A numerical study of Stokes drift and thermal effects on the oceanic mixed layer

被引:0
|
作者
Xuewei Li
Dongliang Zhao
Zhongshui Zou
机构
[1] Ocean University of China,Physical Oceanography Laboratory
[2] Zhejiang University,Ocean College
来源
Acta Oceanologica Sinica | 2020年 / 39卷
关键词
mixed layer; cool skin layer; diurnal warm layer; Stokes drift;
D O I
暂无
中图分类号
学科分类号
摘要
This study explores the influence of Stokes drift and the thermal effects on the upper ocean bias which occurs in the summer with overestimated sea surface temperature (SST) and shallower mixed layer depth (MLD) using Mellor-Yamada turbulence closure scheme. The upper ocean thermal structures through Princeton ocean model are examined by experiments in the cases of idealized forcing and real observational situation. The results suggest that Stokes drift can generally enhance turbulence kinetic energy and deepen MLD either in summer or in winter. This effect will improve the simulation results in summer, but it will lead to much deeper MLD in winter compared to observational data. It is found that MLD can be correctly simulated by combining Stokes drift and the thermal effects of the cool skin layer and diurnal warm layer on the upper mixing layer. In the case of high shortwave radiation and weak wind speed, which usually occurs in summer, the heat absorbed from sun is blocked in the warm layer and prevented from being transferred downwards. As a result, the thermal effects in summer nearly has no influence on dynamic effect of Stokes drift that leads to deepening MLD. However, when the stratification is weak in winter, the thermal effects will counteract the dynamic effect of Stokes drift through enhancing the strength of stratification and suppress mixing impact. Therefore, the dynamic and thermal effects should be considered simultaneously in order to correctly simulate upper ocean thermal structures in both summer and winter.
引用
收藏
页码:35 / 45
页数:10
相关论文
共 50 条
  • [21] Wintertime shoaling of oceanic surface mixed layer
    Takeuchi, E
    Yasuda, I
    GEOPHYSICAL RESEARCH LETTERS, 2003, 30 (22)
  • [22] ON THE SUBSURFACE WAVES IN THE OCEANIC UPPER MIXED LAYER
    SHRIRA, VI
    DOKLADY AKADEMII NAUK SSSR, 1989, 308 (03): : 732 - 736
  • [23] COUPLED OCEANIC AND ATMOSPHERIC MIXED LAYER MODEL
    DAVIDSON, KL
    GARWOOD, RW
    DYNAMICS OF ATMOSPHERES AND OCEANS, 1984, 8 (3-4) : 283 - 296
  • [24] Simulation of the microstructure profile of the oceanic mixed layer
    Noh, Y
    Jang, CJ
    Kim, HJ
    12TH SYMPOSIUM ON BOUNDARY LAYERS AND TURBULENCE, 1997, : 298 - 299
  • [25] NUMERICAL-SIMULATION OF ACTIVE OCEANIC LAYER
    ARSENYEV, SA
    IZVESTIYA AKADEMII NAUK SSSR FIZIKA ATMOSFERY I OKEANA, 1977, 13 (12): : 1325 - 1329
  • [26] Effects of asymmetry of potential on stochastic Stokes' drift
    Li, YX
    Cao, TG
    Wu, XZ
    Zhuo, YZ
    CHINESE PHYSICS LETTERS, 2001, 18 (04) : 488 - 490
  • [27] A numerical estimation of the impact of Stokes drift on upper ocean temperature
    Xiaoshuang Zhang
    Zhifeng Wang
    Bin Wang
    Kejian Wu
    Guijun Han
    Wei Li
    Acta Oceanologica Sinica, 2014, 33 : 48 - 55
  • [28] A numerical estimation of the impact of Stokes drift on upper ocean temperature
    ZHANG Xiaoshuang
    WANG Zhifeng
    WANG Bin
    WU Kejian
    HAN Guijun
    LI Wei
    ActaOceanologicaSinica, 2014, 33 (07) : 48 - 55
  • [29] A numerical estimation of the impact of Stokes drift on upper ocean temperature
    Zhang Xiaoshuang
    Wang Zhifeng
    Wang Bin
    Wu Kejian
    Han Guijun
    Li Wei
    ACTA OCEANOLOGICA SINICA, 2014, 33 (07) : 48 - 55
  • [30] Variability of the oceanic mixed layer, 1960-2004
    Carton, James A.
    Grodsky, Semyon A.
    Liu, Hailong
    JOURNAL OF CLIMATE, 2008, 21 (05) : 1029 - 1047