首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Circumpolar structure and distribution of the Antarctic Circumpolar Current fronts: 1. Mean circumpolar paths
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Circumpolar structure and distribution of the Antarctic Circumpolar Current fronts: 1. Mean circumpolar paths

机译:南极环极电流前沿的绕极结构和分布:1.平均绕极路径

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High resolution hydrographic sections and maps of the gradient of sea surface height (SSH) reveal that the Antarctic Circumpolar Current (ACC) consists of multiple jets or frontal filaments. Here we use a 15 year time series of SSH observations to determine the circumpolar structure and distribution of the ACC fronts. The jets are consistently aligned with particular streamlines along the entire circumpolar path, confirming and extending the results of an earlier study restricted to the region south of Australia. The intensity of the fronts (as measured by the cross-front gradient of SSH) varies along the fronts and the individual branches merge and diverge, often in response to interactions with bathymetry. Maps of absolute velocity at 1000 m depth derived from Argo trajectories confirm the existence of multiple current cores throughout the Southern Ocean. High resolution hydrographic sections and profiles of temperature and salinity from Argo floats are used to show that the front locations derived from fitting SSH contours to maps of SSH gradient are consistent with locations inferred from the traditional criteria based on water mass properties, suitably modified to account for multiple frontal branches. Three regions are examined in detail: the Crozet Plateau, the Kerguelen Plateau and the Scotia Sea. These examples show how recognition of the multiple jets of the ACC can help resolve discrepancies between previous studies of ACC fronts.
机译:高分辨率水文断面和海面高度梯度(SSH)的地图显示,南极绕极洋流(ACC)由多个喷流或额叶细丝组成。在这里,我们使用SSH观测值的15年时间序列来确定ACC前沿的绕极结构和分布。射流与整个绕极路径上的特定流线始终保持一致,从而证实并扩展了仅限于澳大利亚南部地区的早期研究的结果。前沿的强度(通过SSH的跨前沿梯度测量)沿前沿变化,并且各个分支合并和发散,通常是响应与测深法的交互作用。从Argo轨迹推导出的1000 m深度绝对速度图证实了整个南大洋存在着多个当前岩心。来自Argo浮标的高分辨率水文断面和温度和盐度剖面用于显示,从SSH轮廓拟合到SSH梯度图得出的前部位置与根据水质特性从传统标准推断出的位置一致,并对其进行适当修改用于多个额叶分支。详细检查了三个区域:克罗泽高原,克格伦高原和斯科舍海。这些示例说明了如何识别ACC的多个喷口如何帮助解决先前ACC前沿研究之间的差异。

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