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Impact of Blockage on the Hydrodynamic Performance of Oscillating-Foils Hydrokinetic Turbines

机译:堵塞对摆管式动水轮机水动力性能的影响

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摘要

This paper describes a study of the impact of confinement on the hydrodynamic performance of oscillating-foils hydrokinetic turbines (OFHT). This work aims to contribute to the development of standards applying to marine energy converters. These blockage effects have indeed to be taken into account when comparing measurements obtained in flumes, towing tanks, and natural sites. This paper provides appropriate correction formula to do so for OFHT based on computational fluid dynamics (CFD) simulations performed at a Reynolds Number Re = 3 x 10(6) for reduced frequencies between f* = 0.08 and f* = 0.22 considering area-based blockage ratios ranging from epsilon = 0.2% to 60%. The need to discriminate between the vertical and horizontal confinement and the impact of the foil position in the channel are also investigated and are shown to be of second-order as compared to the overall blockage level. As expected, it is confirmed that the power extracted by the OFHT increases with the blockage level. It is further observed that for blockage ratio of less than epsilon = 40%, the power extracted scales linearly with e. The approach proposed to correlate the performance of the OFHT in different blockage conditions uses the correction proposed by Barnsley and Wellicome and assumes a linear relation between the power extracted and the blockage. This technique is shown to be accurate for most of the practical operating conditions for blockage ratios up to 50%.
机译:本文介绍了限制对振荡箔片动水涡轮(OFHT)的流体力学性能的影响的研究。这项工作旨在促进制定适用于船用能源转换器的标准。在比较在水槽,拖船和自然地点获得的测量值时,确实必须考虑这些堵塞效应。本文提供了适当的校正公式,用于OFHT,基于雷诺数Re = 3 x 10(6)对f * = 0.08和f * = 0.22之间的降低频率进行的计算流体动力学(CFD)仿真,阻塞率范围从ε= 0.2%到60%。还研究了区分垂直和水平限制以及箔在通道中位置的影响的需要,并且与总体阻塞水平相比,该结果显示为二阶的。如预期的那样,可以确认OFHT提取的功率随阻塞水平的增加而增加。进一步观察到,对于小于ε= 40%的阻塞率,提取的功率与e成线性比例。提出的在不同阻塞条件下关联OFHT性能的方法采用了Barnsley和Wellicome提出的校正方法,并假设提取的功率与阻塞之间存在线性关系。对于大多数实际运行条件,对于高达50%的堵塞率,该技术都是准确的。

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