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Intelligent glass curtain wall capable of photovoltaic power generation
The invention discloses an intelligent glass curtain wall capable of photovoltaic power generation, and belongs to the technical field of glass curtain walls. The glass curtain wall assembly is composed of two pieces of glass, clamping sleeves are arranged on the two sides of the glass curtain wall assembly, and a base is arranged between the two clamping sleeves; the two sets of first limiting strips are arranged and located between the two pieces of glass, fixing assemblies are arranged on the inner sides of the two sets of first limiting strips, and a plurality of transverse rods are arranged between the two fixing assemblies; the photovoltaic panels are movably connected to the transverse rod, fixing bases are arranged on the back faces of the photovoltaic panels, and inserting pieces are arranged at the rear ends of the fixing bases. The problems that the indoor temperature is high in summer and the indoor power utilization cost is increased due to light transmission of an existing glass curtain wall are solved, the light transmission of the glass curtain wall is ensured through gaps between the photovoltaic panels, the indoor temperature is reduced, the sensing module controls the photovoltaic panels to adjust the angle according to solar rays, and the solar energy utilization rate is improved. Sunlight is converted into electric energy to be used in the building, operation cost is reduced, and energy efficiency is improved.
本发明公开了一种可光伏发电的智能玻璃幕墙,属于玻璃幕墙技术领域。玻璃幕墙组件,由两个玻璃组成,玻璃幕墙组件两侧均设有卡套,两个卡套之间设有底座;限位条一设置有两组,限位条一位于两个玻璃之间,两组限位条一内侧均设有固定组件,两个固定组件之间设有多个横杆;光伏板设置有多个,光伏板均活动连接于横杆上,多个光伏板背面均设有固定座,多个固定座后端均设有插件。本发明解决了现有玻璃幕墙因透光性导致在夏季室内的温度较高,室内增加用电成本的问题,本发明的光伏板之间的缝隙确保玻璃幕墙的透光性并降低室内温度,传感模块控制光伏板根据太阳光线调节角度,将阳光转化为电能供建筑物内部使用,降低运营成本,提高能源效率。
Intelligent glass curtain wall capable of photovoltaic power generation
The invention discloses an intelligent glass curtain wall capable of photovoltaic power generation, and belongs to the technical field of glass curtain walls. The glass curtain wall assembly is composed of two pieces of glass, clamping sleeves are arranged on the two sides of the glass curtain wall assembly, and a base is arranged between the two clamping sleeves; the two sets of first limiting strips are arranged and located between the two pieces of glass, fixing assemblies are arranged on the inner sides of the two sets of first limiting strips, and a plurality of transverse rods are arranged between the two fixing assemblies; the photovoltaic panels are movably connected to the transverse rod, fixing bases are arranged on the back faces of the photovoltaic panels, and inserting pieces are arranged at the rear ends of the fixing bases. The problems that the indoor temperature is high in summer and the indoor power utilization cost is increased due to light transmission of an existing glass curtain wall are solved, the light transmission of the glass curtain wall is ensured through gaps between the photovoltaic panels, the indoor temperature is reduced, the sensing module controls the photovoltaic panels to adjust the angle according to solar rays, and the solar energy utilization rate is improved. Sunlight is converted into electric energy to be used in the building, operation cost is reduced, and energy efficiency is improved.
本发明公开了一种可光伏发电的智能玻璃幕墙,属于玻璃幕墙技术领域。玻璃幕墙组件,由两个玻璃组成,玻璃幕墙组件两侧均设有卡套,两个卡套之间设有底座;限位条一设置有两组,限位条一位于两个玻璃之间,两组限位条一内侧均设有固定组件,两个固定组件之间设有多个横杆;光伏板设置有多个,光伏板均活动连接于横杆上,多个光伏板背面均设有固定座,多个固定座后端均设有插件。本发明解决了现有玻璃幕墙因透光性导致在夏季室内的温度较高,室内增加用电成本的问题,本发明的光伏板之间的缝隙确保玻璃幕墙的透光性并降低室内温度,传感模块控制光伏板根据太阳光线调节角度,将阳光转化为电能供建筑物内部使用,降低运营成本,提高能源效率。
Intelligent glass curtain wall capable of photovoltaic power generation
可光伏发电的智能玻璃幕墙
LIANG WANG (Autor:in) / GUO YING (Autor:in) / ZHANG XINWANG (Autor:in) / CHEN KUI (Autor:in) / WEI XINFAN (Autor:in)
19.11.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
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
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