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Waterproof photovoltaic tile and photovoltaic building surface

A photovoltaic tile and building surface technology, which is applied in construction, photovoltaic power generation, photovoltaic modules, etc., can solve the problems of low connection stability between photovoltaic tiles and roofs, low bonding degree between photovoltaic tiles and roofs, and poor waterproof and windproof performance of roofs. Improve the living experience of the building, reduce the probability of leaving the building, and improve the effect of waterproof performance

Active Publication Date: 2022-04-29
汉摩尼(江苏)光电科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In order to improve the current photovoltaic building roof photovoltaic tile and the roof of the low degree of integration, photovoltaic tile and roof connection stability is low, easily lead to poor waterproof and windproof performance of the photovoltaic building roof, affecting the living experience of residents, this application provides A waterproof photovoltaic tile and photovoltaic building surface

Method used

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  • Waterproof photovoltaic tile and photovoltaic building surface
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  • Waterproof photovoltaic tile and photovoltaic building surface

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Embodiment Construction

[0039] The following is attached Figure 1-5 The application is described in further detail.

[0040] The embodiment of the present application discloses a waterproof photovoltaic tile. refer to figure 1 and figure 2 , a waterproof photovoltaic tile, including a curved plate 1 and a horizontal plate 2, one end in the width direction of the curved plate 1 is connected to the horizontal plate 2, and photovoltaic modules are embedded on the top of the curved plate 1 and the horizontal plate 2 3. The end of the transverse plate 2 away from the arc-shaped plate 1 in the width direction is provided with a connecting plate 4 for connecting with the arc-shaped plate 1 of another waterproof photovoltaic tile. A connecting block 5 for connecting with the building roof surface is provided at the bottom of one end of the transverse plate 2 in the length direction. By embedding photovoltaic modules 3 on the horizontal plate 2 and the curved plate 1, the photovoltaic tiles can efficie...

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Abstract

The invention relates to a waterproof photovoltaic tile and a photovoltaic building surface, the waterproof photovoltaic tile comprises an arc-shaped plate and a transverse plate, one end of the arc-shaped plate in the width direction is connected with the transverse plate, and photovoltaic modules are embedded in the tops of the arc-shaped plate and the transverse plate; a connecting plate used for being connected with an arc-shaped plate of another waterproof photovoltaic tile is arranged at the end, away from the arc-shaped plate, of the transverse plate in the width direction, and a connecting block used for being connected with a building roof face is arranged at the bottom of the end, in the length direction, of the transverse plate. Through the arrangement of the arc-shaped plates and the connecting plates, gaps between the adjacent waterproof photovoltaic tiles in the width direction of the photovoltaic building surface can be reduced, so that the windproof and rainproof performance of the photovoltaic building surface is effectively improved, the appearance of the photovoltaic building surface has relatively high consistency, and the effects of attractive appearance and windproof and rainproof are achieved.

Description

technical field [0001] This application relates to the field of photovoltaic tiles, in particular to a waterproof photovoltaic tile and a photovoltaic building surface. Background technique [0002] Photovoltaic applications are basically developing in two directions. One is large-scale ground photovoltaic power plants, which develop along the mode of centralized power generation and transmission; the other is building photovoltaic power generation systems, which develop along the mode of distributed power generation. It should be said that distributed photovoltaic power generation is the most promising application form in the future. According to the installation of photovoltaic modules in different building parts, and the closeness of the integration of photovoltaic modules and building structures, the forms of building photovoltaic applications are classified into three categories, namely photovoltaic roofing, additional roof photovoltaic and photovoltaic curtain walls, p...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02S20/25E04D13/18E04D1/36E04D1/00
CPCH02S20/25E04D13/00E04D1/365E04D1/2956E04D1/2963Y02E10/50Y02B10/10
Inventor 王启战钱红江金鹏张柳周佩玺邢杰刘东华
Owner 汉摩尼(江苏)光电科技有限公司
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