Historical record of upwelling-favorable winds in Southern Benguela 1833–2014

IF 8.4 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES npj Climate and Atmospheric Science Pub Date : 2025-01-29 DOI:10.1038/s41612-025-00925-0
David Gallego, Ricardo García-Herrera, Folly Serge Tomety, M. Carmen Álvarez-Castro, Cristina Peña-Ortiz
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Abstract

As a result of the high volume of maritime traffic along the coasts of Namibia and western South Africa, mariners recorded numerous in-situ wind observations since early times. Many of these historical data are currently available through the International Comprehensive Ocean-Atmosphere Data Set (ICOADS). Here, we make use of these historical data to develop an instrumental index for the characterization of the upwelling-favorable winds over the southern Benguela Upwelling System from 1833 to 2014. Our results suggest that upwelling in this region has increased since the mid-1980s, in good agreement with previous research. However, when the entire period is considered, our index does not evidence a long-term trend but a multidecadal variability with an oscillation period between 20 and 30 years. We found a significant influence of ENSO exerted through the modulation of the position of the South Atlantic high-pressure system. However, this teleconnection may be highly non-stationary.

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1833-2014年本格拉南部有利上升风的历史记录
由于沿纳米比亚和南非西部海岸的海上交通量很大,水手们从早期开始就记录了大量的现场风观测。其中许多历史数据目前可通过国际海洋大气综合数据集(ICOADS)获得。在这里,我们利用这些历史数据开发了一个仪器指数,用于表征1833年至2014年南本格拉上升流系统的上升流有利风。我们的研究结果表明,自20世纪80年代中期以来,该地区的上升流有所增加,这与以前的研究结果很好地吻合。然而,当考虑整个时期时,我们的指数并不表明一个长期趋势,而是一个多年代际变率,振荡周期在20至30年之间。我们发现ENSO通过南大西洋高压系统位置的调制发挥了显著的影响。然而,这种远距连接可能是高度非平稳的。
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来源期刊
npj Climate and Atmospheric Science
npj Climate and Atmospheric Science Earth and Planetary Sciences-Atmospheric Science
CiteScore
8.80
自引率
3.30%
发文量
87
审稿时长
21 weeks
期刊介绍: npj Climate and Atmospheric Science is an open-access journal encompassing the relevant physical, chemical, and biological aspects of atmospheric and climate science. The journal places particular emphasis on regional studies that unveil new insights into specific localities, including examinations of local atmospheric composition, such as aerosols. The range of topics covered by the journal includes climate dynamics, climate variability, weather and climate prediction, climate change, ocean dynamics, weather extremes, air pollution, atmospheric chemistry (including aerosols), the hydrological cycle, and atmosphere–ocean and atmosphere–land interactions. The journal welcomes studies employing a diverse array of methods, including numerical and statistical modeling, the development and application of in situ observational techniques, remote sensing, and the development or evaluation of new reanalyses.
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