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Building photovoltaic integrated daylighting roof and house
The invention discloses a building photovoltaic integrated daylighting roof and house, the daylighting roof comprises at least two inclined areas, each inclined area is internally provided with a plurality of main beams which are distributed in parallel, the inclination directions of all the main beams are the same, the two ends of each main beam are the low-position end and the high-position end respectively, and the high-position end and the low-position end are arranged in parallel. The high-position end of any main beam is fixedly connected with the low-position end of the main beam in another adjacent inclined area through a transition wall, the top of the main beam is fixedly connected with a plurality of main purlins, the top of the main purlins is fixedly connected with a plurality of secondary purlins, and the top of the secondary purlins is fixedly provided with a plurality of photovoltaic modules. According to the building photovoltaic integrated daylighting roof, the photovoltaic module is directly adopted as the roof, the problems that the roof is prone to rusting, insufficient in load and the like due to the fact that a color steel tile is directly covered with a photovoltaic panel generally are solved, in addition, when the building photovoltaic integrated daylighting roof is adopted, the photovoltaic module can be observed in a house, indoor daylighting is effectively improved, and the purpose of saving energy is achieved.
本发明公开了建筑光伏一体化采光屋面及房屋,该采光屋面包括至少两个倾斜区,每个所述倾斜区内均设有多个平行分布的主梁,且所有的所述主梁的倾斜方向相同,所述主梁的两端分别为低位端和高位端,任一所述主梁的高位端与相邻的另一个倾斜区内所述主梁的低位端之间通过过渡墙固定相连,所述主梁的顶部固定连接有多个主檩条,所述主檩条的顶部固定连接有多个次檩条,所述次檩条的顶部固定安装有多个光伏组件。本发明直接采用光伏组件作为屋面,有助于解决一般直接在彩钢瓦上盖光伏板的结构屋面所存在的易生锈、荷载不足等问题,此外,当采用建筑光伏一体化采光屋面,在房屋内部就能观察到光伏组件,有效改善室内采光,达到节能目的。
Building photovoltaic integrated daylighting roof and house
The invention discloses a building photovoltaic integrated daylighting roof and house, the daylighting roof comprises at least two inclined areas, each inclined area is internally provided with a plurality of main beams which are distributed in parallel, the inclination directions of all the main beams are the same, the two ends of each main beam are the low-position end and the high-position end respectively, and the high-position end and the low-position end are arranged in parallel. The high-position end of any main beam is fixedly connected with the low-position end of the main beam in another adjacent inclined area through a transition wall, the top of the main beam is fixedly connected with a plurality of main purlins, the top of the main purlins is fixedly connected with a plurality of secondary purlins, and the top of the secondary purlins is fixedly provided with a plurality of photovoltaic modules. According to the building photovoltaic integrated daylighting roof, the photovoltaic module is directly adopted as the roof, the problems that the roof is prone to rusting, insufficient in load and the like due to the fact that a color steel tile is directly covered with a photovoltaic panel generally are solved, in addition, when the building photovoltaic integrated daylighting roof is adopted, the photovoltaic module can be observed in a house, indoor daylighting is effectively improved, and the purpose of saving energy is achieved.
本发明公开了建筑光伏一体化采光屋面及房屋,该采光屋面包括至少两个倾斜区,每个所述倾斜区内均设有多个平行分布的主梁,且所有的所述主梁的倾斜方向相同,所述主梁的两端分别为低位端和高位端,任一所述主梁的高位端与相邻的另一个倾斜区内所述主梁的低位端之间通过过渡墙固定相连,所述主梁的顶部固定连接有多个主檩条,所述主檩条的顶部固定连接有多个次檩条,所述次檩条的顶部固定安装有多个光伏组件。本发明直接采用光伏组件作为屋面,有助于解决一般直接在彩钢瓦上盖光伏板的结构屋面所存在的易生锈、荷载不足等问题,此外,当采用建筑光伏一体化采光屋面,在房屋内部就能观察到光伏组件,有效改善室内采光,达到节能目的。
Building photovoltaic integrated daylighting roof and house
建筑光伏一体化采光屋面及房屋
SU PENG (author) / LI XINSHENG (author) / TU YIYUN (author)
2022-04-22
Patent
Electronic Resource
Chinese
IPC:
E04D
ROOF COVERINGS
,
Dacheindeckungen
/
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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