阿古哈斯洋流的不稳定性增强了西南亚热带印度洋的硝酸盐上升供应

IF 8.3 Q1 GEOSCIENCES, MULTIDISCIPLINARY
AGU Advances Pub Date : 2023-12-15 DOI:10.1029/2023AV000973
Tanya A. Marshall, Lisa Beal, Daniel M. Sigman, Sarah E. Fawcett
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引用次数: 0

摘要

阿古拉斯流,像其他西边界流(WBCs)一样,以地下“营养流”的形式将营养物质从热带向亚热带横向输送。这些营养物质主要通过季节性对流混合提供给地表水,在浮游植物营养受到限制之前为短暂的生产力提供燃料。WBC系统的偶发性混合事件特征可以通过垂直将深层营养物质带入地表水来暂时缓解养分短缺。然而,我们对这些营养物质的时空流动缺乏了解,因为它们受到时空限制,一旦进入阳光照射层,营养物质就会被浮游植物迅速消耗。在这里,我们使用硝酸盐Δ(15-18)的新应用,即硝酸盐氮氧同位素比值的差异,来表征冬季阿古拉斯流向上供应硝酸盐的三个(亚)中尺度事件:(1)反气旋涡旋边缘的混合,(2)与阿古拉斯流亚中尺度弯曲相关的近岸上升流,以及(3)由亚中尺度不稳定性驱动的流核边缘的翻转。这三个事件都表现为高硝酸盐-Δ(15-18)向上注入温跃层和地表,而其他地方硝酸盐Δ(15-18)较低;这些夹带事件在其他共同收集的数据中并不总是很明显。驱动硝酸盐供应事件的动态对所有的小河蟹都是共同的,这意味着小河蟹促进的营养携带在数量上是显著的,并支持了亚热带少营养地表水的生产力。未来WBC系统的能量上升可能会增加这些营养通量,部分抵消了预测的分层引起的副热带海洋肥力下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Instabilities Across the Agulhas Current Enhance Upward Nitrate Supply in the Southwest Subtropical Indian Ocean

Instabilities Across the Agulhas Current Enhance Upward Nitrate Supply in the Southwest Subtropical Indian Ocean

The Agulhas Current, like other western boundary currents (WBCs), transports nutrients laterally from the tropics to the subtropics in a subsurface “nutrient stream.” These nutrients are predominantly supplied to surface waters by seasonal convective mixing, to fuel a brief period of productivity before phytoplankton become nutrient-limited. Episodic mixing events characteristic of WBC systems can temporarily alleviate nutrient scarcity by vertically entraining deep nutrients into surface waters. However, our understanding of these nutrient fluxes is lacking because they are spatio-temporally limited, and once they enter the sunlit layer, the nutrients are rapidly consumed by phytoplankton. Here, we use a novel application of nitrate Δ(15–18), the difference between the nitrogen and oxygen isotope ratios of nitrate, to characterize three (sub)mesoscale events of upward nitrate supply across the Agulhas Current in winter: (1) mixing at the edges of an anticyclonic eddy, (2) inshore upwelling associated with a submesoscale meander of the Agulhas Current, and (3) overturning at the edge of the current core driven by submesoscale instabilities. All three events manifest as upward injections of high-Δ(15–18) nitrate into the thermocline and surface where nitrate Δ(15–18) is otherwise low; these entrainment events are not always apparent in the other co-collected data. The dynamics driving the nitrate supply events are common to all WBCs, implying that nutrient entrainment facilitated by WBCs is quantitatively significant and supports productivity in otherwise oligotrophic subtropical surface waters. A future rise in energy across WBC systems may increase these nutrient fluxes, partly offsetting the predicted stratification-induced decrease in subtropical ocean fertility.

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