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Ageostrophic Frontal Processes Controlling Phytoplankton Production in the Catalano-Balearic Sea (Western Mediterranean)

机译:控制加泰罗尼亚-巴利阿里海(西地中海)浮游植物生产的年龄营养化额叶过程

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摘要

Buoyancy-induced unstable boundary currents and the accompanying retrograde density fronts are often the sites of pronounced mesoscale activity, ageostrophic frontal processes, and associated high biological production in marginal seas. Biophysical model simulations of the Catalano-Balearic Sea (Western Mediterranean) illustrated that the unstable and nonlinear southward frontal boundary current along the Spanish coast resulted in a strain-driven frontogenesis mechanism. High upwelling velocities of up to 80 m d-1 injected nutrients into the photic layer and promoted enhanced production on the less dense, onshore side of the front characterized by negative relative vorticity. Additional down-front wind stress and heat flux (cooling) intensified boundary current instabilities and thus ageostrophic cross-frontal circulation and augmented production. Specifically, entrainment of nutrients by relatively strong buoyancy-induced vertical mixing gave rise to a more widespread phytoplankton biomass distribution within the onshore side of the front. Mesoscale cyclonic eddies contributed to production through an eddy pumping mechanism, but it was less effective and more limited regionally than the frontal processes. The model was configured for the Catalano-Balearic Sea, but the mechanisms and model findings apply to other marginal seas with similar unstable frontal boundary current systems.
机译:浮力引起的不稳定边界流和随之而来的逆行密度前沿通常是明显的中尺度活动,年龄变质的额叶过程以及相关海域高生物产量的场所。加泰罗尼亚-巴利阿里海(西地中海)的生物物理模型模拟表明,沿着西班牙海岸的不稳定且非线性的南向前沿边界流导致了应变驱动的前生机制。高达80 m d -1 的高上升速度将养分注入到光层中,并促进了锋面较不密实的陆侧增加的产量,其特征是相对涡度为负。额外的下风向应力和热通量(冷却)加剧了边界电流的不稳定性,从而加剧了超营养的跨前循环并增加了产量。具体而言,由相对强的浮力引起的垂直混合带走的养分带动了锋面陆上侧浮游植物生物量的分布。中尺度旋风涡旋通过涡旋抽运机制促进了生产,但与额叶过程相比,这种旋涡效率低下,并且在区域上受到限制。该模型是为加泰罗尼亚-巴利阿里海配置的,但其机理和模型发现适用于其他具有类似不稳定额叶边界流系统的边​​缘海。

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