首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >The salinity signature of the cross-shelf exchanges in the Southwestern Atlantic Ocean: Numerical simulations
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The salinity signature of the cross-shelf exchanges in the Southwestern Atlantic Ocean: Numerical simulations

机译:西南大西洋跨架交换的盐度特征:数值模拟

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A high-resolution model is used to characterize the dominant patterns of sea surface salinity (SSS) variability generated by the freshwater discharges of the Rio de la Plata (RdlP) and the Patos/MirimLagoon in the southwestern Atlantic region. We identify three dominantmodes of SSS variability. The first two, which have been discussed in previous studies, represent the seasonal and the interannual variations of the freshwater plumes over the continental shelf. The thirdmode of SSS variability, which has not been discussed hitherto, represents the salinity exchanges between the shelf and the deep ocean. A diagnostic study using floats and passive tracers identifies the pathways taken by the freshwater plumes. During the austral winter (JJA), the plumes leave the shelf region north of the BMC. During the austral summer (DJF), the plumes are entrained more directly into the BMC. A sensitivity study indicates that the high-frequency component of the wind stress forcing controls the vertical structure of the plumes while the low-frequency component of the wind stress forcing and the interannual variations of the RdlP discharge controls the horizontal structure of the plumes. Dynamical analysis reveals that the cross-shelf flow has a dominant barotropic structure and, therefore, the SSS anomalies detected by Aquarius represent net mass exchanges between the shelf and the deep ocean. The net cross-shelf volume flux is 1.21 Sv. This outflow is largely compensated by an inflow from the Patagonian shelf.
机译:高分辨率模型用于表征西南大西洋地区里约热内卢(RdlP)和Patos / MirimLagoon的淡水排放所产生的海面盐度(SSS)变异的主要模式。我们确定了SSS变异性的三种主导模式。前两个研究中已经讨论过的前两个代表了大陆架上淡水羽流的季节变化和年际变化。迄今为止尚未讨论过的SSS变率的第三种模式代表了架子与深海之间的盐度交换。使用浮标和被动示踪剂进行的诊断研究确定了淡水羽流所采取的途径。在南方冬季(JJA),羽流离开BMC以北的大陆架区域。在南方夏季(DJF)期间,羽流更直接地夹带到BMC中。敏感性研究表明,风应力强迫的高频分量控制烟羽的垂直结构,而风应力强迫的低频分量和RdlP放电的年际变化控制烟羽的水平结构。动力学分析表明,跨架流具有主要的正压结构,因此,水瓶座探测到的SSS异常代表了架子和深海之间的净质量交换。交叉架的净体积通量为1.21 Sv。这种流出在很大程度上由来自巴塔哥尼亚大陆架的流入所补偿。

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