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Effect of Atlantic meridional overturning circulation changes on tropical coupled ocean-atmosphere system.

机译:大西洋经向翻转环流变化对热带耦合海洋-大气系统的影响。

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摘要

The objective of this study is to investigate the effect of Atlantic meridional overturning circulation (AMOC) changes on tropical coupled ocean-atmosphere system via oceanic and atmospheric processes. A suite of numerical simulations have been conducted and the results show that both oceanic and atmospheric circulation changes induced by AMOC changes can have a profound impact on tropical sea surface temperature (SST) and sea surface salinity (SSS) conditions, but their dominance varies in different parts of the tropical oceans. The oceanic process has a dominant control on SST and SSS response to AMOC changes in the South Tropical Atlantic, while the atmospheric teleconnection is mainly responsible for SST and SSS changes over the North Tropical Atlantic and Pacific Oceans during the period of reduced AMOC.The finding has significant implication for the interpretation of the paleo-temperature reconstructions over the southern Caribbean and the western Tropical Atlantic regions during the Younger Dryas. It suggests that the strong spatial inhomogeneity of the SST change revealed by the proxy records in these regions may be attributed to the competing oceanic and atmospheric processes that dominate the SST response. Similar mechanisms may also explain the reconstructed paleo-salinity change in the tropical Atlantic, which shows a basin-wide increase in SSS during the Younger Dryas, according to recent paleo climate studies.Finally, we show that atmospheric teleconnection induced by the surface cooling of the North Atlantic and the North Pacific in response to a weakened AMOC, is a leading physical mechanism that dictates the behavior of El Nino/Southern Oscillation (ENSO) response to AMOC changes. However, depending on its origin, the atmospheric teleconnection can affect ENSO variability in different ways. The atmospheric process associated with the North Atlantic cooling tends to enhance El Nino occurrence with a deepened mean thermocline depth in the eastern Pacific, whereas the atmospheric process associated with the North Pacific cooling tends to produce more La Nina events with a reduced mean thermocline depth in the eastern Pacific. Preliminary analysis suggests that the change in ENSO characteristics is associated with the change in internal atmospheric variability caused by the surface cooling in the North Atlantic and North Pacific. Complex nature of the underlying dynamics concerning the effect of the AMOC on ENSO calls for further investigation into this problem.
机译:这项研究的目的是通过海洋和大气过程研究大西洋经向翻转环流(AMOC)变化对热带耦合海洋-大气系统的影响。进行了一系列数值模拟,结果表明,AMOC变化引起的海洋和大气环流变化均可对热带海表温度(SST)和海表盐度(SSS)条件产生深远影响,但它们的优势在热带海洋的不同部分。海洋活动对南热带大西洋上空的SST和SSS对AMOC变化的响应起主要控制作用,而大气遥相关则是AMOC减少期间北热带大西洋和太平洋上SST和SSS变化的主要原因。对于解释年轻石Dry时期南部加勒比海和热带大西洋西部地区的古温度重建具有重要意义。这表明这些地区的代用记录揭示的SST变化在空间上的强烈不均匀性可能归因于主导SST响应的竞争性海洋和大气过程。根据最近的古气候研究,类似的机制也可能解释了热带大西洋重建的古盐度变化,这表明在年轻石Dry时期整个盆地的SSS都增加了。最后,我们证明了由地表冷却导致的大气遥相关北大西洋和北太平洋是对AMOC减弱的响应,它是决定El Nino /南方涛动(ENSO)对AMOC变化的响应行为的主要物理机制。但是,取决于其起源,大气遥相关会以不同方式影响ENSO的可变性。与北大西洋降温有关的大气过程往往会随着东部太平洋平均热跃层深度的加深而增加厄尔尼诺现象的发生,而与北太平洋降温有关的大气过程往往会导致更多的拉尼娜事件,而平均温跃层深度会减少。东太平洋。初步分析表明,ENSO特征的变化与北大西洋和北太平洋地表降温引起的内部大气变化的变化有关。有关AMOC对ENSO的影响的基本动力学的复杂性要求对此问题进行进一步研究。

著录项

  • 作者

    Wan, Xiuquan.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Physical Oceanography.Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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