自 1900 年以来北大西洋海温的多年代变化调节厄尔尼诺/南方涛动与南大西洋副热带偶极之间的关系

Lejiang Yu, Shiyuan Zhong, Timo Vihma, Cuijuan Sui, Bo Sun
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摘要

本研究调查了厄尔尼诺南方/振荡(ENSO)和南大西洋副热带偶极子(SASD)之间关系的长期变化,以及它们与北大西洋海面温度(MDV-SST)多年代变化的联系。该研究利用一个世纪以来的海表温度和大气数据以及共同体大气模式第 5 版(CAM5),发现尼诺3.4 指数和南大西洋副热带偶极之间的相关性存在显著的年代际变化。这种变异性与北大西洋 MDV-SST 密切相关,通常被解释为大西洋多年代涛动(AMO)。在 MDV-SST 的暖(正)阶段(1930-1960 年和 2001-2020 年),ENSO 与 SASD 之间存在明显的相关性;而在冷(负)阶段(1900-1929 年和 1961-2000 年),ENSO 与 SASD 之间的相关性则不明显。通过吉尔型响应,MDV-SST 激发了热带太平洋上空的罗斯比波,影响了太平洋上空的海面风、海温、对流活动和高层带状风。在暖的 MDV-SST 阶段,南太平洋上空的 SST 和降水异常触发了位置更偏东的罗斯比波源,加上更强、更偏北的副热带喷流,使波束更偏东地传播到南大西洋,从而加强了 SASD 的 SST 异常。相反,在寒冷的 MDV-SST 阶段,与厄尔尼诺/南方涛动相关的罗斯比波源位置更偏西,中纬度喷流更强,引导波束向东南方向进入东南太平洋,对南亚热带海洋中的 SST 异常影响较小。异常表层压力和相关表层风场以及表层湍流热通量引起的 Ekman 泵也会影响 SASD 的 SST 异常和 ENSO-SASD 关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multidecadal variations in North Atlantic SSTs modulate the relationship between ENSO and the South Atlantic Subtropical Dipole since 1900
This study investigates the long-term variability of the relationship between the El Niño South/Oscillation (ENSO) and the South Atlantic Subtropical Dipole (SASD), and their connection to multidecadal variations in the North Atlantic sea surface temperature (MDV-SST). Using a century’s worth of SST and atmospheric data and the Community Atmosphere Model version 5 (CAM5), the study found significant interdecadal variability in the correlation between the Niño3.4 index and the SASD index. This variability is closely linked to the North Atlantic MDV-SST, often interpreted as Atlantic Multidecadal Oscillation (AMO). This is demonstrated by significant ENSO-SASD correlations during warm (positive) phases of MDV-SST (1930-1960 and 2001-2020) and insignificant correlations during cold (negative) phases (1900-1929 and 1961-2000). Through a Gill-type response, MDV-SST excites Rossby wave over the tropical Pacific Ocean, influencing surface wind, SST, convective activities and upper-level zonal wind over the Pacific Ocean. During warm MDV-SST phases, the more eastward positioned Rossby wave source, triggered by SST and precipitation anomalies over the South Pacific Ocean, along with a stronger, more northward subtropical jet stream, propagates the wavetrain more eastwards into the South Atlantic Ocean, thereby strengthening the SST anomalies in the SASD. Conversely, during the cold MDV-SST phases, the more westward-positioned ENSO-related Rossby wave source and a stronger mid-latitude jet stream guide the wavetrain southeastwards into the southeastern Pacific Ocean, exerting less influence on the SST anomalies in the SASD. The Ekman pumping caused by anomalous surface pressure and the associated surface wind field as well as surface turbulent heat flux also affect the SST anomalies in the SASD and the ENSO-SASD relation.
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