期刊文献+

Seasonal Variability of Internal Tides Northeast of Taiwan

下载PDF
导出
摘要 The spatial-temporal characteristics of the barotropic tides and internal tides(ITs) northeast of Taiwan Island are examined, based on a 1-year mooring current observations from May 23, 2017 to May 19, 2018. The results of harmonic tidal analysis show that the barotropic tides are dominated by semidiurnal tides, which is mainly controlled by M2 tidal components. Moreover, the vertical structures of diurnal and semidiurnal ITs show that the semidiurnal IT shows notable seasonal variation, whereas seasonal variations of the diurnal IT energy is not significant. The semidiurnal IT energy in winter half year is twice that in summer half year. The seasonal variation of semidiurnal IT is mainly modulated by the direction change of the current rather than by the topographic features and stratification. In summer(winter) half year cyclonic(anti-cyclonic) eddies meanly control at this point, so the flow direction is mainly in the southwest(northeast) direction, causing the background flow to flow along(perpendicular to) the isobath. When crossing the isobath, the ITs are generated by the interaction of the barotropic tide and the topography, resulting in the increase of the tidal energy in the winter half year.
出处 《Journal of Ocean University of China》 SCIE CAS CSCD 2020年第3期740-746,共7页 中国海洋大学学报(英文版)
基金 supported by the National Natural Science Foundation of China (Nos.41630967, 41776020, 41706017, 41876011, 41506021, U1606402 and 41421005) the Global Change and Air-Sea Interaction Project (Nos.GASI-IPOVAI-01-06 and GASI- IPOVAI-01-05)。
  • 相关文献

参考文献1

二级参考文献15

  • 1Chen, Z. Y., Ye, A. L., and Zuo, J. C., 1995. Advances in ocean tide research over the past 40 years in China. Journal of Ocean University ofQingdao, 25 (4): 435-444.
  • 2Choi, B. H., 1980. A Tidal Model of the Yellow Sea and the Eastern China Sea. Korea Ocean Research and Development Institute, Korea, 72pp.
  • 3Ding, W. L., 1983. A study on the characteristics of tide and tidal current in the East China Sea. Studia Marina Sinica, 2 (1): 135-148.
  • 4Fang, G. H., 1986. Tide and tidal current charts for the marginal seas adjacent to China. Chinese Journal of Oceanology and Limnology, 4 (1): 1-16.
  • 5Lagerloef, G. S. E., and Berstein, R. L., 1988. Empirical orthogonal function analysis of advanced very high resolution radiometer sea surface temperature patterns in Santa Barbara Channel. Journal of Geophysical Research, 93 (C6): 6863- 6873.
  • 6Pawlowicz, R, Beardsley, B., and Lentz, S., 2002. Classical tide harmonic analysis including error estimates in MA TLAB using T_TIDE. Computers and Geosciences, 28: 929-937.
  • 7Sha, W. Y., 2000. Advances in ocean tide research in China Sea. Marine Forecasts, 17 (2): 73-77 (in Chinese).
  • 8Shen, Y. J., and Ye, A L., 1984. Numerical calculation of three-dimensional semi diurnal tidal flow field in the East China Sea. Transactions of Oceanology and Limnology, 1: 1- 10 (in Chinese with English abstract).
  • 9Teague, W. J., Perkins, H. T., Hallock, Z. R, and Jacobs, G A, 1998. Current and tide observations in the southern Yellow Sea. Journal of Geophysical Research, 103: 27783-27793.
  • 10Wan, Z. W., Qiao, F. L., and Yuan, L. Y., 1998. Numerical simulation of three-dimensional tidal current in the Bohai Sea, the Yellow Sea and the East China Sea. Oceanologia et Limnologia Sinica, 29 (6): 611-616 (in Chinese with English abstract).

共引文献3

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