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The Role of Ocean Dynamics in the Optimal Growth of Tropical SST Anomalies

机译:海洋动力学在热带海温异常最佳生长中的作用

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摘要

The role of ocean dynamics in optimally exciting interannual variability of tropical sea surface temperature (SST) anomalies is investigated using an idealized-geometry ocean general circulation model. Initial temperature and salinity perturbations leading to an optimal growth of tropical SST anomalies, typically arising from the nonnormal dynamics, are evaluated. The structure of the optimal perturbations is characterized by relatively strong deep salinity anomalies near the western boundary generating a transient amplification of equatorial SST anomalies in less than four years.rnThe associated growth mechanism is linked to the excitation of coastal and equatorial Kelvin waves near the western boundary following a rapid geostrophic adjustment owing to the optimal initial temperature and salinity perturbations. The results suggest that the nonnormality of the ocean dynamics may efficiently create large tropical SST variability on interannual time scales in the Atlantic without the participation of air-sea processes or the meridional overturning circulation. An optimal deep initial salinity perturbation of 0.1 ppt located near the western boundary can result in a tropical SST anomaly of approximately 0.45℃ after nearly four years, assuming the dynamics are linear. Possible mechanisms for exciting such deep perturbations are discussed. While this study is motivated by tropical Atlantic SST variability, its relevance to other basins is not excluded.rnThe optimal initial conditions leading to the tropical SST anomalies' growth are obtained by solving a generalized eigenvalue problem. The evaluation of the optimals is achieved by using the Massachusetts Institute of Technology general circulation model (MITgcm) tangent linear and adjoint models as well the the Arnoldi Package (ARPACK) software for solving large-scale eigenvalue problems.
机译:使用理想化的几何海洋总环流模型研究了海洋动力学在热带海表温度(SST)异常的最佳年际变化中的作用。评估了导致热带SST异常最佳生长的初始温度和盐度扰动,这些异常通常是由非正常动力引起的。最佳扰动的结构特征是在不到四年的时间里,在西边界附近存在着相对强烈的深盐度异常,从而导致赤道海温异常的瞬时放大.rn相关的生长机制与西海岸附近的沿海和赤道开尔文波的激发有关由于最佳的初始温度和盐度扰动,快速地转调节后的边界。结果表明,海洋动力学的非正态性可以有效地在大西洋年际尺度上产生较大的热带海表温度变异性,而没有海海过程或子午翻转循环的参与。假设动力学是线性的,在近西边界附近最佳的0.1 ppt的初始深度盐度微扰可以导致近四年后热带海表温度异常约为0.45℃。讨论了激发这种深层扰动的可能机制。尽管这项研究是受热带大西洋海表温度变化的影响,但并不排除其与其他盆地的相关性。通过解决广义特征值问题,可以获得导致热带海表温度异常增长的最佳初始条件。通过使用麻省理工学院通用循环模型(MITgcm)切线线性和伴随模型以及Arnoldi Package(ARPACK)软件来解决大型特征值问题,从而实现对最优值的评估。

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  • 来源
    《Journal of Physical Oceanography 》 |2010年第5期| 983-1003| 共21页
  • 作者单位

    Department of Earth and Planetary Sciences, Harvard University, Cambridge, Massachusetts Atmospheric, Oceanic and Planetary Physics, Dept. of Physics, University of Oxford, Clarendon Laboratory, Parks Road, Oxford OX1 3PU, United Kingdom;

    Department of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, Massachusetts;

    Ocean Sciences Department, University of California, Santa Cruz, Santa Cruz, California;

    Department of Earth and Planetary Sciences, and School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts;

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