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Fluid dynamics analysis of passive oscillating hydrofoils for tidal current energy extracting

机译:用于潮流能量提取的被动振荡水翼的流体动力学分析

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A passive oscillating hydrofoil energy extracting technology that imitates the tail swinging of aquatic organisms to extract energy from flow field is presented in this paper, as an alternative to conventional rotating blades turbine. On the basis of analysis of the relationship between the movement characteristics of oscillating hydrofoil and the parameters including power coefficient, efficiency and reduced frequency, the device based on passive oscillating hydrofoil to extract tidal current energy is designed. The investigation is undertaken over a wide range of kinematic parameters including pitching amplitudes, heaving amplitudes and reduced frequency. The results reveal that the power extracted from the oncoming flow mainly comes from the heaving motion and the energy contribution from pitching motion is quite limited. Detailed examination of the motion parameters indicates that when the heaving amplitude reaches one chord length, the pitching amplitude reaches 70° and the reduced frequency reaches 0.11, the highest power extraction efficiency can reach 34.7%.
机译:本文提出了一种被动振荡的水翼能量提取技术,该技术模仿了水生生物的尾部摆动来从流场中提取能量,以替代传统的旋转叶片式涡轮机。在分析振荡水翼的运动特性与功率系数,效率和降低频率等参数之间的关系的基础上,设计了一种基于被动振荡水翼的提取潮汐能的装置。对运动参数进行了广泛的研究,包括俯仰幅度,起伏幅度和降低的频率。结果表明,从迎面而来的流中提取的动力主要来自起伏运动,俯仰运动的能量贡献非常有限。对运动参数的详细检查表明,当起伏幅度达到一个弦长时,俯仰幅度达到70°,降低的频率达到0.11时,最高的功率提取效率可以达到34.7%。

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