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Assessing External and Internal Sources of Atlantic Multidecadal Variability Using Models, Proxy Data, and Early Instrumental Indices

机译:使用模型,代理数据和早期乐器指数评估大西洋多视野变异性的外部和内部来源

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Atlantic multidecadal variability (AMV) of sea surface temperature exhibits an important influence on the climate of surrounding continents. It remains unclear, however, the extent to which AMV is due to internal climate variability (e.g., ocean circulation variability) or changes in external forcing (e.g., volcanic/anthropogenic aerosols or greenhouse gases). Here, the sources of AMV are examined over a 340-yr period using proxy indices, instrumental data, and output from the Last Millennium Ensemble (LME) simulation. The proxy AMV closely follows the accumulated atmospheric forcing from the instrumental North Atlantic Oscillation (NAO) reconstruction (r = 0.65)-an "internal" source of AMV. This result provides strong observational evidence that much of the AMV is generated through the oceanic response to atmospheric circulation forcing, as previously demonstrated in targeted modeling studies. In the LME there is a substantial externally forced AMV component, which exhibits a modest but significant correlation with the proxy AMV (i.e., r = 0.37), implying that at least 13% of the AMV is externally forced. In the LME simulations, however, the AMV response to accumulated NAO forcing is weaker than in the proxy/observational datasets. This weak response is possibly related to the decadal NAO variability, which is substantially weaker in the LME than in observations. The externally forced component in the proxy AMV is also related to the accumulated NAO forcing, unlike in the LME. This indicates that the external forcing is likely influencing the AMV through different mechanistic pathways: via changes in radiative forcing in the LME and via changes in atmospheric circulation in the observational/proxy record.
机译:海面温度的大西洋多型变异性(AMV)对周围大洲的气候产生了重要影响。然而,它仍然尚不清楚,AMV是由于内部气候变异性(例如,海洋循环变异性)或外部迫使(例如,火山/人为气溶胶或温室气体)的变化。这里,使用代理指数,乐器数据和来自最后一个千年集合(LME)模拟的340年代的时间,在340年间检查AMV来源。代理AMV密切关注仪器北大西洋振荡(NAO)重建(r = 0.65)-an“内部”​​amv的累积大气强制迫使累积大气压。该结果提供了强大的观察证据,即大量的AMV通过对大气循环强制进行大气反应而产生的,如先前在有针对性的建模研究中所示。在LME中,存在大量的外部强制AMV分量,其表现出与代理AMV(即,r = 0.37)的适度但显着的相关性,这意味着至少13%的AMV在外部强制。然而,在LME模拟中,对累积的NaO强制响应的AMV响应比代理/观察数据集更弱。这种弱响应可能与二级Nao变异性有关,其在LME中的较弱之基本上比观察结果较弱。代理AMV中的外部强制部件也与累积的NAO强制有关,与LME不同。这表明外部强制可能通过不同的机制途径影响AMV:通过LME辐射强制的变化,并通过观察/代理记录中的大气循环变化。

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