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Ventilation of the equatorial Atlantic by the equatorial deep jets

机译:赤道深部喷气机对赤道大西洋的通风

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Equatorial deep jets (EDJs) are a prominent flow feature of the equatorial Atlantic below the Equatorial Undercurrent down to about 3000 m. Here we analyze long-term moored velocity and oxygen observations, as well as shipboard hydrographic and current sections acquired along 23W and covering the depth range of the oxygen minimum zones of the eastern tropical North and South Atlantic. The moored zonal velocity data show high-baroclinic mode EDJ oscillations at a period of about 4.5 years. Equatorial oxygen observations which do not resolve or cover a full 4.5-yr EDJ cycle nevertheless reveal large variability, with oxygen concentrations locally spanning a range of more than 60 mol kg-1. We study the effect of EDJs on the equatorial oxygen concentration by forcing an advection-diffusion model with the velocity field of the gravest equatorial basin mode corresponding to the observed EDJ cycle. The advection-diffusion model includes an oxygen source at the western boundary and oxygen consumption elsewhere. The model produces a 4.5-yr cycle of the oxygen concentration and a temporal phase difference between oxygen concentration and eastward velocity that is less than quadrature, implying a net eastward oxygen flux. The comparison of available observations and basin-mode simulations indicates that a substantial part of the observed oxygen variability at the equator can be explained by EDJ oscillations. The respective role of mean advection, EDJs, and other possible processes in shaping the mean oxygen distribution of the equatorial Atlantic at intermediate depth is discussed.
机译:赤道深喷(EDJs)是赤道大西洋下流至约3000 m以下的赤道大西洋的主要流动特征。在这里,我们分析了长期的系泊速度和氧气观测值,以及沿23W采集并覆盖了东部热带北大西洋和南大西洋的氧气最小区域深度范围的船上水文和当前断面。系泊的纬向速度数据显示高气压斜模EDJ振荡持续约4.5年。然而,不能解析或覆盖整个4.5年EDJ周期的赤道氧气观测结果显示出较大的可变性,局部氧气浓度范围超过60 mol kg-1。我们通过强迫对流扩散模型来研究EDJ对赤道氧气浓度的影响,其中最严重的赤道盆地模式的速度场对应于观测到的EDJ周期。对流扩散模型包括西边界的氧气源和其他地方的氧气消耗量。该模型产生了一个4.5年的氧气浓度循环,并且氧气浓度与东向速度之间的时间相差小于正交值,这意味着净东向氧气通量。现有观测值与盆地模式模拟结果的比较表明,在赤道观测到的氧气变化的很大一部分可以通过EDJ振荡来解释。讨论了平均对流,EDJ和其他可能的过程在塑造赤道大西洋中深度平均氧气分布中的作用。

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