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Hydrodynamic performance of flapping wings for augmenting ship propulsion in waves

机译:拍打翼增强波浪中船舶推进的流体力学性能

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The present work deals with the hydrodynamic analysis of flapping wings located beneath the hull of the ship and operating in random waves, while travelling at constant forward speed. The system is investigated as an unsteady thrust production mechanism, augmenting the overall ship propulsion. The main arrangement consists of a horizontal wing in vertical motion induced by ship heave and pitch, while pitching about its own pivot axis that is actively set A vertical oscillating wing-keel is also considered in transverse oscillatory motion, which is induced by ship rolling and swaying. Ship flow hydrodynamics are modeled in the framework of linear theory and ship responses are calculated taking into account the additional forces and moments due to the above unsteady propulsion systems. Subsequently, a non-linear 3D panel method including free wake analysis is applied to obtain the detailed characteristics of the unsteady flow around the flapping wing. Results presented illustrate significant thrust production, reduction of ship responses and generation of anti-rolling moment for ship stabilization, over a range of motion parameters. Present method can serve as a useful tool for assessment, preliminary design and control of the examined thrust-augmenting devices, enhancing the overall performance of a ship in waves.
机译:目前的工作是对以恒定前进速度行驶的,位于船体下方并以随机波操作的襟翼进行水动力分析。该系统被作为不稳定的推力产生机制进行了研究,从而增强了整个船舶的推进力。主要布置包括由船舶升沉和俯仰引起的垂直运动的水平机翼,同时主动围绕其自身的枢转轴进行俯仰。垂直摆动的翼龙骨也被认为是横向摆动运动的原因,这是由于船舶的横摇和倾斜引起的。摇曳。在线性理论的框架内对船流流体动力学进行建模,并考虑到上述非稳定推进系统所产生的附加力和力矩来计算船舶响应。随后,应用包含自由尾迹分析的非线性3D面板方法来获得扑翼周围非定常流动的详细特征。给出的结果表明,在一系列运动参数范围内,推力产生显着,船舶响应减小,并且产生了用于船舶稳定的侧倾力矩。本方法可以用作评估,初步设计和控制所检查的推力增强装置的有用工具,从而提高船舶在波浪中的整体性能。

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