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Large-span ocean photovoltaic platform and construction structure and construction method thereof
The invention discloses a large-span ocean photovoltaic platform and a construction structure and method thereof, and the photovoltaic platform sequentially comprises a steel pipe pile, a pile cap installed at the top of the steel pipe pile, a supporting truss installed on the pile cap, and a photovoltaic module installed on the supporting truss from bottom to top. The supporting truss is formed by connecting a plurality of space trusses; the space truss is provided with the upper-layer frame body and the lower-layer frame body, photovoltaic panels can be laid on the upper-layer frame body, transformers and other power transformation equipment and cables can be installed on the lower-layer frame body, the problem that power transformation equipment needs to be additionally and independently installed in a traditional photovoltaic power station is solved, and the platform is high in overall bearing capacity, light in self weight and capable of adapting to more complex marine environments; and the early-stage installation and the later-stage maintenance of the photovoltaic module are more convenient.
本发明公开了一种大跨度海洋光伏平台、该平台的施工结构及施工方法,其中,光伏平台由下至上依次包括钢管桩、安装在钢管桩顶部的桩帽、安装在桩帽上的支撑桁架以及安装在支撑桁架上的光伏组件;支撑桁架由多个空间桁架连接而成;本申请空间桁架,具有上下两层架体,上层架体可铺设光伏板,下层架体可安装变压器等变电设备及铺设电缆,解决了传统光伏电站需要另外单独安装变电设备的问题,并且平台整体承载能力强,自重轻,可适应更复杂的海洋环境,光伏组件的前期安装和后期维护均更加方便。
Large-span ocean photovoltaic platform and construction structure and construction method thereof
The invention discloses a large-span ocean photovoltaic platform and a construction structure and method thereof, and the photovoltaic platform sequentially comprises a steel pipe pile, a pile cap installed at the top of the steel pipe pile, a supporting truss installed on the pile cap, and a photovoltaic module installed on the supporting truss from bottom to top. The supporting truss is formed by connecting a plurality of space trusses; the space truss is provided with the upper-layer frame body and the lower-layer frame body, photovoltaic panels can be laid on the upper-layer frame body, transformers and other power transformation equipment and cables can be installed on the lower-layer frame body, the problem that power transformation equipment needs to be additionally and independently installed in a traditional photovoltaic power station is solved, and the platform is high in overall bearing capacity, light in self weight and capable of adapting to more complex marine environments; and the early-stage installation and the later-stage maintenance of the photovoltaic module are more convenient.
本发明公开了一种大跨度海洋光伏平台、该平台的施工结构及施工方法,其中,光伏平台由下至上依次包括钢管桩、安装在钢管桩顶部的桩帽、安装在桩帽上的支撑桁架以及安装在支撑桁架上的光伏组件;支撑桁架由多个空间桁架连接而成;本申请空间桁架,具有上下两层架体,上层架体可铺设光伏板,下层架体可安装变压器等变电设备及铺设电缆,解决了传统光伏电站需要另外单独安装变电设备的问题,并且平台整体承载能力强,自重轻,可适应更复杂的海洋环境,光伏组件的前期安装和后期维护均更加方便。
Large-span ocean photovoltaic platform and construction structure and construction method thereof
大跨度海洋光伏平台、该平台的施工结构及施工方法
FANG HUI (author) / YU YONGJIE (author) / FENG XIANDAO (author) / LIN HONGXING (author) / LIU YONG (author) / DUAN LIYA (author) / LI HUAJUN (author)
2023-08-08
Patent
Electronic Resource
Chinese
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
/
B66C
Krane
,
CRANES
/
E02D
FOUNDATIONS
,
Gründungen
/
H02S
GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRA-RED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, E.G. USING PHOTOVOLTAIC [PV] MODULES
,
Erzeugung elektrischer Energie durch Umwandlung von Infrarot-Strahlung, sichtbarem Licht oder ultraviolettem Licht, z.B. unter Verwendung von Photovoltaik [PV]-Modulen
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