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Frameless photovoltaic module building integrated installation structure
The invention belongs to the photovoltaic field, and particularly relates to a frameless photovoltaic module building integrated installation structure which comprises frameless photovoltaic modules, longitudinal gaps and transverse gaps are formed between the frameless photovoltaic modules, in the longitudinal direction, every two adjacent frameless photovoltaic modules are connected in a matched mode through a longitudinal supporting installation module, and in the transverse direction, every two adjacent frameless photovoltaic modules are connected in a matched mode through a transverse supporting installation module. Every two adjacent frameless photovoltaic assemblies are connected in a matched mode through the corresponding transverse supporting and installing assembly, each longitudinal supporting and installing assembly comprises a plurality of first upper pressing assemblies and a main water tank, and each transverse supporting and installing assembly comprises a plurality of second upper pressing assemblies and an auxiliary water tank. The first upper pressing assembly and the second upper pressing assembly are arranged at intervals, and the length can be designed to be very small, so that areas with height difference on the frameless photovoltaic assembly are correspondingly reduced, and dust accumulation is reduced.
本发明属于光伏领域,具体涉及一种无框光伏组件建筑一体化安装结构,包括无框光伏组件,无框光伏组件之间形成纵向间隙和横向间隙,在纵向上,相邻两组无框光伏组件之间通过纵向支撑安装组件配合连接,在横向上,相邻两组无框光伏组件之间通过横向支撑安装组件配合连接,纵向支撑安装组件包括若干第一上压紧组件和主水槽,所述横向支撑安装组件包括若干第二上压紧组件和副水槽。本发明的第一上压紧组件和第二上压紧组件均为间隔设置,长度可以设计得很小,这样无框光伏组件上形成高度落差的区域也会相应减少,从而减少积灰。
Frameless photovoltaic module building integrated installation structure
The invention belongs to the photovoltaic field, and particularly relates to a frameless photovoltaic module building integrated installation structure which comprises frameless photovoltaic modules, longitudinal gaps and transverse gaps are formed between the frameless photovoltaic modules, in the longitudinal direction, every two adjacent frameless photovoltaic modules are connected in a matched mode through a longitudinal supporting installation module, and in the transverse direction, every two adjacent frameless photovoltaic modules are connected in a matched mode through a transverse supporting installation module. Every two adjacent frameless photovoltaic assemblies are connected in a matched mode through the corresponding transverse supporting and installing assembly, each longitudinal supporting and installing assembly comprises a plurality of first upper pressing assemblies and a main water tank, and each transverse supporting and installing assembly comprises a plurality of second upper pressing assemblies and an auxiliary water tank. The first upper pressing assembly and the second upper pressing assembly are arranged at intervals, and the length can be designed to be very small, so that areas with height difference on the frameless photovoltaic assembly are correspondingly reduced, and dust accumulation is reduced.
本发明属于光伏领域,具体涉及一种无框光伏组件建筑一体化安装结构,包括无框光伏组件,无框光伏组件之间形成纵向间隙和横向间隙,在纵向上,相邻两组无框光伏组件之间通过纵向支撑安装组件配合连接,在横向上,相邻两组无框光伏组件之间通过横向支撑安装组件配合连接,纵向支撑安装组件包括若干第一上压紧组件和主水槽,所述横向支撑安装组件包括若干第二上压紧组件和副水槽。本发明的第一上压紧组件和第二上压紧组件均为间隔设置,长度可以设计得很小,这样无框光伏组件上形成高度落差的区域也会相应减少,从而减少积灰。
Frameless photovoltaic module building integrated installation structure
一种无框光伏组件建筑一体化安装结构
CHEN FENG (Autor:in) / LI QIUMING (Autor:in) / HU CHUNXING (Autor:in) / LIANG YONGLI (Autor:in)
21.03.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E04D
ROOF COVERINGS
,
Dacheindeckungen
/
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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