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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Seasonal thermal fronts on the northern South China Sea shelf: Satellite measurements and three repeated field surveys
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Seasonal thermal fronts on the northern South China Sea shelf: Satellite measurements and three repeated field surveys

机译:南海北部陆架的季节性热锋:卫星测量和三个重复的野外勘测

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Seasonal thermal fronts associated with wind-driven coastal downwelling/upwelling in the northern South China Sea are investigated using satellite measurements and three repeated fine-resolution mapping surveys in winter, spring, and summer. The results show that vigorous thermal fronts develop over the broad shelf with variable widths and intensities in different seasons, which tend to be approximately aligned with the 20–100 m isobaths. Driven by the prevailing winter/summer monsoon, the band-shaped fronts were observed with a magnitude exceeding 0.1℃/km in the subsurface, and accompanied by energetic coastal downwelling/upwelling due to shoreward/offshore Ekman transport. The downward/upward tilting of seasonal thermoclines across the shelf exceeds 20 m, significantly contributing to the development of thermal fronts over the shelf. In addition, the diagnostic analysis of Potential Vorticity (PV) suggests that the summer frontal activities induced by the coastal upwelling are more stable to convection and symmetric instabilities in comparison to the winter fronts associated with downwelling-favorable monsoon forcing. This is primarily due to their essential differences in the upper ocean stratification and horizontal buoyancy gradients arising from wind forcing. At the same time, the coastal currents are substantially regulated by the seasonal winds. An expected lag correlation between the velocity from mooring measurements and alongshore wind stress is detected near the frontal region. These results indicate that seasonal wind forcing plays an important role in the frontal activities and coastal water transport over the shelf.
机译:使用卫星测量和冬季,春季和夏季的三个重复的高分辨率地图调查,研究了与南中国海北部风力驱动的海岸下降/上升有关的季节性热锋。结果表明,在不同季节,宽阔的架子上会出现旺盛的热锋,其宽度和强度在不同的季节内都趋于近似与20–100 m等压线对齐。在盛行的冬季/夏季风的驱动下,地下带状锋面的幅度超过了0.1℃/ km,并且由于沿岸/离岸的Ekman运移而伴随着活跃的沿海下降/上升。整个架上季节性热跃线的向下/向上倾斜超过20 m,这极大地促进了架上热锋的发展。此外,对潜在涡度(PV)的诊断分析表明,与有利于季风强迫的冬季锋相比,沿海上升流诱发的夏季锋活动对对流和对称不稳定更为稳定。这主要是由于它们在上层海洋分层和由强迫引起的水平浮力梯度方面的本质差异。同时,沿海水流基本上受季节风的调节。在额叶区域附近检测到系泊测量速度与沿岸风应力之间的预期滞后相关性。这些结果表明,季节性风强迫在陆架上的锋面活动和沿海水运输中起着重要作用。

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