Homma M, Horikawa K, Kajima R A. Study on suspended sediment due to wave action[J]. Coastal Engineering in Japan, 1965, 8: 85-103.
[2]
Sleath J F A. The suspension of sand by waves[J]. Journal of Hydraulic Research Engineering, 1982, 5:439-452.
[3]
Staub C, Jonsson I G, Svendsen I A. Variation of suspended sediment in oscillatory flow[A]. Billy L Edge, Coastal Engineering Proc of the 19th Int Conf[C]. Houston: ASCE, 1984, 2 310-2 321.
[4]
Hanes D M, Huntley D A. Continuous measurement of suspended sand concentration in a wave dominated near shore environment [J].Continental Shelf Research, 1986, 6(4): 585-596.
[5]
Vincent C E, Green M O. Field measurement of the suspended sand concentration profiles and fluxes and of the resuspension coefficient over a ripple bed[J].Journal of Geophysical Research, 1990, 95(C7): 11 591-11 601.
[6]
Wikramanayake P N. Velocity profiles and suspended sediment transport in wave-current flows[D].Massachusetts:Massachusetts Institute of Technology, 1993.
[7]
Grant W D, Madsen O S. Movable bed roughness in unsteady oscillatory flow[J]. Journal of Geophysical Research, 1982, 87(c1): 469-481.
[8]
Wikramanayake P N. Turbulent wave-current bottom boundary layer flows[D]. Massachusetts:Massachusetts Institute of Technology, 1989.
[9]
王竹溪 郭敦仁.特殊函数概论[M].北京:科学出版社,1979.
[10]
王尚毅 顾元 郭传镇.河口工程泥沙数学模型[M].北京:海洋出版社,1990.
[11]
赵冲久.[D].天津:天津大学,2003.
[12]
Nielsen P. Field measurements of time-averaged suspended sediment concentrations under waves [J]. Coastal Engineering, 1984, 8: 51-72.
[13]
Hanes D M. Suspension of sand due to wave groups [J]. Journal of Geophysical Research, 1991, 96(C5) : 8 911-8 915.
[14]
Wright L D, Boon J D, Kim S C, et al. Models of cross-shore sediment transport on the shoreface of the Middle Atlantic Bight[J].Marine Geology, 1991, 96 : 19-51.