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Design and installation of floating type photovoltaic energy generation system using FRP members

机译:玻璃钢构件浮动式光伏发电系统的设计与安装

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In this paper, we present the result of investigations pertaining to the development of floating type photovoltaic energy generation system. For the floating structure, durable and light-weight materials such as a pultruded FRP composite material are essential. Pultruded FRP has superior mechanical properties and excellent corrosion-resistance compared with those of conventional structural materials. In the paper, we discussed the development concepts of the floating type photovoltaic energy generation system briefly. The mechanical properties of the FRP structural member used in the structural system are investigated through the tensile and shear tests. Test results are used in the finite element analysis and design of the system. Link system which is composed of pultruded FRP, used tire, and PE rope is also analyzed by the finite element method. Finally, floating type photovoltaic energy generation system is designed, fabricated, and installed successfully at the sea site in Korea. In addition, the energy production of floating PV energy generation system is measured and compared with that of land type plant. Energy productions of floating type from June to August are significantly higher, but the energy productions from September to October are lower.
机译:在本文中,我们提出了与浮式光伏发电系统发展有关的研究结果。对于浮动结构,耐用且重量轻的材料(例如拉挤FRP复合材料)必不可少。与传统的结构材料相比,拉挤玻璃钢具有卓越的机械性能和出色的耐腐蚀性。在本文中,我们简要讨论了浮动式光伏发电系统的发展概念。通过拉伸和剪切试验研究了结构系统中使用的FRP结构构件的机械性能。测试结果用于系统的有限元分析和设计。通过拉挤FRP,废旧轮胎和PE绳组成的连杆系统也通过有限元方法进行了分析。最终,浮式光伏发电系统在韩国海上现场成功设计,制造和安装。此外,还对浮动式光伏发电系统的发电量进行了测量,并与陆上型电站的发电量进行了比较。 6月至8月的浮动式能源产量显着较高,但9月至10月的能源产量较低。

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