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Collision risk modelling for tidal energy devices: A flexible simulation-based approach

机译:潮汐能装置的碰撞风险建模:一种灵活的基于仿真方法

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摘要

The marine renewable energy industry is expanding as countries strive to reach climate targets as set out in the Paris Agreement. For tidal energy devices, the potential risk for animals to collide with a device, particularly its moving parts such as rotor blades, is often a major barrier in the consenting process. Theoretical work surrounding collision risk has commonly made use of a formulaic modelling approach. However, whilst providing a platform to assess conventional horizontal axis tidal turbines, the frameworks applied lack the flexibility to incorporate novel device designs or more complex animal movement parameters (e.g. dive trajectories). To demonstrate the novel simulation-based approach to estimating collision probabilities a hypothetical case study was used to demonstrated how the approach can assess the influence that variations in ecological and behavioural data had on collision probabilities. To do this, a tidal kite moving in a 3D figure-of-eight trajectory and a seal-shaped object were modelled and variations to angle of approach, speed and size of the animal were made. To further improve the collision risk estimates, results of the simulations were post-processed by integrating a hypothetical dive profile. The simulations showed how variation in the input parameters and additional postprocessing influence collision probabilities. Our results demonstrate the potential for using this simulation-based approach for assessing collision risk, highlighting the flexibility it offers by way of incorporating empirical data or expert elicitation to better inform the modelling process. This framework, where device type, configuration and animal-related parameters can be varied with relative simplicity, on a case-by-case basis, provides a more tailored tool for assessing a diverse range of interactions between marine renewable energy developments and receptors. In providing a robust and transparent quantitative approach to addressing collision risk this flexible approach can better inform the decision-making process and aid progress with respect to developing a renewable energy industry in a sustainable manner. Therefore, the approach outlined has clear applications that are relevant to many stakeholders and can contribute to our ability to ensure we achieve sustainable growth in the marine renewable energy industry as part of a global strategy to combat climate change.
机译:海洋可再生能源产业正在扩大,因为国家努力达到巴黎协定所载的气候目标。对于潮汐能装置,动物与装置碰撞的潜在风险,特别是其移动部件,例如转子叶片,通常是同意过程中的主要屏障。围绕碰撞风险的理论工作通常利用公式化建模方法。然而,虽然提供了一种评估传统水平轴潮汐涡轮机的平台,但是框架应用缺乏包含新颖设备设计或更复杂的动物运动参数的灵活性(例如,潜水轨迹)。为了展示基于新的仿真方法来估算碰撞概率,使用假设的案例研究来证明该方法如何评估生态和行为数据变化对碰撞概率的影响。为此,模拟了在八个轨迹和密封形物体中移动的潮气风筝,并对动物的方法,速度和尺寸进行建模和密封形物体。为了进一步提高碰撞风险估计,通过整合假设的潜水配置文件,模拟的结果是后处理的。模拟显示了输入参数的变化以及其他后处理影响碰撞概率。我们的结果展示了利用基于模拟的方法来评估碰撞风险的可能性,突出了通过纳入经验数据或专家诱因来更好地通知建模过程的灵活性。该框架,在逐个案例的基础上,可以在相对简单的情况下使用设备类型,配置和动物相关参数来提供更定制的工具,用于评估海洋可再生能源发展与受体之间的各种相互作用。在提供解决碰撞风险的稳健和透明的定量方法时,这种灵活的方法可以更好地通知决策过程,并以可持续的方式对开发可再生能源产业的发展进程。因此,概述的方法有明确的申请与许多利益攸关方相关,可以促进我们确保我们在海洋可再生能源产业中实现可持续增长的能力,作为打击气候变化的全球战略的一部分。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|111484.1-111484.8|共8页
  • 作者单位

    School of Natural and Built Environment Queen's University Belfast Queen's Marine Laboratory 12-13 The Strand Portaferry Northern Ireland UK;

    Marine Scotland Science Scottish Government Marine Laboratory Aberdeen Scotland UK;

    School of Chemistry and Chemical Engineering Queen's University Belfast Queen's Marine Laboratory 12-13 The Strand Portaferry Northern Ireland UK;

    School of Chemistry and Chemical Engineering Queen's University Belfast Queen's Marine Laboratory 12-13 The Strand Portaferry Northern Ireland UK;

    Scottish Association for Marine Science (SAMS) University of the Highlands and Islands Oban Argyll Scotland UK;

    Scottish Association for Marine Science (SAMS) University of the Highlands and Islands Oban Argyll Scotland UK;

    School of Biological Sciences Queen's University Belfast Chlorine Gardens Belfast Northern Ireland UK;

    School of Natural and Built Environment Queen's University Belfast Queen's Marine Laboratory 12-13 The Strand Portaferry Northern Ireland UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Collision-risk; Simulations; Marine mammal; Tidal energy; Environmental impact assessment;

    机译:碰撞风险;模拟;海洋哺乳动物;潮汐能;环境影响评估;

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