Mixing of Top-Down and Bottom-Up Diffusing Reactive Tracers Within the Ocean Mixed Layer and Its Application to Autumn Phytoplankton Blooms

IF 3.3 2区 地球科学 Q1 OCEANOGRAPHY Journal of Geophysical Research-Oceans Pub Date : 2024-12-13 DOI:10.1029/2024JC021757
Y. Noh, H. J. Seunu, H. Song, Y. Choi
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Abstract

The mixing of reactive tracers within the ocean mixed layer, phytoplankton transported downwards from the sea surface and nutrients transported upwards from the mixed layer depth (MLD), is investigated using large eddy simulation coupled to a Lagrangian plankton model. The study focuses on how vertical and horizontal heterogeneity in tracer distribution is generated and how it influences an autumn phytoplankton bloom. The vertical gradient appears in the profiles of horizontal mean phytoplankton and nutrient concentrations, P and N, and it reduces phytoplankton production by photosynthesis compared to the cases with uniform distributions. The reduction ratio decreases as the mixed-layer mean N increases, but it remains relatively insensitive to other conditions such as MLD, surface forcing, stratification below the mixed layer, and the initial N. Phytoplankton and nutrient concentrations show a negative correlation in the horizontal plane, which becomes stronger with increasing depth. Its contribution to plankton production by photosynthesis is negligible, however, because the correlation is weak near the sea surface and the reaction time scale is much longer than the turbulent mixing time scale. It is also found that the vertical gradients of P and N are smaller, and the negative correlation is stronger in the convective mixed layer than in the shear-driven mixed layer. A simple box plankton model, which takes into account the mixing process of tracers, is proposed and used to investigate how mixing affects the prediction of an autumn phytoplankton bloom.

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海洋混合层内自上而下和自下而上扩散的反应性示踪剂的混合及其在秋季浮游植物繁殖中的应用
利用大涡模拟和拉格朗日浮游生物模型,研究了海洋混合层内反应性示踪剂的混合、浮游植物从海面向下运移和营养物质从混合层深度向上运移的过程。研究的重点是示踪剂分布的垂直和水平异质性是如何产生的,以及它如何影响秋季浮游植物的繁殖。垂直梯度在浮游植物水平平均浓度、营养物浓度、磷和氮的剖面上表现出来,与均匀分布的情况相比,垂直梯度降低了浮游植物的光合作用产量。随着混合层平均N的增加,减少率降低,但对MLD、地表强迫、混合层下分层和初始N等其他条件相对不敏感。浮游植物与营养物浓度在水平面上呈负相关,随深度增加而增强。然而,它对浮游生物光合作用的贡献可以忽略不计,因为在海面附近相关性较弱,反应时间尺度比湍流混合时间尺度长得多。P和N的垂直梯度较小,且对流混合层的负相关强于剪切驱动混合层。提出了一个考虑示踪剂混合过程的简单箱形浮游生物模型,并用于研究混合如何影响秋季浮游植物华流的预测。
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来源期刊
Journal of Geophysical Research-Oceans
Journal of Geophysical Research-Oceans Earth and Planetary Sciences-Oceanography
CiteScore
7.00
自引率
13.90%
发文量
429
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