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Modeling of in-stream tidal energy development and its potential effects in Tacoma Narrows, Washington, USA

机译:美国华盛顿州塔科马海峡中流式潮汐能发展模型及其潜在影响

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摘要

Understanding and providing proactive information on the potential for tidal energy projects to cause changes to the physical system and to key water quality constituents in tidal waters is a necessary and cost-effective means to avoid costly regulatory involvement and late stage surprises in the permitting process. This paper presents a modeling study for evaluating the tidal energy extraction and its potential impacts on the marine environment in a real world site - Tacoma Narrows of Puget Sound, Washington State, USA. An unstructured-grid coastal ocean model, fitted with a module that simulates tidal energy devices, was applied to simulate the tidal energy extracted by different turbine array configurations and the potential effects of the extraction at local and system-wide scales in Tacoma Narrows and South Puget Sound. Model results demonstrated the advantage of an unstructured-grid model for simulating the far-field effects of tidal energy extraction in a large model domain, as well as assessing the near-field effect using a fine grid resolution near the tidal turbines. The outcome shows that a realistic near-term deployment scenario extracts a very small fraction of the total tidal energy in the system and that system wide environmental effects are not likely; however, there are near-field effects on the flow field and bed shear stress in the area of tidal turbine farm. Model results also indicate that from a practical standpoint, hydrodynamic or water quality effects are not likely to be the limiting factor for development of large commercial-scale tidal farms. Results indicate that very high numbers of turbines are required to significantly alter the tidal system; limitations on marine space or other environmental concerns are likely to be reached before reaching these deployment levels. These findings show that important information obtained from numerical modeling can be used to inform regulatory and policy processes for tidal energy development.
机译:了解和提供有关潮汐能项目可能改变潮汐水域物理系统和关键水质成分的潜力的主动信息,是一种避免成本高昂的监管活动和避免许可过程中后期意外的必要且具有成本效益的手段。本文提出了一个模型研究,用于评估潮汐能的提取及其对现实世界站点-美国华盛顿州普吉特海湾的塔科马海峡的潜在影响。使用非结构化网格沿海海洋模型,该模块装有模拟潮汐能设备的模块,用于模拟通过不同涡轮机阵列配置提取的潮汐能,以及在塔科马海峡和南部在局部和整个系统范围内提取的潜在影响普吉特海湾。模型结果证明了非结构化网格模型的优势,该模型可在较大的模型域中模拟潮汐能提取的远场效应,以及在潮汐涡轮机附近使用精细的网格分辨率评估近场效应。结果表明,现实的近期部署方案仅抽取了系统中总潮汐能的很小一部分,并且不太可能对整个系统产生环境影响。但是,在潮汐涡轮机场附近,对流场和床层剪应力有近场影响。模型结果还表明,从实际的角度来看,水动力或水质的影响不太可能成为大型商业化潮汐农场发展的限制因素。结果表明,需要大量的涡轮机才能显着改变潮汐系统。在达到这些部署级别之前,很可能会达到对海洋空间或其他环境问题的限制。这些发现表明,从数值模型中获得的重要信息可用于为潮汐能开发提供监管和政策程序信息。

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  • 来源
    《Ocean & coastal management》 |2014年第10期|52-62|共11页
  • 作者单位

    Pacific Northwest National Laboratory, 1100 Dexter Ave North, Ste 400, Seattle, WA 98109, USA;

    Pacific Northwest National Laboratory, 1100 Dexter Ave North, Ste 400, Seattle, WA 98109, USA;

    Pacific Northwest National Laboratory, 1100 Dexter Ave North, Ste 400, Seattle, WA 98109, USA;

    Pacific Northwest National Laboratory, 1100 Dexter Ave North, Ste 400, Seattle, WA 98109, USA;

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