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Pelagic effects of offshore wind farm foundations in the stratified North Sea

机译:分层北海中海上风电场基础的浮游效应

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摘要

A recent increase in the construction of Offshore Wind Farms (OWFs) has initiated numerous environmental impact assessments and monitoring programs. These focus on sea mammals, seabirds, benthos or demersal fish, but generally ignore any potential effects OWFs may have on the pelagic ecosystem. The only work on the latter has been through modelling analyses, which predict localised impacts like enhanced vertical mixing leading to a decrease in seasonal stratification, as well as shelf-wide changes of tidal amplitudes. Here we provide for the first-time empirical bio-physical data from an OWF. The data were obtained by towing a remotely operated vehicle (TRIAXUS ROW) through two non-operating OWFs in the summer stratified North Sea. The undulating TRIAXUS transects provided high-resolution CTD data accompanied by oxygen and chlorophyll-a measurements. We provide empirical indication that vertical mixing is increased within the OWFs, leading to a doming of the thermocline and a subsequent transport of nutrients into the surface mixed layer (SML). Nutrients were taken up rapidly because underwater photosynthetically active radiation (PAR) enabled net primary production in the entire water column, especially within submesoscale chlorophyll-a pillars that were observed at regular intervals within the OWF regions. Video Plankton Recorder (VPR) images revealed distinct meroplankton distribution patterns in a copepod-dominated plankton community. Hydroacoustic records did not show any OWF effects on the distribution of pelagic fish. The results of a pre-OWF survey show however, that it is difficult to fully separate the anthropogenic impacts from the natural variability. (C) 2017 Elsevier Ltd. All rights reserved.
机译:最近海上风电场(OWF)建设的增加启动了许多环境影响评估和监测计划。这些关注于海洋哺乳动物,海鸟,底栖生物或沉水鱼类,但通常忽略了OWF对中上层生态系统可能产生的任何潜在影响。后者的唯一工作是通过模型分析,该模型分析可预测局部影响,例如增强的垂直混合会导致季节分层的减少以及潮汐幅度的全层变化。在这里,我们提供了OWF的首次经验生物物理数据。数据是在夏季北海分层时,通过将两个非运行的OWF拖曳一辆遥控车辆(TRIAXUS ROW)获得的。起伏的TRIAXUS样面提供了高分辨率的CTD数据以及氧气和叶绿素a的测量值。我们提供的经验表明,OWF内的垂直混合增加,导致温跃层隆起,随后营养物质进入表面混合层(SML)。营养物质迅速吸收,因为水下的光合有效辐射(PAR)能够在整个水柱中实现净初级生产,尤其是在OWF区域内定期观察到的亚中尺度叶绿素a柱内。视频浮游生物记录仪(VPR)图像显示了以pe足类为主的浮游生物群落中不同的浮游生物分布模式。水声记录未显示OWF对浮游鱼类的分布有任何影响。然而,OWF之前的调查结果表明,很难将人为影响与自然变异完全区分开。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Progress in Oceanography》 |2017年第8期|154-173|共20页
  • 作者单位

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Zentrum Mat & Kustenforsch GmbH, Helmhollz Zentrum Geesthacht, Max Planck Str 1, D-21502 Geesthacht, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Zentrum Mat & Kustenforsch GmbH, Helmhollz Zentrum Geesthacht, Max Planck Str 1, D-21502 Geesthacht, Germany;

    Zentrum Mat & Kustenforsch GmbH, Helmhollz Zentrum Geesthacht, Max Planck Str 1, D-21502 Geesthacht, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Res Grp Sci Comp, Bundesstr 45a, D-20146 Hamburg, Germany;

    Zentrum Mat & Kustenforsch GmbH, Helmhollz Zentrum Geesthacht, Max Planck Str 1, D-21502 Geesthacht, Germany;

    Univ Hamburg, Inst Meereskunde, Bundesstr 53, D-20146 Hamburg, Germany;

    Univ Hamburg, Inst Meereskunde, Bundesstr 53, D-20146 Hamburg, Germany;

    Zentrum Mat & Kustenforsch GmbH, Helmhollz Zentrum Geesthacht, Max Planck Str 1, D-21502 Geesthacht, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

    Carl von Ossietzky Univ Oldenburg, Inst Chem & Biol Marine Environm, Schleusenstr 1, D-26382 Wilhelmshaven, Germany;

    Univ Hamburg, Inst Hydrobiol & Fischereiwissensch, Grosse Elbstr 133, D-22767 Hamburg, Germany;

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

    Offshore wind farms; TRIAXUS ROTV; Offshore structures; Pelagic environment; Chlorophyll; North Sea;

    机译:海上风电场;TRIAXUS ROTV;海上结构;生态环境;叶绿素;北海;

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