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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Eddy-Induced Chlorophyll Anomalies in the Western South China Sea
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Eddy-Induced Chlorophyll Anomalies in the Western South China Sea

机译:南海西海涡流诱导的叶绿素异常

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The western South China Sea (WSCS) exhibits intense mesoscale eddy activity, especially in summer. However, the influence of the eddies on regional ecosystems is not well understood. By analyzing historical in situ observations, satellite-derived near-surface chlorophyll (CHL) data and eddy data, we investigated the composite response of CHL to eddies in the WSCS. The results show that eddies decrease CHL in the WSCS and that nearly half of this decrease is attributed to the activity of anticyclonic eddies during summer when they are much more energetic than cyclonic eddies. A comparison between local and nonlocal eddies suggests that the CHL response to the eddies is dominated by local dynamics rather than being trapped and transported from neighboring regions. In situ observations provide evidence that intense convergence and downwelling in anticyclonic eddies deepen the mixed layer depth and subsurface CHL maximum depth. The decreased nutrients in the euphotic layer inhibits the growth of phytoplankton, resulting in a weakened subsurface CHL maximum (by 54%) and decreased CHL in the entire euphotic layer (by 41% for the upper 100 m). Considering the greater number and area of anticyclonic eddies compared with cyclonic eddies, eddy activity might cause an upper ocean CHL decrease of 7% in the WSCS in summer. This study demonstrated that the response of CHL to eddies in the WSCS differs in both spatial distribution and seasonal variation from those in other subregions of the SCS, emphasizing the importance of considering regional variability in eddies and large-scale environments when evaluating the biogeochemical influences of eddies.
机译:西南海(WSCS)展示着强烈的Mesoscale Eddy活动,特别是在夏天。然而,漩涡对区域生态系统的影响并不充分了解。通过分析历史原位观察,卫星衍生的近似叶绿素(CHL)数据和涡流数据,我们研究了CHL对WSC的复合响应。结果表明,EDDIES在WSC中减少CHL,这降低的几半归因于夏季的反气旋EDDIES的活性比循环漩涡更精力。本地和非本地Eddies之间的比较表明,对漩涡的CHL响应是由本地动态的主导,而不是从邻近区域捕获和运输。原位观察提供了证据表明,在反气旋EDDIES中强烈收敛和沉沦深化混合层深度和地下CHL最大深度。 Euphotic层中的营养物质降低抑制了浮游植物的生长,导致弱化的地下CHL最大(通过54%)和整个Euphotic层中的CHL降低(上100 m的41%)。考虑到与旋风射精相比的较大数量和面积的反型漩涡,涡流活性可能导致夏季WSC在WSC上的上海CHL降低7%。本研究表明,在SCS的其他地区的空间分布和季节性变化中,CHL对EDDIES的响应不同,在评估生物地球化学影响时,强调了考虑漩涡和大规模环境中的区域变异性的重要性eddies。

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