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首页> 外文期刊>Journal of Physical Oceanography >Nonnormal Amplification of the Thermohaline Circulation
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Nonnormal Amplification of the Thermohaline Circulation

机译:温盐环流的非正常放大

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摘要

A simple zonally averaged coupled ocean-atmosphere model, with a relatively high resolution in the meridional direction, is used to examine physical mechanisms leading to transient amplification of thermohaline circulation (THC) anomalies. It is found that in a stable regime, in which small perturbations eventually decay, there are optimal initial conditions leading to a dramatic amplification of initial temperature and salinity anomalies in addition to the THC amplification. The maximum amplification occurs after about 40 years, and the eventual decay is on a centennial time scale. The initial temperature and salinity anomalies are considerably amplified by factors of a few hundreds and 20, respectively. The initial conditions leading to this amplification are characterized by mutually canceling initial temperature and salinity anomalies contributions to the THC anomaly, such that the initial THC anomaly vanishes. The mechanism of amplification is analyzed and found to be the result of an interaction between a few damped (oscillatory and nonoscillatory) modes with decay time scales lying in a range of 20-800 years. The amplification mechanism is also found to be distinct from the advective feedback leading to THC instabilities for large freshwater forcing.
机译:一个简单的纬向平均海洋-大气耦合模型在子午方向具有较高的分辨率,用于检查导致热盐环流(THC)异常瞬态放大的物理机制。发现在稳定的状态下,其中小扰动最终衰减,除了THC放大以外,还有最佳的初始条件,导致初始温度和盐度异常的急剧放大。最大扩增发生在约40年后,最终衰减是在百年时间尺度上。初始温度和盐度异常分别放大了数百倍和20倍。导致这种放大的初始条件的特征在于,相互抵消了初始温度和盐度异常对THC异常的贡献,从而使初始THC异常消失。分析了放大的机制,发现其是衰减时间范围在20-800年范围内的几种阻尼(振荡和非振荡)模式之间相互作用的结果。还发现放大机制与对流反馈不同,对流反馈导致THC在大量淡水强迫下不稳定。

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