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Seasonal variability of coastal upwelling and the upwelling front off central Chile

机译:智利中部沿海上升流和上升流锋的季节性变化

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We analyze sea surface temperature (SST) and chlorophyll a (Chl a) satellite data to study the seasonal variability of the upwelling off central Chile. Data from an oceanographic cruise are used to illustrate the vertical characteristics of the upwelling front and the geostrophic flow. The mean offshore extension of the SST front in summer is 110 km. There, SST changes from —13.5°C near the coast to 14.5°-15°C offshore. Hydrographic data show that the thermocline becomes progressively shallower toward the coast but that at a certain distance it abruptly bends to form a horizontal front that extends until —50 m depth. Satellite data show that the Chl a decays exponentially offshore, and a concentration of —1 mg M -3 indicates the offshore limit of the frontal region. The SST front observed most of the year is absent in winter, when the coastal water is only slightly colder than the oceanic one; however, relatively higher Chl a values remain present near the coast during winter. Northwest of Punta Lavapie (37°15'S), the frontal region is located progressively farther offshore, suggesting that a branch of an equatorward surface jet separates from the coast to form a meander, which is associated with a filament of cold water and an anticyclonic eddy observed frequently in this zone during summer. Hydrographic data show that isotherm and current disturbances related to mesoscale eddies can extend several hundreds of meters below the surface. In contrast, the coastal jet is quite shallow, extending until,150 m depth.
机译:我们分析了海表温度(SST)和叶绿素a(Chl a)卫星数据,以研究智利中部上升流的季节性变化。来自海洋航行的数据用于说明上升流锋和地转流的垂直特征。夏季,SST锋面的平均海上延伸长度为110公里。那里的海温从海岸附近的—13.5°C变为海上的14.5°-15°C。水文数据表明,温床向海岸逐渐变浅,但在一定距离处突然弯曲,形成水平前沿,一直延伸到-50 m深度。卫星数据显示,Chla在近海呈指数衰减,浓度为-1 mg M -3表示额叶区域的离岸界限。一年中大部分时间观测到的海温都没有,冬季时沿海水只比海洋水略冷。但是,冬季期间,海岸附近仍然存在相对较高的Chla值。蓬塔拉瓦皮(Punta Lavapie)的西北部(37°15'S)逐渐位于离海较远的地方,这表明赤道面射流的一个分支与海岸分开形成曲折,这与冷水细丝和反气旋涡相关夏季在该区域经常观察到。水文数据表明,与中尺度涡旋有关的等温线和电流扰动可以在地表以下延伸数百米。相反,沿海喷流很浅,一直延伸到150 m深度。

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