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Seasonal variability of the export of river discharged freshwater in the northern Gulf of Mexico

机译:墨西哥湾北部淡水河水出口的季节性变化

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Numerical simulations of the Gulf of Mexico (GoM) using the Navy Coastal Ocean Model (NCOM) predict a seasonal signal of surface salinity throughout the northern Gulf. The model variability of salinity and currents is compared to historical hydrographic data and to transport inferred from drifting buoys. Model experiments are used to examine the roles of mesoscale eddy activity and the seasonal variability of wind forcing and river discharge in connection with the upper ocean salinity field. It is shown that the annual cycle of the local winds greatly influences the fate of the Mississippi River. Model results and drifter data show that the low salinity water is directed westward over the broad Louisiana-Texas (LATEX) shelf in the fall and winter where it remains trapped to the coast. This water is transported southward as a coastally attached current and often offshore by jets associated with eddy pairs along the western continental margin. In the spring and summer, the low salinity water of the northern Gulf spreads over deeper water to the east of the Mississippi Delta where it is influenced by the offshore circulation. Mesoscale eddies associated with the Loop Current (LC) can then entrain the low salinity water and transport it to great distances from its origin.
机译:使用海军沿海海洋模型(NCOM)进行的墨西哥湾(GoM)数值模拟预测了整个北部海湾的地表盐度季节信号。将盐度和洋流的模型变异性与历史水文数据进行比较,并根据浮标进行推断。模型实验用于检验中尺度涡旋活动的作用以及与高盐度场有关的强迫风和河流流量的季节性变化。结果表明,当地风的年度周期极大地影响了密西西比河的命运。模型结果和漂移数据表明,低盐度水在秋季和冬季被引导向广阔的路易斯安那州-得克萨斯州(LATEX)架子,向西,但仍被困在海岸。这些水作为沿海水流向南输送,并经常通过与西部大陆边缘的涡流对相关的喷射器向近海输送。在春季和夏季,墨西哥湾北部的低盐度水扩散到密西西比河三角洲东部的深层水域,在那里受到近海环流的影响。然后,与回路电流(LC)相关的中尺度涡流可以夹带低盐度水并将其运输到距其起点很远的距离。

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