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Low-energy-consumption building curtain wall
The invention belongs to the technical field of building curtain walls, and particularly relates to a low-energy-consumption building curtain wall which comprises a glass curtain wall plate, the glass curtain wall plate is installed on the outer vertical face of a building through an installation frame, a secondary heat insulation assembly is installed on the installation frame, and the secondary heat insulation assembly is located on the backlight side of the glass curtain wall plate; one side of the light facing surface of the glass curtain wall plate is movably connected with a circular polaroid, the circular polaroid and the glass curtain wall plate are coaxially arranged, and the glass curtain wall plate is provided with a rotating deflection device used for driving the circular polaroid to rotate and deflect; and photovoltaic parts are respectively arranged at four corners of one side of the light-facing surface of the glass curtain wall plate. According to the device, the deflection device is rotated to control the corresponding circular polaroid to rotate and deflect, the amount of light which can pass through can be controlled through the polarization effect, then the illumination intensity is controlled, and high load and high energy consumption of an air conditioning system caused by too high indoor temperature are avoided.
本发明属于建筑幕墙技术领域,尤其涉及一种低能耗建筑幕墙,包括:玻璃幕墙板,玻璃幕墙板通过安装架安装在建筑物的外立面上,安装架上安装有二次隔热组件,二次隔热组件位于玻璃幕墙板背光的一侧;玻璃幕墙板迎光面一侧活动连接有圆形偏振片,圆形偏振片与玻璃幕墙板同轴设置,玻璃幕墙板上设置有用于驱动圆形偏振片转动和偏摆的转动偏摆装置;玻璃幕墙板迎光面一侧的四角分别设有光伏部。本装置通过转动偏摆装置控制相应的圆形偏振片旋转和偏摆,可以通过偏振作用控制可以通过的光线的量,进而控制光照强度,避免室内温度过高导致的空调系统负荷高、能耗高。
Low-energy-consumption building curtain wall
The invention belongs to the technical field of building curtain walls, and particularly relates to a low-energy-consumption building curtain wall which comprises a glass curtain wall plate, the glass curtain wall plate is installed on the outer vertical face of a building through an installation frame, a secondary heat insulation assembly is installed on the installation frame, and the secondary heat insulation assembly is located on the backlight side of the glass curtain wall plate; one side of the light facing surface of the glass curtain wall plate is movably connected with a circular polaroid, the circular polaroid and the glass curtain wall plate are coaxially arranged, and the glass curtain wall plate is provided with a rotating deflection device used for driving the circular polaroid to rotate and deflect; and photovoltaic parts are respectively arranged at four corners of one side of the light-facing surface of the glass curtain wall plate. According to the device, the deflection device is rotated to control the corresponding circular polaroid to rotate and deflect, the amount of light which can pass through can be controlled through the polarization effect, then the illumination intensity is controlled, and high load and high energy consumption of an air conditioning system caused by too high indoor temperature are avoided.
本发明属于建筑幕墙技术领域,尤其涉及一种低能耗建筑幕墙,包括:玻璃幕墙板,玻璃幕墙板通过安装架安装在建筑物的外立面上,安装架上安装有二次隔热组件,二次隔热组件位于玻璃幕墙板背光的一侧;玻璃幕墙板迎光面一侧活动连接有圆形偏振片,圆形偏振片与玻璃幕墙板同轴设置,玻璃幕墙板上设置有用于驱动圆形偏振片转动和偏摆的转动偏摆装置;玻璃幕墙板迎光面一侧的四角分别设有光伏部。本装置通过转动偏摆装置控制相应的圆形偏振片旋转和偏摆,可以通过偏振作用控制可以通过的光线的量,进而控制光照强度,避免室内温度过高导致的空调系统负荷高、能耗高。
Low-energy-consumption building curtain wall
一种低能耗建筑幕墙
XU LISHAN (author) / YAO HUALI (author) / DING XIN (author) / WANG WENQI (author) / JIANG JUNCHAO (author) / LIN FEI (author) / LIU MENG (author) / NI WUSHENG (author) / CHEN XU (author) / LI YIPENG (author)
2024-02-23
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
H02J
CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER
,
Schaltungsanordnungen oder Systeme für die Abgabe oder Verteilung elektrischer Leistung
/
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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