Dome structure of solar module
Through modular design and assembly technology, the problems of large site area and long cycle for on-site installation of solar modules are solved, achieving efficient construction and sealing effects, and making it suitable for solar module dome structures in prefabricated green buildings.
Patent Information
- Application Number
- CN202520465890.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-03-20
- Estimated Expiration
- 2035-03-18
AI Technical Summary
In existing technologies, the on-site installation of solar module components suffers from the problems of large site requirements and long construction periods.
The modular solar module dome structure, including trusses, columns, supports, solar panels, and pressure frames, is assembled in the factory and then hoisted to the site. It is fixed with bolts and combined with rubber flanges, support sections, and extensions to form a seal, improving installation efficiency and stability.
It enables efficient on-site assembly and subsequent inspection and maintenance, reduces construction footprint, improves installation efficiency and sealing effect, and is suitable for the construction needs of prefabricated green buildings.
Smart Images

Figure CN224021648U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to green building technical field especially relates to a solar module dome structure. BACKGROUND
[0002] Solar energy is a commonly used clean energy, and solar energy is used in various ways. Solar power generation is the most common way. In the field of green building, the passageway between two adjacent buildings can use solar dome power generation to form clean energy.
[0003] The prior art discloses a road overhanging dome structure solar power generation device (publication number: CN211557193U), which comprises support rods buried on both sides of the road, a dome installed between the upper parts of the support rods on both sides through a metal truss, and the dome is composed of a plurality of transparent power generation panels.
[0004] For the assembly of green buildings, too many unassembled accessories, such as solar panels and connecting pieces for installing solar panels, are stored on site. The solar panels, connecting pieces and trusses are assembled on site, which occupies a large construction site and has a long construction period. If the power generation module is modularized and designed, it can be assembled in the factory and transported to the construction site for direct hoisting and assembly, which can reduce the occupation of the construction site and greatly shorten the construction period.
[0005] Therefore, we propose a solar module dome structure. CONTENT OF THE UTILITY MODEL
[0006] The utility model mainly solves the technical problem of large site occupation and long construction period of on-site installation of the above-mentioned scattered accessories, and provides a solar module dome structure.
[0007] In order to achieve the above purpose, the utility model adopts the following technical scheme, a solar module dome structure, comprising:
[0008] The truss and the stand are fixedly connected, and the stand is fixedly installed on the ground.
[0009] The power generation module is detachably arranged on the top of the truss for power generation and rain protection, and comprises a supporting seat, a power generation panel and a pressing frame.
[0010] As a preferred mode of the utility model, the power generation module further comprises a turning edge, a lifting part and an extension part, the turning edge and the extension part are fixedly connected with the lifting part, and the extension part is located in the installation cavity and forms a buffer barrier between the power generation panel and the supporting seat.
[0011] In a preferred embodiment of this utility model, the extension forms a rectangular frame, the extension is interference-fitted with the mounting cavity of the support, the flange is a U-shaped frame, the flange extends from the inside of the cavity of the support to the outer edge, the extension is disposed on the lower end face of the support, and the extension extends through the mounting cavity of the support to the bottom of the support.
[0012] In a preferred embodiment of this utility model, the flange is located at the top of the support, the pressure frame can compress the flange to deform, and the power generation plate is located on the top surface of the support.
[0013] In a preferred embodiment of this utility model, the power generation module further includes ribs, which are fixedly disposed on the top surface of the supporting part and abut against the bottom surface of the trigger plate.
[0014] In a preferred embodiment of this utility model, the rib forms a closed loop with a semi-circular cross-section, the interior of the rib is hollow, and the extension portion and the supporting portion are integrally formed.
[0015] In a preferred embodiment of this utility model, both the support base and the pressure frame are U-shaped frames, and mounting holes are provided through the four corners of the support base and the power generation board. Threaded holes are provided at the top of the truss, and bolts are threaded through the mounting holes of the support base and the pressure frame and fastened to the truss. Beneficial effects
[0016] This invention provides a solar module dome structure. It has the following beneficial effects:
[0017] 1. This solar module dome structure uses a support base and a pressure frame to install and fix the power generation panel. During on-site assembly, the truss and columns can be fixed to the ground first, and then a power generation module can be assembled on the ground. The power generation panel is placed into the mounting cavity of the support base, and then the pressure frame is covered. During factory assembly, the support base and pressure frame are first locked diagonally using bolts and nuts. The power generation module is then hoisted onto the truss using hoisting equipment. After positioning, it is locked to the truss with bolts. The bolts press the pressure frame onto the support base, while the power generation panel is located between the support base and the pressure frame, thus limiting the installation of the power generation panel. During inspection and maintenance, the power generation module in the damaged area can be removed. This facilitates on-site assembly and subsequent inspection and maintenance. For prefabricated green buildings, modular power generation modules are more suitable for multi-process coordination and on-site assembly, resulting in high installation efficiency and reduced on-site construction space.
[0018] 2. The solar module dome structure is mainly formed by the sealing piece of the rubber integrated forming of the turned edge, the lifting part and the extension part, the sealing piece is placed in the installation cavity, then the power generation plate is placed, finally the power generation plate is placed above the supporting seat, part of the turned edge is above the power generation plate, the deformable buffer layer is formed between the pressing frame and the power generation plate through the extrusion of the power generation plate, the lifting part is used for lifting the bottom of the power generation plate and forms the buffer, the extension part is used for limiting the whole sealing piece, the sealing piece can be inhibited from deviating in the installation cavity through the extension part, the stable installation and support buffer of the power generation plate can be guaranteed.
[0019] 3. The solar module dome structure is mainly formed by the sealing piece of the rubber integrated forming of the turned edge, the lifting part and the extension part, the sealing piece is placed in the installation cavity, then the power generation plate is placed, finally the power generation plate is placed above the supporting seat, part of the turned edge is above the power generation plate, the deformable buffer layer is formed between the pressing frame and the power generation plate through the extrusion of the power generation plate, the lifting part is used for lifting the bottom of the power generation plate and forms the buffer, the extension part is used for limiting the whole sealing piece, the sealing piece can be inhibited from deviating in the installation cavity through the extension part, the stable installation and support buffer of the power generation plate can be guaranteed. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is the overall perspective view of the utility model;
[0021] Figure 2 It is the power generation module perspective view of the utility model;
[0022] Figure 3 It is the power generation module assembly drawing of the utility model;
[0023] Figure 4 It is the column and truss perspective view of the utility model;
[0024] Figure 5 It is the turned edge, lifting part, extension part and rib perspective view of the utility model.
[0025] Legend: 10, truss; 11, column; 20, supporting seat; 21, power generation plate; 22, pressing frame; 23, turned edge; 24, lifting part; 25, extension part; 26, rib. DETAILED DESCRIPTION
[0026] A solar module dome structure, as shown in Figure 1 and Figure 4 , comprising:
[0027] The truss 10 and the column 11 are fixedly connected with the truss 10, and the column 11 is fixedly installed on the ground, wherein two columns 11 are fixedly arranged at the bottom of the truss 10, and the two columns 11 and the truss 10 form a support frame, a plurality of support frames can be arranged side by side on the ground to form a channel, a plurality of groups of power generation modules can be arranged on two adjacent trusses 10, the plurality of groups of power generation modules shield the upper part of the channel and form an aerial power generation field for absorbing solar energy, the solar modules are electrically connected with each other and connected with an inverter, and the generated electric energy can be integrated into a power grid or stored in a storage battery, so that energy-saving power generation of green buildings is realized, and solar energy in the daytime can be converted and stored for use in peak periods.
[0028] As Figure 2 And Figure 3 The power generation module is detachably arranged at the top of the truss 10 for power generation and rain shielding, and comprises a supporting seat 20, a power generation plate 21 and a pressing frame 22. The top of the supporting seat 20 is sunken to form a mounting cavity, and the power generation plate 21 is located in the mounting cavity. The supporting seat 20 and the pressing frame 22 are locked with the truss 10 through bolts. The supporting seat 20 and the pressing frame 22 are both back-shaped frames. Mounting holes are formed at the four corners of the supporting seat 20 and the power generation plate 21. Threaded holes are formed at the top of the truss 10. The bolts pass through the mounting holes of the supporting seat 20 and the pressing frame 22 and are threadedly fastened with the truss 10.
[0029] The power generation plate 21 is a double-layer transparent glass photovoltaic power generation plate, and the specific model is not limited here. During on-site assembly, the truss 10 and the column 11 are first fixedly arranged on the ground, then a power generation module is assembled on the ground, the power generation plate 21 is placed in the mounting cavity of the supporting seat 20, and then the pressing frame 22 is covered. During factory assembly, the supporting seat 20 and the pressing frame 22 are first locked at diagonal positions by means of bolts and nuts, the power generation module is hoisted to the upper part of the truss 10 by means of hoisting equipment, and then the truss 10 is locked by means of bolts. The bolt tightly presses the pressing frame 22 on the upper part of the supporting seat 20, and the power generation plate 21 is located between the supporting seat 20 and the pressing frame 22, so that the installation and limiting of the power generation plate 21 are realized. During maintenance, the power generation module in the damaged area can be disassembled, which is convenient for on-site assembly and later maintenance. For assembled green buildings, the modular power generation module is more suitable for multi-process cooperation and then on-site assembly, which is high in installation efficiency and reduces the site construction occupation. The adjacent two power generation modules can be sealed by filling sealant.
[0030] As Figure 5As shown, the power generation module further comprises a turned-over edge 23, a lifting portion 24 and an extension portion 25, the turned-over edge 23 and the extension portion 25 are fixedly connected with the lifting portion 24, the extension portion 25 is located in the mounting cavity and forms a buffer barrier between the power generation plate 21 and the supporting seat 20, the extension portion 25 forms a rectangular frame, the extension portion 25 is in interference fit with the mounting cavity of the supporting seat 20, the turned-over edge 23 is a back-shaped frame, the turned-over edge 23 extends from the cavity of the supporting seat 20 to the outer edge, the extension portion 25 is arranged at the lower end surface of the lifting portion 24, the extension portion 25 extends through the mounting cavity of the supporting seat 20 to the bottom of the supporting seat 20, the turned-over edge 23 is located at the top of the supporting seat 20, the pressing frame 22 can extrude the turned-over edge 23 to deform, and the power generation plate 21 is located at the top surface of the lifting portion 24;
[0031] In the scheme, the sealing member is mainly formed by the turned-over edge 23, the lifting portion 24 and the extension portion 25 integrally formed by rubber, the sealing member is placed in the mounting cavity, then the power generation plate 21 is placed, and finally the power generation plate 21 is placed above the supporting seat 20, part of the turned-over edge 23 is located above the power generation plate 21, a deformable buffer layer is formed between the pressing frame 22 and the power generation plate 21 through extrusion of the power generation plate 21, the lifting portion 24 is used for lifting the bottom of the power generation plate 21 and forming a buffer, and the extension portion 25 is used for limiting the entire sealing member, the sealing member can be inhibited from deviating in the mounting cavity through the extension portion 25, and stable installation and support and buffer of the power generation plate 21 can be ensured.
[0032] As shown in the figure, Figure 5 As shown, the power generation module further comprises a turned-over edge 23, a lifting portion 24 and an extension portion 25, the turned-over edge 23 and the extension portion 25 are fixedly connected with the lifting portion 24, the extension portion 25 is located in the mounting cavity and forms a buffer barrier between the power generation plate 21 and the supporting seat 20, the extension portion 25 forms a rectangular frame, the extension portion 25 is in interference fit with the mounting cavity of the supporting seat 20, the turned-over edge 23 is a back-shaped frame, the turned-over edge 23 extends from the cavity of the supporting seat 20 to the outer edge, the extension portion 25 is arranged at the lower end surface of the lifting portion 24, the extension portion 25 extends through the mounting cavity of the supporting seat 20 to the bottom of the supporting seat 20, the turned-over edge 23 is located at the top of the supporting seat 20, the pressing frame 22 can extrude the turned-over edge 23 to deform, and the power generation plate 21 is located at the top surface of the lifting portion 24;
[0033] The utility model discloses a working principle: the sealing piece is formed through rubber integrated molding's turning along 23, holds up department 24 and extension 25, puts into the installation cavity through the sealing piece, puts into the installation cavity of the bearing seat 20 through the power generation board 21, then covers the pressure frame 22, and the part of turning along 23 is located the top of power generation board 21, through the extrusion of power generation board 21, makes the deformable buffer layer between pressure frame 22 and power generation board 21, and holds up department 24 is used for holding up the bottom of power generation board 21 and forms the buffer, and extension 25 is used for the whole sealing piece spacing, through extension 25 can inhibit the sealing piece in the installation cavity and deviate, hoist the power generation module to the top of truss 10 through hoisting equipment, after the position is well arranged, lock with truss 10 through bolt, and the bolt is pressed tightly in the top of bearing seat 20 of pressure frame 22, and power generation board 21 is located between bearing seat 20 and pressure frame 22, realizes the installation spacing of power generation board 21, when overhauling and maintaining, the power generation module of damaged area can be taken down.
[0034] The above shows and describes the basic principle and main features of the utility model and the advantages of the utility model. The skilled person in the art should understand that the utility model is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification are only to illustrate the principle of the utility model. Without departing from the spirit and scope of the utility model, the utility model can have various changes and improvements, and these changes and improvements all fall within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.
Claims
1. A solar module dome structure, characterized in that, include: Truss (10) and column (11), wherein the column (11) is fixedly connected to the truss (10) and the column (11) is fixedly installed on the ground; The power generation module is detachably installed on the top of the truss (10) for power generation and rain protection. The power generation module includes a support (20), a power generation plate (21) and a pressure frame (22). The top of the support (20) is sunken to form an installation cavity. The power generation plate (21) is located in the installation cavity. The support (20) and the pressure frame (22) are locked to the truss (10) by bolts.
2. The solar module dome structure according to claim 1, characterized in that: The power generation module also includes a flange (23), a support (24) and an extension (25). The flange (23) and the extension (25) are fixedly connected to the support (24). The extension (25) is located in the mounting cavity and forms a buffer barrier between the power generation plate (21) and the support (20).
3. The solar module dome structure according to claim 2, characterized in that: The extension (25) forms a rectangular frame and is interference-fitted with the mounting cavity of the support (20). The flange (23) is a U-shaped frame and extends from the cavity of the support (20) to the outer edge. The extension (25) is located on the lower end face of the support (24) and extends through the mounting cavity of the support (20) to the bottom of the support (20).
4. The solar module dome structure according to claim 3, characterized in that: The flange (23) is located on the top of the support (20), and the pressure frame (22) can compress the flange (23) to deform. The power generation plate (21) is located on the top surface of the support (24).
5. The solar module dome structure according to claim 4, characterized in that: The power generation module also includes a rib (26), which is fixedly installed on the top surface of the support part (24) and abuts against the bottom surface of the trigger plate (21).
6. The solar module dome structure according to claim 5, characterized in that: The rib (26) forms a closed loop with a semi-circular cross-section. The interior of the rib (26) is hollow. The extension (25) and the support part (24) are integrally formed.
7. The solar module dome structure according to claim 1, characterized in that: The support (20) and the pressure frame (22) are both U-shaped frames. The support (20) and the power generation plate (21) have through holes at the four corners. The top of the truss (10) has threaded holes. Bolts pass through the mounting holes of the support (20) and the pressure frame (22) and are threaded to the truss (10).
Citation Information
Patent Citations
Road aerial dome structure solar power generation device
CN211557193U