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The environmental impact from an offshore windfarm: Challenge and evaluation methodology based on an ecosystem approach

机译:基于生态系统方法的挑战和评估方法的环境影响

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Responding to pressure to combat climate change by cutting greenhouse gasses emission, Offshore Wind Farm (OWF) is currently the most developed of all the renewable energy options that are based in the marine environment. However, despite its perceived benefits, OWF construction will also lead to direct and indirect impacts on the ecosystem. Nonetheless, surprisingly few studies have sought to combine trophic web modelling tools with the framework of OWF impact assessment. The objective of this study was to develop a holistic and integrated ecosystem approach as a complementary methodology to the traditional OWF environmental impact assessment. To that end, trophic web models coupled with Ecological Network Analysis indices were used to study the structure and functioning of three sedimentary types (sandy gravel, gravelly sand, and medium sand), identified on the proposed site for a new offshore wind farm at Dieppe-Le Treport (Normandy coast). The results from this study demonstrated that the trophic structures are strongly linked to the sedimentary types. The results also highlighted the existence of a maturity gradient moving between the three types of sediment identified. This study underlined the challenge and the need to have detailed biomass data on a maximum of biological compartments to enable an effective OWF impact assessment. We strongly consider that our approach will provide useful and practical information for environmental decision-makers and stakeholders. The same approach can be applied to other new OWF constructions in European or international waters.
机译:通过切割温室气体排放来应对对抗气候变化的压力,海上风电场(OWF)目前最开发的所有可再生能源选项都是在海洋环境中。然而,尽管其感知益处,但OWF建设也将导致对生态系统的直接和间接影响。尽管如此,令人惊讶的是,令人惊讶的是,很少有研究将营养网建模工具与OWF影响评估的框架相结合。本研究的目的是发展整体和综合生态系统方法,作为传统的OWF环境影响评估的互补方法。为此,使用与生态网络分析指标相结合的营养网模型用于研究三种沉积类型的结构和功能(砂质砾石,砾石沙,中等沙子),在Dieppe的新海上风电场的拟议地点鉴定-le treport(诺曼底海岸)。本研究的结果证明营养结构与沉积型有关。结果还强调了所确定的三种沉积物之间的成熟度梯度的存在。本研究强调了挑战,需要在最多的生物隔间上具有详细的生物量数据,以实现有效的OWF影响评估。我们强烈认为,我们的方法将为环境决策者和利益攸关方提供有用和实用的信息。相同的方法可以应用于欧洲或国际水域中的其他新OWF建筑。

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