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Climate Impacts From Large Volcanic Eruptions in a High-Resolution Climate Model: The Importance of Forcing Structure

机译:高分辨率气候模型中大火山喷发的气候影响:强制结构的重要性

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Explosivevolcanic eruptions have large climate impacts and can serve as observable tests of the climatic response to radiative forcing. Using a high-resolution climate model, we contrast the climate responses to Pinatubo, with symmetric forcing, and those to Santa Maria and Agung, which had meridionally asymmetric forcing. Although Pinatubo had larger global-mean forcing, asymmetric forcing strongly shifts the latitude of tropical rainfall features, leading to larger local precipitation/tropical cyclone changes. For example, North Atlantic tropical cyclone activity over is enhanced/reduced by SH forcing (Agung)/NH forcing (Santa Maria) but changes little in response to the Pinatubo forcing. Moreover, the transient climate sensitivity estimated from the response to Santa Maria is 20% larger than that from Pinatubo or Agung. This spread in climatic impacts of volcanoes needs to be considered when evaluating the role of volcanoes in global and regional climate and serves to contextualize the well-observed response to Pinatubo.
机译:爆炸性血液喷发具有很大的气候影响,可作为对辐射强制的气候反应的可观察试验。使用高分辨率的气候模型,我们将气候反应与Pinatubo进行对比,对称强制,以及对Santa Maria和Agung的人来说,它具有不对称的强制性的。虽然Pinatubo具有更大的全球性平均迫使,但不对称强迫强烈地转移热带降雨特征的纬度,导致众所大的局部降水/热带气旋变化。例如,北大西洋热带气旋活动通过SH强迫(Agung)/ NH强制(Santa Maria)而增强/减少,但响应于Pinatubo强迫而变化几乎没有变化。此外,从对Santa Maria的反应估计的瞬态气候敏感度比Pinatubo或Agung的响应大20%。当评估火山的角色在全球和区域气候中的作用时,需要考虑这种在火山的气候冲击中蔓延,并为对Pinatubo的良好反应进行了背景化。

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