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Wind, waves, and surface currents in the Southern Ocean: observations from the Antarctic Circumnavigation Expedition

机译:南海的风,波浪和表面电流:南极环游探险的观察

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The Southern Ocean has a profound impact on the Earth's climate system. Its strong winds, intense currents, and fierce waves are critical components of the air–sea interface and contribute to absorbing, storing, and releasing heat, moisture, gases, and momentum. Owing to its remoteness and harsh environment, this region is significantly undersampled, hampering the validation of prediction models and large-scale observations from satellite sensors. Here, an unprecedented data set of simultaneous observations of winds, surface currents, and ocean waves is presented, to address the scarcity of in situ observations in the region – https://doi.org/10.26179/5ed0a30aaf764 ( Alberello et?al. ,? 2020 c ) and https://doi.org/10.26179/5e9d038c396f2 ( Derkani et?al. ,? 2020 ) . Records were acquired underway during the Antarctic Circumnavigation Expedition (ACE), which went around the Southern Ocean from December?2016 to March?2017 (Austral summer). Observations were obtained with the wave and surface current monitoring system WaMoS-II, which scanned the ocean surface around the vessel using marine radars. Measurements were assessed for quality control and compared against available satellite observations. The data set is the most extensive and comprehensive collection of observations of surface processes for the Southern Ocean and is intended to underpin improvements of wave prediction models around Antarctica and research of air–sea interaction processes, including gas exchange and dynamics of sea spray aerosol particles. The data set has further potentials to support theoretical and numerical research on lower atmosphere, air–sea interface, and upper-ocean processes.
机译:南海对地球的气候系统产生了深远的影响。它的强风,强烈的电流和凶猛的波浪是海洋界面的关键部件,有助于吸收,储存和释放热量,水分,气体和势头。由于其遥感和恶劣的环境,该地区非常缺乏采样,阻碍了预测模型的验证以及卫星传感器的大规模观测。在这里,提出了一种前所未有的令人前所未有的风波,表面电流和海浪的数据集,以解决区域中原位观测的稀缺 - https://doi.org/10.26179/5ed0a30aaf764(Alberello等。 ,?2020 c)和https://doi.org/10.26179/5E9d038c396f2(derkani et?al。,?2020)。在南极环游探险期间获得记录,在南极环游探险(ACE),从12月到达南部海洋?2016到3月?2017年(澳累展夏季)。利用波浪和表面电流监测系统Wamos-II获得了观察,该方法使用海洋雷达扫描海洋表面。评估测量的质量控制并与可用卫星观察进行比较。数据集是南海的最广泛综合的表面过程观察,旨在支持南极洲周围的波预测模型以及海洋互动过程的研究,包括海水交换和海浪气雾粒子的动态。数据集具有进一步的潜力,以支持降低大气,空中界面和上海工艺的理论和数值研究。

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