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首页> 外文期刊>Applied Ocean Research >Dynamics of arrays of floating point-absorber wave energy converters with inter-body and bottom slack-mooring connections
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Dynamics of arrays of floating point-absorber wave energy converters with inter-body and bottom slack-mooring connections

机译:具有主体间和底部松弛系泊连接的浮点吸收波能量转换器阵列的动力学

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摘要

If point absorbers are employed in the extensive exploitation of the offshore wave energy resource, they should be deployed in arrays, the distance between the elements in the array being possibly tens of meters. In such cases, it may be more convenient that the array is spread moored to the sea bottom through only some of its elements, located in the periphery, while the other array elements are prevented from drifting and colliding with each other by connections to adjacent elements. An array of identical floating point absorbers located at the grid points of an equilateral triangular grid is considered in the paper. A spread set of slack-mooring lines connect the peripheric floaters to the bottom. A weight is located at the centre of each triangle whose function is to pull the three floaters towards each other and keep the inter-body mooring lines under tension. The power take-off system (PTO) is a linear damper activated by the buoy heaving motion. The whole system - buoys, moorings and power take-off systems - is assumed linear, so that a frequency domain analysis may be employed. Hydrodynamic interference between the oscillating buoys in array is accounted for. Equations are presented for a set of three identical point absorbers. This is then extended to more complex equilateral triangular grid arrays. Results from numerical simulations, with regular and irregular waves, are presented for the motions and power absorption of hemispherical converters in arrays of three and seven elements and for different mooring parameters and wave incidence angles. Comparisons are given with the unmoored and independently-moored buoy situations.
机译:如果将点吸收器广泛用于海上波浪能资源开发中,则应将其部署在阵列中,阵列中各元素之间的距离可能为数十米。在这种情况下,将阵列仅通过位于外围的某些元素散布到海底会更方便,而通过与相邻元素的连接来防止其他数组元素漂移和碰撞。本文考虑了位于等边三角形网格的网格点处的一组相同的浮点吸收体。散布的一组系泊缆线将外围的漂浮物连接到底部。每个三角形的中心都有一个重物,其作用是将三个漂浮物相互拉近,并使身体间的系泊缆绳保持拉紧状态。取力器系统(PTO)是通过浮标升沉运动激活的线性阻尼器。整个系统-浮标,系泊设备和动力输出系统-被假定为线性的,因此可以采用频域分析。考虑了阵列中的振荡浮标之间的流体动力干扰。给出了一组三个相同的点吸收器的方程式。然后将其扩展到更复杂的等边三角形网格阵列。给出了具有规则波和不规则波的数值模拟结果,用于半球形换流器的三元和七元阵列的运动和功率吸收,以及不同的系泊参数和波入射角。比较了未系泊和独立系泊的浮标情况。

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