Self-radiating photovoltaic stone curtain wall

By designing a self-heat dissipation photovoltaic stone curtain wall system, combining stone slabs and photovoltaic cell cells, the problem of poor combination of stone curtain walls and photovoltaic curtain walls is solved, efficient resource utilization and green energy-saving effects are achieved, the maintenance process is simplified and the cost is reduced.

CN223135417UActive Publication Date: 2025-07-22ZHUHAI SINGYES GREEN BUILDING SCI & TECH CO LTD +5
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Patent Information

Application Number
CN202421641713.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-07-22
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

The combination of existing stone curtain walls and photovoltaic curtain walls has not been effectively realized, resulting in waste of resources and poor green and energy-saving.

Method used

Design a self-heating photovoltaic stone curtain wall system, including glass panels, photovoltaic cell sheets, stone panels, aluminum profile heat sinks and other components, realize the combination of stone panels and photovoltaic cell sheets, and solve the heat dissipation and waterproofing problems through aluminum profile heat sinks and tetrafluoroethylene sealing strips.

Benefits of technology

The combination of stone slabs and photovoltaic slabs is achieved, which reduces installation costs, improves appearance diversity, and provides energy supply to the building. It has waterproof, corrosion-proof and heat dissipation functions, simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a self-radiating photovoltaic stone curtain wall, and belongs to the field of building curtain walls. The self-heat-dissipation photovoltaic stone curtain wall system is composed of a glass panel, a photovoltaic cell piece, a stone plate, an aluminum profile heat dissipation piece, a junction box, a cable penetrating pipe, an aluminum alloy connecting piece, a galvanized steel corner connector, a galvanized steel connector, an adjusting bolt, a fixing bolt, a stainless steel back bolt and a tetrafluoroethylene sealing rubber strip. According to the utility model, through the arrangement of the photovoltaic cell piece, the stone plate and the aluminum profile radiating fin, the effect of combining the stone plate and the photovoltaic panel is achieved, the aluminum profile radiating fin is simple and convenient to mount and dismount, the subsequent maintenance and installation can be carried out through the aluminum profile radiating fin, and the tetrafluoroethylene sealing rubber strip is adhered to the aluminum profile radiating fin. The situation that the heat radiator and the adhesive tape are adhered and cannot be disassembled for maintenance due to aging or melting of the adhesive tape caused by heat generated in the photovoltaic power generation process is avoided, and meanwhile the waterproof, anti-corrosion and heat dissipation effects are achieved. A conventional stone curtain wall installation procedure is adopted for installation, installation is simple and rapid, the situation that an installation support needs to be additionally arranged for photovoltaic panel installation is avoided, therefore, the photovoltaic panel installation cost is reduced, resources are saved, the situation that the stone curtain wall is single in appearance is changed, appearance diversity is improved, energy supply is provided for a building, and therefore practicability is improved.
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Description

Technical Field

[0001] The utility model relates to the field of building curtain walls, and particularly relates to [[a self-cooling photovoltaic stone curtain wall]]. Background Art

[0002] With the development of society, people's awareness of environmental protection has gradually increased, and the concept of green energy conservation has gradually been applied to the construction industry. Photovoltaic curtain walls are one of the applications of green energy-saving buildings. Installing photovoltaic curtain walls on the outside of buildings can make full use of solar energy.

[0003] Stone curtain walls usually consist of stone panels and supporting structures (such as cross beams, columns, steel structures, connectors, etc.). Stones have the advantages of natural materials, bright and crystal-clear appearance, and high strength. They can resist freeze-thaw without significant damage in a humid state. However, at present, the two types of curtain walls are not well combined for use, which is a waste of resources. Summary of the Invention

[0004] The purpose of the utility model is to provide a self-cooling photovoltaic stone curtain wall to solve the problems of single style and poor green energy-saving performance of existing stone panels in the prior art.

[0005] The purpose of the utility model is realized through the following technical solutions

[0006] A self-cooling photovoltaic stone curtain wall system composed of a glass panel, a photovoltaic cell, a stone panel, an aluminum profile heat sink, a junction box and a cable pipe, an aluminum alloy connector, a galvanized steel angle code, a galvanized steel channel, an adjusting bolt, a fixing bolt, a stainless steel back bolt, and a polytetrafluoroethylene sealing strip. This system can adjust the position of the stone panel up, down, left, and right, and at the same time can realize the combination of solar energy and the stone curtain wall. The installation and disassembly of the photovoltaic cell and the aluminum profile heat sink are simple and convenient, providing guarantee for subsequent maintenance. The heat dissipation and waterproof problems of the photovoltaic panel are also solved, providing energy for the building.

[0007] The photovoltaic cell is embedded in the stone plate, and the glass panel covers the photovoltaic cell for protection;

[0008] The aluminum profile heat sink is connected to the photovoltaic cell to enable each photovoltaic cell to meet the heat dissipation function;

[0009] The aluminum profile heat sink is fixed on the stone plate through fixing bolts, and a polytetrafluoroethylene sealing strip is pasted on it to avoid the aging or melting of the sealing strip caused by the heat generated during the photovoltaic power generation process, resulting in the adhesion of the radiator and the sealing strip and inability to disassemble and repair, achieving the effects of waterproofing, anti-corrosion, and heat dissipation.

[0010] Compared with the prior art, the beneficial effects of the utility model are as follows: By setting photovoltaic cells, stone plates and aluminum profile heat sinks, the utility model achieves the combination of stone plates and photovoltaic panels. The installation and disassembly of the aluminum profile heat sinks are simple and convenient. Subsequent maintenance and installation can be carried out through the aluminum profile heat sinks. By pasting tetrafluoroethylene sealing strips, it is avoided that the heat generated during the photovoltaic power generation process causes the aging or melting of the sealing strips, resulting in the adhesion of the radiator and the sealing strips and being unable to be disassembled and repaired, providing the functions of waterproofing, anti-corrosion and heat dissipation for the photovoltaic stone curtain wall system. The installation adopts the conventional installation process of stone curtain walls, which is simple and fast, avoiding the need to additionally install a mounting bracket for the photovoltaic panel, thereby reducing the installation cost of the photovoltaic panel, saving resources, changing the single appearance of the stone curtain wall, improving the appearance diversity, and also providing energy supply for the building, thus improving the practicability. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 It is a schematic diagram of the node of the system of the utility model;

[0012] In the figure: 1 glass panel; 2 photovoltaic cells; 3 stone plate; 4 aluminum profile heat sink; 5 galvanized steel pipe; 6 galvanized angle steel; 7 junction box and cable conduit; 8 adjusting bolt; 9 stainless steel back bolt; 10 aluminum alloy connecting piece; 11 galvanized steel angle code; 12 adjusting bolt; 13 fixing bolt; 14 tetrafluoroethylene sealing strip. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0013] The following further describes the utility model with reference to specific embodiments. The embodiments are only used to further illustrate the utility model and do not limit the protection scope of the utility model:

[0014] First, embed the photovoltaic cells 2 in the stone plates 3, fix the aluminum profile heat sinks 4 on the stone plates 3, paste tetrafluoroethylene sealing strips 14 on both sides of the aluminum profile heat sinks 4 for sealing, cover the glass panel 1 on the surface of the photovoltaic cells 2 to form a photovoltaic stone plate combination. After the junction box and cable conduit 7 are installed in the photovoltaic stone plate combination, a circuit is formed; connect the photovoltaic stone plate combination with the aluminum alloy connecting piece 10 through the stainless steel back bolts 9, adjust the photovoltaic stone plate combination up and down by adjusting the adjusting bolts 8, and adjust the photovoltaic stone plate combination left and right by adjusting the adjusting bolts 12, thereby completing the installation of the photovoltaic stone plate combination and ensuring the installation accuracy and appearance requirements of the photovoltaic stone plate combination.

Claims

1. A self-cooling photovoltaic stone curtain wall, characterized in that: A self-cooling photovoltaic stone curtain wall system composed of a glass panel, photovoltaic cells, a stone slab, an aluminum profile heat sink, a junction box and cable conduits, aluminum alloy connectors, galvanized steel angle codes, galvanized steel channels, adjusting bolts, fixing bolts, stainless steel back bolts, and polytetrafluoroethylene sealing strips. This system can adjust the position of the stone panel up, down, left, and right, and at the same time can realize the combination of solar energy and the stone curtain wall. The installation and disassembly of the photovoltaic cells and the aluminum profile heat sink are simple and convenient, providing guarantee for subsequent maintenance. The heat dissipation and waterproof problems of the photovoltaic panel are also solved, providing energy for the building.

2. The self-cooling photovoltaic stone curtain wall according to claim 1, wherein: The photovoltaic cells are embedded in the stone panel, and the glass panel covers the photovoltaic cells for protection.

3. The self-cooling photovoltaic stone curtain wall according to claim 1, wherein: The aluminum profile heat sink is connected to the photovoltaic cells to enable each photovoltaic cell to meet the heat dissipation function.

4. The self-cooling photovoltaic stone curtain wall according to claim 1, characterized in that: The aluminum profile heat sink is fixed on the stone slab through fixing bolts, and a polytetrafluoroethylene sealing strip is pasted to avoid the aging or melting of the sealing strip caused by the heat generated during the photovoltaic power generation process, resulting in the adhesion of the radiator and the sealing strip and inability to disassemble and repair, achieving the effects of waterproofing, anti-corrosion, and heat dissipation.