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Discussion on 'Review of CFD studies on axial-flow self-rectifying turbines for OWC wave energy conversion' by Cui, Y., Liu, Z., Zhang, X. and Xu, C.

机译:崔,Y.,Liu,Z.,Zhang,X.和Xu,C的“轴流自整流涡轮机对轴流自整流涡轮机的”轴流自整流涡轮机审查“的探讨。

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摘要

This discussion is based on the paper by Cui et al. (2019) (hereafter identified as "the original authors" or "the original paper"). The original authors present a review on the application of CFD in the analysis of self-rectifying turbines for OWC wave energy conversion devices. We feel that this review is incomplete, as it overlooks a number of papers published in recent years that gave a new explanation for a phenomenon largely studied in the last two decades and discussed in the original paper: the hysteresis in Wells turbine performance. In addition, the original authors, in their conclusions, envisage a larger use of CFD in the coming years, especially for the unsteady analysis of the chamber-turbine interaction, probably ignoring that several CFD studies focusing on this aspect have already been published. In fact, it is through three-dimensional time-dependent CFD studies of the unsteady interaction between chamber and turbine that the explanation of the cause of the hysteresis was found. The objective of this discussion is to clarify two important aspects: the chamber-turbine interaction and the turbine hysteresis, that in our opinion were not correctly analyzed in the original review paper by Cui et al.
机译:该讨论基于Cui等人的纸张。 (2019年)(以下识别为“原作者”或“原文”)。原作者对CFD应用于OWC波能量转换装置的自整流涡轮机的应用综述。我们认为,这种评论是不完整的,因为它忽略了近年来发表的一些论文,这对过去二十年来的现象产生了新的解释,并在原文中讨论了:井筒性能的滞后。此外,原位在其结论中设想了未来几年更大使用差价合金,特别是对于腔室 - 涡轮互动的不稳定分析,可能忽略了重点在这方面的若干CFD研究已经发表。事实上,通过三维时间依赖性CFD研究,对腔室和涡轮机之间的不稳定相互作用,发现对滞后原因的解释。本讨论的目的是阐明两个重要方面:腔内涡轮互动和涡轮机滞后,我们认为在原始审查纸上被Cui等人在原始审查纸上没有正确分析。

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