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Experimental study of a wave energy scavenging system onboard autonomous surface vessels (ASVs)

机译:船上自主水面舰船(asVs)能量清除系统的实验研究

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摘要

Autonomous Surface Vehicles (ASV) have many potential applications in the maritime industry and ocean science. To subsist in the ocean space, an ASV must have the ability to scavenge energy from the surrounding environment. Waves are an abundant source of energy on the ocean surface and a suitable resource for an ASV to scavenge. Flapping foils have been shown to generate thrust in a wavy flow and power in a uniform flow. The aim of this experimental study is to investigate the relationship between flapping foil propulsion and power generation in the context of ASVs. Initial experiments incorporating fully passive flapping foils submerged at the bow and stern of a surface vessel in head waves were performed in a towing tank. The spring-loaded foils were located at the end of rigid pivot arms protruding at the bow and abaft of the vessel. The pivot arms were free to rotate about a location beneath the keel line and restrained by adjustable rotational dampers. In this free condition, wave energy is recovered in the form of work applied by the flapping foils through the rotary dampers which were used to simulate the damping effects of a power take-off device. Thrust was generated under conditions when the pivot arm was fixed. This system, referred to as the Flapping Energy Utilization and Recovery (FLEUR) system, could serve as a dualpurpose wave energy scavenging propulsor and power generator for long-endurance ASVs.
机译:自主地面车辆(ASV)在海事行业和海洋科学中有许多潜在应用。为了生存在海洋空间中,ASV必须具有从周围环境中清除能量的能力。波浪是海洋表面的丰富能源,也是ASV清除的合适资源。拍打箔片已显示出在波浪流中产生推力,并在均匀流中产生动力。这项实验研究的目的是研究在ASV情况下拍击箔推进与发电之间的关系。最初的实验是在拖曳水箱中进行的,该实验包含完全被动的扑翼金属箔,这些金属箔淹没在前浪中的水面船首和船尾。弹簧箔位于位于船首和船尾的刚性枢轴臂的末端。枢轴臂可绕龙骨线下方的某个位置自由旋转,并受到可调旋转阻尼器的约束。在这种自由状态下,波浪能以拍打箔片通过旋转阻尼器施加的功的形式被回收,该旋转阻尼器用于模拟取力器的阻尼效果。在固定枢轴臂的情况下会产生推力。该系统被称为扑翼能量利用和回收(FLEUR)系统,可以用作长效ASV的两用波能扫波推进器和发电机。

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