Limited reversal of regional climate signals in overshoot scenarios

P. Pfleiderer, C. Schleussner, Jana Sillmann
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Abstract

Without stringent reductions in emission of greenhouse gases in the coming years, an exceedance of the 1.5C temperature limit is increasingly likely. This has given rise to so-called temperature overshoot scenarios, in which the global mean surface air temperature exceeds a certain limit (i.e. 1.5C above pre- industrial levels) before bringing temperatures back below that limit. Despite their prominence in the climate mitigation literature, the implications of an overshoot for local climate impacts is still understudied. Here we present a comprehensive analysis of implications of an overshoot for regional temperature and precipitation changes as well as climate extremes indices. Based on a multi-model comparison from the Coupled Model Intercomparison Project (CMIP6) we find that temperature changes are largely reversible in many regions, but also report significant land-ocean and latitudinal differences after an overshoot. For precipitation, the emerging picture is less clear. In many regions the drying or wetting trend is continued throughout the overshoot irrespective of a change in the global mean temperature trend with resulting consequences for extreme precipitation. Taken together, our results indicate that even under a reversal of global mean temperature increase, regional climate changes may only be partially reversed in the decades after peak warming. We thus provide further evidence that overshooting of a warming level implies considerable risks on the regional level.
过冲情景中区域气候信号的有限逆转
如果未来几年不严格减少温室气体排放,气温超过 1.5 摄氏度上限的可能性就会越来越大。这就产生了所谓的气温过冲情景,即全球平均地表气温超过一定限度(即比工业化前水平高出 1.5 摄氏度)后,气温又回到该限度以下。尽管温度超调在气候减缓文献中占据重要地位,但对其对当地气候影响的研究仍然不足。在此,我们全面分析了超调对地区温度和降水变化以及极端气候指数的影响。基于耦合模式相互比较项目(CMIP6)的多模式比较,我们发现许多地区的气温变化在很大程度上是可逆的,但也报告了过冲后显著的陆地-海洋和纬度差异。在降水方面,新出现的情况就不那么清晰了。在许多地区,无论全球平均气温趋势如何变化,在整个超调期间,干燥或湿润趋势都会持续,从而对极端降水造成影响。综上所述,我们的研究结果表明,即使全球平均气温上升的趋势发生逆转,区域气候变化在变暖峰值之后的几十年内也可能只会发生部分逆转。因此,我们提供了进一步的证据,证明变暖水平的超调意味着区域层面的巨大风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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