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Interannual and Decadal Variations in Cross-Shelf Transport in the Gulf of Alaska

机译:阿拉斯加湾跨架运输的年际和年代际变化

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The marine ecosystem of the Gulf of Alaska (GOA) is one of the richest on the planet. The center of the GOA is characterized by high-nutrient and low-chlorophyll-a concentration. Recent observational studies suggest that advection of iron-rich coastal water is the primary mechanism controlling open ocean productivity. Specifically, there is evidence that mesoscale eddies along the coastal GOA entrain iron-rich coastal waters into the ocean interior. This study investigates the cross-shelf transport statistics in the GOA using a free-surface, hydrostatic, eddy-resolving primitive equation model over the period 1965-2004. The statistics of coastal water transport are computed using a model passive tracer, which is continuously released at the coast. The passive tracer can thus be considered a proxy for coastal biogeochemical quantities such as silicate, nitrate, iron, or oxygen, which are critical for explaining the GOA ecosystem dynamics. On average along the Alaska Current, it has been shown that at the surface while the advection of tracers by the average flow is directed toward the coast consistent with the dominant downwelling regime of the GOA, it is the mean eddy fluxes that contribute to offshore advection into the gyre interior. South of the Alaskan Peninsula, both the advection of tracers by the average flow and the mean eddy fluxes contribute to the mean offshore advection. On interannual and longer time scales, the offshore transport of the passive tracer in the Alaskan Stream does not correlate with large-scale atmospheric forcing, nor with local winds. In contrast in the Alaska Current region, stronger offshore transport of the passive tracer coincides with periods of stronger downwelling (in particular during positive phases of the Pacific decadal oscillation), which trigger the development of stronger eddies.
机译:阿拉斯加湾(GOA)的海洋生态系统是地球上最丰富的海洋生态系统之一。 GOA的中心特征是高营养素和低叶绿素-a浓度。最近的观测研究表明,对流富含铁的沿海水是控制开放海洋生产力的主要机制。具体而言,有证据表明,沿沿海GOA的中尺度涡流将富含铁的沿海水带入海洋内部。这项研究使用1965-2004年期间的自由表面静水涡旋解析原始方程模型研究了GOA中的跨架运输统计数据。使用模型被动示踪剂计算沿海水运输的统计数据,该模型在海岸不断释放。因此,可以将被动示踪剂视为沿海生物地球化学量(例如硅酸盐,硝酸盐,铁或氧气)的替代物,这对于解释GOA生态系统动力学至关重要。平均而言,沿阿拉斯加洋流已显示出,在地面上,示踪剂的平均对流沿GOA占主导地位的向下流态,被导向海岸,这是造成近海对流的平均涡通量进入回旋室内。在阿拉斯加半岛南部,示踪剂对流的平均流量和平均涡流均对海上平均对流产生影响。在年际和更长的时间尺度上,阿拉斯加溪流中无源示踪剂的离岸运输与大规模的大气强迫和局部风无关。相比之下,在阿拉斯加洋流地区,无源示踪剂的更强的海上运输与更强的下沉时期相吻合(尤其是在太平洋年代际振荡的积极阶段),这触发了更强涡旋的发展。

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  • 来源
    《Journal of Physical Oceanography 》 |2009年第4期| 1050-1059| 共10页
  • 作者单位

    School of Earth and Atmospheric Sciences, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, GA 30332-0340;

    School of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta, Georgia;

    Institute of Marine and Coastal Sciences, Rutgers, The State University of New Jersey, New Brunswick, New Jersey;

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