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随机强迫对热盐环流行为的作用。

The role of stochastic forcing on the behavior of thermohaline circulation.

作者信息

Lorenzo M N, Taboada J J, Iglesias I, Alvarez I

机构信息

Grupo de Física de la Atmósfera y del Océano, University of Vigo, Facultad de Ciencias, As Lagoas, Ourense, Spain.

出版信息

Ann N Y Acad Sci. 2008 Dec;1146:60-86. doi: 10.1196/annals.1446.002.

Abstract

The nonlinear nature of the climate system suggests that its reactions to unexpected perturbations could be different from the expected ones. In nonlinear science it is recognized as a promising paradigm that stochastic fluctuations can generate order or other counterintuitive effects. Thus, noise sources, adequately coupled to a nonlinear system, may give rise to a rich new phenomenology not present in a deterministic noiseless scenario. In this review we focus attention on thermohaline circulation (THC). THC presents two modes of operation; one state shows active THC and the other inactive. Previous episodes of transitions between both states of THC observed in paleoclimatic records and the influence of this circulation on climate have resulted in detailed investigations on the dynamics of the THC. A weakening or a collapse of this current could trigger the onset of a new Younger Dryas. In this review the introduction of stochastic forcing in key parameters, both in a simple box model and in an earth model of intermediate complexity, provokes a weakening and even a shutdown of the THC. The consequences of this weakening are observed in different variables. The surface air temperature and the sea surface temperature are dominated by cooling of the Northern Hemisphere. Changes in the position of the Intertropical Convergence Zone and in precipitation are observed. There is also an intensification of the North Atlantic Oscillation values during winter. These results reinforce the necessity to consider stochastic sources in climate models to improve our understanding of the climate.

摘要

气候系统的非线性特征表明,其对意外扰动的反应可能与预期不同。在非线性科学中,随机波动能够产生秩序或其他反直觉效应这一观点被视为一种很有前景的范式。因此,与非线性系统充分耦合的噪声源可能会引发确定性无噪声情形中不存在的丰富的新现象学。在本综述中,我们将重点关注热盐环流(THC)。THC呈现两种运行模式;一种状态下THC活跃,另一种状态下不活跃。过去在古气候记录中观测到的THC两种状态之间的转变事件以及这种环流对气候的影响,引发了对THC动力学的详细研究。这一洋流的减弱或崩溃可能会引发新的末次冰消期冷事件的开始。在本综述中,在一个简单的箱式模型和一个中等复杂程度的地球模型中,关键参数引入随机强迫会导致THC减弱甚至关闭。这种减弱的后果在不同变量中都有体现。地表气温和海表温度以北半球变冷为主导。观测到热带辐合带位置和降水量的变化。冬季北大西洋涛动值也有所增强。这些结果强化了在气候模型中考虑随机源以增进我们对气候理解的必要性。

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