A platform for research: civil engineering, architecture and urbanism
The invention relates to the field of green buildings, and particularly discloses a green intelligent building roof system. The green intelligent building roof system comprises a roof; the roof comprises an upper layer unit, a middle layer unit and a lower layer unit; the upper layer unit comprises transverse parts and longitudinal parts; driven shafts are arranged in the longitudinal parts; two ends of the driven shafts are rotationally arranged on the inner walls of the transverse parts on the two sides; driving devices are arranged in the transverse parts on the two sides; rotating shafts are rotationally arranged in mounting grooves; the rotating shafts are rotationally arranged in two adjacent longitudinal parts and can be driven by the driven shafts; mounting frames are mounted on the rotating shafts; photovoltaic panels are arranged on the upper sides of the mounting frames; water permeable bricks are arranged on the lower sides of the mounting frames; gaps are reserved between the photovoltaic panels and the water permeable bricks; the middle layer unit is provided with an equipment chamber and a filtering chamber with an open upper end; the water permeable bricks are located above the filtering chamber; and the lower layer unit comprises a water storage chamber which communicates with the filtering chamber. The system aims to solve the technical problem of how to efficiently utilize environmental resources.
本发明涉及绿色建筑领域,具体公开了绿色智能建筑屋面系统,包括屋顶,所述屋顶包括上层单元、中层单元、下层单元,上层单元包括横向部和纵向部,纵向部中设置有从动轴,从动轴的两端转动设置在两侧的横向部的内壁上,两侧的横向部中设置有主动装置,安装槽中转动设置有转轴,转轴转动设置在相邻的两个纵向部内且能够被从动轴驱动,转轴上安装有安装框架,安装框架上侧设置有光伏板,安装框架的下侧设置有透水砖,光伏板与透水砖之间留有空隙;中层单元设置有设备腔室和上端开放的过滤腔室,透水砖位于过滤腔室的上方;下层单元包括有储水腔室,储水腔室与过滤腔室连通。本发明的目的在于解决如何高效利用环境资源的技术问题。
The invention relates to the field of green buildings, and particularly discloses a green intelligent building roof system. The green intelligent building roof system comprises a roof; the roof comprises an upper layer unit, a middle layer unit and a lower layer unit; the upper layer unit comprises transverse parts and longitudinal parts; driven shafts are arranged in the longitudinal parts; two ends of the driven shafts are rotationally arranged on the inner walls of the transverse parts on the two sides; driving devices are arranged in the transverse parts on the two sides; rotating shafts are rotationally arranged in mounting grooves; the rotating shafts are rotationally arranged in two adjacent longitudinal parts and can be driven by the driven shafts; mounting frames are mounted on the rotating shafts; photovoltaic panels are arranged on the upper sides of the mounting frames; water permeable bricks are arranged on the lower sides of the mounting frames; gaps are reserved between the photovoltaic panels and the water permeable bricks; the middle layer unit is provided with an equipment chamber and a filtering chamber with an open upper end; the water permeable bricks are located above the filtering chamber; and the lower layer unit comprises a water storage chamber which communicates with the filtering chamber. The system aims to solve the technical problem of how to efficiently utilize environmental resources.
本发明涉及绿色建筑领域,具体公开了绿色智能建筑屋面系统,包括屋顶,所述屋顶包括上层单元、中层单元、下层单元,上层单元包括横向部和纵向部,纵向部中设置有从动轴,从动轴的两端转动设置在两侧的横向部的内壁上,两侧的横向部中设置有主动装置,安装槽中转动设置有转轴,转轴转动设置在相邻的两个纵向部内且能够被从动轴驱动,转轴上安装有安装框架,安装框架上侧设置有光伏板,安装框架的下侧设置有透水砖,光伏板与透水砖之间留有空隙;中层单元设置有设备腔室和上端开放的过滤腔室,透水砖位于过滤腔室的上方;下层单元包括有储水腔室,储水腔室与过滤腔室连通。本发明的目的在于解决如何高效利用环境资源的技术问题。
Green intelligent building roof system
绿色智能建筑屋面系统
2021-09-03
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
B01D
SEPARATION
,
Trennen
/
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