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Building integrated photovoltaic insulation board
The invention provides a building integrated photovoltaic insulation board. The building integrated photovoltaic insulation board comprises a structure assembly, a thermal insulation material layer, an air layer and power generation glass; the structure assembly is used for assembling the thermal insulation material layer and the power generation glass together from the peripheries; the air layeris a closed space positioned between the power generation glass and the thermal insulation material layer; an upper passage and a lower passage are formed in the top end and the bottom end of the structure assembly; the upper passage and the lower passage communicate with the air layer and external atmosphere; and temperature control switches are arranged in both the upper passage and the lower passage. By virtue of influence of temperature change in summer and winter or day and night to the temperature control switches, the temperature control switches are switched on in summer or in daytimeto communicate with the external atmosphere, so that ventilation and heat dissipation of the power generation glass is achieved; the temperature control switches are switched off in winter or at nightto form a closed air insulation layer, so that an insulation effect is achieved; and meanwhile, by means of the structure, the thickness of the insulation layer can be reduced under the same insulation performance, and the occupied space is reduced.
本发明提供一种建筑一体化光伏保温板,它包括结构组件、保温材料层、空气层和发电玻璃,结构组件用于从四周将所述保温材料层和发电玻璃装配到一起,空气层是位于发电玻璃和保温材料层之间的封闭空间,位于上下两端的结构组件上设有用于连通所述空气层和外部大气的上方通道和下方通道,所述上方通道和下方通道中均安装有温控开关,借助夏季和冬季或白天和黑夜间温度的变化对温控开关的影响,在夏季或白天打开,与外部大气连通,实现发电玻璃的通风散热,冬季或晚上关闭,形成密闭的空气隔热层,起到保温作用,同时,利用这种结构,在同等保温性能下,可以减少保温层的厚度,降低占用的空间。
Building integrated photovoltaic insulation board
The invention provides a building integrated photovoltaic insulation board. The building integrated photovoltaic insulation board comprises a structure assembly, a thermal insulation material layer, an air layer and power generation glass; the structure assembly is used for assembling the thermal insulation material layer and the power generation glass together from the peripheries; the air layeris a closed space positioned between the power generation glass and the thermal insulation material layer; an upper passage and a lower passage are formed in the top end and the bottom end of the structure assembly; the upper passage and the lower passage communicate with the air layer and external atmosphere; and temperature control switches are arranged in both the upper passage and the lower passage. By virtue of influence of temperature change in summer and winter or day and night to the temperature control switches, the temperature control switches are switched on in summer or in daytimeto communicate with the external atmosphere, so that ventilation and heat dissipation of the power generation glass is achieved; the temperature control switches are switched off in winter or at nightto form a closed air insulation layer, so that an insulation effect is achieved; and meanwhile, by means of the structure, the thickness of the insulation layer can be reduced under the same insulation performance, and the occupied space is reduced.
本发明提供一种建筑一体化光伏保温板,它包括结构组件、保温材料层、空气层和发电玻璃,结构组件用于从四周将所述保温材料层和发电玻璃装配到一起,空气层是位于发电玻璃和保温材料层之间的封闭空间,位于上下两端的结构组件上设有用于连通所述空气层和外部大气的上方通道和下方通道,所述上方通道和下方通道中均安装有温控开关,借助夏季和冬季或白天和黑夜间温度的变化对温控开关的影响,在夏季或白天打开,与外部大气连通,实现发电玻璃的通风散热,冬季或晚上关闭,形成密闭的空气隔热层,起到保温作用,同时,利用这种结构,在同等保温性能下,可以减少保温层的厚度,降低占用的空间。
Building integrated photovoltaic insulation board
建筑一体化光伏保温板
CUI GUOYOU (author) / KOU QINGMIN (author) / CHEN XIANZHI (author) / YU JINGKUN (author) / XUAN BAOQIANG (author) / YUN QINGHUA (author) / CHAO YUEPENG (author) / SONG LIWEI (author) / WANG FANG (author) / WANG YI (author)
2020-06-26
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
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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