WEN Sheng-chang, ZHANG Da-cuo, CHEN Bo-hai, et al. A hybrid model for numerical wave forecasting and its implementation: Part I.The wind wave model [J]. Acta Oceanologica Sinica, 1989, 8: 1-14.
[4]
HASSELMANN S, HASSELMANN K, ALLENDER J H, et al. Computations and parameterizations of the nonlinear energy transfer in a gravity-wave spectrum: Part Ⅱ [J]. J Phys Oceanogr, 1985,15: 1 378-1 391.
[5]
YANG Yong-zeng, QIAO Fang-li,PAN Zeng-di. Wave assimilation and numerical prediction [J]. Chin J Oceanol Limnol, 2000,18(4) :301-308.
[6]
LONGUET-HIGGINS M S, STEWART R W. Radiation stress and mass transport in gravity waves, with application to "surf-beats"[J]. J Fluid Mech, 1961,10: 529-549.
QIAO Fang-li, YUAN Ye-li, YANG Yong-zeng,et al. Wave-induced mixing in the upper ocean: distribution and application to a global ocean circulation model [J]. Geophys Res Lett,2004, 31: 1-4.
[10]
WAMDI Group. The WAM model A third generation ocean wave prediction model [J]. J Phys Oceanogr, 1988, 18: 1 775-1 810.
[11]
KOMEN G J, HASSELMANN S, HASSELMANN K. On the existence of a fully developed wind-sea spectrum [J]. J Phys Oceanogr,1984,14:1 271-1 285.
[12]
YUAN Y, TUNG C, HUANG Norden E. Statistical characteristics of breaking waves[A]. PHILLIPS O M, HASSELMANN K. Wave Dynamics and Radio Probing of the Ocean Surface[M]. New York:Plenum, 1986. 265-272.
[13]
YANG Yong-zeng, JI Yong-gang, YUAN Ye-li. The nonlinear interaction process in the wave assimilation model and assimilation experiments [J]. Chin J Oceanol Limnol, 2003, 21 (1) :18-26.
[14]
LONGUET-HIGGINS M S, STEWART R W. Changes in the form of short gravity waves on long waves and tidal currents [J]. J Fluid Mech, 1960, 8: 565-583.
[15]
WHITHAM G B. Mass momentum and energy flux in water waves [J]. J Fluid Mechanics, 1962,12: 135-147.