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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >On the seasonality of waters below the seasonal thermocline in the Gulf of Cadiz
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On the seasonality of waters below the seasonal thermocline in the Gulf of Cadiz

机译:在Cadiz湾季节性热水下水下的水域季节性

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摘要

This work examines the seasonal thermohaline variability in the Gulf of Cadiz (SW Iberian Peninsula) based on 2009-2020 repeated hydrographic observations. Subsurface water types are assorted within the mixing triangle formed by Mediterranean and Eastern North Atlantic Central Waters (ENACW). A sharp interface between 400-500 m depth separates the saline Mediterranean Overflow Waters (MOW) from the ENACW salinity minimum siting atop. The water column is warmer and more saline in winter (cooler, fresher in summer). Maximum differences of up to 0.6 degrees C and 0.15 emanate from the ENACW/MOW interface. Changes appear related to the wind-driven seasonal alternation of vertical displacement of isopycnals and poleward-equatorward transports. Upwelling-favorable winds in summer steer positive Ekman pumping velocities, which seem responsible for cooling over the ENACW salinity minimum. Below, the warm, saline signal of subtropical waters from the Azores current is attenuated by the summer approach of cooler, fresher waters from the Portugal Current system. The change of sign of Ekman pumping in winter suggests subsidence of isopycnals and warming/salinification under the seasonal thermocline. Seasonal thermohaline changes of waters leaving the Mediterranean Sea are insufficient to explain the variations under the ENACW/MOW interface. Rather, variability of Atlantic waters entrained by the overflow seem to dictate these differences.
机译:这项工作探讨了基于2009 - 2020年的反复水文观测的Cadiz(SW Iberian Meninsula)的季节性热卤素变异性。地下水类型在地中海和东北大西洋中央水域(ENACW)形成的混合三角形中。 400-500米深度之间的尖锐界面将盐水地中海溢流水(MOW)与ENACW盐度最低选址分开。冬季水柱是较温暖的,盐水较温暖(夏季冷却器,夏季更新)。从ENACW / MOW界面上最大差异高达0.6摄氏度和0.15。变化与垂直位移的垂直位移和极向赤道传输有关。夏季方向性ekman泵送速度的升高良好风,似乎负责冷却ENACW盐度最小。下面,来自亚速尔群流电流的亚热带水流的温暖,盐水信号通过夏季方法衰减,从葡萄牙电流系统中排斥水域。冬季ekman泵送的迹象变化表明了季节性热液下的等体菌和盐水沉降。离开地中海的水域的季节性热卤素变化不足以解释ENACW / MOW界面下的变化。相反,溢流夹带的大西洋水域的可变性似乎决定了这些差异。

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