Misled by Betz and unsteady flow

Q3 Engineering
P. Pelz, Jan Lemmer, C. Schmitz
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引用次数: 1

Abstract

A turbine array is an adjustable flow resistanceR placed in a tidal channel. Ideally, it is designedand operated to maximise energy yield. Garrett & Cummins(2005), using optimal control theory applied to the RCelementchannel (R) and basin (C), showed: the energyextraction from the flow PT + PD is maximised when theflow rate is slowed down by a factor of 1/√3. This resultis independent of the ratio of the extracted mechanicalpower PT to the total power extraction including the powerloss PD due to the mixing of the bypass flows within theturbine field. The optimisation task for turbine arrays ismaximising PT. This objective raises two questions: ”Whatis the maximum power PT that can be extracted, and what isthe optimal design (size, topology) and operation to achievethis output?” When addressing them, the literature stilluses the Betz ‘limit’ as a reference. The work presentedhighlights two major problems. First, the Betz ’limit’ isnot a constant upper bound for open channel flow. Thisproblem has been discussed and solved by the first author(2011, 2020). Second and more importantly, the presentedpaper points out the misconception under which severalresearch studies referred to array topologies as ‘optimal’with regard to design and operation. Hereby, the presentedpaper contributes to the advancement of tidal power on anaxiomatic basis. The misleading by Betz and overvaluingof transient effects is made transparent in a scientificdiscourse.
被贝茨和非定常流误导
涡轮机阵列是放置在潮汐通道中的可调节流动阻力。理想情况下,它的设计和运行是为了最大限度地提高能源产量。Garrett和Cummins(2005)将最优控制理论应用于RC元素通道(R)和盆地(C),结果表明:当流速减慢1/√3时,从流量PT+PD中提取的能量最大。该结果与提取的机械功率PT与总功率提取的比率无关,包括由于涡轮机场内旁通流的混合而产生的功率损耗PD。涡轮机阵列的优化任务是最大限度地提高PT。这一目标提出了两个问题:“可以提取的最大功率PT是多少?实现这一输出的最佳设计(尺寸、拓扑结构)和操作是什么?”在处理它们时,文献仍然使用Betz“极限”作为参考。这项工作突出了两个主要问题。首先,Betz“极限”不是明渠流量的恒定上限。第一作者(20112020)已经讨论并解决了这个问题。其次,更重要的是,本文指出了一种误解,在这种误解下,一些研究将阵列拓扑称为设计和操作方面的“最佳”。因此,本文在分析的基础上为潮汐能的发展做出了贡献。贝茨的误导和对瞬态效应的高估在科学话语中是透明的。
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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