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利用全球能源互联网络创新联盟(GENIE)研究气候系统中的一个临界点。

Using GENIE to study a tipping point in the climate system.

作者信息

Lenton Timothy M, Myerscough Richard J, Marsh Robert, Livina Valerie N, Price Andrew R, Cox Simon J

机构信息

School of Environmental Sciences, University of East Anglia, Norwich NR4 7TJ, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2009 Mar 13;367(1890):871-84. doi: 10.1098/rsta.2008.0171.

Abstract

We have used the Grid ENabled Integrated Earth system modelling framework to study the archetypal example of a tipping point in the climate system; a threshold for the collapse of the Atlantic thermohaline circulation (THC). eScience has been invaluable in this work and we explain how we have made it work for us. Two stable states of the THC have been found to coexist, under the same boundary conditions, in a hierarchy of models. The climate forcing required to collapse the THC and the reversibility or irreversibility of such a collapse depends on uncertain model parameters. Automated methods have been used to assimilate observational data to constrain the pertinent parameters. Anthropogenic climate forcing leads to a robust weakening of the THC and increases the probability of crossing a THC tipping point, but some ensemble members collapse readily, whereas others are extremely resistant. Hence, we test general methods that have been developed to directly diagnose, from time-series data, the proximity of a 'tipping element', such as the THC to a bifurcation point. In a three-dimensional ocean-atmosphere model exhibiting THC hysteresis, despite high variability in the THC driven by the dynamical atmosphere, some early warning of an approaching tipping point appears possible.

摘要

我们使用了基于网格的集成地球系统建模框架来研究气候系统中一个典型的临界点示例,即大西洋热盐环流(THC)崩溃的阈值。电子科学在这项工作中具有不可估量的价值,我们将解释如何使其为我们所用。在一系列模型中,已发现THC的两种稳定状态在相同边界条件下共存。使THC崩溃所需的气候强迫以及这种崩溃的可逆性或不可逆性取决于不确定的模型参数。已使用自动化方法来同化观测数据以约束相关参数。人为气候强迫导致THC显著减弱,并增加了越过THC临界点的可能性,但一些系综成员很容易崩溃,而另一些则极具抵抗力。因此,我们测试已开发的通用方法,以便从时间序列数据中直接诊断“ tipping element”(如THC)接近分叉点的程度。在一个呈现THC滞后现象的三维海洋 - 大气模型中,尽管由动态大气驱动的THC具有高度变异性,但似乎仍有可能对即将到来的临界点发出一些早期预警。

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