Trend of annual and semiannual harmonics of sea surface temperature in the tropical Indian Ocean, 1979–2018

IF 2.3 3区 地球科学 Q2 OCEANOGRAPHY Deep-sea Research Part Ii-topical Studies in Oceanography Pub Date : 2023-06-01 DOI:10.1016/j.dsr2.2023.105292
V.A. Abhishek, V. Vijith, N. Anup
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Abstract

In the Indian Ocean (IO), the annual and semiannual oscillations of the sea surface temperature (SST) contribute more than 80% of the total variance. It is known that the SST in the tropical IO has warmed at a rate of 0.15 °C/decade since 1979. However, such an estimate of the decadal trend of the annual and semiannual harmonics of SST remains unknown, despite being a strong component of the SST signal. Here we use a widely accepted data product (TropFlux) to quantify the annual and semiannual harmonics in the tropical IO for the first time. The northern IO has a distinctly strong semiannual cycle (1–1.8 °C), which is showing an amplifying trend (∼ 0.04 °C/decade) since 1979. Furthermore, a damping trend in annual amplitude exists over much of the IO, except along the northwestern Bay of Bengal, the Seychelles-Chagos thermocline ridge, the Persian Gulf, and the Indonesian throughflow region. The estimated damping of the annual amplitude is highest over the Arabian Sea. In contrast, the southern tropical IO has a predominant annual cycle, the amplitude of which has weakened during 1979–2018. In the north IO, net air-sea heat flux and vertical processes show a dominant semiannual harmonic oscillation similar to SST. Additionally, the annual amplitude is influential over southern IO. Horizontal advection contributes significantly along the boundary-current regions and the western equatorial IO. Our analysis of combined annual and semiannual cycles shows significant warming in the tropical IO during October–November and cooling during July–August owing to the amplification of semiannual oscillation. These changes in the SST can influence air-sea interaction processes such as cyclogenesis and monsoon.

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1979–2018年热带印度洋海面温度的年和半年谐波趋势
在印度洋(IO),海面温度(SST)的年和半年振荡占总方差的80%以上。据了解,自1979年以来,热带IO的SST以0.15°C/十年的速度变暖。然而,尽管SST是SST信号的一个强分量,但对SST年和半年谐波的十年趋势的这种估计仍然未知。在这里,我们首次使用广泛接受的数据产品(TropFlux)来量化热带IO中的年和半年谐波。北部IO有一个明显强烈的半年周期(1–1.8°C),自1979年以来呈放大趋势(~0.04°C/十年)。此外,除孟加拉湾西北部、塞舌尔-查戈斯温跃层脊、波斯湾和印度尼西亚通流区外,IO的大部分地区都存在年振幅衰减趋势。阿拉伯海的年振幅估计阻尼最高。相比之下,南部热带IO有一个主要的年周期,其振幅在1979年至2018年期间减弱。在IO北部,海气净热通量和垂直过程表现出与SST相似的主导半年调和振荡。此外,年振幅对IO南部也有影响。水平平流在边界流区域和赤道IO西部有显著贡献。我们对年周期和半年周期的分析表明,由于半年振荡的放大,热带IO在10月至11月显著变暖,在7月至8月显著降温。SST的这些变化可以影响海气相互作用过程,如气旋形成和季风。
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来源期刊
CiteScore
6.40
自引率
16.70%
发文量
115
审稿时长
3 months
期刊介绍: Deep-Sea Research Part II: Topical Studies in Oceanography publishes topical issues from the many international and interdisciplinary projects which are undertaken in oceanography. Besides these special issues from projects, the journal publishes collections of papers presented at conferences. The special issues regularly have electronic annexes of non-text material (numerical data, images, images, video, etc.) which are published with the special issues in ScienceDirect. Deep-Sea Research Part II was split off as a separate journal devoted to topical issues in 1993. Its companion journal Deep-Sea Research Part I: Oceanographic Research Papers, publishes the regular research papers in this area.
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