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Infragravity Waves Produced by Wave Groups on Beaches 被引量:1

Infragravity Waves Produced by Wave Groups on Beaches
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摘要 The generation of low frequency waves by a single or double wave groups incident upon two Plane beaches with the slope of 1/40 and 1/100 is investigated experimentally and numerically. A new type of wave maker signal is used to generate the groups, allowing the bound long wave (set-down) to be included in the group. The experiments show that the low frequency wave is generated during breaking and propagation to the shoreline of the wave group. This process of generation and propagation of low frequency waves is simulated numerically by solving the short-wave averaged mass and momentum conservation equations. The computed and measured results are in good agreement. The mechanism of generation of low frequency waves in the surf zone is examined and discussed. The generation of low frequency waves by a single or double wave groups incident upon two Plane beaches with the slope of 1/40 and 1/100 is investigated experimentally and numerically. A new type of wave maker signal is used to generate the groups, allowing the bound long wave (set-down) to be included in the group. The experiments show that the low frequency wave is generated during breaking and propagation to the shoreline of the wave group. This process of generation and propagation of low frequency waves is simulated numerically by solving the short-wave averaged mass and momentum conservation equations. The computed and measured results are in good agreement. The mechanism of generation of low frequency waves in the surf zone is examined and discussed.
出处 《China Ocean Engineering》 SCIE EI 2003年第4期551-564,共14页 中国海洋工程(英文版)
基金 This project was financially supported by the National Natural Science Foundations of China(Grant No.59679005 59839330)
关键词 surf beat infragravity waves time operator splitting surf beat infragravity waves time operator splitting
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  • 1[1]Baldock, T. E. and Holmes, P., 1999. Simulation and prediction of swash oscillations on a steep beach, Coastal Engineering, 36, 219~242.
  • 2[2]Baldock, T. E., Huntly, D. A., Bird, P. A. D., TO'Hare, J. and Bullock, G. N., 2000. Breaking point generated surf beat induced by bichromatic wave groups, Coastal Engineering, 39, 213~242.
  • 3[3]Elgar, S., Herbers, T. and Guza, R., 1994. Reflection of ocean surface gravity waves from a natural beach, Journal of Physical Oceanography, 24, 1503~1511.
  • 4[4]Holman, R., 1981. Infragravity energy in the surf zone, Journal of Geophysical Research, 86, 6442~6450.
  • 5[5]Holland, K., Raubenheimer, B., Guza, R. and Holman, R., 1995. Runup kinematics on a nature beach, Journal of Geophysical Research, 100, 4985~4993.
  • 6[6]Herber, T., Elgar, S. and Guza, R., 1995. Generation and propagation of infragravity waves, Journal of Geophysical Research, 100, 24863~24872.
  • 7[7]Longuet-Higgins, M. S. and Stewart, R.W., 1964. Radiation stresses in water waves-a physical discussion, with applications, Deep Sea Res., 11, 529~562.
  • 8[8]Munk, W. H., 1949. Surf beat, EOS Trans, AGU, 30, 849~854.
  • 9[9]Madsen, P. A., Sorensen, O. R. and Schaffer, H., 1997. Surf zone dynamics simulated by a Boussinesq type model, Part 2: surf beat and swash oscillations for wave groups and irregular waves, Coastal Engineering, 32, 289~319.
  • 10[10]Roelvink, J. A., 1993. Surf beat and its effect on cross-shore profiles, Ph. D. Thesis, Delft Hydraulics.

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