期刊文献+

Effect of Stokes drift on upper ocean mixing 被引量:7

Effect of Stokes drift on upper ocean mixing
下载PDF
导出
摘要 Stokes drift is the main source of vertical vorticity in the ocean mixed layer. In the ways of Coriolis - Stokes forcing and Langmuir circulations, Stokes drift can substantially affect the whole mixed layer. A modified Mellor-Yamada 2. 5 level turbulence closure model is used to parameterize its effect on upper ocean mixing conventionally. Results show that comparing surface heating with wave breaking, Stokes drift plays the most important role in the entire ocean mixed layer, especially in the subsurface layer. As expected, Stokes drift elevates both the dissipation rate and the turbulence energy in the upper ocean mixing. Also, ilffluence of the surface heating, wave breaking and wind speed on Stokes drift is investigated respectively. Research shows that it is significant and important to assessing the Stokes drift into ocean mixed layer studying. The laboratory observations are supporting numerical experiments quantitatively. Stokes drift is the main source of vertical vorticity in the ocean mixed layer. In the ways of Coriolis - Stokes forcing and Langmuir circulations, Stokes drift can substantially affect the whole mixed layer. A modified Mellor-Yamada 2. 5 level turbulence closure model is used to parameterize its effect on upper ocean mixing conventionally. Results show that comparing surface heating with wave breaking, Stokes drift plays the most important role in the entire ocean mixed layer, especially in the subsurface layer. As expected, Stokes drift elevates both the dissipation rate and the turbulence energy in the upper ocean mixing. Also, ilffluence of the surface heating, wave breaking and wind speed on Stokes drift is investigated respectively. Research shows that it is significant and important to assessing the Stokes drift into ocean mixed layer studying. The laboratory observations are supporting numerical experiments quantitatively.
出处 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2008年第2期11-20,共10页 海洋学报(英文版)
基金 The National Science Fund for Distinguished Young Scholars of China under contract No40425015 the Knowledge Innovation Programsof the Chinese Academy of Sciences under contract No kzcx2 -yw-201
关键词 Stokes drift Langmuir circulations Coriolis - Stokes forcing upper ocean mixing Mellor-Yamada 2. 5 turbulence model wave breaking surface heating Stokes drift, Langmuir circulations, Coriolis - Stokes forcing, upper ocean mixing, Mellor-Yamada 2. 5 turbulence model, wave breaking, surface heating
  • 相关文献

参考文献1

二级参考文献3

共引文献9

同被引文献29

  • 1SUN Fu GAO Shan WANG Wei QIAN Chengchun.Wave-induced stress and estimation of its driven effect on currents[J].Science China Earth Sciences,2004,47(12):1147-1154. 被引量:6
  • 2杨永增,乔方利,夏长水,马健,袁业立.海浪对海洋上层的动量与混合作用分析[J].海洋科学进展,2003,21(4):363-368. 被引量:12
  • 3刘增宏,许建平,朱伯康,孙朝辉,张立峰.利用Argo资料研究2001—2004年期间西北太平洋海洋上层对热带气旋的响应[J].热带海洋学报,2006,25(1):1-8. 被引量:33
  • 4Stokes G G. On the theory of oscillatory waves Trans[J].Cambridge Philos Soc, 1984, 8: 441-455.
  • 5Hasselmann K. Wave-driven inertial oscillations[J]. Geophys Fluid Dyn, 1970, 1: 463-502.
  • 6Huang N E. On surface drift currents in the ocean[J]. J Fluid Mesh, 1979, 91: 191-208.
  • 7McWilliams J C, Restrepo J M. The wave-driven ocean circulation[J]. J Phys Oceanogr, 1999, 29: 2523-2540.
  • 8Polton J A, Lewis D M, Belcher S E. The role of wave-induced Coriolis-Stokes forcing on the wind-driven mixed layer[J]. J Phys Oceanogr, 2005, 35: 444-457.
  • 9Wu K J, Liu B. Stokes drift-induced and direct wind energy inputs into the Ekman layer within the Antarctic Circumpolar Current[J]. J Geophys Res, 2008a, 113, C10002.
  • 10Wu K J, Yang Z L, Liu B, et al. Wave energy input into the Ekman layer. Science in China Series D: Earth Sciences[J], 2008b, 51: 134-141.

引证文献7

二级引证文献16

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