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Global Ocean Circulation Variability Induced by Southern Ocean Winds.

机译:南洋风引起的全球海洋环流变化。

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摘要

Due to its relevance to global climate, understanding the response of the global ocean circulation to perturbations of its steady state is an important task. Previous studies indicate that Southern Ocean wind stress may drive global oceanic overturning variability on decadal timescales. Using a global ocean general circulation model with simplified geometries we investigate the transient and steady state response of the global ocean to a switched-on perturbation to the westerlies over the Southern Ocean. Experiments are designed to tests for the relative strengths of the Atlantic and Indo-Pacific overturning anomaly responses. The sensitivity to varying Pacific basin width and north Pacific density stratification is also investigated. Results reveal that Pacific overturning anomaly is roughly proportional to basin width and that north Pacific density stratification strongly affects the steady state response. Furthermore, results indicate that response timescales are proportional to global basin width consistent with shallow water theory.;Additional experiments are performed to understand the spatial structure and evolution of sea surface temperature (SST), salinity (SSS), density (SSD) and meridional overturning anomalies as a result of a switched-on Southern Ocean wind perturbation under weak and strong restoring boundary conditions. In ocean-only models restoring boundary conditions provide a representation of an atmosphere-ocean coupled system, through temperature feedback, and using weak restoring allows a better representation of such coupling. Results show that sea surface anomalies have magnitudes and spatial structures that vary significantly over time under weak and strong restoring boundary conditions. We find that the evolution of the overturning anomaly is quite distinct between the transient and equilibrium time scales so that the response on multi-decadal time scales is bigger than at equilibrium. Thus, allowing temperature feedback yields two distinct time scales that characterize the evolution of the wind-driven overturning response. Results also suggest that the time evolution of the wind-driven overturning differences between strong and weak restoring are largely due to density effects.
机译:由于它与全球气候相关,因此了解全球海洋环流对其稳态扰动的响应是一项重要任务。先前的研究表明,南部海洋风应力可能会推动全球海洋倾覆的年代际尺度变化。使用具有简化几何形状的全球海洋总环流模型,我们研究了全球海洋对南大洋西风的接通扰动的瞬态和稳态响应。实验旨在测试大西洋和印度-太平洋翻转异常响应的相对强度。还研究了对变化的太平洋盆地宽度和北太平洋密度分层的敏感性。结果表明,太平洋倾覆异常与盆地宽度大致成正比,北太平洋密度分层强烈影响稳态响应。此外,结果表明响应时间尺度与全球盆地宽度成比例,与浅水理论一致。;进行了额外的实验以了解海面温度(SST),盐度(SSS),密度(SSD)和子午线的空间结构和演化在弱而强的恢复边界条件下,由于南大洋风扰动开启,导致倾覆异常。在仅海洋模型中,恢复边界条件通过温度反馈提供了大气-海洋耦合系统的表示,而使用弱恢复则可以更好地表示这种耦合。结果表明,在弱而强的恢复边界条件下,海面异常的大小和空间结构随时间变化很大。我们发现,倾覆异常的演变在瞬变和平衡时间尺度之间是非常不同的,因此在多年代际尺度上的响应要大于在平衡时尺度上的响应。因此,允许温度反馈会产生两个不同的时标,这些时标表征了风倾覆响应的演变。结果还表明,强和弱恢复之间的风力倾覆差异的时间演变主要归因于密度效应。

著录项

  • 作者

    Cruz, Carlos A.;

  • 作者单位

    George Mason University.;

  • 授予单位 George Mason University.;
  • 学科 Physical Oceanography.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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