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Analytical study on hydrodynamic performance of a raft-type wave power device

机译:筏式波浪发电装置的水动力性能分析研究

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In this paper, an analytical model is developed for the motion response and wave attenuation of a raft-type wave power device. The analytical solution of diffraction and radiation problem of multiple two-dimensional rectangular bodies floating on a layer of water of finite depth is obtained using a linearized potential flow theory. Wave excitation forces, added masses and wave damping coefficients for these bodies are calculated from incident, diffracted and radiated potentials. Upon solving the motion equation, response, power absorption and wave attenuation of a raft-type wave power device are obtained. The model is validated by comparison of the present results with the existing ones, and energy conservation is checked. The validated model is then utilized to examine the effect of power take-off damping coefficient, raft draft, spacing between two rafts, water depth, and raft numbers on power absorption and wave transmission coefficient of raft-type wave power device. The influence of structure length ratio is also discussed. It is found that the same wave transmission coefficient can be obtained by any certain raft-type wave power device, regardless of wave propagation direction.
机译:本文针对筏式波浪发电装置的运动响应和波浪衰减建立了解析模型。利用线性化的势流理论,获得了漂浮在有限深度的水层上的多个二维矩形体的衍射和辐射问题的解析解。这些物体的波激发力,附加质量和波阻尼系数是根据入射,衍射和辐射电势计算的。通过求解运动方程,可以得到筏式波浪发电装置的响应,功率吸收和波衰减。通过将当前结果与现有结果进行比较来验证该模型,并检查节能情况。然后利用验证的模型检验取力阻尼系数,筏吃水量,两个筏之间的间距,水深和筏数对筏式波浪发电装置的功率吸收和波传输系数的影响。还讨论了结构长度比的影响。已经发现,通过任何特定的筏型波功率器件都可以获得相同的波传输系数,而与波的传播方向无关。

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