A meridional dipole mode in the Indian Ocean subsurface ocean heat content and its multidecadal variability

IF 1.9 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Anand Babu Amere , Mihir K. Dash , Balaji Senapati
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引用次数: 0

Abstract

The dominant mode of the Indian Ocean variability can be impacted by changes in the background state (multidecadal timescale) of the subsurface heat content. The multidecadal variability of subsurface ocean heat content (sub-OHC) in the Indian Ocean is examined using four reanalysis products from 1958 to 2017. The analysis reveals a meridional basin-wide dipole mode in the subsurface OHC until the late 1980s, followed by the mode embedded in the uniform basin-wide patterns. These patterns are also observed in the trends of thermocline and sea surface height. The observed patterns in the Indian Ocean are explained by two distinct mechanisms. Firstly, the multidecadal variability of dipole patterns over the Indian Ocean is influenced by local wind forcing. Wind stress trends and Ekman pumping velocity trends favor downwelling (upwelling) in the off-equatorial southern Indian Ocean region, leading to thermocline depth deepening (shallowing) during 1958–1975 and 1976–1987, respectively. Secondly, the combined effect of heat transport from the western Pacific through Indonesian Through Flow and local wind forcing accounts for the basin-wide cooling and warming trends observed during 1988–2000, and 2001–2014, respectively.

印度洋地下海洋热含量的经向偶极子模式及其多年代际变化
印度洋变率的主导模态可能受到地下热含量背景状态(多年代际)变化的影响。利用1958 - 2017年4种再分析产品研究了印度洋地下海洋热含量(亚热含量)的多年代际变化。分析表明,直到20世纪80年代末,地下热含量一直呈经向全盆地偶极子模式,随后这种模式嵌入到均匀的全盆地模式中。这些模式也可在温跃层和海面高度的趋势中观察到。在印度洋观测到的模式可以用两种不同的机制来解释。首先,印度洋上空偶极子型的多年代际变化受到局地风强迫的影响。在近赤道南印度洋区域,风应力趋势和Ekman抽运速度趋势分别有利于下沉(上升流),导致1958-1975年和1976-1987年期间温跃层深度加深(变浅)。其次,1988-2000年和2001-2014年观测到的全流域变冷和变暖趋势分别是由西太平洋通过印尼通流的热输送和局地风强迫的共同作用造成的。
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来源期刊
Dynamics of Atmospheres and Oceans
Dynamics of Atmospheres and Oceans 地学-地球化学与地球物理
CiteScore
3.10
自引率
5.90%
发文量
43
审稿时长
>12 weeks
期刊介绍: Dynamics of Atmospheres and Oceans is an international journal for research related to the dynamical and physical processes governing atmospheres, oceans and climate. Authors are invited to submit articles, short contributions or scholarly reviews in the following areas: •Dynamic meteorology •Physical oceanography •Geophysical fluid dynamics •Climate variability and climate change •Atmosphere-ocean-biosphere-cryosphere interactions •Prediction and predictability •Scale interactions Papers of theoretical, computational, experimental and observational investigations are invited, particularly those that explore the fundamental nature - or bring together the interdisciplinary and multidisciplinary aspects - of dynamical and physical processes at all scales. Papers that explore air-sea interactions and the coupling between atmospheres, oceans, and other components of the climate system are particularly welcome.
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