Adapting conventional tools to analyse ducted and open centre tidal stream turbines

Q3 Engineering
Steven Allsop, C. Peyrard, P. Bousseau, P. Thies
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引用次数: 5

Abstract

This paper details a hydrodynamic model based on Blade Element Momentum Theory (BEMT) developed to assess ’conventional’ 3-bladed tidal stream turbines (TSTs), adapted here to analyse an ’unconventional’ case of a ducted and open centre device. Validations against a more detailed coupled Reynolds averaged computational fluid dynamics (RANS-BEM) model shows excellent agreement, of within 2% up to the peak power condition, with associated computational times in the order of a few minutes on a single core. The paper demonstrates the application of hydrodynamic forces into a structural analysis tool, in order to assess blade stress distributions of a generic hubless turbine. Incorporation of parameters such as non-uniform inflows and blade weight forces are investigated, with their effects on stress profiles presented. Key findings include: i) the adapted BEMT model replicates the majority of turbine performance characteristics estimated through previous CFD assessments; ii) the proposed model reduces the computational effort by several orders of magnitude compared to the reference coupled CFD, making it suitable for engineering assessments iii) blade stress distribution profiles are quantified, detailing concentration zones and cyclic values for use in fatigue analyses. This work forms part of a greater project aimed to develop a suite of analytical tools to perform engineering assessments of bi-directional ducted TSTs.
采用传统工具分析导管式和开放式中心潮汐流涡轮机
本文详细介绍了一个基于叶片单元动量理论(BEMT)的流体动力学模型,该模型是为评估“传统”三叶潮汐流涡轮机(TST)而开发的,适用于分析管道和开心装置的“非常规”情况。对更详细的耦合雷诺平均计算流体动力学(RANS-BEM)模型的验证表明,与单个堆芯上几分钟左右的相关计算时间非常一致,在峰值功率条件下的一致性在2%以内。本文演示了将流体动力应用于结构分析工具中,以评估通用无轮毂涡轮机的叶片应力分布。研究了非均匀流入和叶片重力等参数的结合,并给出了它们对应力分布的影响。主要发现包括:i)经过调整的BEMT模型复制了通过先前CFD评估估计的大多数涡轮机性能特征;ii)与参考耦合CFD相比,所提出的模型将计算工作量减少了几个数量级,使其适用于工程评估。iii)量化了叶片应力分布剖面,详细说明了疲劳分析中使用的集中区和循环值。这项工作是一个更大项目的一部分,该项目旨在开发一套分析工具,对双向管道TST进行工程评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Marine Energy Journal
International Marine Energy Journal Engineering-Ocean Engineering
CiteScore
1.70
自引率
0.00%
发文量
24
审稿时长
12 weeks
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