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Assessing the impact of marine wind farms on birds through movement modelling

机译:通过运动建模评估海上风电场对鸟类的影响

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摘要

Advances in technology and engineering, along with European Union renewable energy targets, have stimulated a rapid growth of the wind power sector. Wind farms contribute to carbon emission reductions, but there is a need to ensure that these structures do not adversely impact the populations that interact with them, particularly birds. We developed movement models based on observed avoidance responses of common eider Somateria mollissima to wind farms to predict, and identify potential measures to reduce, impacts. Flight trajectory data that were  collected post-construction of the Danish Nysted offshore wind farm were used to parameterize competing models of bird movements around turbines. The model most closely fitting the observed data incorporated individual variation in the minimum distance at which birds responded to the turbines. We show how such models can contribute to the spatial planning of wind farms by assessing their extent, turbine spacing and configurations on the probability of birds passing between the turbines. Avian movement models can make new contributions to environmental assessments of wind farm developments, and provide insights into how to reduce impacts that can be identified at the planning stage.
机译:技术和工程的进步,以及欧盟的可再生能源目标,刺激了风电行业的快速增长。风电场有助于减少碳排放,但是有必要确保这些结构不会对与其相互作用的种群,特别是鸟类产生不利影响。我们基于观察到的常见绒毛猴对风电场的回避响应,开发了运动模型,以预测和确定减少影响的潜在措施。丹麦Nysted海上风电场建设后收集的飞行轨迹数据用于参数化涡轮机周围鸟类运动的竞争模型。该模型最接近所观察到的数据,并结合了鸟类对涡轮机响应的最小距离的个体变化。我们通过评估它们的范围,涡轮机间距以及鸟在涡轮机之间通过的概率的配置,来展示此类模型如何有助于风电场的空间规划。鸟类运动模型可以为风电场发展的环境评估做出新的贡献,并提供有关如何减少在计划阶段可以确定的影响的见解。

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