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Modeling the ecosystem response to summer coastal upwelling in the northern South China Sea

机译:建模生态系统对南海北部沿海沿海的回应

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摘要

A coupled three-dimensional physical model and a nitrogen-based nutrient, phytoplankton, zooplankton, and detritus (NPZD) ecosystem model were applied to simulate the summer coastal upwelling system over the continental shelf of northern South China Sea (NSCS) and its impact on hydrographic conditions and ecosystem. The simulated results were comprehensively validated against field and satellite measurements. The model results show that the near shore ecosystem of NSCS has significant responses to the summer coastal upwelling system. The Shantou Coast to the Nanri Islands of Fujian province (YD) and the east of the Leizhou Peninsula (QD) are two main regions affected by NSCS summer coast upwelling. During summer, these two coastal areas are characterized by nearshore cold and high salinity upwelling current. Further, the summer coastal upwelling serves as a perfect nutrient pump, which lifts up and advects nutrient-rich current from deep to surface, from inner shelf to about 30km outer shelf. This nutrient source reaches its maximum in the middle of July and then begins to decrease. However, the maximum phytoplankton and chlorophyllado not coincide with the maximum nutrients and delay for about 10 days. Because of the intensive seasonal thermocline and the complicated current transporting through Qiongzhou strait, the ecological responding of QD is less pronounced than YD. This study has a better understanding of the physically modulated ecological responses to the NSCS summer coastal upwelling system.
机译:耦合的三维物理模型和氮基营养素,浮游植物,浮游植物和碎屑(NPZD)生态系统模型应用于模拟南海北部大陆架(NSCs)的夏季沿海上升系统及其影响水文条件和生态系统。模拟结果全面验证了对现场和卫星测量。模型结果表明,NSC的近岸生态系统对夏季沿海上升系统具有重要的反应。汕头海岸到福建省南里群岛(YD)和Leizhou半岛(QD)的东部是由NSCS夏季海岸升起影响的两个主要区域。夏季,这两个沿海地区的特点是近岸冷和高盐度上升电流。此外,夏季沿海升值用作完美的营养泵,从内部架子到大约30km的外架上,抬起并推动富含营养的电流。这种营养素源在7月中旬达到其最大值,然后开始减少。然而,最大的浮游植物和叶绿素不重合与最大营养素和延迟约10天。由于强化季节性热水下划线和通过琼州海峡的复杂流动,QD的生态响应不如YD。本研究更好地了解对NSCS夏季沿海上升系统的物理调制的生态反应。

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