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首页> 外文期刊>Procedia Computer Science >Augmenting Ship Propulsion in Waves Using Flapping Foils Initially Designed for Roll Stabilization
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Augmenting Ship Propulsion in Waves Using Flapping Foils Initially Designed for Roll Stabilization

机译:使用最初设计用于侧倾稳定的拍打箔增强海浪中的船舶推进力

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Biomimetic flapping foils attached on ship hull are studied for wave-energy extraction, stored in ship motions, and direct conversion to propulsive power. We examine a pair of roll-stabilization wings located at the side of the hull, in horizontal arrangement. The fins gain their linear oscillation (heaving) from ship pitching and heaving responses in irregular waves, while wing's rotation (pitching) is properly controlled with respect to its vertical motion history. A method, developed in our previous works, is applied for that purpose. The system operates in realistic sea conditions modeled by using parametric spectra, taking into account the coupling between ship responses and the hydrodynamics of the lifting appendages. We present numerical calculations concerning the operation of the augmenting system indicating that, although the present arrangement is designed for roll reduction purposes it can obtain significant amount of thrust. Also it is illustrated that, after reposition of the fins near the bow, the performance of the system can be further enhanced.
机译:对附着在船体上的仿生扑翼箔进行了研究,以提取波浪能,将其存储在船舶运动中并直接转换为推进力。我们研究了一对水平布置在船体侧面的侧倾稳定翼。鳍片通过不规则波的船俯仰和升沉响应获得线性振荡(升沉),而机翼的旋转(俯仰)则根据其垂直运动历史进行适当控制。为此目的,采用了我们先前工作中开发的一种方法。该系统在使用参数光谱建模的现实海况下运行,同时考虑了船舶响应与提升附件的流体动力学之间的耦合。我们提出了与增强系统的操作有关的数值计算,该数值计算表明,尽管本装置是为减小侧倾目的而设计的,但它仍可得到很大的推力。还示出了,在将鳍片重新定位在船首附近之后,可以进一步增强系统的性能。

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