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Numerical Modelling of the Interaction between Tidal Stream Turbines and the Benthic Environment

机译:潮汐涡轮机与底栖环境相互作用的数值模拟

摘要

The tidal stream industry has seen large growth in recent years, and the number of pre-commercial scale devices currently being tested reflects this development. However, commercialising this technology whilst showing that their environmental impacts is minimal remains a challenge. The impact on benthic communities is not considered to be a key strategic consenting issue, yet it is anticipated that the benthic habitat will change as a result of the presence of tidal turbines. To date, only single tidal turbine devices have been installed to demonstrate the application of tidal stream technology but despite successful tests there are still uncertainties surrounding the quantitative impacts these turbines have on local benthic communities.udUnlike the wind industry, where physical effects of wind turbines have been catalogued through deployment of thousands of turbines, the tidal stream industry lacks these array scale quantitative data. Local impacts are known, but understanding the scale of the impacts and their relative significance of large arrays remains unknown. Tidal turbines (both single and arrays) interact with the hydrodynamics by decreasing the near field current flow directly in its wake through energy extraction and the drag caused by the physical structure. However, turbines may also affect the far field hydrodynamics, altering bed characteristics, sediment transport regimes and suspended sediment concentrations. As benthic habitats are closely linked to the physical seabed composition and the hydrodynamic conditions, the benthic environment is affected by to changes in the current flow. This thesis presents a series of studies investigating the interaction between tidal turbines and the benthic environment.udBased on the hydrodynamic modelling software, TELEMAC2D, a numerical model has been developed to investigate the hydrodynamic impact of a single tidal array at Ramsey Sound, Pembrokeshire as well as the cumulative impact of multiple tidal developments in the Irish Sea. Based on the results of the models, the hydrodynamic outputs were used as inputs to drive a species distribution model, based on the software MaxEnt, to investigate how the distribution of benthic species altered in the presence of a 10MW tidal array at Ramsey Sound. Results of the study showed the development would have a minimal negative impact on the benthic environment.
机译:近年来,潮汐流行业已取得了巨大的增长,目前正在测试的商业规模的设备的数量反映了这一发展。然而,在证明其对环境的影响最小的同时将该技术商业化仍然是一个挑战。对底栖生物群落的影响不被认为是关键的战略共识问题,但是可以预见,由于潮汐涡轮机的存在,底栖生物的栖息地将发生变化。迄今为止,仅安装了一个潮汐涡轮机设备来演示潮汐流技术的应用,但尽管测试成功,但是围绕这些涡轮机对当地底栖生物群落的定量影响仍然存在不确定性。 ud与风能行业不同,风能对风力的物理影响通过部署数千个涡轮机对涡轮机进行分类,潮汐流行业缺乏这些阵列规模的定量数据。局部影响是已知的,但是了解影响的规模及其在大型阵列中的相对重要性仍然未知。潮汐涡轮机(单涡轮机和阵列涡轮机)通过减少能量流和物理结构所引起的阻力而直接在其尾流中减少近场电流,从而与流体动力学相互作用。但是,涡轮机也可能影响远场流体动力学,改变床的特性,沉积物的输送方式和悬浮的泥沙浓度。由于底栖生境与物理海床组成和水动力条件密切相关,因此底栖环境受到电流变化的影响。本论文提出了一系列研究潮汐涡轮机与底栖环境之间相互作用的研究。 ud基于水动力建模软件TELEMAC2D,开发了一个数值模型来研究单个潮汐阵列在彭布罗克郡拉姆西峡的水动力影响,以及爱尔兰海多个潮汐发展的累积影响。根据模型的结果,将水动力输出用作输入,以驱动基于MaxEnt软件的物种分布模型,以研究在Ramsey Sound出现10MW潮汐阵列时底栖物种的分布如何发生变化。研究结果表明,该开发对底栖环境的负面影响最小。

著录项

  • 作者

    Haverson David Thomas;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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