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The invention relates to the technical field of solar building facilities, and discloses a solar building roof. The solar building roof comprises a base frame, wherein sixteen placing grooves are formed in the base frame, the sixteen placing grooves are correspondingly arranged in a manner of four transverse placing grooves and four vertical placing grooves, photovoltaic panels are placed in the sixteen placing grooves, the sixteen photovoltaic panels are uniformly divided into two groups by taking the center line of the base frame in the vertical direction, and the two groups of photovoltaicpanels are mutually symmetrical by taking the center line of the base frame in the vertical direction as a symmetry axis. According to the solar building roof, the photovoltaic panels located in the same vertical column are fixed through a fixing device in a manner of fixedly clamping an adjusting rod and the fixing device, the flatness of the installed photovoltaic panels is adjusted through thesame fixing device by adopting a manner of breaking up parts into a whole, thereby being conducive to ensuring that the flatness of an overall mesh surface formed by all the photovoltaic panels is located at a unified and appropriate angle, and effectively improving the light receiving utilization rate of the photovoltaic panels.
本发明涉及太阳能建筑设施技术领域,且公开了种太阳能建筑屋顶,包括基架,所述基架内部开设开设有有放置槽,所述放置槽的槽数为十六个,十六个放置槽以横向四个及竖向四个分布对应排列,十六个所述放置槽的内部均放置有光伏板,十六个所述光伏板以基架竖直方向的中线均匀分为两组,两组所述光伏板以基架竖直方向的中线为对称轴相互对称。该太阳能建筑屋顶,通过调动杆与调固装置固定卡接的方式,将位于同一竖列的光伏板通过一个调固装置进行固定,采用化零为整的方式,便于通过同一调固装置对安装的光伏板的平面度进行调节,有利于保证所有光伏板形成的整体网面的平面度位于统一适宜角度,有效的提高了光伏板的受光利用率。
The invention relates to the technical field of solar building facilities, and discloses a solar building roof. The solar building roof comprises a base frame, wherein sixteen placing grooves are formed in the base frame, the sixteen placing grooves are correspondingly arranged in a manner of four transverse placing grooves and four vertical placing grooves, photovoltaic panels are placed in the sixteen placing grooves, the sixteen photovoltaic panels are uniformly divided into two groups by taking the center line of the base frame in the vertical direction, and the two groups of photovoltaicpanels are mutually symmetrical by taking the center line of the base frame in the vertical direction as a symmetry axis. According to the solar building roof, the photovoltaic panels located in the same vertical column are fixed through a fixing device in a manner of fixedly clamping an adjusting rod and the fixing device, the flatness of the installed photovoltaic panels is adjusted through thesame fixing device by adopting a manner of breaking up parts into a whole, thereby being conducive to ensuring that the flatness of an overall mesh surface formed by all the photovoltaic panels is located at a unified and appropriate angle, and effectively improving the light receiving utilization rate of the photovoltaic panels.
本发明涉及太阳能建筑设施技术领域,且公开了种太阳能建筑屋顶,包括基架,所述基架内部开设开设有有放置槽,所述放置槽的槽数为十六个,十六个放置槽以横向四个及竖向四个分布对应排列,十六个所述放置槽的内部均放置有光伏板,十六个所述光伏板以基架竖直方向的中线均匀分为两组,两组所述光伏板以基架竖直方向的中线为对称轴相互对称。该太阳能建筑屋顶,通过调动杆与调固装置固定卡接的方式,将位于同一竖列的光伏板通过一个调固装置进行固定,采用化零为整的方式,便于通过同一调固装置对安装的光伏板的平面度进行调节,有利于保证所有光伏板形成的整体网面的平面度位于统一适宜角度,有效的提高了光伏板的受光利用率。
Solar building roof
一种太阳能建筑屋顶
CAO MIN (author)
2020-12-22
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
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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