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Novel BIPV building photovoltaic integrated roof system
The invention relates to a novel BIPV building photovoltaic integrated roof system which comprises a plurality of mutually-locked roof panels, male ribs and female ribs are arranged on the two sides of each roof panel respectively, a protruding platform is arranged in the middle of each roof panel, the male ribs are wrapped by the female ribs during connection, and a T-shaped lock seam platform is formed through locking; a framed photovoltaic module or a double-glass frameless photovoltaic module is arranged above the roof panel, and when the framed photovoltaic module is arranged above the roof panel, the framed photovoltaic module is connected with the roof panel through an integrated clamp and is fixed through a pressing block; and when the double-glass frameless photovoltaic module is arranged above the roof panel, the double-glass frameless photovoltaic module is fixed with the roof panel through a silicone structural adhesive. The photovoltaic assembly is simple in structure, convenient to install, high in precision, high in wind resistance, good in drainage performance and adaptive to a mainstream 182/210 battery piece photovoltaic assembly in the market, the photovoltaic assembly and the roof panel can be mechanically connected or bonded through a silicone structural adhesive, the surface of the assembly can be treaded, a traditional operation and maintenance walkway is omitted, and the photovoltaic installed capacity of the roof is high.
本发明涉及一种新型BIPV建筑光伏一体化屋面系统,包括若干个相互锁合的屋面板,屋面板的两侧分别为公肋和母肋,屋面板的中部为凸起平台,连接时母肋包裹公肋,且通过锁合形成T型锁缝平台;屋面板上方为带框光伏组件或双玻无框光伏组件,当屋面板上方为带框光伏组件时,带框光伏组件通过一体化夹具与屋面板连接,并通过压块固定;当屋面板上方为双玻无框光伏组件时,双玻无框光伏组件通过硅酮结构胶与屋面板固定。本发明结构简单、安装便捷、精度高、抗风性能强,排水性能好,适配市场主流182/210电池片光伏组件,光伏组件与屋面板之间可采用机械式连接或硅酮结构胶粘接,组件表面可踩踏,省去传统运维走道,屋面光伏装机容量高。
Novel BIPV building photovoltaic integrated roof system
The invention relates to a novel BIPV building photovoltaic integrated roof system which comprises a plurality of mutually-locked roof panels, male ribs and female ribs are arranged on the two sides of each roof panel respectively, a protruding platform is arranged in the middle of each roof panel, the male ribs are wrapped by the female ribs during connection, and a T-shaped lock seam platform is formed through locking; a framed photovoltaic module or a double-glass frameless photovoltaic module is arranged above the roof panel, and when the framed photovoltaic module is arranged above the roof panel, the framed photovoltaic module is connected with the roof panel through an integrated clamp and is fixed through a pressing block; and when the double-glass frameless photovoltaic module is arranged above the roof panel, the double-glass frameless photovoltaic module is fixed with the roof panel through a silicone structural adhesive. The photovoltaic assembly is simple in structure, convenient to install, high in precision, high in wind resistance, good in drainage performance and adaptive to a mainstream 182/210 battery piece photovoltaic assembly in the market, the photovoltaic assembly and the roof panel can be mechanically connected or bonded through a silicone structural adhesive, the surface of the assembly can be treaded, a traditional operation and maintenance walkway is omitted, and the photovoltaic installed capacity of the roof is high.
本发明涉及一种新型BIPV建筑光伏一体化屋面系统,包括若干个相互锁合的屋面板,屋面板的两侧分别为公肋和母肋,屋面板的中部为凸起平台,连接时母肋包裹公肋,且通过锁合形成T型锁缝平台;屋面板上方为带框光伏组件或双玻无框光伏组件,当屋面板上方为带框光伏组件时,带框光伏组件通过一体化夹具与屋面板连接,并通过压块固定;当屋面板上方为双玻无框光伏组件时,双玻无框光伏组件通过硅酮结构胶与屋面板固定。本发明结构简单、安装便捷、精度高、抗风性能强,排水性能好,适配市场主流182/210电池片光伏组件,光伏组件与屋面板之间可采用机械式连接或硅酮结构胶粘接,组件表面可踩踏,省去传统运维走道,屋面光伏装机容量高。
Novel BIPV building photovoltaic integrated roof system
一种新型BIPV建筑光伏一体化屋面系统
LU SHICHAO (author) / CAI YING (author) / WANG CHAO (author) / DING HAOJIE (author) / QIAN GUOMING (author) / LI JIALUO (author) / ZHANG LI (author) / WU LIANGFENG (author) / LYU MENGYU (author) / XU XING (author)
2024-10-18
Patent
Electronic Resource
Chinese
IPC:
E04D
ROOF COVERINGS
,
Dacheindeckungen
/
F24S
Sonnenkollektoren
,
SOLAR HEAT COLLECTORS
/
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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