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首页> 外文期刊>Geophysical Research Letters >Amplification of Holocene multicentennial climate forcing by mode transitions in North Atlantic overturning circulation
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Amplification of Holocene multicentennial climate forcing by mode transitions in North Atlantic overturning circulation

机译:北大西洋翻转环流中模式转变对全新世百年气候强迫的放大作用

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摘要

Using a three-dimensional global climate model, we show that mode-transitions in North Atlantic deep-water production can provide an amplifying mechanism of relatively weak climate perturbations during the Holocene. Under pre-industrial boundary conditions, a freshwater forcing in the Labrador Sea pushes the North Atlantic overturning circulation into a deterministically bistable regime, characterized by stochastic ``on'' and ``off'' switches in Labrador Sea convection. On a multicentennial time-scale these stochastic mode-transitions can be phase-locked by a small ( subthreshold) periodic freshwater forcing. The local small periodic forcing is effectively amplified with the assistance of noise, to have a large-scale impact on North Atlantic overturning circulation and climate. These results suggest a stochastic resonance mechanism that can operate under Holocene boundary conditions and indicate that changes in the three-dimensional configuration of North Atlantic deep-water formation can be an important component of multicentennial climate variability during interglacials.
机译:使用三维全球气候模型,我们表明,北大西洋深水生产中的模式转换可以提供全新世期间相对较弱的气候扰动的放大机制。在工业化之前的边界条件下,拉布拉多海的淡水强迫将北大西洋的翻转环流推向确定性的双稳态体系,其特征是拉布拉多海对流的随机``开''和``关''转换。在一个百年的时间尺度上,这些随机的模式转变可以被一个小的(低于阈值的)周期性淡水强迫锁相。在噪声的帮助下,局部小周期强迫被有效地放大了,从而对北大西洋的环流和气候产生了大规模的影响。这些结果表明,可以在全新世边界条件下运行的随机共振机制,并表明北大西洋深水形成的三维结构变化可能是跨冰期百年气候变化的重要组成部分。

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