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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Modelling tempo-spatial signatures of Heinrich Events: influence of the climatic background state
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Modelling tempo-spatial signatures of Heinrich Events: influence of the climatic background state

机译:海因里希事件的时空特征建模:气候背景状态的影响

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摘要

Different sea surface temperature (SST) reconstructions for the Last Glacial Maximum are applied to a hybrid-coupled climate model. The resulting oceanic states are perturbed by North Atlantic meltwater inputs in order to simulate the effect of Heinrich Events on the Atlantic thermohaline circulation (THC) and SST. The experiments show that both the Atlantic SST signature of the meltwater event and the time span of THC recovery strongly depend on the climatic background state. Data-model comparison reveals that the overall spatial signature of SST anomalies is captured much better in the glacial meltwater experiments than in an analogous experiment under present-day conditions. In particular, a breakdown of the modern THC would induce a much stronger temperature drop in high northern latitudes than did Heinrich Events during the ice age. Moreover, our results suggest that the present-day circulation can settle into a stable 'off mode, whereas the glacial THC was mono-stable. Mono-stability may serve as an explanation for the recovery of the THC after Heinrich Event shutdowns during the Last Glaciation. (C) 2003 Elsevier Ltd. All rights reserved.
机译:最后冰川最大时期的不同海面温度(SST)重建应用于混合耦合气候模型。为了模拟海因里希事件对大西洋热盐环流(THC)和SST的影响,北大西洋融水输入扰动了由此产生的海洋状态。实验表明,融水事件的大西洋海温特征和THC恢复的时间跨度都强烈取决于气候本底状态。数据模型的比较表明,在当前条件下,在冰川融水实验中,SST异常的整体空间特征要好得多。特别是,现代THC的崩溃将导致北部高纬度地区的降温幅度比冰河时期的Heinrich事件要强得多。此外,我们的结果表明,当今的循环可以稳定进入稳定的“关闭”模式,而冰川THC是单稳态的。上一次冰川时期海因里希事件关闭后,单晶稳定性可能是THC恢复的解释。 (C)2003 Elsevier Ltd.保留所有权利。

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