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Evaluation of coastal perturbations: A new mathematical procedure to detect changes in the reference state of coastal systems

机译:海岸扰动的评估:一种新的数学程序,用于检测海岸系统参考状态的变化

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摘要

The pressure exerted by human activities on living systems has become so intense that it is inspiring the inception of a global network of monitoring of the biosphere and the use of robust statistical procedures to detect potential changes. Here, we propose a new multivariate non-parametric procedure, based on the Mahalanobis generalised distance and a simplification of the multiple response permutation procedure to identify rapidly changes in any natural systems. The procedure can be virtually coupled on all monitoring programmes and is not influenced by missing data, a common feature found in many ecological databases. In France, physical, chemical and biological variability of coastal waters have been monitored since 1997 by the SOMLIT Network. Applied to this data set, this technique enabled a first quantification of the impacts of human disturbance through changes in the concentration of nutrients. Our results revealed how climate may interact with anthropogenic pressure to alter coastal marine systems and suggest a synergism between nutrient enrichment, human activities and local climatic conditions. Indeed some effects of climate (e.g. insolation duration - increase in duration of daylight) may attenuate the fertility of coastal systems, while some others (e.g. precipitation) amplify the human signals.
机译:人类活动对生命系统施加的压力已经变得如此之大,以至于激发了建立全球生物圈监测网络并使用可靠的统计程序来发现潜在变化的灵感。在这里,我们提出了一种新的多元非参数过程,该过程基于Mahalanobis广义距离并简化了多响应置换过程以识别任何自然系统中的快速变化。该程序实际上可以与所有监视程序耦合,并且不受丢失数据的影响,丢失数据是许多生态数据库中的常见功能。在法国,自1997年以来,SOMLIT网络一直在监测沿海水域的物理,化学和生物变异性。应用于该数据集,该技术可以通过营养物浓度的变化来首次量化人为干扰的影响。我们的研究结果揭示了气候如何与人为压力相互作用以改变沿海海洋系统,并暗示了养分富集,人类活动与当地气候条件之间的协同作用。实际上,气候的某些影响(例如日照持续时间-日光持续时间的增加)可能会削弱沿海系统的肥力,而其他一些影响(例如降水)则会放大人的信号。

著录项

  • 来源
    《Ecological indicators》 |2011年第5期|p.1290-1300|共11页
  • 作者单位

    Laboratoire d'Oceanologie et de Geosciences, UMR CNRS 8187 (LOG), Station Marine de Wimereux, 28 avenue Foch, 62930 Wimereux, France,University Bordeaux I - Laboratoire d'Oceanographie Biologique UMR CNRS 5805, Rue du Prjolyet, 33120 Arcachon, France;

    Centre National de la Recherche Scientifique. Universite des Sciences et Technologies de Lille - Lille 1, Laboratoire d'Oceanologie et de Geosciences, UMR CNRS 8187 (LOG), 28 avenue Foch, 62930 Wimereux. France;

    University Bordeaux I - Laboratoire d'Oceanographie Biologique UMR CNRS 5805, Rue du Prjolyet, 33120 Arcachon, France;

    Institut Universitaire Europeen de la Mer UMS CNRS 3113, Universite Europeenne de Bretagne, Technopole Brest-lroise, Place Nicolas Copernic, 29280 Plouzane, France;

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

    coastal systems; monitoring; SOMLIT; climate change; anthropogenic nutrient enrichment;

    机译:沿海系统;监控;SOMLIT;气候变化;人为营养素富集;

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