Embedded photovoltaic panel assembly
By incorporating the installation and heat dissipation grille design, the aesthetics and heat dissipation issues of photovoltaic panel installation are solved, achieving overall integration of the photovoltaic panel with the wall and efficient heat dissipation, thus improving the aesthetics and maintainability of the installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING ZHONGNENG RONGCHUANG ENERGY TECH CO LTD
- Filing Date
- 2025-06-26
- Publication Date
- 2026-04-21
AI Technical Summary
Existing photovoltaic panel installation methods result in panels that protrude above the wall surface, which is aesthetically unappealing, makes it difficult to integrate with the house, and lacks effective heat dissipation measures.
The photovoltaic panel is fixed in the wall recess using an embedded installation method, and heat dissipation channels are provided through the upper and lower heat dissipation grilles. Combined with the photovoltaic panel fixing components and heat dissipation components, the photovoltaic panel is ensured to be flat with the wall surface, improving the aesthetics.
It achieves seamless integration of photovoltaic panels with the wall, enhancing aesthetics, and prevents overheating of the photovoltaic panels through heat dissipation components. The structure is simple and easy to install and maintain.
Smart Images

Figure CN224154167U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of photovoltaic panel installation, specifically to an embedded photovoltaic panel assembly. Background Technology
[0002] Currently, solar panels are typically installed on walls, protruding above the wall surface, which is aesthetically unappealing and doesn't blend well with the house. Nowadays, it's rare to see solar panels installed on the sides of mobile homes.
[0003] In summary, considering the above-mentioned photovoltaic panel installation methods, the embedded photovoltaic installation method results in a relatively flat appearance. Installed on the side of the mobile home, it integrates seamlessly with the house walls, achieving energy-saving and environmentally friendly functions. The installed photovoltaic panels can be incorporated into the house wall structure, ensuring both environmental protection and energy conservation while also saving on wall materials. Utility Model Content
[0004] The purpose of this utility model is achieved through the following technical measures: an embedded photovoltaic panel assembly, including a mounting wall, on which a groove for mounting the photovoltaic panel is provided, and also including a photovoltaic panel body, a photovoltaic panel fixing component, and a heat dissipation component. The photovoltaic panel body is fixedly installed in the groove on the wall by the photovoltaic panel fixing component, and the photovoltaic panel fixing component is fixedly installed in the groove on the wall. The heat dissipation component is installed between the photovoltaic panel body and the groove on the wall to conceal excessive vertical gaps and provide a heat dissipation channel for the photovoltaic panel. The depth of the groove on the wall is equal to the sum of the heights of the photovoltaic panel body and the photovoltaic panel fixing component. This arrangement ensures that the surface height of the photovoltaic panel body and the wall is consistent, improving the overall flatness and aesthetics of the wall surface.
[0005] As a preferred embodiment: the photovoltaic panel fixing assembly includes vertical beams, an upper fixing plate, and a lower fixing plate. Multiple vertical beams are provided for fixing the sides of the photovoltaic panel body. The upper fixing plate is used to fix the upper part of the photovoltaic panel body, and the lower fixing plate is used to fix the lower part of the photovoltaic panel body.
[0006] As a preferred embodiment: the heat dissipation assembly includes an upper heat dissipation grille and a lower heat dissipation grille. The upper heat dissipation grille is installed between the upper part of the photovoltaic panel body and a groove opened in the wall, and the lower heat dissipation grille is installed between the lower part of the photovoltaic panel body and a groove opened in the wall. The upper and lower heat dissipation grilles are used to cover the excessive vertical gap between the photovoltaic panel body and the groove opened in the wall, and to provide heat dissipation channels for the photovoltaic panel.
[0007] As a preferred embodiment: the upper heat dissipation grille and the lower heat dissipation grille have the same structure. The upper heat dissipation grille includes an upper side plate, a lower side plate, and a heat dissipation perforation plate. The upper side plate, the lower side plate, and the heat dissipation perforation plate are fixedly connected. The upper side plate is fixedly connected to the upper end of the heat dissipation perforation plate, and the lower side plate is fixedly connected to the lower end of the heat dissipation perforation plate.
[0008] As a preferred embodiment: the heat dissipation plate is provided with a group of heat dissipation holes, the group of heat dissipation holes is provided with a plurality of holes, the group of heat dissipation holes includes a first heat dissipation hole and a second heat dissipation hole, the opening area of the first heat dissipation hole is larger than the adjacent area of the second heat dissipation hole.
[0009] As a preferred embodiment, both the upper and lower side plates are fixedly connected to the same side of the heat dissipation perforation plate.
[0010] Due to the adoption of the above technical solution, the advantages of this utility model compared with the prior art are:
[0011] The photovoltaic panel is fixed in place by creating grooves in the wall. The photovoltaic panel collects electricity during the day to supply the house, and the upper and lower heat dissipation grilles are used to dissipate heat and prevent the photovoltaic panel from overheating.
[0012] The photovoltaic panels are installed flush with the wall surface, resulting in a smooth appearance and improving the overall aesthetics of the wall.
[0013] This invention seamlessly integrates the photovoltaic panel into the wall mounting structure, satisfying power generation needs while forming a unified whole with the wall. The design is simple and easy to understand, simplifying processing and installation. Maintenance is also straightforward; only the damaged photovoltaic panel needs to be removed for replacement.
[0014] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description
[0015] Appendix Figure 1 This is a schematic diagram of the installed photovoltaic panel structure of this utility model.
[0016] Appendix Figure 2 This is an exploded view of this utility model.
[0017] Appendix Figure 3 It is attached Figure 2 Enlarged view of point A in the middle. Detailed Implementation
[0018] Example: As attached Figure 1 To be continued Figure 3As shown, an embedded photovoltaic (PV) panel assembly includes a mounting wall 1 with a groove for mounting the PV panel. It also includes a PV panel body 2, a PV panel fixing component 3, and a heat dissipation component 4. The PV panel body 2 is fixedly mounted in the groove on the wall 1 by the PV panel fixing component 3. The heat dissipation component 4 is installed between the PV panel body 2 and the groove on the wall 1 to conceal excessive vertical gaps and provide a heat dissipation channel for the PV panel. The depth of the groove on the wall 1 is equal to the sum of the heights of the PV panel body 2 and the PV panel fixing component 3. This arrangement ensures that the surface height of the PV panel body 2 and the wall 1 are consistent, improving the overall flatness and aesthetics of the wall surface.
[0019] The photovoltaic panel fixing assembly 3 includes vertical beams 31, upper fixing plates 32 and lower fixing plates 33. Multiple vertical beams 31 are provided for fixing the sides of the photovoltaic panel body 2. The upper fixing plates 32 are used to fix the upper part of the photovoltaic panel body 2, and the lower fixing plates 33 are used to fix the lower part of the photovoltaic panel body 2. The vertical beams 31 support the frame of the photovoltaic panel body 2, and the upper fixing plates 32 and lower fixing plates 33 are used to fix the lower part of the photovoltaic panel body 2 to prevent it from falling.
[0020] The heat dissipation assembly 4 includes an upper heat dissipation grille 41 and a lower heat dissipation grille 42. The upper heat dissipation grille 41 is installed between the upper part of the photovoltaic panel body 2 and the groove opened on the wall 1, and the lower heat dissipation grille 42 is installed between the lower part of the photovoltaic panel body 2 and the groove opened on the wall 1. The upper heat dissipation grille 41 and the lower heat dissipation grille 42 are used to decorate the excessive vertical gap between the photovoltaic panel body 2 and the groove opened on the wall 1, and to provide heat dissipation channels for the photovoltaic panel. The upper heat dissipation grille 41 and the lower heat dissipation grille 42 are installed last.
[0021] The upper heat dissipation grille 41 and the lower heat dissipation grille 42 have the same structure. The upper heat dissipation grille 41 includes an upper side plate 411, a lower side plate 412 and a heat dissipation perforation plate 413. The upper side plate 411, the lower side plate 412 and the heat dissipation perforation plate 413 are fixedly connected. The upper side plate 411 is fixedly connected to the upper end of the heat dissipation perforation plate 413 and the lower side plate 412 is fixedly connected to the lower end of the heat dissipation perforation plate 413.
[0022] The heat dissipation plate 413 is provided with a heat dissipation hole group 5, which has a plurality of holes. The heat dissipation hole group 5 includes a first heat dissipation hole 51 and a second heat dissipation hole 52. The opening area of the first heat dissipation hole 51 is larger than the adjacent area of the second heat dissipation hole 52.
[0023] The upper side plate 411 and the lower side plate 412 are both fixedly connected to the same side of the heat dissipation plate 413.
Claims
1. A photovoltaic panel assembly for flush mounting, comprising a mounting wall (1) having recesses for mounting photovoltaic panels, characterized in that: It also includes a photovoltaic panel body (2), a photovoltaic panel fixing component (3) and a heat dissipation component (4). The photovoltaic panel body (2) is fixedly installed in a groove opened on the wall (1) by the photovoltaic panel fixing component (3). The photovoltaic panel fixing component (3) is fixedly installed in a groove opened on the wall (1). The heat dissipation component (4) is installed between the photovoltaic panel body (2) and the groove opened on the wall (1) to decorate the excessive gap between the top and bottom and to provide a heat dissipation channel for the photovoltaic panel. The depth of the groove opened on the wall (1) is equal to the sum of the heights of the photovoltaic panel body (2) and the photovoltaic panel fixing component (3). This setting can ensure that the surface height of the photovoltaic panel body (2) and the wall (1) are consistent.
2. An in-line mounted photovoltaic panel assembly according to claim 1, wherein: The photovoltaic panel fixing assembly (3) includes a vertical beam (31), an upper fixing plate (32) and a lower fixing plate (33). The vertical beam (31) is provided in multiple ways to fix the side of the photovoltaic panel body (2). The upper fixing plate (32) is used to fix the upper part of the photovoltaic panel body (2) and the lower fixing plate (33) is used to fix the lower part of the photovoltaic panel body (2).
3. An in-line mounted photovoltaic panel assembly according to claim 2, wherein: The heat dissipation assembly (4) includes an upper heat dissipation grille (41) and a lower heat dissipation grille (42). The upper heat dissipation grille (41) is installed between the upper part of the photovoltaic panel body (2) and the groove opened on the wall (1). The lower heat dissipation grille (42) is installed between the lower part of the photovoltaic panel body (2) and the groove opened on the wall (1). The upper heat dissipation grille (41) and the lower heat dissipation grille (42) are used to decorate the excessive gap between the photovoltaic panel body (2) and the groove opened on the wall (1) and to provide heat dissipation channels for the photovoltaic panel.
4. An in-line mounted photovoltaic panel assembly according to claim 3, wherein: The upper heat dissipation grille (41) and the lower heat dissipation grille (42) have the same structure. The upper heat dissipation grille (41) includes an upper side plate (411), a lower side plate (412) and a heat dissipation perforation plate (413). The upper side plate (411), the lower side plate (412) and the heat dissipation perforation plate (413) are fixedly connected. The upper side plate (411) is fixedly connected to the upper end of the heat dissipation perforation plate (413), and the lower side plate (412) is fixedly connected to the lower end of the heat dissipation perforation plate (413).
5. An in-line mounted photovoltaic panel assembly according to claim 4, wherein: The heat dissipation plate (413) is provided with a heat dissipation hole group (5), and the heat dissipation hole group (5) is provided with a plurality of holes. The heat dissipation hole group (5) includes a first heat dissipation hole (51) and a second heat dissipation hole (52). The opening area of the first heat dissipation hole (51) is larger than the adjacent area of the second heat dissipation hole (52).
6. An in-line mounted photovoltaic panel assembly according to claim 4 or 5, characterised in that: The upper side plate (411) and the lower side plate (412) are both fixedly connected to the same side of the heat dissipation plate (413).