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The influence of background waves on internal solitary waves after the transit of Typhoon Neast in the northern South China Sea

The influence of background waves on internal solitary waves after the transit of Typhoon Neast in the northern South China Sea
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摘要 On the basis of the time series observations from a temperature chain and an acoustic Doppler current profiler on the continental shelf of the northern South China Sea, a sequence of internal solitary waves (ISWs) and background waves (BWs, including internal tides and near-inertial waves) on the continental shelf were captured simultaneously after the transit of Typhoon Neast in October 2011. These measurementsprovided a unique opportunity to explore the influence of BWs on the ISWs. The BWs appeared a conversion on the current strength and vertical mode structure during the observational period. The BWs were dominated by weak and mode-one waves before October 2 and then turned to strong and high-mode waves after that time. Meanwhile, the ISWs displayed different wave structures before and after October 2, which was closely related to BWs' changes. According to the current profiles of BWs, the high-mode wave structure with strong current could significantly strengthen the vertical shear of ISWs in the near-surface layer and promote the breaking of ISWs, and thus it may play an important role in affecting the background current condition. On the basis of the time series observations from a temperature chain and an acoustic Doppler current profiler on the continental shelf of the northern South China Sea, a sequence of internal solitary waves (ISWs) and background waves (BWs, including internal tides and near-inertial waves) on the continental shelf were captured simultaneously after the transit of Typhoon Neast in October 2011. These measurementsprovided a unique opportunity to explore the influence of BWs on the ISWs. The BWs appeared a conversion on the current strength and vertical mode structure during the observational period. The BWs were dominated by weak and mode-one waves before October 2 and then turned to strong and high-mode waves after that time. Meanwhile, the ISWs displayed different wave structures before and after October 2, which was closely related to BWs' changes. According to the current profiles of BWs, the high-mode wave structure with strong current could significantly strengthen the vertical shear of ISWs in the near-surface layer and promote the breaking of ISWs, and thus it may play an important role in affecting the background current condition.
出处 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2014年第7期40-47,共8页 海洋学报(英文版)
基金 The National Nature Science Foundation of China under contract Nos U1133001,41030855 and 2013AA09A502
关键词 internal solitary wave shear instability near-inertial waves internal tides internal solitary wave, shear instability, near-inertial waves, internal tides
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参考文献21

  • 1Alford Matthew H,Lien Ren-Chieh,Simmons Harper. Speed and evolution of nonlinear internal waves transiting the South China Sea[J].Journal of Physical Oceanography,2010.1338-1355.
  • 2CaiShuqun,XieJieshuo. A propagation model for the internal solitary waves in the northern South China Sea[J].Journal of Geo-physical Research,2010.C12074.
  • 3Chang Ming-Huei,Lien Ren-Chieh,Tang Tswen Yung. En-ergy flux of nonlinear internal waves in northern South China Sea[J].Geophysical Research Letter,2006.L03607.
  • 4Fu Ke-Hsien,Wang Yu-Huai,Laurent Louis St. Shoaling of large-amplitude nonlinear internal waves at Dongsha Atoll in the northern South China Sea[J].Continental Shelf Research,2012.1-7.
  • 5Jackson Christopher R. An empirical model for estimating the geographic location of nonlinear internal solitary waves[J].Journal of Atmospheric and Oceanic Technology,2009.2243-2255.
  • 6Vidal Javier,Xavier Casamitjana,Jordi Colomer. The internal wave field in Sau reservoir:observation and modeling of a third vertical mode[J].Limnol Ocanogr,2005.1326-1333.
  • 7Lamb Kevin G. Shoaling solitary internal waves:on a criterion for the formation of waves with trapped cores[J].Journal of Fluid Mechanics,2003.81-100.
  • 8Lamb Kevin G,Farmer David. Instabilities in an internal solitary-like wave on the Oregon shelf[J].Journal of Physical Oceanography,2011.67-87.
  • 9Lien Ren-Chieh,D'asaroEeric A,Henyey Frank. Trapped core formation within a shoaling nonlinear internal wave[J].Jour-nal of Physical Oceanography,2012.511-525.
  • 10Lien Ren-Chieh,Tang Tswen-Yung,Chang Ming-Huei. En-ergy of nonlinear internal waves in the South China Sea[J].Geo-physical Research Letters,2005.L05615.

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