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Enhanced power absorption of a point absorber wave energy converter using a tuned inertial mass

机译:使用调谐惯性质量增强点吸收波能量转换器的功率吸收

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摘要

A novel point absorber wave energy converter with a tuned inertial mass (TIM), which is capable of significantly increasing the energy absorption and broadening the effective bandwidth, is proposed in this paper. The mechanism of the TIM has originally been introduced in the field of civil engineering as a passive energy absorber for structures subjected to external loadings such as earthquakes. It relies on attaching an additional tuning spring and a rotational inertial mass to the primary system, to improve the energy absorption performance by amplifying the displacement of the damper. Thus, considering typical point absorbers modeled as a mass-spring-dashpot system similar way to civil structures, the application of the TIM to wave energy converters can be expected to have a significant effect. In this paper, numerical investigation on the power generation performance of a point absorber with the TIM is conducted under random sea waves. The amplitude response and power generation performance are compared with the conventional point absorber, considering both non-resonant and resonant buoy cases. It is shown that by properly designing the tuning spring stiffness and generator damping, the rotation of the generator can be amplified compared to the buoy, increasing the power absorption drastically.
机译:本文提出了一种具有调谐惯性质量(TIM)的新型点吸收波能量转换器,其能够显着提高能量吸收和扩大有效带宽。最初在土木工程领域中引入了TIM的机制,作为经受诸如地震等外部载荷的结构的被动能量吸收器。它依赖于将额外的调谐弹簧和旋转惯性质量连接到主要系统,以通过放大阻尼器的位移来改善能量吸收性能。因此,考虑到被建模的典型点吸收剂以与民间结构类似的方式,可以预期蒂瓦波能转换器的应用具有显着效果。本文在随机海波下进行了对蒂姆的点吸收器的发电性能的数值研究。考虑到非共振和谐振浮标案例,将幅度响应和发电性能与传统点吸收器进行比较。结果表明,通过适当地设计调谐弹簧刚度和发电机阻尼,可以与浮标相比,可以放大发电机的旋转,使功率吸收大幅增加。

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