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April 4, 2026Journal of Marine Science and Engineering0 citationsOpen Access

Early Summer Low-Level Wind in the Beibu Gulf: Linkages to the Tropical Sea Surface Temperature

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CZChengyang ZhangTZTuantuan ZhangSLSheng Lai

Key Points

  • The research aims to understand the interannual relationships between low-level winds in the Beibu Gulf and tropical sea surface temperature.
  • Analyzed interannual wind data from the Beibu Gulf for June from 1993 to 2021.
  • Utilized multiple datasets to assess correlations between winds and tropical sea surface temperatures.
  • Investigated the roles of different wind components (rotational and divergent) in the observed wind patterns.
  • Meridional winds show significant correlation with tropical Indian Ocean and Atlantic Ocean sea surface temperatures.
  • Tropical Indian Ocean warming enhances south winds over the Beibu Gulf via Kelvin waves.
  • Tropical Atlantic Ocean warming influences westward Rossby waves, resulting in anomalous anticyclonic winds.
  • Zonal winds are correlated with tropical Pacific sea surface temperature, generating westerly anomalies during warming events.

Abstract

With the rapid exploitation of offshore wind energy in the Beibu Gulf (BG), understanding local low-level wind variability is essential for wind farm operations. This study examines the interannual relationships between the BG low-level winds in June and tropical sea surface temperature (SST) during 1993–2021 using multiple datasets. The meridional and zonal winds show negligible correlation on interannual time scales. Further analysis indicates that the meridional wind over the BG is significantly linked to the tropical Indian Ocean (TIO) and tropical Atlantic (TA) SST. The TIO warming is able to intensify the Western Pacific Subtropical High via eastward-propagating Kelvin waves, inducing southerly wind anomalies over the BG. In contrast, the TA warming modulates the Walker circulation and triggers westward-propagating Rossby wave trains, forming an anomalous Philippine anticyclone and associated southerly winds. The anomalous southerly winds associated with TIO (TA) warming are contributed by changes in both rotational and divergent wind components (primarily divergent wind component). Conversely, the zonal wind over the BG is significantly correlated with the tropical Pacific SST. The equatorial eastern Pacific warming excites westward-propagating Rossby waves, generating an anomalous anticyclone and resulting in westerly anomalies over the BG. Air–sea coupling links warm SST in the northwestern Pacific to a local anticyclonic circulation, forming easterly anomalies in the BG. Notably, the tropical SST associated zonal wind anomalies are primarily driven by rotational wind component. This study clarifies how tropical SST anomalies influence low-level winds over the Beibu Gulf and distinguishes the roles of rotational and divergent wind components, providing new insights into the predictability of local wind variability.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69d0af83659487ece0fa5814https://doi.org/10.3390/jmse14070650
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