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Processes Responsible for the Southern Hemisphere Ocean Heat Uptake and Redistribution under Anthropogenic Warming

机译:负责南半球海洋热量摄取和人为变暖的再分配的流程

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摘要

The Southern Hemisphere oceans absorb most of the excess heat stored in the climate system due to anthropogenic warming. By analyzing future climate projections from a large ensemble of the CMIP5 models under a high emission scenario (RCP8.5), we investigate how the atmospheric forcing and ocean circulation determine heat uptake and redistribution in the Southern Hemisphere oceans. About two-thirds of the net surface heat gain in the high-latitude Southern Ocean is redistributed northward, leading to enhanced and deep-reaching warming at middle latitudes near the boundary between the subtropical gyres and the Antarctic Circumpolar Current. The projected magnitudes of the ocean warming are closely related to the magnitudes of the wind and gyre boundary poleward shifts across the models. For those models with the simulated gyre boundary biased equatorward, the latitude where the projected ocean warming peaks is also located farther equatorward and a larger poleward shift of the gyre boundary is projected. In a theoretical framework, the subsurface ocean changes are explored using three distinctive processes on the temperature-salinity diagram: pure heave, pure warming, and pure freshening. The enhanced middle-latitude warming and the deepening of isopycnals are attributed to the pure heave and pure warming processes, likely related to the wind-driven heat convergence and the accumulation of extra surface heat uptake by the background ocean circulation, respectively. The equatorward and downward subductions of the surface heat and freshwater input at high latitudes (i.e., pure warming and pure freshening processes) result in cooling and freshening spiciness changes on density surfaces within the Subantarctic Mode Water and Antarctic Intermediate Water.
机译:由于人为变暖,南半球海洋吸收了储存在气候系统中的大部分过热。通过在高排放场景(RCP8.5)下分析来自CMIP5模型的大型集成型的未来气候预测,研究大气强制和海洋循环如何确定南半球海洋中的热吸收和再分配。大约三分之二的高纬度南海海洋的热量增益被向北重新分布,导致在亚热带陀螺和南极环形电流之间的边界附近的中纬度地区增强和深度升温。海洋变暖的预计大幅度与风的大小密切相关,并且横跨模型的宽度边界的偏振。对于具有模拟的陀螺界界偏置赤道的那些模型,投影海洋升温峰的纬度也在更远的赤道并且较大的圆形边界的较大膨胀偏移。在理论框架中,使用三种独特的温度盐度图来探索地下海洋变化:纯粹的升降,纯温暖和纯净的清新。增强的中纬度变暖和等离子体的加深归因于纯的升降和纯温暖过程,可能与风力驱动的热收融器相关,以及背景海洋循环分别由背景海洋循环的额外表面热吸收的积累。高纬度(即纯升温和纯净的新加工过程中的表面热和淡水输入的赤道和向下低压导致小管道模式水和南极中间水中的密度表面的冷却和清新的热量变化。

著录项

  • 来源
    《Journal of Climate》 |2020年第9期|共21页
  • 作者单位

    CSIRO Ctr Southern Hemisphere Oceans Res Oceans &

    Atmosphere Hobart Tas Australia;

    CSIRO Ctr Southern Hemisphere Oceans Res Oceans &

    Atmosphere Hobart Tas Australia;

    Univ New South Wales Climate Change Res Ctr Sydney NSW Australia;

    Xiamen Univ Coll Ocean &

    Earth Sci State Key Lab Marine Environm Sci Xiamen Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 气候学;
  • 关键词

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