基于水弹性分析的WLC波能转换器功率性能与动态响应

Constantine Michailides
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引用次数: 4

摘要

本文介绍了一种新型的波浪能转换器(WEC),以下称为水位毯(WLC)。基于水弹性分析对其动力响应和性能进行了评价,并对规则波和不规则波进行了分析。WLC由四个浮动模块组成,通过铰链和具有已知阻尼特性的动力起飞(PTO)机构在两个方向上灵活连接。动态响应(例如铰链轴向载荷,运动)和WLC产生功率的估计通过使用辐射/衍射三维水弹性模型在频域进行线性水弹性分析来评估,考虑了WLC的灵活性以及与PTO机构能量提取相关的阻尼力的影响。得到的结果证明了WLC产生的功率与动态响应之间的关系,以及PTO的阻尼系数与WLC铰链轴向载荷之间的关系。当波的频率接近广义自由度共振时,无论波的方向如何,WLC的产生功率都达到最大值。此外,所获得的结果强调了水弹性分析对这类WEC性能评估的重要性。
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Power performance and dynamic response of the WLC wave energy converter based on hydroelastic analysis

In the present paper, a novel Wave Energy Converter (WEC) named hereafter as Water Level Carpet (WLC) is introduced. Its dynamic response and performance are evaluated based on hydroelastic analysis and are presented for both regular and irregular waves. WLC consists of four floating modules inter-connected flexibly in two directions with hinges and Power Take-Off (PTO) mechanisms with known damping characteristics. The dynamic response (e.g. axial load at hinges, motions) and the estimation of the produced power of the WLC are evaluated through linear hydroelastic analysis in frequency domain with the use of a radiation/diffraction 3D hydroelastic model considering the effect of both the flexibility of the WLC as well as the damping forces associated with the energy extraction by the PTO mechanisms. The results that are obtained demonstrate the relationship between the produced power and the dynamic response of the WLC as well as the relationship between the damping coefficients of the PTO with the axial loads of WLC’s hinges. The produced power of WLC obtains its maximum value for wave frequencies close to the resonance of the generalized degrees of freedom irrespectively of the direction that the waves have. Moreover, the results that are obtained emphasize the importance of the hydroelastic analysis for the assessment of the performance of this type of WEC.

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