期刊文献+

A Study on Kinematics Characteristics of Freak Wave 被引量:2

A Study on Kinematics Characteristics of Freak Wave
下载PDF
导出
摘要 Based on the 3rd-order Stokes wave theory, the speed of freak waves is formulated in terms of the period and the wave height. Finite modified wave steepness gives rise to a significant enhancement of the nonlinear contributions to the freak wave speed in comparison with the 3rd-order Stokes wave theory. For a fix modified wave steepness, the estimated amplification of the nonlinear contributions due to the deviation from the 3rd-order Stokes wave theory is 0.22-0.99. In addition, the velocity and acceleration fields are also documented in detail. In the present simulation, the horizontal velocities are smaller than the wave speed, and the freak wave exhibits a maximal horizontal velocity up to 37% of the wave speed and a maximal vertical acceleration up to about 20% of the gravitational acceleration. Based on the 3rd-order Stokes wave theory, the speed of freak waves is formulated in terms of the period and the wave height. Finite modified wave steepness gives rise to a significant enhancement of the nonlinear contributions to the freak wave speed in comparison with the 3rd-order Stokes wave theory. For a fix modified wave steepness, the estimated amplification of the nonlinear contributions due to the deviation from the 3rd-order Stokes wave theory is 0.22-0.99. In addition, the velocity and acceleration fields are also documented in detail. In the present simulation, the horizontal velocities are smaller than the wave speed, and the freak wave exhibits a maximal horizontal velocity up to 37% of the wave speed and a maximal vertical acceleration up to about 20% of the gravitational acceleration.
出处 《China Ocean Engineering》 SCIE EI CSCD 2013年第3期391-402,共12页 中国海洋工程(英文版)
基金 financially supported by the Science Fund for Innovative Research Groups (Grant No. 50921001)
关键词 freak wave SPEED VELOCITY ACCELERATION freak wave speed velocity acceleration
  • 相关文献

参考文献3

二级参考文献20

  • 1Osborne A R, Onorato M, Serio M. The nonlinear dynamics of rogue waves and holes in deep-water gravity wave trains[J]. Physics Letter, A, 2000, 275(5 - 6) :386-393.
  • 2Stansell P. Distributions of extreme wave, crest and trough heights measured in the North Sea[J]. Ocean Engineering, 2004, 32 (8 -9): 1015-1036.
  • 3Clanss G F. Dramas of the sea: episodic waves and their impact on offshore structures[J]. Applied Ocean Research, 21302, 24 (3) : 147-161.
  • 4Walker D A G, Taylor P H, Taylor R E. The shape of large surface waves on the open sea and the Draupner New Year wave[J]. Ap- plied Ocean Research, 2004, 26(3 -4): 73-83.
  • 5Chien H, Kao C C, Chuang L Z H. On the characteristics of observed coastal freak waves[ J]. Coastal Engineering, 2002, 44(4): 301-319.
  • 6Ren B, Wang Y X. Numerical simulation of random wave slamming on structures in the splash zone[ J]. Ocean Engineering, 2004, 31 (5 - 6) : 547-560.
  • 7Kriebel D L. Efficient simulation of extreme waves in a Random Sea[ C ]//Abstract for Rogue Waves 2000 Workshops. Brest: [ s. n. ], 2000: 1-2.
  • 8Torrence C, Compo G P. A practical guide to wavelet analysis[J] .Bulletin of the American Meteorological Society, 1998, 79( 1 ) : 61- 78.
  • 9Osborne A R, Onorato M, Serio M. The nonlinear dynamics of rogue waves and holes in deep-water gravity wave trains [J]. Physics Letters A, 2000, 275(5-6):386-393.
  • 10Stansell P. Distributions of extreme wave, crest and trough heights measured in the North Sea [J]. Ocean Engineering, 2004, 32 (8~9): 1 015-1 036.

共引文献21

同被引文献6

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部