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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Optimal Tandem Configuration for Oscillating-Foils Hydrokinetic Turbine
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Optimal Tandem Configuration for Oscillating-Foils Hydrokinetic Turbine

机译:摆动箔动水力涡轮机的最佳串联配置

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摘要

A numerical investigation based on 2D URANS simulations is performed in order to seek an optimal spatial configuration for two oscillating foils within a hydrokinetic turbine. The objective of the study is to maximize the power extraction efficiency of the turbine. Tandem spatial configurations are considered because in such arrangement both hydrofoils are sharing the same flow window, which allows the turbine to reach higher efficiencies. The relative positioning of the downstream foil oscillating in the wake shed by the upstream hydrofoil is seen to be critical. Indeed, favorable interactions between the downstream foil and the wake vortices may lead to unexpectedly high power-extraction efficiencies (up to 64percent), while unfavorable interactions may cause the downstream foil to contribute negatively to the total power extracted. A global phase shift parameter is introduced to characterize the tandem configuration. This parameter combines the interfoil spacing and motion phase-shift into a single term. It is found useful to predict additional favorable configurations based on known results for cases with similar upstream-foil wake behavior. A comparison with experimental data is provided. Numerical predictions are seen to overpredict the power extraction performance in some cases. This is likely due to the broken 2D coherence of vortices in the 3D reality which affects the vortex-induced velocities and the subsequent foil-wake interactions.
机译:进行了基于2D URANS模拟的数值研究,以便为水动力涡轮机中的两个振荡箔片寻找最佳空间配置。该研究的目的是使涡轮机的功率提取效率最大化。之所以考虑串联空间配置,是因为在这种布置中,两个水翼共享相同的流窗,这使涡轮机可以达到更高的效率。在上游水翼流下的尾流中振荡的下游箔的相对位置被认为是至关重要的。实际上,下游箔片和尾流涡流之间的有利相互作用可能会导致出乎意料的高功率提取效率(高达64%),而不利的相互作用可能会使下游箔片对提取的总功率产生负面影响。引入全局相移参数来表征串联配置。该参数将翼间距和运动相移合并为一个项。已经发现基于具有相似上游箔尾流行为的情况的已知结果来预测其他有利构型是有用的。提供与实验数据的比较。在某些情况下,数值预测被认为过度预测了功率提取性能。这很可能是由于3D现实中涡旋的2D相干性破裂,从而影响了涡旋诱导的速度以及随后的箔-苏醒相互作用。

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