首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Temporal and spatial patterns in wind stress and wind stress curl over the central Southern California Bight
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Temporal and spatial patterns in wind stress and wind stress curl over the central Southern California Bight

机译:风应力的时空格局和南加州中部海岸线的风应力卷曲

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摘要

In 2001, the U.S. Geological Survey, together with several other federal and municipal agencies, began a series of field programs to determine along and cross-shelf transport patterns over the continental shelves in the central Southern California Bight. As a part of these programs, moorings that monitor winds were deployed off the Palos Verdes peninsula and within San Pedro Bay for six 3-4 month summer and winter periods between 2001 and 2008. In addition, nearly continuous records of winds for this 7-year period were obtained from a terrestrial site at the coast and from a basin site offshore of the long-term coastal site. The mean annual winds are downcoast at all sites. The alongshelf components of wind stress, which are the largest part of the low-frequency wind stress fields, are well correlated between basin, shelf and coastal sites. On average, the amplitude of alongshelf fluctuations in wind stress are 3-4 times larger over the offshore basin, compared to the coastal site, irrespective of whether the fluctuations represent the total, or just the correlated portion of the wind stress field. The curl in the large-scale wind stress tends to be positive, especially in the winter season when the mean wind stress is downcoast and larger at the offshore basin site than at the beach. However, since the fluctuation in wind stress amplitudes are usually larger than the mean, periods of weak negative curl do occur, especially in the summer season when the largest normalized differences in the amplitude of wind stress fluctuations are found in the nearshore region of the coastal ocean. Even though the low-frequency wind stress field is well-correlated over the continental shelf and offshore basins, out to distances of 35. km or more from the coast, winds even 10. km inshore of the beach do not represent the coastal wind field, at least in the summer months. The seasonal changes in the spatial structures in wind stress amplitudes suggest that an assessment of the amplitude of the responses of coastal ocean processes to wind forcing is complex and that the responses may have significant seasonal structures.
机译:2001年,美国地质调查局与其他几个联邦和市政机构共同启动了一系列实地计划,以确定在南加州中部中部大陆架上沿陆架和跨架运输的方式。作为这些计划的一部分,在2001年至2008年夏季和冬季的六个3-4个月的夏季和冬季,在帕洛斯维德斯半岛附近和圣佩德罗湾内部署了监视风的系泊设备。此外,该7-一年的时间是从沿海的陆地站点和长期沿海站点的海上盆地站点获得的。所有站点的年平均风速都在下降。风应力的沿架成分是低频风应力场的最大部分,在盆地,陆架和沿海地区之间具有很好的相关性。平均而言,与沿海地区相比,海上应力沿陆架波动的幅度是沿海地区的3-4倍,而不论这些波动代表风应力场的整体还是相关部分。大规模风应力的卷曲趋向于正,特别是在冬季,当冬季平均风应力是沿海岸向下的,并且在海上盆地部位比在海滩处更大。但是,由于风应力幅值的波动通常大于平均值,因此会出现较弱的负卷曲,特别是在夏季,当沿海地区的近岸地区风应力幅值的幅值出现最大的归一化差异时海洋。即使低频风应力场在大陆架和近海盆地上具有良好的相关性,在距海岸35. km或更远的距离处,甚至海滩近海10 km的风也不代表沿海风场。 ,至少在夏季月份。风应力振幅的空间结构的季节性变化表明,对沿海海洋过程对风强迫的响应幅度的评估很复杂,并且这些响应可能具有重要的季节性结构。

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