带机械齿轮运动整流器的岸线波能转换器的设计、制造和测试

M. Pendar, Hamed Sarjan
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引用次数: 1

摘要

近年来,海浪能转换器技术得到了极大的发展。这些WECs采用各种不断改进的功率输出(PTO)系统。在不同的相关研究中介绍了不同类型的pto,如水力、电磁和空气涡轮系统。在海洋中,最大的挑战是不同的动力输出系统。这项工作介绍了WEC的新发展,从从海浪中获取能量的概念到原型阶段,并在里海南部海岸进行了测试。选取了目前比较流行的单体点吸波器,在不规则波和规则波两种不同条件下对系统进行建模。通过采用一种新的小齿轮系统,将波的双向运动转换为旋转发电机的单向运动,该系统被称为“机械齿轮整流器”(MGR)。我们设计了一个小型WEC的原型,然后对它进行了仔细的分析。最后,在不同的波浪条件下(规则波和不规则波)仔细测试了所提出的WEC的性能。仿真结果证明了该方法的高效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, Fabrication, and Testing of a Shore-line Wave Energy Converter with Mechanical Gear Motion Rectifier
The technology of ocean Wave Energy Converters (WEC) has dramatically developed during recent years. These WECs apply various power take-off (PTO) system which are continuing to improve. Different types of PTOs such as hydroelectric, electromagnetic and air turbine systems have been introduced in different relevant studies. The most significant challenge in ocean WECs is related to different power take-off systems. This work introduces a new development of a WEC from a concept of taking energy from ocean waves to the prototype stage and testing along the southern coast of the Caspian Sea. The point absorber Single-body WEC, which is a popular design, was selected to model the proposed system under different conditions, including irregular and regular waves. The bi-directional motion of a wave is converted to the unidirectional motion which rotates the generator by the proposed PTO system that named “Mechanical Gear Rectifier” (MGR), in which a new pinion system is applied. A prototype of our small-scale WEC was designed, built, and then a close analysis of it is performed. Finally, the performance of proposed WEC carefully tested in different wave conditions (regular and irregular waves). The simulation results demonstrate the high efficiency of the proposed MGR-WEC.
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