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An investigation into linearity with cumulative emissions of the climate and carbon cycle response in HadCM3LC

机译:HadCM3LC中气候累积排放与碳循环响应的线性关系研究

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We investigate the extent to which global mean temperature, precipitation, and the carbon cycle are constrained by cumulative carbon emissions throughout four experiments with a fully coupled climate–carbon cycle model. The paired experiments adopt contrasting, idealised approaches to climate change mitigation at different action points this century, with total emissions rising to more than two trillion tonnes of carbon (TtC). For each pair, the contrasting mitigation approaches—capping emissions early versus reducing them to zero a few decades later—cause their cumulative emissions trajectories to diverge initially, then converge, cross, and diverge again. We find that global mean temperature is linear with cumulative emissions across all experiments, although differences of up to 1.5 K exist regionally when the trajectories of total carbon emitted during the course of the two scenarios coincide, for both pairs of experiments. Interestingly, although the oceanic precipitation response scales with cumulative emissions, the global precipitation response does not, due to a decrease in precipitation over land above emissions of around one TtC. Most carbon fluxes are less well constrained by cumulative emissions as they reach two trillion tonnes. The opposing mitigation approaches have different consequences for the Amazon rainforest, which affects the linearity with which the carbon cycle responds to cumulative emissions. The average Transient Climate Response to cumulative carbon Emissions (TCRE) is 1.95 K TtC?1, at the upper end of the Intergovernmental Panel on Climate Change's range of 0.8–2.5 K TtC?1.
机译:我们使用完全耦合的气候-碳循环模型,通过四个实验研究了全球平均温度,降水和碳循环受累积碳排放量限制的程度。配对实验在本世纪的不同行动点采用了对比鲜明的理想化方法来缓解气候变化,总排放量增加到超过2万亿吨碳(TtC)。对于每对碳排放而言,截然不同的缓解方法(尽早封顶排放,几十年后将排放降低至零)使它们的累积排放轨迹最初发散,然后收敛,交叉并再次发散。我们发现在所有实验中,全球平均温度与累积排放量呈线性关系,但对于两种实验而言,当两种情况下排放的总碳的轨迹重合时,区域性差异最高可达1.5K。有趣的是,尽管海洋降水响应随累积排放而成比例,但全球降水响应却没有,这是由于陆地上的降水量减少到排放量超过一个TtC左右。由于累计排放量达到2万亿吨,大多数碳通量的约束较少。相反的缓解方法对亚马逊热带雨林产生不同的后果,这影响了碳循环对累积排放的线性响应。政府间气候变化专门委员会的平均上限为0.8-2.5 K TtC?1,对累积碳排放的平均瞬态气候响应(TCRE)为1.95 K TtC?1。

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