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Zero-carbon building photovoltaic curtain wall device with steel structure
The invention discloses a steel-structure zero-carbon building photovoltaic curtain wall device, and the device comprises a seat plate which is welded to the side surface of an I-shaped beam; the through-wall cantilever penetrates through the wall thermal insulation structure and is provided with an inner end connecting seat and an outer end connecting seat; the aluminum keel is connected with the outer end connecting seat of the through-wall cantilever; the aluminum profile hanging beam is provided with a lateral hanging structure facing the aluminum keel, a wiring groove with an upward opening, a first hook groove and a second hook groove; the top of the photovoltaic glass plate is provided with a side hanging hook, and the bottom end of the photovoltaic glass plate is provided with a collet hook; the first hook grooves and the second hook grooves are arranged at intervals inside and outside in the direction perpendicular to the wall face, the photovoltaic glass plates are installed at an elevation angle, and the side hanging hooks of the photovoltaic glass plates in the same row are connected with the first hook grooves of the same aluminum profile beam in a hanging mode. The bottom support hooks of the photovoltaic glass plates in the same row are connected with the second hanging grooves of the other aluminum profile cross beam at the lower position in a hanging mode. According to the invention, the photovoltaic power generation glass can be installed at an elevation angle on the vertical surface of the wall body, and the photovoltaic power generation efficiency is improved.
本发明公开了一种钢结构零碳建筑光伏幕墙装置,包括:座板,焊接至工字梁的侧面;穿墙悬臂,贯穿墙体保温结构,具有内端连接座和外端连接座;铝龙骨,与穿墙悬臂的外端连接座连接;铝型材挂梁,具有面对铝龙骨的侧向挂接结构、敞口朝上的走线槽、第一挂钩槽和第二挂钩槽;光伏玻璃板,其顶部设置有侧吊挂钩,其底端设置有底托挂钩;所述第一挂钩槽和第二挂钩槽具有在垂直墙面方向上一内一外的间隔布置方式,光伏玻璃板呈仰角安装,同一排光伏玻璃板的侧吊挂钩与同一铝型材横梁的第一挂钩槽挂接,同一排光伏玻璃板的底托挂钩与位置在下的另一铝型材横梁的第二挂沟槽挂接。本发明实现了光伏发电玻璃在墙体立面上的仰角安装,提升了光伏发电效率。
Zero-carbon building photovoltaic curtain wall device with steel structure
The invention discloses a steel-structure zero-carbon building photovoltaic curtain wall device, and the device comprises a seat plate which is welded to the side surface of an I-shaped beam; the through-wall cantilever penetrates through the wall thermal insulation structure and is provided with an inner end connecting seat and an outer end connecting seat; the aluminum keel is connected with the outer end connecting seat of the through-wall cantilever; the aluminum profile hanging beam is provided with a lateral hanging structure facing the aluminum keel, a wiring groove with an upward opening, a first hook groove and a second hook groove; the top of the photovoltaic glass plate is provided with a side hanging hook, and the bottom end of the photovoltaic glass plate is provided with a collet hook; the first hook grooves and the second hook grooves are arranged at intervals inside and outside in the direction perpendicular to the wall face, the photovoltaic glass plates are installed at an elevation angle, and the side hanging hooks of the photovoltaic glass plates in the same row are connected with the first hook grooves of the same aluminum profile beam in a hanging mode. The bottom support hooks of the photovoltaic glass plates in the same row are connected with the second hanging grooves of the other aluminum profile cross beam at the lower position in a hanging mode. According to the invention, the photovoltaic power generation glass can be installed at an elevation angle on the vertical surface of the wall body, and the photovoltaic power generation efficiency is improved.
本发明公开了一种钢结构零碳建筑光伏幕墙装置,包括:座板,焊接至工字梁的侧面;穿墙悬臂,贯穿墙体保温结构,具有内端连接座和外端连接座;铝龙骨,与穿墙悬臂的外端连接座连接;铝型材挂梁,具有面对铝龙骨的侧向挂接结构、敞口朝上的走线槽、第一挂钩槽和第二挂钩槽;光伏玻璃板,其顶部设置有侧吊挂钩,其底端设置有底托挂钩;所述第一挂钩槽和第二挂钩槽具有在垂直墙面方向上一内一外的间隔布置方式,光伏玻璃板呈仰角安装,同一排光伏玻璃板的侧吊挂钩与同一铝型材横梁的第一挂钩槽挂接,同一排光伏玻璃板的底托挂钩与位置在下的另一铝型材横梁的第二挂沟槽挂接。本发明实现了光伏发电玻璃在墙体立面上的仰角安装,提升了光伏发电效率。
Zero-carbon building photovoltaic curtain wall device with steel structure
一种钢结构零碳建筑光伏幕墙装置
WU WANCHAO (Autor:in) / ZHANG ZHENPENG (Autor:in) / XIE YIDONG (Autor:in) / HAN XIAOYU (Autor:in) / WANG YUXIN (Autor:in) / LI GUOBING (Autor:in) / LIU ZHENHUA (Autor:in) / SHEN YI (Autor:in) / SUN AOSHENG (Autor:in) / MA PUSEN (Autor:in)
27.02.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
H02G
INSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
,
Verlegen oder Installieren elektrischer Kabel oder Leitungen, Verlegen oder Installieren kombinierter optischer und elektrischer Kabel oder Leitungen
/
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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