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Photovoltaic roof structure of basalt fiber composite material
The invention discloses a photovoltaic roof structure of a basalt fiber composite material. The photovoltaic roof structure comprises a main body structure purline, and a photovoltaic assembly and a drainage system are arranged on the main body structure purline; the drainage system comprises a W-shaped water tank, the W-shaped water tank is connected and fixed through self-drilling and self-tapping screws, and the photovoltaic module is located in a rectangular grid defined by the W-shaped water tank and the U-shaped water tank. Compared with the prior art, the system has the advantages that the system is simple in structure and convenient to use, rainwater and condensate water on the surface of the photovoltaic module are discharged to the outside of the system in an organized mode through the criss-cross W-shaped water grooves and the criss-cross U-shaped water grooves, and therefore normal use of the photovoltaic module is guaranteed, and economic losses and time waste caused by overhauling are reduced. The photovoltaic module is directly used as a roof material and has a waterproof function, so that the material expenditure of the photovoltaic greenhouse is greatly saved. Basalt fiber composite materials are adopted as parts, the problems of corrosion prevention, water prevention and the like are solved, and due to the fact that the materials are low in density and light in weight, installation is convenient and fast.
本发明公开了一种玄武岩纤维复合材料的光伏屋面结构,包括主体结构檩条,所述主体结构檩条上设有光伏组件和排水系统;所述排水系统包括W型水槽,通过自钻自攻螺钉连接固定,所述光伏组件位于W型水槽、U型水槽围成的矩形格内。本发明与现有技术相比的优点在于:结构简单,使用方便,利用纵横交错的W型水槽和U型水槽,将雨水及光伏组件表面的冷凝水有组织地排至系统外部,从而保证光伏组件正常使用,且减少由于检修带来的经济损失和时间的浪费。光伏组件直接作为屋顶材料,且具有防水功能,大大节省了光伏大棚的材料支出。采用玄武岩纤维复合材料作为零部件,解决了防腐、防水等问题,并且由于材料密度低,质量轻,安装方便快捷。
Photovoltaic roof structure of basalt fiber composite material
The invention discloses a photovoltaic roof structure of a basalt fiber composite material. The photovoltaic roof structure comprises a main body structure purline, and a photovoltaic assembly and a drainage system are arranged on the main body structure purline; the drainage system comprises a W-shaped water tank, the W-shaped water tank is connected and fixed through self-drilling and self-tapping screws, and the photovoltaic module is located in a rectangular grid defined by the W-shaped water tank and the U-shaped water tank. Compared with the prior art, the system has the advantages that the system is simple in structure and convenient to use, rainwater and condensate water on the surface of the photovoltaic module are discharged to the outside of the system in an organized mode through the criss-cross W-shaped water grooves and the criss-cross U-shaped water grooves, and therefore normal use of the photovoltaic module is guaranteed, and economic losses and time waste caused by overhauling are reduced. The photovoltaic module is directly used as a roof material and has a waterproof function, so that the material expenditure of the photovoltaic greenhouse is greatly saved. Basalt fiber composite materials are adopted as parts, the problems of corrosion prevention, water prevention and the like are solved, and due to the fact that the materials are low in density and light in weight, installation is convenient and fast.
本发明公开了一种玄武岩纤维复合材料的光伏屋面结构,包括主体结构檩条,所述主体结构檩条上设有光伏组件和排水系统;所述排水系统包括W型水槽,通过自钻自攻螺钉连接固定,所述光伏组件位于W型水槽、U型水槽围成的矩形格内。本发明与现有技术相比的优点在于:结构简单,使用方便,利用纵横交错的W型水槽和U型水槽,将雨水及光伏组件表面的冷凝水有组织地排至系统外部,从而保证光伏组件正常使用,且减少由于检修带来的经济损失和时间的浪费。光伏组件直接作为屋顶材料,且具有防水功能,大大节省了光伏大棚的材料支出。采用玄武岩纤维复合材料作为零部件,解决了防腐、防水等问题,并且由于材料密度低,质量轻,安装方便快捷。
Photovoltaic roof structure of basalt fiber composite material
一种玄武岩纤维复合材料的光伏屋面结构
ZHANG SHIYU (Autor:in)
01.08.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E04D
ROOF COVERINGS
,
Dacheindeckungen
/
E04C
STRUCTURAL ELEMENTS
,
Bauelemente
/
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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