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Scalable Coupled Ocean and Water Turbine Modeling for Assessing Ocean Energy Extraction

机译:用于评估海洋能源提取的可扩展耦合海洋和水轮机建模

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The interest in hydrokinetic conversion systems has significantly grown over the last decade with a special focus on cross-flow systems, generally known as Vertical Axis Water Turbines (VAWTs). However, analyzing of regions of interest for tidal energy extraction and outlining optimal rotor geometry is currently very computationally expensive via conventional 3D Computational Fluid Dynamics (CFD) methods. In this work, a VAWT load prediction routine developed at University of Pisa based upon the Blade Element-Momentum (BEM) theory is presented and validated against high-resolution 2D CFD simulations. Our model is able to work in two configurations, i.e. Double-Multiple Stream tube (DMST) mode, using 1D flow simplifications for quick analyses, and Hybrid mode, coupled to a CFD software for more accurate results. As a practical application, our routine is employed for a site assessment analysis of the Cape Cod area to quickly highlight oceanic regions with high hydrokinetic potential, where further higher-order and more computationally expensive CFD analyses can be performed. Ocean data are obtained from data-assimilative ocean simulations predicted by the 4D regional ocean modeling system of the Multidisciplinary Simulation, Estimation, and Assimilation Systems (MSEAS) group of the Massachusetts Institute of Technology.
机译:在过去十年中,对水力学转换系统的兴趣在过去十年中显着发展,特别关注横流系统,通常称为垂直轴水轮机(瓦文)。然而,通过传统的3D计算流体动力学(CFD)方法,目前对潮汐能提取和概述最佳转子几何的兴趣区的分析目前非常昂贵。在这项工作中,基于刀片元素 - 动量(BEM)理论的PISA大学在比萨大学开发的VAWT负载预测常规,并针对高分辨率2D CFD模拟验证。我们的模型能够在两种配置中工作,即双倍流管(DMST)模式,使用1D流简化进行快速分析和混合模式,耦合到CFD软件以获得更准确的结果。作为一个实际应用,我们的例程用于CAPE COD区域的现场评估分析,以便快速突出具有高流行势的海洋区域,其中可以执行进一步高阶和更多的计算昂贵的CFD分析。来自Massachusetts技术研究所的多学科仿真,估计和同化系统(MSEAS)集团的4D区域海洋建模系统预测的数据同化海洋模拟中获得了海洋数据。

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