Power Generation Using Mechanical Wave Energy Converter

S. Chandrasekaran, Harender
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引用次数: 15

Abstract

Ocean wave energy plays a significant role in meeting the growing demand of electric power. Economic, environmental, and technical advantages of wave energy set it apart from other renewable energy resources. Present study describes a newly proposed Mechanical Wave Energy Converter (MEWC) that is employed to harness heave motion of floating buoy to generate power. Focus is on the conceptual development of the device, illustrating details of component level analysis. Employed methodology has many advantages such as i) simple and easy fabrication; ii) easy to control the operations during rough weather; and iii) low failure rate during normal sea conditions. Experimental investigations carried out on the scaled model of MWEC show better performance and its capability to generate power at higher efficiency in regular wave fields. Design Failure Mode and Effect Analysis (FMEA) shows rare failure rates for all components except the floating buoy.
利用机械波能转换器发电
海浪能在满足日益增长的电力需求方面发挥着重要作用。波浪能的经济、环境和技术优势使它有别于其他可再生能源。本文介绍了一种新的机械波能转换器(MEWC),用于利用浮筒的升沉运动来发电。重点是器件的概念发展,说明组件级分析的细节。所采用的方法具有简单、易于制作等优点;Ii)在恶劣天气下易于控制作业;iii)正常海况下故障率低。对MWEC比例模型进行的实验研究表明,MWEC在规则波场中具有更好的性能和更高的发电效率。设计失效模式和影响分析(FMEA)表明,除浮筒外,所有部件的故障率都很低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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