Folland Chris K, Ou Tinghai, Linderholm Hans W, Scaife Adam A, Knight Jeff, Chen Deliang
Met Office, Exeter, Devon, UK.
University of East Anglia, Norwich, UK.
Sci Adv. 2024 Nov 15;10(46):eadk6693. doi: 10.1126/sciadv.adk6693. Epub 2024 Nov 13.
We use Coupled Model Intercomparison Project Phase 6 (CMIP6) coupled and Atmospheric Model Intercomparison Project (AMIP) climate models, dynamical analyses, and observations to investigate interactions between summer Arctic sea ice concentration (SIC) variations and the Summer North Atlantic Oscillation (SNAO). Observations suggest that SIC-SNAO relationships mainly come from the East Siberian to Arctic Canada (ESAC) region where a weak atmospheric jet stream exists in summer. Twelve CMIP6 models with the most realistic atmospheric climatologies over the North Atlantic and Europe agree well with reanalyses on relationships between SIC and Northern Hemisphere atmospheric circulation. CMIP6 model data indicate that ESAC SIC influences the SNAO with a lead time of several weeks. However, AMIP simulations do not reproduce the observed atmospheric circulation when observed sea ice is prescribed. Rossby wave analyses do though support observed ESAC SIC influences on the SNAO. We conclude that ESAC Arctic SIC modestly influences the SNAO, and such investigations require the use of coupled models.
我们使用耦合模式比较计划第六阶段(CMIP6)的耦合模式以及大气模式比较计划(AMIP)的气候模式、动力学分析和观测数据,来研究夏季北极海冰浓度(SIC)变化与夏季北大西洋涛动(SNAO)之间的相互作用。观测结果表明,SIC与SNAO之间的关系主要源于东西伯利亚至加拿大北极地区(ESAC),该地区夏季存在较弱的大气急流。在北大西洋和欧洲具有最逼真大气气候学特征的12个CMIP6模式,在SIC与北半球大气环流关系方面与再分析结果高度吻合。CMIP6模式数据表明,ESAC地区的SIC对SNAO有影响,提前期为几周。然而,当规定使用观测到的海冰时,AMIP模拟无法再现观测到的大气环流。不过,罗斯贝波分析确实支持观测到的ESAC地区SIC对SNAO的影响。我们得出结论,ESAC地区的北极SIC对SNAO有适度影响,此类研究需要使用耦合模式。