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Pelagic primary production in the Algero-Provencal Basin by means of multisensor satellite data: focus on interannual variability and its drivers

机译:利用多传感器卫星数据在阿尔及利亚-普罗旺斯盆地进行的远洋初级生产:关注年际变化及其驱动力

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摘要

In this work, we make use of satellite estimates of chlorophyll a, photosynthetically active radiation and sea surface temperatures, to compute regional estimates of primary production integrated throughout the euphotic layer for the Algero-Provencal Basin, by means of a modified version of the vertically generalized production model. The seasonal and interannual variability of the primary production has been analysed over the decade 1997-2007. Empirical orthogonal functions analysis has been applied to decompose the variability of the primary production dataset in orthogonal modes of variability. The seasonal signal is distributed between the two first modes of variability, temporally shifted each other and respectively related to the northern (early spring) and the southern (winter) part of the basin. We found a minimum of the annual production in 2003, when a summer heatwave strongly enhanced the stratification of surface waters, further limiting the injection of nutrients into the surface layers. Maxima in the annual series are found in 1999 and 2005, due to two particularly intense and extended (in space) spring-blooms in the northern part of the basin. These two maxima, clearly identified in space and time by EOF analysis (EOF1 and EOF3), are related to strong mistral-wind interannual events occurring during winters of 1999 and 2005, preceding the blooms by some few months. We found that these production maxima are due both to a more intense production in the usual blooming area (shown by EOF1-PC1) as well as to an exceptional local production in the eastern side of the basin, off the Corsica western coasts (EOF3-PC3). Previous observations of exceptional deep-water formation events in 1999 and 2005, with easterly spots close to the primary production-observed anomalies, and the meridional character of the mistral 1999 and 2005 peaks both support the idea that such eastern PP interannual maxima would be actually due to exceptional production more than to an easterly advection of biomass from the usual bloom area. Finally, the potential link of the observed features with large-scale atmospheric forcing is discussed, and a potential relation of such interannual events with the East Atlantic pattern is drawn.
机译:在这项工作中,我们利用叶绿素a的卫星估算值,光合有效辐射和海面温度,通过修改后的垂直版本,计算了阿尔及利亚-普罗旺斯盆地整个富营养层的一次生产的区域估算值。广义生产模型。在1997年至2007年的十年中,已经分析了初级生产的季节和年际变化。已应用经验正交函数分析来分解正交性下的原始生产数据集的变异性。季节性信号分布在两个最初的变化模式之间,在时间上相互偏移,分别与盆地的北部(早春)和南部(冬季)有关。我们发现2003年的最低产量,当时夏季的热浪极大地增强了地表水的分层,进一步限制了营养物质向地表层的注入。由于该盆地北部地区出现了两次特别强烈和延伸的(在太空中)春季水华,因此年度系列中的千里马被发现于1999年和2005年。通过EOF分析(EOF1和EOF3)在空间和时间上清楚地确定了这两个最大值,这与1999年和2005年冬季发生的强背风年际事件有关。我们发现,这些产量的最大值既是由于通常的开花区产量较高(由EOF1-PC1表示),也是由于科西嘉岛西海岸外的盆地东部(EOF3- PC3)。先前对1999年和2005年异常深水形成事件的观察,东风点接近主要生产观测到的异常,以及1999年和2005年次峰的子午线特征均支持这样的观点,即东部PP年际最大值实际上是由于产量超常,而不是从通常的开花区向东平流。最后,讨论了观测特征与大规模大气强迫的潜在联系,并绘制了此类年际事件与东大西洋格局的潜在关系。

著录项

  • 来源
    《Ocean Dynamics》 |2011年第7期|p.1005-1016|共12页
  • 作者单位

    National Research Council, Institute for Coastal Marine Environment, Loc. Sa Mardini, 09170 Torre Grande, Oristano Italy;

    National Research Council, Institute for Coastal Marine Environment, Loc. Sa Mardini, 09170 Torre Grande, Oristano Italy;

    National Research Council, Institute for Coastal Marine Environment, Loc. Sa Mardini, 09170 Torre Grande, Oristano Italy;

    National Research Council, Institute for Coastal Marine Environment, Loc. Sa Mardini, 09170 Torre Grande, Oristano Italy;

    National Research Council, Institute for Coastal Marine Environment, Loc. Sa Mardini, 09170 Torre Grande, Oristano Italy;

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

    primary production; satellite; mediterranean sea; interannual variability; teleconnections;

    机译:初级生产;卫星;地中海年际变化;远程连接;

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