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A photovoltaic sun shield comprises a crystalline silicon assembly and a blade. And the blades are wing-shaped. The shady face of the crystalline silicon assembly is a curved face and faces the blade. And the crystal silicon assembly is fixed on the blade. The fixing mode comprises mechanical fixing and gluing fixing. The adjacent crystalline silicon cells in the crystalline silicon assembly in the short edge direction of the blade are connected in parallel through a conductor or in a conductor-free mode. The crystalline silicon assembly is provided with a front plate and a back plate, the front plate is made of resin or a resin-fiber composite material, the back plate is of a laminated structure, and the structure reinforcing layer is made of the resin-fiber composite material. The Young modulus E11 of the composite material of the structure enhancement layer in the direction parallel to the fibers is larger than or equal to 3 GPa, and the density of the composite material is smaller than or equal to 2 g/cm < 3 >. The photovoltaic sun shield solves the problems of shape, weight, safety, heating, heat dissipation and the like in the prior art.
一种光伏遮阳板,包含晶硅组件和叶片。叶片为机翼型。晶硅组件的背光面为曲面并且朝向叶片。晶硅组件固定在叶片上。固定方式包括机械固定和胶粘固定。晶硅组件中沿叶片短边方向相邻的晶硅电池之间通过导体并联或无导体连接。晶硅组件有前板和背板,前板为树脂或树脂‑纤维复合材料,背板为叠层结构,其中的结构增强层为树脂‑纤维复合材料。所述结构增强层的复合材料沿平行纤维方向的杨氏模量E11大于等于3GPa,所述复合材料的密度小于等于2g/cm3。该光伏遮阳板解决了现有技术的形状、重量、安全、发热、散热等问题。
A photovoltaic sun shield comprises a crystalline silicon assembly and a blade. And the blades are wing-shaped. The shady face of the crystalline silicon assembly is a curved face and faces the blade. And the crystal silicon assembly is fixed on the blade. The fixing mode comprises mechanical fixing and gluing fixing. The adjacent crystalline silicon cells in the crystalline silicon assembly in the short edge direction of the blade are connected in parallel through a conductor or in a conductor-free mode. The crystalline silicon assembly is provided with a front plate and a back plate, the front plate is made of resin or a resin-fiber composite material, the back plate is of a laminated structure, and the structure reinforcing layer is made of the resin-fiber composite material. The Young modulus E11 of the composite material of the structure enhancement layer in the direction parallel to the fibers is larger than or equal to 3 GPa, and the density of the composite material is smaller than or equal to 2 g/cm < 3 >. The photovoltaic sun shield solves the problems of shape, weight, safety, heating, heat dissipation and the like in the prior art.
一种光伏遮阳板,包含晶硅组件和叶片。叶片为机翼型。晶硅组件的背光面为曲面并且朝向叶片。晶硅组件固定在叶片上。固定方式包括机械固定和胶粘固定。晶硅组件中沿叶片短边方向相邻的晶硅电池之间通过导体并联或无导体连接。晶硅组件有前板和背板,前板为树脂或树脂‑纤维复合材料,背板为叠层结构,其中的结构增强层为树脂‑纤维复合材料。所述结构增强层的复合材料沿平行纤维方向的杨氏模量E11大于等于3GPa,所述复合材料的密度小于等于2g/cm3。该光伏遮阳板解决了现有技术的形状、重量、安全、发热、散热等问题。
Photovoltaic sun shield
光伏遮阳板
MA FENGQIN (author)
2023-05-26
Patent
Electronic Resource
Chinese
IPC:
H01L
Halbleiterbauelemente
,
SEMICONDUCTOR DEVICES
/
E04F
FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
,
Ausbau von Bauwerken, z.B. Treppen, Fußböden
/
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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