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Emplacement of Antarctic ice sheet mass affects circumpolar ocean flow

机译:南极冰盖的进位影响极地洋流

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摘要

During the Cenozoic the Antarctic continent experienced large fluctuations in ice-sheet volume. We investigate the effects of Glacial Isostatic Adjustment (G1A) on Southern Ocean circulation for the first continental scale glaciation of Antarctica (~34 Myr) by combining solid Earth and ocean dynamic modeling. A newly compiled global early Oligocene topography is used to run a solid Earth model forced by a growing Antarctic ice sheet. A regional Southern Ocean zonal isopycnal adiabatic ocean model is run under ice-free and fully glaciated (GIA) conditions. We find that GIA-induced deformations of the sea bottom on the order of 50 m are large enough to affect the pressure and density variations driving the ocean flow around Antarctica. Throughout the Southern Ocean, frontal patterns are shifted several degrees, velocity changes are regionally more than 100%, and the zonal transport decreases in mean and variability. The model analysis suggests that GIA induced ocean flow variations alone could impact local nutrient variability, erosion and sedimentation rates, or ocean heat transport. These effects may be large enough to require consideration when interpreting the results of Southern Ocean sediment cores.
机译:在新生代,南极大陆的冰盖体积波动很大。我们通过结合固体地球和海洋动力学模型,研究了南极环流首次对南极大陆冰川(〜34 Myr)进行冰川等静调节(G1A)对南大洋环流的影响。使用新编辑的全球早期渐新世地形来运行由不断增长的南极冰盖推动的固体地球模型。在无冰和完全冰川化(GIA)条件下运行区域性南部海洋带状等温绝热海洋模型。我们发现,GIA引起的海底变形约50 m,足以影响驱动南极洲周围海流的压力和密度变化。在整个南大洋,额叶模式发生了数度偏移,速度变化在区域内超过100%,并且区域运输的均值和变异性降低。模型分析表明,GIA单独引起的洋流变化可能会影响局部养分的变异性,侵蚀和沉积速率或海洋热传输。这些影响可能足够大,在解释南部海洋沉积物核心的结果时需要考虑。

著录项

  • 来源
    《Global and planetary change》 |2014年第7期|16-24|共9页
  • 作者单位

    Institute for Marine and Atmospheric Research Utrecht Center for Extreme Matter and Emergent Phenomena, Utrecht University, Utrecht, The Netherlands;

    NIOZ, Royal Netherlands Institute for Sea Research, Den Burg, The Netherlands;

    Institute for Marine and Atmospheric Research Utrecht Center for Extreme Matter and Emergent Phenomena, Utrecht University, Utrecht, The Netherlands;

    Institute for Marine and Atmospheric Research Utrecht Center for Extreme Matter and Emergent Phenomena, Utrecht University, Utrecht, The Netherlands;

    NIOZ, Royal Netherlands Institute for Sea Research, Den Burg, The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antarctic ice sheet; Ice load; Southern Ocean; Eocene-Oligocene; Frontal shifts;

    机译:南极冰盖;冰负荷;南部海洋;始新世-渐新世;额叶转移;

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