Regulatory factors and climatic impacts of marine heatwaves over the Arctic Ocean from 1982 to 2020

IF 3.5 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES International Journal of Climatology Pub Date : 2024-11-04 DOI:10.1002/joc.8630
Xiaojuan Zhang, Fei Zheng, Zhiqiang Gong
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Abstract

Arctic warming has been substantially greater than that in the rest of the world and has had an important influence on the global climate. This study first explores the temporal and spatial evolutionary characteristics of marine heatwaves (MHWs) over the Arctic Ocean in multiyear ice (MYI), first-year ice (FYI), and open-water (OPW) regions from 1982 to 2020. MHWs in the Arctic Ocean show obvious spatial and seasonal variations, mainly occurring over the FYI region in the JAS (July–August–September, JAS), and their occurrences have a significant increasing trend in recent decades, accompanied by an abrupt increase since 2010. Furthermore, a multivariable network-based method is adopted to delineate the relationship between different climatic factors and MHWs in the Arctic Ocean and the climatic impacts of MHWs. The results show that the correlations between different climatic factors and MHWs in JAS in 2010–2020 are generally stronger than those in 1982–2009, and the main influencing factors of MHWs in different ice covers are different. MHWs in the MYI region are mainly affected by freshwater dilution processes, such as sea-ice concentrations (SIC), precipitation, and mixed-layer salinity. For the FYI region, the 2-m air temperature and total heat flux mainly affect MHWs by thermodynamic processes, and the 500-hPa geopotential height affects MHWs mainly by large-scale atmospheric circulation. The MHWs in the OPW region are mainly related to the SIC, 850-hPa geopotential height, and 10-m v-wind, indicating that they are correlated with atmospheric processes and wind fields. MHWs in JAS are also revealed to reduce or delay the formation of sea ice in OND (October–November–December, OND) by storing more abnormal heat, indicating that unfrozen ocean surfaces may lead to enhanced Arctic amplification in the following seasons.

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1982 - 2020年北冰洋海洋热浪的调节因子和气候影响
北极变暖的幅度远远大于世界其他地区,并对全球气候产生了重要影响。本研究首先探讨了1982 - 2020年北冰洋多年冰区(MYI)、一年冰区(FYI)和开放水域区(OPW)海洋热浪(MHWs)的时空演化特征。北冰洋MHWs具有明显的空间和季节变化特征,主要发生在JAS的FYI区域(7 - 8 - 9月,JAS),近几十年来其发生次数呈显著增加趋势,并在2010年以后出现突变增加。在此基础上,采用基于多变量网络的方法描述了不同气候因子与北冰洋暖流的关系以及暖流的气候影响。结果表明:2010-2020年,不同气候因子与JAS的mhw相关性总体强于1982-2009年,且不同冰盖下mhw的主要影响因子不同。MYI区域的强震主要受淡水稀释过程的影响,如海冰浓度(SIC)、降水和混合层盐度。在FYI地区,2 m气温和总热通量主要通过热力过程影响MHWs, 500 hpa位势高度主要通过大尺度大气环流影响MHWs。OPW地区的强震主要与SIC、850-hPa位势高度和10 m v风有关,表明它们与大气过程和风场有关。JAS中的mhw还通过储存更多的异常热量来减少或延迟OND(10 - 11 - 12月,OND)海冰的形成,这表明未冻结的海洋表面可能导致北极放大在接下来的季节增强。
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来源期刊
International Journal of Climatology
International Journal of Climatology 地学-气象与大气科学
CiteScore
7.50
自引率
7.70%
发文量
417
审稿时长
4 months
期刊介绍: The International Journal of Climatology aims to span the well established but rapidly growing field of climatology, through the publication of research papers, short communications, major reviews of progress and reviews of new books and reports in the area of climate science. The Journal’s main role is to stimulate and report research in climatology, from the expansive fields of the atmospheric, biophysical, engineering and social sciences. Coverage includes: Climate system science; Local to global scale climate observations and modelling; Seasonal to interannual climate prediction; Climatic variability and climate change; Synoptic, dynamic and urban climatology, hydroclimatology, human bioclimatology, ecoclimatology, dendroclimatology, palaeoclimatology, marine climatology and atmosphere-ocean interactions; Application of climatological knowledge to environmental assessment and management and economic production; Climate and society interactions
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