiyao  ZHANG Honggui  KONG Jun  LI Ruijie and ZHANG Wei
Institution:State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Ocean College, Hohai University, Nanjing 210098, China
Abstract:On the basis of the previous studies, the simplest hyperbolic mild-slope equation has been gained and the linear time - dependent numerical model for the water wave propagation has been established combined with different boundary conditions. Through computing the effective surface displacement and transforming into the real transient wave motion, related wave factors will be calculated. Compared with Lin's model, analysis shows that calculation stability of the present model is enhanced efficiently, because the truncation errors of this model are only contributed by the dissipation terms, but those of Lin's model are induced by the convection terms, dissipation terms and source terms. The tests show that the present model succeeds the merit in Lin' s model and the computational program is simpler, the computational time is shorter, and the computational stability is enhanced efficiently. The present model has the capability of simulating transient wave motion by correctly predicting at the speed of wave propagation, which is important for the real - time forecast of the arrival time of surface waves generated in the deep sea. The model is validated against analytical solution for wave diffraction and experimental data for combined wave refraction and diffraction over a submerged elliptic shoal on a slope. Good agreements are obtained. The model can be applied to the theory research an d engineering applications about the wave propagation in a biggish area.
Keywords:effective wave number  effective surface displacement function  numerical error  stability analysis
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