Combined multifunctional power station

By combining solar panels, wind turbines, and light-emitting panels, the design of a modular multi-functional power station solves the problems of complex structure and limited functionality, achieving multi-energy complementarity and convenient assembly and disassembly, thus improving the applicability and practicality of the power station.

CN223771965UActive Publication Date: 2026-01-06ZHONGSHAN HUIYIDE NEW ENERGY CO LTD
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Patent Information

Application Number
CN202423083211.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2026-01-06
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Existing power plants have complex structures, limited functions, increased operating costs, and limited applicability.

Method used

Design a modular multifunctional power station, comprising a support frame, power station structure, solar panels, triangular light-emitting panels, and a wind turbine structure, which are combined into a storage cavity with an open bottom to achieve solar and wind power generation and light emission effects. It adopts a metal structure and conventional connection methods.

Benefits of technology

It improves the applicability and practicality of the power station, reduces the difficulty of processing and disassembly, and enhances convenience and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a combined type multifunctional power station which comprises a plurality of supporting feet and a power station structure fixed at the tops of the supporting feet, and the power station structure comprises a top plate, a polygonal bottom frame, a plurality of solar panels, a plurality of triangular light-emitting plates, a fan structure and a junction box. The solar panel is fixed between the edge of the top plate and the edge of the polygonal bottom frame; the tops of the triangular light-emitting plates are fixed to the vertex angles of the top plate, the bottom edges are fixed to the edges of the polygonal bottom frame, and the triangular light-emitting plates are located between the adjacent solar panels. The fan structure is fixed in the middle of the top surface of the top plate; the LED lamp is reasonable in structural arrangement, capable of achieving solar power generation, wind power generation and light-emitting effect, diversified in function, beneficial to meeting use requirements under different conditions, wide in application range, small in number of overall structural components, beneficial to reducing machining and dismounting difficulty, and capable of improving dismounting convenience and stability, and the number of the overall structural components is small.
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Description

Technical Field

[0001] This utility model belongs to the field of power station technology, specifically relating to a combined multifunctional power station. Background Technology

[0002] A power station is a place in a power system that exchanges voltage and current, receives electrical energy, and distributes electrical energy. It is mainly built near charging stations. Conventional power stations are mostly box-type power stations, which are mostly installed on the ground, building surfaces, etc., or in lakes, mountains and other places. Not only is their structure relatively complex, which greatly increases the cost of use, but their functions are also limited, which will affect their scope of application and limit their practicality. Utility Model Content

[0003] The purpose of this utility model is to provide a combined multi-functional power station with a reasonable structural design and diverse functions.

[0004] The technical solution to achieve the purpose of this utility model is a combined multifunctional power station, which includes several legs and a power station structure fixed on the top of the legs. The power station structure includes a top plate, a polygonal bottom frame, several solar panels, several triangular light-emitting panels, a fan structure and a junction box.

[0005] The support leg is fixed to the bottom surface of the polygonal base frame, and the area of ​​the polygonal base frame is larger than the area of ​​the top plate;

[0006] The solar panel is fixed between the edge of the top plate and the edge of the polygonal bottom frame;

[0007] The top of the triangular light-emitting panel is fixed at the top corner of the top plate, and the bottom edge is fixed on the edge of the polygonal base frame. The triangular light-emitting panel is located between adjacent solar panels.

[0008] The wind turbine structure is fixed in the middle of the top surface of the roof plate, and the junction box is located on the top surface of the roof plate and is connected to the wind turbine structure and the solar panel.

[0009] A further preferred embodiment is that the top plate, solar panel, triangular light-emitting plate, and polygonal bottom frame are combined to form a storage cavity with an open bottom surface;

[0010] The top plate is provided with wire-threading slots.

[0011] A further preferred embodiment is that the fan structure includes a fan body, a fan main shaft, and fan blades;

[0012] The fan main shaft is connected to the center of the top surface of the top plate via bearings, and the fan blades are fixed on the fan main shaft.

[0013] A further preferred embodiment is that the length of the base of the solar panel is greater than or equal to the length of the base of the triangular light-emitting panel.

[0014] A further preferred embodiment is that the height of the support leg is 1.2m, and the height from the top plate to the polygonal base frame is 3.5m.

[0015] A further preferred embodiment is that the number of legs is four, and the legs, top plate, and polygonal bottom frame are all metal structures.

[0016] A further preferred embodiment is that the angle between the solar panel and the top plate is 135-150 degrees.

[0017] A further preferred embodiment is that a flat shelf is provided on three adjacent sides of the polygonal base frame.

[0018] This utility model has positive effects: its structure is reasonably designed, and it not only includes a solar panel, a triangular light-emitting panel and a fan structure, but also enables solar power generation, wind power generation and light emission. It has multiple functions, which helps to meet the needs of different situations and improves its applicability. Moreover, the overall structure has fewer components, which helps to reduce the difficulty of processing and disassembly, and improves the convenience and stability of disassembly and assembly. It is highly applicable and practical. Attached Figure Description

[0019] To make the content of this utility model easier to understand, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings, wherein:

[0020] Figure 1 This is a schematic diagram of the first structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the structure of this utility model from another perspective;

[0022] Figure 3 This is a schematic diagram of the second structure of this utility model;

[0023] Figure 4 for Figure 3 Another perspective structural diagram.

[0024] Reference numerals: 1. Support leg; 2. Power station structure; 21. Top plate; 22. Polygonal base frame; 23. Solar panel; 24. Triangular light-emitting panel; 25. Fan structure; 26. Junction box; 3. Storage cavity; 4. Wiring groove; 5. Shelf plate. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] Example 1

[0027] See Figures 1 to 2 As shown, a modular multi-functional power station includes several support legs 1 and a power station structure 2 fixed to the top of the support legs. In this embodiment, the number of support legs is four. The power station structure includes a top plate 21, a polygonal base frame 22, several solar panels 23, several triangular light-emitting panels 24, a wind turbine structure 25, and a junction box 26. The support legs, top plate, and polygonal base frame are all metal structures. The height of the support legs is 1.2m, and the height from the top plate to the polygonal base frame is 3.5m. In this embodiment, the top plate is a regular quadrilateral, and the polygonal base frame is an octagonal base frame.

[0028] During assembly, the support legs are fixed to the bottom surface of the polygonal base frame, the area of ​​which is larger than the area of ​​the top plate. The width of the top plate is 1.65m, and the solar panel is fixed between the edge of the top plate and the edge of the polygonal base frame. The angle between the solar panel and the top plate is 135-150 degrees. This structure increases the range and area of ​​solar energy reception by the solar panel, improving the efficiency of solar power generation. Simultaneously, the top of the triangular light-emitting panel is fixed at the apex of the top plate, and its bottom edge is fixed to the edge of the polygonal base frame, with the triangular light-emitting panel positioned between adjacent solar panels. The wind turbine structure is fixed to the center of the top surface of the top plate, and the junction box is located on the top surface of the top plate and connected to the wind turbine structure and the solar panel. In this embodiment, the height of the wind turbine structure is 1.8m, ensuring the effectiveness and reliability of wind power generation. Furthermore, both the solar panel and the wind turbine structure are conventional structures from existing technologies, simply applied, and therefore not described in detail.

[0029] In practical applications, the top plate, solar panel, triangular light-emitting panel, and polygonal base frame combine to form a storage cavity 3 with an open bottom surface; the top plate is provided with a wire-passing slot 4. The storage cavity allows for the storage and use of corresponding electrical appliances, while the wire-passing slot facilitates wire connection, improving the convenience and effectiveness of the connection. For convenient storage, a shelf 5 is provided on three adjacent sides of the polygonal base frame, further enhancing the convenience and effectiveness of storage.

[0030] In practical applications, the fan structure includes a fan body, a fan main shaft, and fan blades; the fan main shaft is connected to the center of the top surface of the top plate via bearings, and the fan blades are fixed to the fan main shaft. The above structures are all conventional structures in the prior art, and therefore are not described in detail.

[0031] In practical applications, the base length of the solar panel is greater than or equal to the base length of the triangular light-emitting panel.

[0032] This utility model has positive effects: its structure is reasonably designed, and it not only includes a solar panel, a triangular light-emitting panel and a fan structure, but also enables solar power generation, wind power generation and light emission. It has multiple functions, which helps to meet the needs of different situations and improves its applicability. Moreover, the overall structure has fewer components, which helps to reduce the difficulty of processing and disassembly, and improves the convenience and stability of disassembly and assembly. It is highly applicable and practical.

[0033] Example 2

[0034] See Figures 3 to 4 As shown, this embodiment is basically the same as embodiment 1, except that: in this embodiment, the top plate is a regular octagon and the polygonal bottom frame is a hexagonal bottom frame.

[0035] The standard parts used in this embodiment can be purchased directly from the market, and the non-standard structural parts described in the instruction manual can also be processed without any doubt based on existing technical common sense. At the same time, the connection methods of each component adopt mature conventional methods in the existing technology, and the machinery, parts and equipment all adopt conventional models in the existing technology, so they will not be described in detail here.

[0036] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all embodiments here. However, these obvious variations or modifications derived from the essential spirit of this utility model still fall within the protection scope of this utility model.

Claims

1. A combined multifunctional power station comprising a number of legs, a power station structure fixed on top of the legs, characterized in that: The power station structure comprises a top plate, a polygonal bottom frame, a plurality of solar panels, a plurality of triangular light-emitting panels, a fan structure and a junction box; The supporting legs are fixed to the bottom surface of the polygonal bottom frame, and the area of the polygonal bottom frame is greater than that of the top plate; The solar panels are fixed between the edge of the top plate and the edge of the polygonal bottom frame; The triangular light-emitting panels are fixed at the top corners of the top plate and the edges of the polygonal bottom frame, and are located between adjacent solar panels; The fan structure is fixed to the middle of the top surface of the top plate, and the junction box is located on the top surface of the top plate and connected with the fan structure and the solar panels.

2. A combined multifunctional power plant according to claim 1, characterized in that: The top plate, the solar panels, the triangular light-emitting panels and the polygonal bottom frame combine to form a receiving cavity with an open bottom surface; A threading groove hole is arranged on the top plate.

3. The combined multifunctional power station according to claim 1, characterized in that: The fan structure comprises a fan body, a fan main shaft and fan blades; The fan main shaft is connected to the middle of the top surface of the top plate through a bearing, and the fan blades are fixed to the fan main shaft.

4. The combined multifunctional power station according to claim 1, characterized in that: The bottom edge length of the solar panel is greater than or equal to the bottom edge length of the triangular light-emitting panel.

5. The combined multifunctional power station according to claim 1, characterized in that: The height of the supporting leg is 1.2 m, and the height from the top plate to the polygonal bottom frame is 3.5 m.

6. The combined multifunctional power station according to claim 1, characterized in that: The number of the supporting legs is four, and the supporting legs, the top plate and the polygonal bottom frame are all metal structures.

7. The combined multifunctional power station according to claim 1, characterized in that: The included angle between the solar panel and the top plate is 135-150 degrees.

8. The combined multifunctional power station according to claim 2, characterized in that: A storage flat plate is arranged on three adjacent edges of the polygonal bottom frame.