Response of the sea surface temperature to heatwaves during the France 2022 meteorological summer

IF 4.1 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Ocean Science Pub Date : 2023-05-12 DOI:10.5194/os-19-629-2023
T. Guinaldo, A. Voldoire, R. Waldman, S. Saux Picart, H. Roquet
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引用次数: 10

Abstract

Abstract. The summer of 2022 was memorable and record-breaking, ranking as the second hottest summer in France since 1900, with a seasonal surface air temperature average of 22.7 ∘C. In particular, France experienced multiple record-breaking heatwaves during the meteorological summer. As the main heat reservoir of the Earth system, the oceans are at the forefront of events of this magnitude which enhance oceanic disturbances such as marine heatwaves (MHWs). In this study, we investigate the sea surface temperature (SST) of French maritime basins using remotely sensed measurements to track the response of surface waters to the atmospheric heatwaves and determine the intensity of such feedback. Beyond the direct relationship between SSTs and surface air temperatures, we explore the leading atmospheric parameters affecting the upper-layer ocean heat budget. Despite some gaps in data availability, the SSTs measured during the meteorological summer of 2022 were record-breaking, the mean SST was between 1.3 and 2.6 ∘C above the long-term average (1982–2011), and the studied areas experienced between 4 and 22 d where the basin-averaged SSTs exceeded the maximum recorded basin-averaged SSTs from 1982 to 2011. We found a significant SST response during heatwave periods with maximum temperatures measured locally at 30.8 ∘C in the north-western Mediterranean Sea. Our results show that in August 2022 (31 July to 13 August), France experienced above-average surface solar radiation correlated with below-average total cloud cover and negative wind speed anomalies. Our attribution analysis based on a simplified mixed-layer heat budget highlights the critical role of ocean–atmosphere fluxes in initiating abnormally warm SSTs, while ocean mixing plays a crucial role in the cessation of such periods. We find that the 2 m temperatures and specific humidity that are consistently linked to the advection of warm and moist air masses are key variables across all the studied regions. Our results reveal that the influence of wind on heatwaves is variable and of secondary importance. Moreover, we observe that the incident solar radiation has a significant effect only on the Bay of Biscay (BB) and the English Channel (EC) areas. Our study findings are consistent with previous research and demonstrate the vulnerability of the Mediterranean Sea to the increasing frequency of extreme weather events resulting from climate change. Furthermore, our investigation reveals that the recurring heatwave episodes during the summer of 2022 had an undeniable impact on all the surveyed maritime areas in France. Our study therefore provides valuable insights into the complex mechanisms underlying the ocean–atmosphere interaction and demonstrates the need for an efficient and sustainable operational system combining polar-orbiting and geostationary satellites to monitor the alterations that threaten the oceans in the context of climate change.
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法国2022年气象夏季期间海面温度对热浪的响应
摘要2022年的夏天是令人难忘的,也是破纪录的,是法国自1900年以来第二热的夏天,季节性地表气温平均为22.7°C。特别是,法国在气象夏季经历了多次破纪录的热浪。作为地球系统的主要热源,海洋处于这种强度事件的前沿,这些事件会增强海洋扰动,如海洋热浪(MHWs)。在这项研究中,我们利用遥感测量研究了法国海洋盆地的海表温度(SST),以跟踪地表水对大气热浪的响应并确定这种反馈的强度。除了海温与地表气温的直接关系外,我们还探讨了影响上层海洋热收支的主要大气参数。尽管资料存在一些空白,但2022年气象夏季测得的海温是破纪录的,平均海温比长期平均值(1982 - 2011年)高1.3至2.6°C,研究地区的海温超过1982 - 2011年记录的最大海温的时间为4至22天。我们发现在热浪期间海温有显著的反应,地中海西北部的局部最高气温为30.8°C。结果表明,2022年8月(7月31日至8月13日),法国地表太阳辐射高于平均水平,总云量低于平均水平,风速呈负异常。我们基于简化混合层热收支的归因分析强调了海洋-大气通量在异常温暖海温的启动中起关键作用,而海洋混合在异常温暖海温的停止中起关键作用。我们发现,与暖湿气团平流一致的2米温度和比湿度是所有研究区域的关键变量。我们的研究结果表明,风对热浪的影响是可变的,而且是次要的。此外,我们观察到入射太阳辐射仅对比斯开湾(BB)和英吉利海峡(EC)地区有显著影响。我们的研究结果与先前的研究结果一致,并证明了地中海对气候变化导致的极端天气事件频率增加的脆弱性。此外,我们的调查显示,2022年夏季反复出现的热浪事件对法国所有被调查的海域都产生了不可否认的影响。因此,我们的研究为海洋-大气相互作用的复杂机制提供了有价值的见解,并证明了需要一个有效和可持续的操作系统,结合极轨卫星和地球静止卫星来监测气候变化背景下威胁海洋的变化。
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来源期刊
Ocean Science
Ocean Science 地学-海洋学
CiteScore
5.90
自引率
6.20%
发文量
78
审稿时长
6-12 weeks
期刊介绍: Ocean Science (OS) is a not-for-profit international open-access scientific journal dedicated to the publication and discussion of research articles, short communications, and review papers on all aspects of ocean science: experimental, theoretical, and laboratory. The primary objective is to publish a very high-quality scientific journal with free Internet-based access for researchers and other interested people throughout the world. Electronic submission of articles is used to keep publication costs to a minimum. The costs will be covered by a moderate per-page charge paid by the authors. The peer-review process also makes use of the Internet. It includes an 8-week online discussion period with the original submitted manuscript and all comments. If accepted, the final revised paper will be published online. Ocean Science covers the following fields: ocean physics (i.e. ocean structure, circulation, tides, and internal waves); ocean chemistry; biological oceanography; air–sea interactions; ocean models – physical, chemical, biological, and biochemical; coastal and shelf edge processes; paleooceanography.
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