首页> 外文期刊>Progress in Oceanography >Swirling in the ocean: Immature loggerhead turtles seasonally target old anticyclonic eddies at the fringe of the North Atlantic gyre
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Swirling in the ocean: Immature loggerhead turtles seasonally target old anticyclonic eddies at the fringe of the North Atlantic gyre

机译:在海洋中旋转:不成熟的龟季节性地以北大西洋回旋带边缘的旧反气旋涡为目标

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摘要

In a highly heterogeneous open ocean, swirling oceanographic structures such as eddies drive ocean productivity and aggregate many predators, including oceanic sea turtles. During early life, juvenile loggerhead turtles can spend more than a decade feeding on gelatinous zooplankton in the open ocean, but the way they use mesoscale eddies is still poorly understood. Here, we investigated the relationships between (1) the distribution and (2) the diving behaviour of immature loggerhead turtles of the North-East Atlantic and mesoscale eddies. For this purpose, 28 turtles were satellite tracked from the Azores archipelago. Using the Residence Time (RT) analysis as a proxy to identify high-use areas, the tracks and dive data of the turtles as well as drifter trajectories were analysed in relation to eddy characteristics, which include eddy radius, amplitude, type (cyclonic vs. anticyclonic), lifetime and region (inner core, outer core, periphery). The turtles dispersed widely using many distinct high-use areas. Although there were always more cyclones than anticyclones over the study region, the individuals seasonally associated more with the inner cores of old anticyclonic eddies, likely due to the higher productivity of decaying anticyclones. The comparison between passive drifters and turtles' movements showed an active swimming behaviour from the turtles rather than a passive advection through currents. Three dive types were identified, and the one associated with the highest RT was characterized by dives of medium duration and depths in the inner cores of eddies. This study is the first to highlight strong affinities of oceanic loggerhead turtles for old anticyclonic eddies around the Azores, suggesting a greater complexity of these warm-core eddies that appear to be much more productive than cyclones.
机译:在高度异质的开放海洋中,漩涡状的海洋结构(如漩涡)推动了海洋生产力,并聚集了许多捕食者,包括海洋海龟。在早期生活中,幼小logger可能会花费超过十年的时间在公海觅食胶状浮游动物,但对中尺度涡旋的使用方式仍知之甚少。在这里,我们研究了(1)东北大西洋未成熟的龟的潜水行为与(2)中型涡旋之间的关系。为此,从亚速尔群岛上追踪了28只海龟。使用停留时间(RT)分析作为识别高使用区域的代理,根据涡流特性分析了海龟的轨迹和潜水数据以及漂流轨迹,包括涡流半径,振幅,类型(旋流与反气旋),寿命和区域(内芯,外芯,外围)。乌龟在许多不同的高使用区域广泛分布。尽管在研究区域中总是比旋风分离器多,但由于季节性旋风分离器的生产率较高,因此个体与季节性反旋风涡旋的内在联系更多。被动漂流者与海龟运动之间的比较表明,海龟主动游泳,而不是通过水流被动平流。确定了三种潜水类型,其中一种与最高RT相关的特征是潜水时间长短和漩涡内层深度的特征。这项研究是第一个强调海洋龟对亚速尔群岛周围的旧反气旋涡旋具有强亲和力的研究,这表明这些暖核涡旋的复杂性更高,这些旋涡比涡旋气旋的生产力要高得多。

著录项

  • 来源
    《Progress in Oceanography》 |2019年第julaaauga期|345-358|共14页
  • 作者单位

    Univ Acores, Dept Oceanog & Pescas, IMAR Inst Mar, P-9901862 Horta, Portugal|Univ Acores, OKEANOS, Dept Oceanog & Pescas, P-9901862 Horta, Portugal;

    UPMC Univ Paris 06, LOCEAN, CNES Sorbonne Univ, 4 Pl Jussieu, F-75005 Paris, France;

    Univ Florida, Archie Carr Ctr Sea Turtle Res, POB 118525, Gainesville, FL 32611 USA|Univ Florida, Dept Biol, POB 118525, Gainesville, FL 32611 USA;

    DRAM, Secretaria Reg Mar Ciencia & Tecnol, P-9901862 Horta, Portugal;

    Univ Florida, Archie Carr Ctr Sea Turtle Res, POB 118525, Gainesville, FL 32611 USA|Univ Florida, Dept Biol, POB 118525, Gainesville, FL 32611 USA;

    Univ Acores, Dept Oceanog & Pescas, IMAR Inst Mar, P-9901862 Horta, Portugal|Univ Acores, OKEANOS, Dept Oceanog & Pescas, P-9901862 Horta, Portugal|Univ Acares, MARE Marine & Environm Sci Ctr, P-9901862 Horta, Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Azores archipelago; Mesoscale eddies; Eddy cores; Diving behaviour; Caretta caretta; Residence Time;

    机译:亚速尔群岛;中尺度涡旋;涡流核心;潜水行为;鱼;居住时间;

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