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Double-cable modular offshore photovoltaic supporting structure
The invention provides a double-cable modular offshore photovoltaic supporting structure, which is characterized in that an insertion type cross beam is arranged between the pile tops of transverse adjacent pile structures, the head end and the tail end of the insertion type cross beam are respectively provided with an insertion end and a connecting end, and the adjacent insertion type cross beams are connected end to end at the pile top of the same pile structure; meanwhile, the insertion end is in insertion fit with the pile top hole; hanging points connected with a cable structure are arranged in the inserting end and the connecting end in the single inserting type cross beam; and the longitudinally adjacent plug-in type cross beams are connected through the two cable structures. According to the invention, one pile structure corresponds to two cable structures, and each photovoltaic module is independently placed on two cables, so that two adjacent photovoltaic modules do not share the cable structure, and the installation error of the two adjacent photovoltaic modules can be adjusted through the adjustable connecting rod, thereby reducing the installation precision requirement of the photovoltaic module, and improving the installation precision of the photovoltaic module. Installation is convenient, and the installation efficiency is better.
本发明提供了一种双索模块式海上光伏支承结构,在横向相邻桩结构的桩顶之间设置插入式横梁,所述插入式横梁的首尾端分别设置插入端和连接端,相邻所述插入式横梁在同一所述桩结构的桩顶首尾相连,同时所述插入端与桩顶孔洞插接配合;单个所述插入式横梁内的所述插入端与所述连接端内皆设有与索结构连接的挂点;纵向相邻所述插入式横梁之间通过两根所述索结构连接。本发明通过一根桩结构对应两根索结构,每个光伏组件模块都独立的放在两根索上,由此邻两个光伏组件模块不共用索结构,相邻两个光伏组件模块的安装误差可以通过可调式连接杆调节,从而降低了光伏组件模块安装精度要求,方便安装、且安装效率更佳。
Double-cable modular offshore photovoltaic supporting structure
The invention provides a double-cable modular offshore photovoltaic supporting structure, which is characterized in that an insertion type cross beam is arranged between the pile tops of transverse adjacent pile structures, the head end and the tail end of the insertion type cross beam are respectively provided with an insertion end and a connecting end, and the adjacent insertion type cross beams are connected end to end at the pile top of the same pile structure; meanwhile, the insertion end is in insertion fit with the pile top hole; hanging points connected with a cable structure are arranged in the inserting end and the connecting end in the single inserting type cross beam; and the longitudinally adjacent plug-in type cross beams are connected through the two cable structures. According to the invention, one pile structure corresponds to two cable structures, and each photovoltaic module is independently placed on two cables, so that two adjacent photovoltaic modules do not share the cable structure, and the installation error of the two adjacent photovoltaic modules can be adjusted through the adjustable connecting rod, thereby reducing the installation precision requirement of the photovoltaic module, and improving the installation precision of the photovoltaic module. Installation is convenient, and the installation efficiency is better.
本发明提供了一种双索模块式海上光伏支承结构,在横向相邻桩结构的桩顶之间设置插入式横梁,所述插入式横梁的首尾端分别设置插入端和连接端,相邻所述插入式横梁在同一所述桩结构的桩顶首尾相连,同时所述插入端与桩顶孔洞插接配合;单个所述插入式横梁内的所述插入端与所述连接端内皆设有与索结构连接的挂点;纵向相邻所述插入式横梁之间通过两根所述索结构连接。本发明通过一根桩结构对应两根索结构,每个光伏组件模块都独立的放在两根索上,由此邻两个光伏组件模块不共用索结构,相邻两个光伏组件模块的安装误差可以通过可调式连接杆调节,从而降低了光伏组件模块安装精度要求,方便安装、且安装效率更佳。
Double-cable modular offshore photovoltaic supporting structure
一种双索模块式海上光伏支承结构
YU HUAFENG (author) / WANG KANGJIE (author) / JIA XIANLIN (author) / GUI XUEFENG (author) / ZHAO YUE (author) / LOU WEI (author) / LI JUNLONG (author) / WENG KAIWEN (author) / LI BAOJIAN (author) / YU GANGJIE (author)
2024-12-20
Patent
Electronic Resource
Chinese
IPC:
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
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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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