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Water mass, front and meanders of the Brazil Current seen through acoustics: A preliminary study

机译:通过声学观察到的巴西水流,水流的曲折性:初步研究

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The Brazil Current (BC) is perhaps the least studied subtropical boundary current of the world's oceans. Within this region, the BC develops vigorous meanders and rings. A combination of numerical simulations and observational studies are important tools for unravelling these phenomena. Direct current measurements are rare and usually too short to depict the mean, long term circulation patterns. Similarly, quasi-synoptic hydrographic data in the region is sparse. Acoustic waves are an efficient tool for covering large regions of the water column in a synoptic way. Acoustic tomography can, therefore, be useful to better predict, through inversion for the effective sound speed field and its assimilation to a circulation model, the oceanographic fields of interest (temperature, salinity, density). Such information is particularly important for initialization and data assimilation to regional models for which small and meso-scale processes are of fundamental interest. In this paper, a preliminary study of acoustic propagation modelling through one vertical section off the Brazilian southeastern coast is presented. The acoustic rays are trapped in a minimum sound speed channel bounded by Antarctic Intermediate Water and Upper Circumpolar Deep Water. Between this so-created deep channel and the shel break, one interesting region from the acoustic viewpoint is identified. Notable variations in the transmission loss field are found in this region when the Brazil Current front is moving. In addition, the results show the baroclinic currents more sensitive to salinity variations than sound speed structure, as well as acoustic propagation.
机译:巴西电流(BC)也许是世界上最受研究的亚热带边界电流。在该地区,BC发育剧烈的蜿蜒和环。数值模拟和观察性研究的组合是解开这些现象的重要工具。直流测量是罕见的,通常太短暂,无法描绘平均值,长期循环模式。类似地,该区域中的准偶极水文数据稀疏。声波是一种以概要方式覆盖水柱的大区域的有效工具。因此,声学断层扫描可以通过对循环模型的反转来更好地预测,通过反转来更好地预测,流苏的海洋景田(温度,盐度,密度)。这些信息对于初始化和数据同化尤为重要,对区域模型的初始化和中小型过程具有根本兴趣的区域模型。本文介绍了通过巴西东南海岸的一个垂直截面的声学传播建模初步研究。声射线被捕获在由南极中间水和上部循环深水有限的最小声速通道中。在这种如此的深度通道和避难所之间,识别来自声学观点的一个有趣区域。当巴西电流前部移动时,在该区域中发现传输损耗场中的显着变化。此外,结果表明,对盐度变化比声速结构更敏感的曲金电流,以及声学传播。

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