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首页> 外文期刊>Journal of Physical Oceanography >Response of the Separated Western Boundary Current to Harmonic and Stochastic Wind Stress Variations in a 1.5-Layer Ocean Model
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Response of the Separated Western Boundary Current to Harmonic and Stochastic Wind Stress Variations in a 1.5-Layer Ocean Model

机译:1.5层海洋模型中分离的西部边界流对谐波和随机风应力变化的响应

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摘要

A time-dependent version of the Parsons model (geostrophic 1.5-layer model of the ventilated ther-mocline) has been developed to investigate the response of the midlatitude ocean to wind stress variations in a simple configuration. In this model, the total amount of water is kept constant and the eastern boundary thermocline depth can vary in time so as to maintain mass balance. Here, basin modes are not investigated, in contrast to many recent studies, but the emphasis is on the line where the motionless second layer outcrops, which represents the separated western boundary current. It is shown that the position of this line only depends on the wind stress, the earth rotation, and the thermocline interior solution. The position is not influenced by the parameterization of the dissipative processes. This generalizes previous results established in the stationary case. The displacement of the outcrop line in the case of harmonic or stochastic wind stress variations is computed numerically, showing a lag of 0-4 yr that results from a combination of the instantaneous Ekman response and the delayed response due to Rossby wave propagation. Such delay is in satisfactory agreement with observations of Gulf Stream adjustment to wind stress changes, considering the limitations of the model, and is in good agreement with intermediate-resolution OGCM models. Although inertial effects and buoyancy forcing also need to be considered, this suggests that the outcropping mechanism plays a role in the variability of the separated boundary currents and may be dominant in non-eddy-resolving ocean models.
机译:已开发出随时间变化的帕森斯模型(通风的热土莫克式的地转1.5层模型),以简单的方式研究中纬度海洋对风应力变化的响应。在该模型中,总水量保持恒定,并且东部边界跃层深度可以及时变化,以保持质量平衡。与许多近期研究相比,这里没有研究盆地模式,但重点是静止的第二层露出来的线,这代表了分离的西部边界流。结果表明,这条线的位置仅取决于风应力,地球自转和温跃层内部解决方案。该位置不受耗散过程参数化的影响。这概括了在固定情况下建立的先前结果。在谐波或随机风应力变化的情况下,露头线的位移是通过数值计算的,显示了0-4年的滞后,这是由于瞬时Ekman响应和Rossby波传播引起的延迟响应的组合而导致的。考虑到模型的局限性,这种延迟与墨西哥湾流对风应力变化的调整的观测结果令人满意,并且与中分辨率OGCM模型高度一致。尽管还需要考虑惯性效应和浮力,但这表明露头机制在分离的边界流的可变性中起作用,并且可能在非涡旋解析海洋模型中占主导地位。

著录项

  • 来源
    《Journal of Physical Oceanography 》 |2005年第8期| p.1340-1358| 共19页
  • 作者

    J. SIRVEN;

  • 作者单位

    Laboratoire d'Oceanographie Dynamique et de Climatologie, Universite Pierre et Marie Curie, Tour 45, etage 4, CC100, 4 place Jussieu, 75252 Paris Cedex 05, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学 ;
  • 关键词

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