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首页> 外文期刊>Journal of Physical Oceanography >Optimal Surface Salinity Perturbations Influencing the Thermohaline Circulation
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Optimal Surface Salinity Perturbations Influencing the Thermohaline Circulation

机译:影响盐卤循环的最佳表面盐度扰动

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Optimal surface salinity perturbations influencing the meridional overturning circulation maximum are exhibited and interpreted on a stable steady state of a 2D latitude-depth ocean thermohaline circulation model. Despite the stability of the steady state, the nonnormality of the dynamics is able to create some transient growth and variability through stimulation by optimal perturbations. Two different measures are compared to obtain the optimum-one associated with the departure from steady state in terms of density, and the other with the overturning circulation intensity. It is found that such optimal analysis is measure dependent; hence, the latter measure is chosen for studying the following physical mechanisms. The response to the optimal initial sea surface salinity perturbation involves a transient growth mechanism leading to a maximum modification of the circulation intensity after 67 yr; the amplification is linked to the most weakly damped linear eigenmode, oscillating on a 150-yr period. Optimal constant surface salinity flux perturbations are also obtained, and confirm that a decrease in the freshwater flux amplitude enhances the circulation intensity. At last, looking for the optimal stochastic surface salinity flux perturbation, it is established that the variance of the circulation intensity is controlled by the weakly damped 150-yr oscillation. Two approaches are tested to consider extending such studies in more realistic 3D models. Explicit solutions (versus eigenvalue problems) are found for the overturning circulation measure (except for the stochastic optimal); a truncation method on a few leading eigenmodes usually provides the optimal perturbations for analyses on long time scales.
机译:在二维纬度深度海洋热盐环流模型的稳定稳态下,展示并解释了影响子午翻转最大环流的最佳表面盐度扰动。尽管稳态是稳定的,但动力学的非正态性仍可以通过最佳扰动的刺激而产生一些短暂的增长和变化。比较两种不同的方法以获得最佳值,一种是在密度方面偏离稳态,另一种是与翻转强度有关。结果发现,这种最佳分析与度量有关;因此,选择后一种方法来研究以下物理机制。对最佳初始海表盐度微扰的响应涉及一个短暂的生长机制,从而导致67年后循环强度的最大变化。放大与最弱阻尼的线性本征模相关,在150年周期内振荡。还获得了最佳的恒定表面盐度通量扰动,并证实淡水通量幅度的减小会增强循环强度。最后,寻找最佳的随机表面盐度通量扰动,可以确定,循环强度的变化是由弱阻尼的150年振荡控制的。测试了两种方法来考虑在更逼真的3D模型中扩展此类研究。对于倾覆循环测度(随机最优除外)找到了明确的解(相对于特征值问题)。在一些主要特征模式上的截断方法通常为长时间尺度的分析提供最佳扰动。

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