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Tower shield heat insulation waterproof roof system for photovoltaic power generation
The invention discloses a tower shield heat insulation waterproof roof system for photovoltaic power generation, and relates to the technical field of energy collection roof coverings. A photovoltaic power generation assembly is installed on the upper portion of a tower shield roof and used for converting solar energy into electric energy; a storage battery pack is installed on the tower shield roof, connected to the photovoltaic power generation assembly and used for storing generated electric energy; and a roof base surface sealing layer is a sealing layer formed by primer sprayed according to different base materials, and plays a protection role in sealing, corrosion resistance and oxidation resistance of an original roof base material. The heat-insulation waterproof coating and the waterproof matched polyester cloth are mixed to form a heat-insulation waterproof layer, and the heat-insulation waterproof layer is laid on the surface of the sealing layer and used for achieving heat-insulation and waterproof effects on the roof; and a finish-coat paint coating is brushed or sprayed on the heat-insulating waterproof layer to form antioxidant finish paint. In the aspect of structure, construction is simple, heat insulation and waterproof effects are achieved, energy conservation and environmental protection are achieved, and meanwhile the generating capacity of a matched roof photovoltaic power generation system is improved.
本发明公开是关于一种用于光伏发电的塔盾隔热防水屋面系统,涉及能量收集屋面覆盖物技术领域。光伏发电组件安装在塔盾屋顶的上部,用于将太阳能转换为电能;蓄电池组安装在塔盾屋顶上,与光伏发电组件相连接,用于对产生的电能进行存储;屋顶基面封闭层是根据不同基底材质喷涂的底漆所形成的封闭层,起到对原有屋面基材的封闭、防锈蚀及抗氧化的保护作用。隔热防水涂料和防水配套聚酯布混合构成隔热防水层,并铺设在封闭层的表面,用于对屋顶形成隔热及防水作用;罩面漆涂层刷涂或喷涂在所述隔热防水层上,形成抗氧化表面漆。在结构方面,施工简单,兼具隔热与防水双重功效,节能环保,同时提高配套屋顶光伏发电系统的发电量。
Tower shield heat insulation waterproof roof system for photovoltaic power generation
The invention discloses a tower shield heat insulation waterproof roof system for photovoltaic power generation, and relates to the technical field of energy collection roof coverings. A photovoltaic power generation assembly is installed on the upper portion of a tower shield roof and used for converting solar energy into electric energy; a storage battery pack is installed on the tower shield roof, connected to the photovoltaic power generation assembly and used for storing generated electric energy; and a roof base surface sealing layer is a sealing layer formed by primer sprayed according to different base materials, and plays a protection role in sealing, corrosion resistance and oxidation resistance of an original roof base material. The heat-insulation waterproof coating and the waterproof matched polyester cloth are mixed to form a heat-insulation waterproof layer, and the heat-insulation waterproof layer is laid on the surface of the sealing layer and used for achieving heat-insulation and waterproof effects on the roof; and a finish-coat paint coating is brushed or sprayed on the heat-insulating waterproof layer to form antioxidant finish paint. In the aspect of structure, construction is simple, heat insulation and waterproof effects are achieved, energy conservation and environmental protection are achieved, and meanwhile the generating capacity of a matched roof photovoltaic power generation system is improved.
本发明公开是关于一种用于光伏发电的塔盾隔热防水屋面系统,涉及能量收集屋面覆盖物技术领域。光伏发电组件安装在塔盾屋顶的上部,用于将太阳能转换为电能;蓄电池组安装在塔盾屋顶上,与光伏发电组件相连接,用于对产生的电能进行存储;屋顶基面封闭层是根据不同基底材质喷涂的底漆所形成的封闭层,起到对原有屋面基材的封闭、防锈蚀及抗氧化的保护作用。隔热防水涂料和防水配套聚酯布混合构成隔热防水层,并铺设在封闭层的表面,用于对屋顶形成隔热及防水作用;罩面漆涂层刷涂或喷涂在所述隔热防水层上,形成抗氧化表面漆。在结构方面,施工简单,兼具隔热与防水双重功效,节能环保,同时提高配套屋顶光伏发电系统的发电量。
Tower shield heat insulation waterproof roof system for photovoltaic power generation
一种用于光伏发电的塔盾隔热防水屋面系统
FAN XIAOBING (Autor:in) / LI YING (Autor:in)
22.10.2021
Patent
Elektronische Ressource
Chinesisch
IPC:
E04D
ROOF COVERINGS
,
Dacheindeckungen
/
C04B
Kalk
,
LIME
/
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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