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Southeast Florida Shelf circulation and volume exchange, observations of km-scale variability

机译:佛罗里达州东南部大陆架环流和体积交换,千米尺度变化的观测

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摘要

Tides, wind and the Florida Current affect the dynamics of the South Florida continental shelf over a range of scales. Two field experiments in the winter (LARGO1) and summer (LARGO2) employed a high-frequency (HF) Ocean Surface Current Radar (OSCR). moored current meters and a boat-mounted Acoustic Doppler Current Profiler (ADCP) to study the circulation over the southeast Florida Shelf. The OSCR measured near-surface currents over an approximately 30 km by 30 km grid, with 1-km horizontal resolution, covering the shelf and extending offshore of the shelf break. By using observed 20-min surface vector field time series to backward track patches with defined volumes of shelf water, their recent origin was identified. The proportion of surface volume flux past various points on the shelf that originated offshore, along the shelf edge and inshore was then estimated. Onshore winds were linked to periods of transport of offshore water all the way to the inner shelf during both the summer and winter seasons. In LARGO2 the exchange of offshore water with water over the middle and inner shelf was closely linked to onshore and downcoast winds. Simulated particle trajectories revealed that Florida Current spin-off eddies caused off-shelf water to be advected onto the middle (LARGO1) or outer (LARGO2) shelf. However, because eddies had short residence times and small spatial scales their contribution to the overall exchange was much smaller than the wind.
机译:潮汐,风和佛罗里达洋流在一定范围内影响着南佛罗里达大陆架的动力学。在冬季(LARGO1)和夏季(LARGO2)进行了两次野外实验,采用了高频(HF)海面电流雷达(OSCR)。系泊电流计和船载声多普勒电流剖面仪(ADCP),以研究佛罗里达东南部大陆架上的环流。 OSCR在大约30 km x 30 km的网格上测量了近地表电流,水平分辨率为1 km,覆盖了架子并延伸到架子断裂的近海处。通过使用观察到的20分钟表面矢量场时间序列来回溯具有确定体积的架子水的斑块,从而确定了它们的最近起源。然后估算了沿陆架边缘和近海从陆架上起源于陆架各个点的表面体积通量的比例。在夏季和冬季,陆上风与海上水一直输送到内层架的时期有关。在LARGO2中,中层和内层陆架之间的海上水交换与陆上风和沿海风密切相关。模拟的粒子轨迹显示,佛罗里达洋流的旋涡引起了现成的水被平流到中层(LARGO1)或外层(LARGO2)。但是,由于涡流的停留时间短且空间尺度小,因此它们对整体交换的贡献远小于风。

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