期刊文献+

Simulating Long Waves in a Coifs Harbour 3D Physical Model Using Short Wave Spectra

Simulating Long Waves in a Coifs Harbour 3D Physical Model Using Short Wave Spectra
下载PDF
导出
摘要 This paper presents examples of field data of extreme seiche waves measured at Coffs Harbour by MHL and describes the generation and measuring methodology to detect and reduce seiche agitation in the Coifs Harbour boat ramp using a 3D physical model. The paper also discusses the techniques in investigating a short wave problem of stability in the same model where a long wave is simulated. Waves offshore of Coffs Harbour at 80 m depth have been recorded by MHL for a period of over 30 years. Long waves have been simultaneously measured in the harbour over a period of a decade. These data enabled the model to be verified on two dates (4/6/12, 5/9/14) when high long waves were recorded at the boat ramp harbour under storm and non-storm conditions. Long waves are generated in harbours due to group bounded long wave and surf beat or edge waves. The paper presents methodologies of generating long waves both numerically and by using physical models, and discusses the advantages and disadvantages of these generation techniques. Numerical modelling carried out using long period regular waves in a previous investigation predicted reductions up to 50% due to change of planform of the boat ramp harbour where an area next to the boat ramp was excavated and roughness elements introduced to dampen long periods. The 3D physical model simulated a 25% decrease in the long wave energy in the boat ramp when a suitable change in the planform was made. A 3D undistorted model of scale 1:58 was used in the investigation.
出处 《Journal of Shipping and Ocean Engineering》 2016年第1期15-21,共7页 船舶与海洋工程(英文版)
关键词 SEICHE group bounded long waves surf beat planform. 物理模型 三维实体 数值模拟 长波 短波 光谱 同时测量 生成技术
  • 相关文献

参考文献10

  • 1Water Technology/Geolink 2014. Coifs Harbour Boat Ramp Basin Improvement Design. " Water Technology/Geolink Report 2954-01/R01, 201.
  • 2Baldock, T. E., and Huntley, D. A. 2002. "Long-Wave Forcing by the Breaking of Random Gravity Waves on a Beach." Proc. Royal Society, London. 458: 2177-201.
  • 3Bowers, E. C. 1992. "Long Period Disturbance Due to Wave Groups." Proceedings 23rd lnt. Conf. Coastal Engineering, 832-45.
  • 4Dean, R. G., and Dalley, W. R. 1986. "Transformation of Random Waves Breaking on Surf Beat." 20th ICCE Conference, 109-23.
  • 5Manly Hydraulics Laboratory. 1989. Coifs Harbour Seiche Stud)-A Physical Model Study on the Existing Harbour and Field Data Review. Manly Hydraulics Laboratory, Report No. 538.
  • 6Jayewardene, I. F. W., and Rangger, H. 2001. "Repair and Maintenance Issues Raised by Short and Long Wave Disturbance Inside Coifs Harbour." 15th Australasian Conference on Coastal and Ocean Engineering, Institution of Engineers Australia.
  • 7Kofoed-Hansen, H., Kerper, D. R., Soresen, O. R., and Kirkegaard, J. 2005. "Simulation of Long Wave Agitation in Ports and Harbours Using a Time Domain Boussinesq Model." Proceedings of Fifth International Symposium on Ocean Wave Measurement and Analysis, WAVES 2005 Madrid, Spain.
  • 8Dai, Y. B., and Kamel, A. M. 1969. Scale Effect Tests for Rubble Mound Breakwaters. Waterways Experiment Station, Research Report H-69-2, Department of the Army, USA.
  • 9Cornett, A. 1995. "A Study of Forcing and Damage of Rock Armour on Rubble Mound Breakwaters." Ph.D. Thesis, Technical Report HYD-TR-005, National Research Council, Canada.
  • 10Hughes, S. A. 1993. Physical Models and Laboratory Techniques in Coastal Engineering. Advanced Series on Ocean Engineering 7.

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