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The motions of hinged-barge systems in regular seas.

机译:铰链驳船系统在常规海中的运动。

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Harnessing the oceans' vast, clean, and renewable energy to do useful work is a tempting prospect. For over a century, wave-energy conversion devices have been proposed, but none has emerged as a clearly practical and economical solution. One promising system is the McCabe Wave Pump (MWP), an articulated-barge system consisting of three barges hinged together with a large horizontal plate attached below the central barge. Water pumps are driven by the relative pitching motions of the barges excited by ocean waves. This high-pressure water can be used to produce potable water or electricity.; A simulation of the motions of a generic hinged-barge system is developed. The equations of motion are developed so that the nonlinear interactions between the barges are included. The simulation is general so that it can be used to study other hinged-barge systems, such as causeway ferry systems or floating airports. The simulation is used to predict the motions of a scale model that was studied in wave-tank experiments. In the experimental study, it was observed that the plate attached to the central barge acted as a pendulum. It was also observed that the phases of the pitching motions of the barges was such that the motions were enhanced by the pendulum effect at all of the wave periods studied. Hence, the increased angular displacements produced greater relative pitching motions which would lead to higher volume rates of pumped water in the operational system. The numerical simulations are found to predict the pendulum effect. In addition, the theory predicted that the after barge motions were significantly less than those of the forward barge, as was observed in the experimental study. The good agreement between the two data sets gives confidence in the ability of the theory to predict the performance of the MWP prototype.; The motions of the MWP prototype in regular ocean waves are predicted by the simulation, and its performance is calculated. By modifying the length of the system to be compatible with the wavelength for maximum pitching excitation, the power output of the system is shown to increase by more than 150%.
机译:利用海洋的广阔,清洁和可再生能源来开展有益的工作是一个诱人的前景。超过一个世纪以来,已经提出了波能转换装置,但是没有一种作为明显实用且经济的解决方案出现。一种有前途的系统是McCabe Wave Pump(MWP),这是一种铰接式驳船系统,由三个驳船铰接在一起,并与附在中央驳船下方的大水平板铰接在一起。水泵由海浪激发的驳船的相对俯仰运动驱动。这种高压水可用于生产饮用水或电。开发了通用铰链驳船系统运动的仿真。发展了运动方程,以便包括驳船之间的非线性相互作用。模拟是通用的,因此可以用于研究其他铰链驳船系统,例如堤道渡轮系统或浮动机场。该仿真用于预测在水箱实验中研究过的比例模型的运动。在实验研究中,观察到附着在中央驳船上的平板起了摆的作用。还观察到,驳船的俯仰运动的相位使得在所有研究的波浪周期中,摆的作用都增强了运动。因此,增加的角位移产生较大的相对俯仰运动,这将导致操作系统中抽水的体积率更高。发现数值模拟可以预测摆的影响。此外,该理论预测,如在实验研究中所观察到的,驳船之后的运动明显小于向前驳船的运动。这两个数据集之间的良好一致性使该理论具有预测MWP原型性能的能力充满信心。通过仿真预测了MWP原型在规则海浪中的运动,并计算了其性能。通过修改系统的长度以使其与最大俯仰激发的波长兼容,系统的功率输出显示增加了150%以上。

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