双月刊

ISSN 1006-9895

CN 11-1768/O4

西太平洋暖池海洋热浪在2020-2022三年拉尼娜事件爆发背景下的演变特征、爆发机制及其影响研究
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1.中国科学院大气物理研究所国际气候与环境研究中心ICCES;2.甘肃省水利水电勘测设计研究院有限责任公司

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国家自然科学基金 (42175045)


Analysis of evolution characteristics, physical mechanism and impacts of marine heatwaves in the Western Pacific Warm Pool under the background of triple-year La Nina from 2020 to 2022
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Gansu Provincial Water Resources and Hydropower Survey,Design and Research Institute Co,Ltd

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    摘要:

    在全球变暖的影响下,持续增长的海洋热浪事件(marine heatwaves,MHW)对气候系统和社会经济产生了严重影响,其中西太平洋暖池区域是MHW特征显著变化的典型区域。本文基于已建立的MHW高分辨率数据、美国国家环境预报中心(NCEP)提供的大气海洋再分析资料、美国宇航局(NASA)Aqua卫星和生物地球化学Argo浮标提供的叶绿素-a浓度资料,利用统计分析和奇异值分解(SVD)等方法,探讨了2020-2022年西太平洋暖池MHW的演变特征、爆发机制及其生态影响。结果表明,西太平洋暖池MHW的爆发频率和强度等在近30年显著增加,其特征属性的变化与连续La Ni?a事件的爆发密切相关。尤其在2020-2022年连续三年La Ni?a事件背景下,西太平洋暖池区MHW爆发频次达到全球最高,且其覆盖面积、爆发频次、总天数、累积强度均是1982年以来最显著的。通过对西太平洋暖池区域混合层热收支的分析,2020-2022年期间MHW爆发主要是净海表热通量中的向下短波辐射项和海洋动力过程中的纬向平流项共同主导。此外,研究也揭示了在西太平洋暖池区域,MHW与海洋生态指标叶绿素-a浓度时空尺度上呈现负相关协同变化的特征,尤其是2020-2022年的MHW事件使该区域海洋上层浮游生物量整体呈显著下降趋势。

    Abstract:

    Under the influence of global warming, the continuously growing Marine Heatwaves (MHW) has a serious impact on the climate system and the social economy, of which the Western Pacific Warm Pool area is a typical area of MHW characteristic changes. Based on the MHW database, the National Centers for Environmental Prediction (NCEP) atmospheric and oceanic reanalysis data, the chlorophyll-a concentration data provided by the National Aeronautics and Space Administration (NASA) Aqua satellite and the biogeochemical Argo floats, by using statistical methods such as composite analysis and singular value decomposition (SVD), we explore the evolution characteristics, physical mechanisms and ecological impacts of MHW in the Western Pacific Warm Pool from 2020 to 2022. The results show that MHW properties in the Western Pacific Warm Pool region have increased significantly in the past 30 years and it is closely related to the continuous La Ni?a events. Under the background of multi-year La Ni?a events from 2020 to 2022, the frequency of MHW in the Western Pacific Warm Pool reached the highest in the world, and the coverage area, frequency, total days and cumulative intensity of MHW are the most notable since 1982. By using the mixed layer heat budget equation in the Western Pacific Warm Pool region, it is shown that the occurrence of the strongest MHW during the period 2020 to 2022 is mainly dominated by the downward shortwave radiation term in the net flux and the latitudinal advection term in the marine dynamic processes. In addition, we also revealed that the MHW properties and marine ecological indicator chlorophyll-a concentration show a negative correlation on the spatial and temporal scales in the Western Pacific Warm Pool region, especially the MHW events during 2020-2022 caused the significant decline of overall phytoplankton biomass in the upper ocean of the region.

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历史
  • 收稿日期:2023-09-18
  • 最后修改日期:2023-11-04
  • 录用日期:2023-11-08
  • 在线发布日期: 2023-12-07
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