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Deglacial Heat Uptake by the Southern Ocean and Rapid Northward Redistribution Via Antarctic Intermediate Water

机译:南海南海的近闪烁热量,通过南极中间水快速再分布

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摘要

Antarctic Intermediate Water (AAIW) is an important conduit for nutrients to reach the nutrient-poor low-latitude ocean areas. In the Atlantic, it forms part of the return path of the Atlantic Meridional Overturning Circulation (AMOC). Despite the importance of AAIW, little is known about variations in its composition and signature during the prominent AMOC and climate changes of the last deglaciation. Here we reconstruct benthic foraminiferal Mg/Ca-based intermediate water temperatures (IWTMg/Ca) and intermediate water neodymium (Nd) isotope compositions at submillennial resolution from unique sediment cores located at the northern tip of modern AAIW extent in the tropical W-Atlantic (850-and 1018-m water depth). Our data indicate a pronounced warming of AAIW in the tropical W-Atlantic during Heinrich Stadial 1 and the Younger Dryas. We argue that these warming events were induced by major AMOC perturbations resulting in the pronounced accumulation of heat in the surface Southern Ocean. Combined with published results, our data suggest the subsequent uptake of Southern Ocean heat by AAIW and its rapid northward transfer to the tropical W-Atlantic. Hence, the rapid deglacial northern climate perturbations directly controlled the AAIW heat budget in the tropical W-Atlantic after a detour via the Southern Ocean. We speculate that the ocean heat redistribution via AAIW effectively dampened Southern Hemisphere warming during the deglaciation and may therefore have been a crucial player in the climate seesaw mechanisms between the two hemispheres.
机译:南极中间水(AAIW)是营养成分的重要导管,以达到营养不良的低纬度海洋区域。在大西洋中,它形成了大西洋经典推翻循环(AMOC)的返回路径的一部分。尽管AAIW的重要性,但在突出的戏剧和最后一个令人难度的剧情和气候变化期间,众所周知的成分和签名的变化很少。在这里,我们在热带W-ATLANTY中的现代AAIW范围北端的独特沉积物核心,重建底栖大氨基(IWTMG / CA)和中间水钕(ND)同位素组合物中的底栖淤积核心( 850-和1018-m水深)。我们的数据在Heinrich Stadial 1和较年轻的Dratas中表明Aaiw在热带W-Atlanctic中发出了一场明显的变暖。我们认为这些变暖事件受到主要武器扰动引起的,导致表面南海的明显积聚的热量。结合公布的结果,我们的数据表明,随后通过AAIW的南海热量的摄取及其快速向北转移到热带W-Atlantic。因此,在通过南海绕道绕道而行后,快速北部北部气候扰动直接控制了热带W型大西洋的AAIW热预算。我们推测,通过Aaiw的海洋热量再分布有效地抑制了南半球在解体期间升温,因此可能是两个半球之间的气候跷跷板机制中的关键球员。

著录项

  • 来源
    《Paleoceanography》 |2018年第11期|共14页
  • 作者单位

    GEOMAR Helmholtz Centre for Ocean Research Kiel Kiel Germany;

    GEOMAR Helmholtz Centre for Ocean Research Kiel Kiel Germany;

    GEOMAR Helmholtz Centre for Ocean Research Kiel Kiel Germany;

    GEOMAR Helmholtz Centre for Ocean Research Kiel Kiel Germany;

    GEOMAR Helmholtz Centre for Ocean Research Kiel Kiel Germany;

    GEOMAR Helmholtz Centre for Ocean Research Kiel Kiel Germany;

    Institute of Earth Science Heidelberg University Heidelberg Germany;

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

    Deglacial Heat; Uptake by; Southern Ocean;

    机译:嗜热的热量;摄取;南海;

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