华电技术 ›› 2020, Vol. 42 ›› Issue (1): 41-44.

• 研究与开发 • 上一篇    下一篇

漂浮式光伏电站自适应水位变化的防护系统设计

  

  1. 华电郑州机械设计研究院有限公司,郑州〓450046
  • 出版日期:2020-01-25 发布日期:2020-03-20

Design of floating photovoltaic power plants protection systems adapting to water level

  1. Huadian Zhengzhou Mechanical Design Institute Company Limited,Zhengzhou 450046,China
  • Online:2020-01-25 Published:2020-03-20

摘要: 水面漂浮式光伏电站一般应用于水位较浅、水位变化不大且水面较平静的水域。为了拓展水面漂浮式光伏电站的应用范围,设计了一种自动适应水位变化的防护系统,该系统主要包括防护钢结构和自适应卷链系统。介绍了该系统的工作原理,并同时考虑水流、风、波浪载荷的影响,对防护钢结构的强度进行了分析计算,对卷链系统进行了选型设计。自适应卷链系统可以使防护钢结构和光伏电站自动适应所处水位的大幅度变化。防护系统为漂浮式光伏电站的安全、可靠运行提供了保证。

关键词: 漂浮式光伏电站, 自适应防护系统, 卷链机构, 选型设计分析, 水流载荷

Abstract: Floating photovoltaic power plants are generally applied in shallow and calm water areas.In order to expand the application range of floating photovoltaic power plants, a protective system which can adapt to the change of water level is invented. It mainly includes a protective steel structure and an adaptive winding chain system.The working principle of the system is introduced, and the strength calculation of the protective steel structure has considered water flow,wind and wave loads in type selection for the winding chain system.The adaptive chain winding system can make the protective steel structure and photovoltaic power plant automatically adapt to the change of water level,which ensures the safety of floating photovoltaic power plants.

Key words: floating photovoltaic power plant, adaptive protection system, winding chain mechanism, mode selection; water flow load