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Experimental Test and Simulations on a Linear Generator-Based Prototype of a Wave Energy Conversion System Designed with a Reliability-Oriented Approach

机译:基于线性发电机的以可靠性为导向的波能转换系统原型的实验测试和仿真

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In this paper, we propose a reliability-oriented design of a linear generator-based prototype of a wave energy conversion (WEC), useful for the production of hydrogen in a sheltered water area like Mediterranean Sea. The hydrogen production has been confirmed by a lot of experimental testing and simulations. The system design is aimed to enhance the robustness and reliability and is based on an analysis of the main WEC failures reported in literature. The results of this analysis led to some improvements that are applied to a WEC system prototype for hydrogen production and storage. The proposed WEC system includes the electrical linear generator, the power conversion system, and a sea-water electrolyzer. A modular architecture is conceived to provide ease of extension of the power capability of the marine plant. The experimental results developed on the permanent magnet linear electric generator have allowed identification of the stator winding typology and, consequently, ability to size the power electronics system. The produced hydrogen has supplied a low-power fuel cell stack directly connected to the hydrogen output from the electrolyzer. The small-scale prototype is designed to be installed, in the near future, into the Mediterranean Sea. As shown by experimental and simulation results, the small-scale prototype is suitable for hydrogen production and storage from sea water in this area.
机译:在本文中,我们提出了一种基于线性发电机的波能转换(WEC)原型的面向可靠性的设计,该原型可用于在诸如地中海之类的庇护水域中生产氢气。大量的实验测试和模拟证实了氢气的产生。该系统设计旨在提高鲁棒性和可靠性,并基于对文献中报道的主要WEC故障的分析。该分析的结果导致了一些改进,这些改进已应用于WEC系统原型的氢气生产和存储。拟议的WEC系统包括线性发电机,功率转换系统和海水电解槽。构想了模块化体系结构,以易于扩展海洋工厂的电力能力。在永磁线性发电机上开发的实验结果可以确定定子绕组的类型,从而可以确定功率电子系统的尺寸。产生的氢气已提供给低功率燃料电池堆,该电池堆直接连接到电解槽的氢气输出。该小型原型机旨在在不久的将来安装到地中海中。如实验和模拟结果所示,该小型原型机适用于该地区的海水生产和储氢。

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