首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Winter bloom and associated upwelling northwest of the Luzon Island: A coupled physical-biological modeling approach
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Winter bloom and associated upwelling northwest of the Luzon Island: A coupled physical-biological modeling approach

机译:冬季开花和吕宋岛西北部的上升流:一种物理-生物耦合方法

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For this paper, a coupled physical-biological model was developed in order to study the mechanisms of the winter bloom in the Luzon Strait (referred as LZB). Based on a simulation for January 2010, the results showed that the model was capable of reproducing the key features of the LZB, such as the location, inverted-V shape, twin-core structure and bloom intensity. The simulation showed that the LZB occurred during the relaxation period of intensified northeasterly winds, when the deepened mixed layer started to shoal. Nutrient diagnostics showed that vertical mixing was responsible for the nutrient supply to the upper ~40 m layer, while subsurface upwelling supplied nutrients to the region below the mixed layer. Hydrodynamic diagnostics showed that the advection of relative vorticity (RV) primarily contributed to the subsurface upwelling. The RV advection was resulted from an offshore jet, which was associated with a northeasterly wind, flowed across the ambient RV field.
机译:在本文中,为了研究吕宋海峡(称为LZB)冬季开花的机理,建立了一种耦合的物理-生物学模型。基于2010年1月的模拟,结果表明该模型能够重现LZB的关键特征,例如位置,倒V形,双核结构和光晕强度。模拟表明,当加深的混合层开始暗化时,LZB发生在东北风增强的松弛期。营养学诊断表明,垂直混合是向上40 m上部养分供应的原因,而地下上升流则向混合层以下区域养分供应。流体动力学诊断表明,相对涡度(RV)的平流主要是造成地下上升的原因。 RV平流是由与东北风相关的近海射流引起的,该射流流过周围的RV场。

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