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Nonlinear climate sensitivity and its implications for future greenhouse warming

机译:非线性气候敏感性及其对未来温室变暖的影响

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摘要

Global mean surface temperatures are rising in response to anthropogenic greenhouse gas emissions. The magnitude of this warming at equilibrium for a given radiative forcing—referred to as specific equilibrium climate sensitivity (S)—is still subject to uncertainties. We estimate global mean temperature variations and S using a 784,000-year-long field reconstruction of sea surface temperatures and a transient paleoclimate model simulation. Our results reveal that S is strongly dependent on the climate background state, with significantly larger values attained during warm phases. Using the Representative Concentration Pathway 8.5 for future greenhouse radiative forcing, we find that the range of paleo-based estimates of Earth’s future warming by 2100 CE overlaps with the upper range of climate simulations conducted as part of the Coupled Model Intercomparison Project Phase 5 (CMIP5). Furthermore, we find that within the 21st century, global mean temperatures will very likely exceed maximum levels reconstructed for the last 784,000 years. On the basis of temperature data from eight glacial cycles, our results provide an independent validation of the magnitude of current CMIP5 warming projections.
机译:全球平均地表温度因人为温室气体排放而上升。对于给定的辐射强迫,这种平衡变暖的幅度(称为比平衡气候敏感性(S))仍存在不确定性。我们使用长达78.4万年的海表温度现场重建和瞬态古气候模型模拟来估算全球平均温度变化和S。我们的结果表明,S强烈依赖于气候背景状态,在暖期期间获得的值明显更大。使用代表性浓度路径8.5对未来的温室辐射强迫进行研究,我们发现,到2100年,基于古气候的地球未来变暖估计范围与作为耦合模型比较项目第5阶段(CMIP5)一部分进行的气候模拟上限重叠)。此外,我们发现在21世纪内,全球平均温度很可能会超过过去78.4万年来重建的最高水平。根据来自八个冰川周期的温度数据,我们的结果提供了对当前CMIP5升温预测幅度的独立验证。

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