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A parameterization scheme of vertical mixing due to inertial internal wave breaking in the ocean general circulation model

机译:海洋总环流模型中惯性内波破裂引起的垂直混合参数化方案

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摘要

Based on the theoretical spectral model of inertial internal wave breaking (fine structure) proposed previ-ously, in which the effects of the horizontal Coriolis frequency component f-tilde on a potential isopycnal are taken into account, a parameterization scheme of vertical mixing in the stably stratified interior be-low the surface mixed layer in the ocean general circulation model (OGCM) is put forward preliminarily in this paper. Besides turbulence, the impact of sub-mesoscale oceanic processes (including inertial internal wave breaking product) on oceanic interior mixing is emphasized. We suggest that adding the inertial inter-nal wave breaking mixing scheme (F-scheme for short) put forward in this paper to the turbulence mixing scheme of Canuto et al. (T-scheme for short) in the OGCM, except the region from 15°S to 15°N. The numeri-cal results of F-scheme by using WOA09 data and an OGCM (LICOM, LASG/IAP climate system ocean model) over the global ocean are given. A notable improvement in the simulation of salinity and temperature over the global ocean is attained by using T-scheme adding F-scheme, especially in the mid- and high-latitude regions in the simulation of the intermediate water and deep water. We conjecture that the inertial internal wave breaking mixing and inertial forcing of wind might be one of important mechanisms maintaining the ventilation process. The modeling strength of the Atlantic meridional overturning circulation (AMOC) by using T-scheme adding F-scheme may be more reasonable than that by using T-scheme alone, though the physical processes need to be further studied, and the overflow parameterization needs to be incorporated. A shortcoming in F-scheme is that in this paper the error of simulated salinity and temperature by using T-scheme adding F-scheme is larger than that by using T-scheme alone in the subsurface layer.
机译:基于先前提出的惯性内部波浪破碎的理论频谱模型(精细结构),其中考虑了水平科里奥利频率分量f-tilde对势等值的影响,在该模型中垂直混合的参数化方案初步提出了海洋总体环流模型(OGCM)下表层以下的稳定分层内部。除了湍流外,还强调了亚中尺度以上海洋过程(包括惯性内部波浪破碎产物)对海洋内部混合的影响。我们建议在Canuto等人的湍流混合方案中增加本文提出的惯性内部波浪混合方案(简称F方案)。在OGCM中(简称T方案),除了从15°S到15°N的区域。通过使用WOA09数据和OGCM(LICOM,LASG / IAP气候系统海洋模型)在全球范围内给出的F方案的数值结果给出了结果。通过在T型方案中添加F型方案,特别是在中高纬度地区的中层水和深层水域模拟中,在全球海洋的盐度和温度模拟中获得了显着的改进。我们推测惯性内波打破混合和风的惯性强迫可能是维持通风过程的重要机制之一。尽管需要进一步研究物理过程,并且需要对溢流参数进行分析,但是通过使用T方案加上F方案对大西洋子午倾覆环流(AMOC)的建模强度可能比单独使用T方案更为合理。被合并。 F方案的一个缺点是,本文在地下层使用T方案添加F方案模拟的盐度和温度的误差大于单独使用T方案的模拟盐度和温度的误差。

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  • 来源
    《海洋学报(英文版)》 |2015年第1期|11-22|共12页
  • 作者单位

    College of Physical and Environmental 0ceanography, 0cean University of China, Qingdao 266100, China;

    College of Physical and Environmental 0ceanography, 0cean University of China, Qingdao 266100, China;

    The Third Institute of 0ceanography, State 0ceanic Administration, Xiamen 361005, China;

    College of Physical and Environmental 0ceanography, 0cean University of China, Qingdao 266100, China;

    State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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