W-shaped photovoltaic panel integrated shed support and shed thereof

By adopting the W-shaped structure assembled bracket body and bolt connection design, the existing photovoltaic panel integrated carport has solved the problem of installation difficulties and cost increase when the span increases, and an efficient and economical photovoltaic power generation and energy storage system construction has been achieved.

CN222991243UActive Publication Date: 2025-06-17SHAANXI GUANGDE DISTRIBUTED POWER STATION TECH CO LTD
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Patent Information

Application Number
CN202421995071.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-04-17
Filing Date
2024-08-17
Publication Date
2025-06-17
Estimated Expiration
2034-08-17

AI Technical Summary

Technical Problem

When the span of the existing photovoltaic panel integrated carport increases, in order to maintain wind and blizzard resistance, the specifications of the supporting components need to be increased, resulting in installation difficulties and increased costs.

Method used

The W-type structure assembled bracket body is adopted, including the assembled top frame part supporting the photovoltaic power generation plate group and the left-right W-type structure assembled support part connected thereto. It can be quickly installed through bolt connection without welding.

Benefits of technology

In order to meet the wind and blizzard resistance, the specifications of the support components are avoided, the installation process is simplified, the cost is reduced, and the construction of two parking spaces is supported.

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Patent Text Reader

Abstract

The W-shaped photovoltaic panel integrated shed support comprises the W-shaped structure assembly type support body, and compared with the prior art, under the condition that the wind and snow resisting capacity of a photovoltaic panel integrated shed is met, the specifications and sizes of components in the left W-shaped structure assembly supporting part and the right W-shaped structure assembly supporting part of the W-shaped photovoltaic panel integrated shed support are different. And the specifications and sizes of components in the assembly type top frame part do not need to be increased, the cost does not need to be increased, the number of parking spaces of the shed can be increased from a single parking space to two parking spaces, and therefore the shed can be easily installed, and the overall attractive design style of the shed can be kept.
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Description

Technical Field

[0001] The utility model belongs to the technical field of photovoltaic charging for electric vehicles, and relates to a W-shaped photovoltaic panel integrated carport support for open-air parking lots, a carport, and a photovoltaic energy storage charging system integrating photovoltaic power generation, energy storage, and charging. Background Technique

[0002] Chinese Patent CN2023205326327 discloses a simply installed photovoltaic panel integrated carport, which includes a photovoltaic power generation panel group and an X-shaped structure assembled support body for supporting it. The X-shaped structure assembled support body includes an assembled top frame part for supporting the photovoltaic power generation panel group surface and a left and right X-shaped structure assembled support part connected to and supporting it. Among them, the main structural materials such as the whole column, upper and lower half columns, top middle cross beam, top side cross beam, and top longitudinal beam adopt rectangular steel or square steel. Its structure adopts a lightweight left and right X-shaped structure assembled support part, and all structures are connected through bolts and their connecting parts, enabling quick and convenient installation without on-site mechanical equipment hoisting and without welding. However, when the span between the left and right X-shaped structure assembled support parts increases to two parking spaces, in order not to reduce the wind and snow resistance bearing capacity of the photovoltaic panel integrated carport, it is necessary to not only increase the component specifications and dimensions in the left and right X-shaped structure assembled support parts, but also increase the component specifications and dimensions in the assembled top frame part. This leads to: not only difficulties in the simple installation of the carport, but also an invisible increase in the cost of the carport. Content of the Utility Model

[0003] In order to solve the above problems, the utility model provides a W-shaped photovoltaic panel integrated carport support, a carport, and a photovoltaic energy storage charging system that can not only protect vehicles from wind and rain, but also utilize solar energy to create clean, environmentally friendly, and sustainable energy for charging piles, which can greatly reduce the charging cost.

[0004] In order to achieve the above purpose, a W-shaped photovoltaic panel integrated carport support provided by the utility model includes a W-shaped structure assembled support body.

[0005] Preferably, the support is inclined downward at an angle between 5° and 30° towards the south or north.

[0006] Preferably, the W-shaped structure assembled support body includes an assembled top frame part for supporting the photovoltaic power generation panel group and a left and right W-shaped structure assembled support part connected to and supporting it. The left and right W-shaped structure assembled support parts are left and right mirror structures.

[0007] Preferably, the top frame part includes left and right top longitudinal beams and a number of top cross beams uniformly fixed on them by bolts; the photovoltaic panel group is mainly composed of a number of photovoltaic modules, and the photovoltaic modules are fixed on the top cross beams through snap-fastening components; the left and right W-shaped structure assembly support parts include a rear integral column, a middle X-shaped column, and a front integral column; wherein the middle X-shaped column includes a middle integral column and upper and lower half columns respectively arranged on the upper and lower sides of the middle part thereof by bolts using internal and external four-way connectors; at the upper end heads of the upper half columns and the middle integral column, they are respectively connected and fixed to the top longitudinal beams by bolts using internal and external inclined three-way connectors; the upper end heads of the front and rear integral columns are respectively connected and fixed to the top longitudinal beams by bolts using internal and external inclined three-way connectors; the lower end head of the rear integral column and the lower end head of the lower half column are fixedly connected together by bolts using a rear connection base, and the lower end head of the front integral column and the lower end head of the middle integral column are fixedly connected together by bolts using a front connection base; the integrated photovoltaic panel carport is integrally fixed on the ground through the front and rear connection bases.

[0008] Preferably, the rear integral column, the front integral column, the middle integral column, the upper half column, the lower half column, and the top longitudinal beam are respectively made of square steel or rectangular steel of the same specification.

[0009] Preferably, the top cross beam is made of square steel or rectangular steel, and the specification of the square steel is 60mmX60mm; the rear integral column, the front integral column, the middle integral column, the upper half column, the lower half column, and the top longitudinal beam are respectively made of square steel of the same specification with a specification of 120mmX60mm.

[0010] In order to achieve the above object, the present invention also provides a W-shaped integrated photovoltaic panel carport, which includes a photovoltaic panel group and a W-shaped structure assembled support body for supporting it, and its left and right sides are repeatedly built.

[0011] Preferably, the photovoltaic panel group faces south or north and is inclined downward at an angle between 5° and 30°.

[0012] Preferably, the W-shaped structure assembled support body includes an assembled top frame part for supporting the photovoltaic panel group and a left and right W-shaped structure assembly support part connected to it and supporting it, and the left and right W-shaped structure assembly support parts are left and right mirror structures.

[0013] Preferably, the top frame part includes left and right top longitudinal beams and a number of top cross beams evenly fixed on them by bolts; the photovoltaic panel group is mainly composed of a number of photovoltaic modules, and the photovoltaic modules are fixed on the top cross beams through snap-fastening components; the left and right W-shaped structure assembly support parts include a rear integral column, a middle X-shaped column, and a front integral column; wherein the middle X-shaped column includes a middle integral column and upper and lower half columns respectively arranged on the upper and lower sides of the middle part by bolts using internal and external four-way connectors; at the upper end heads of the upper half columns and the middle integral column, they are respectively connected and fixed to the top longitudinal beams by bolts using internal and external inclined three-way connectors; the upper end heads of the front and rear integral columns are respectively fixed to the top longitudinal beams by bolts using internal and external inclined three-way connectors; the lower end head of the rear integral column and the lower end head of the lower half column are fixedly connected together by bolts using a rear connection base, and the lower end head of the front integral column and the lower end head of the middle integral column are fixedly connected together by bolts using a front connection base; the integral photovoltaic panel shed is integrally fixed on the ground through the front and rear connection bases.

[0014] Preferably, the rear integral column, the front integral column, the middle integral column, the upper half column, the lower half column, and the top longitudinal beam are respectively made of square steel or rectangular steel of the same specification.

[0015] Preferably, the top cross beam is made of square steel or rectangular steel, and the specification of the square steel is 60mmX60mm; the rear integral column, the front integral column, the middle integral column, the upper half column, the lower half column, and the top longitudinal beam are respectively made of square steel of the same specification with a specification of 120mmX60mm.

[0016] Preferably, the integral photovoltaic panel shed further includes an energy storage unit connected to the photovoltaic panel group.

[0017] Preferably, the integral photovoltaic panel shed further includes a charging pile connected to the energy storage unit.

[0018] The present utility model provides a W-shaped integrated photovoltaic shed, which includes a group of photovoltaic panel groups and a W-shaped structure assembled support body for supporting them, and its left and right sides are repeatedly built. Compared with the prior art, under the condition of meeting the wind and heavy snow resistance of the integral photovoltaic panel shed, the specification sizes of the components in the left and right W-shaped structure assembly support parts and the specification sizes of the components in the assembled top frame part do not need to be increased, and there is no need to increase the cost. The shed can be increased from a single parking space to a double parking space. In this way, not only can the shed be easily installed, but also the overall aesthetic design style of the shed can be maintained. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic structural diagram of the integral photovoltaic panel shed provided by the present utility model.

[0020] Figure 2 is Figure 1 the three-dimensional structural schematic diagram of the connecting base shown in

[0021] Figure 3 is Figure 1 the three-dimensional structural schematic diagram of the four-way connector shown in

[0022] Figure 4 is Figure 1 the three-dimensional structural schematic diagram of the connection between the middle integral column and the upper and lower half columns shown in

[0023] Figure 5 is Figure 1 the three-dimensional structural schematic diagram of the inclined three-way connection shown in

[0024] Figure 6 is Figure 1 the three-dimensional structural schematic diagram of the connection between the top longitudinal beam and the front integral column shown in

[0025] Figure 7 is Figure 1 the three-dimensional structural schematic diagram of the component buckle shown in

[0026] Figure 8 is Figure 1 the partial structural schematic diagram of the integrated carport for photovoltaic panels with the photovoltaic power generation component and the top cross beam fixedly connected by the component buckle, removing the glass plate of the top photovoltaic power generation component shown in

[0027] Legend label description:

[0028] 1----front / rear connecting base, 2----X-shaped column, 21----middle integral column, 22----upper half column, 23----lower half column, 24----four-way connector, 3----rear integral column, 4----front integral column, 5----oblique three-way connector, 6----top longitudinal beam, 7----top cross beam, 8----component buckle, 81----upper buckle, 82----nut, 83----lower buckle, 9----photovoltaic panel group, 10----plug, 11----extended connector. Specific embodiments

[0029] The following combines the drawings and specific embodiments to detail a W-shaped integrated carport for photovoltaic panels and a photovoltaic storage charging system provided by the present utility model. (Taking the highest side of the photovoltaic panel group 9 of the W-shaped integrated carport for photovoltaic panels as the front of the carport, and a person stands in front of it to view the overall carport for the following description)

[0030] As Figure 1 and 2As shown in Fig. -8, the present utility model provides a schematic diagram of an integrated carport structure for a W-shaped photovoltaic panel; it includes a photovoltaic power generation panel group 9 and an assembled support body with a W-shaped structure for supporting it, and its left and right sides can be repeatedly built. The assembled support body with a W-shaped structure includes an assembled top frame part for supporting the photovoltaic power generation panel group 9 and a left and right W-shaped structure assembled support part connected to and supporting it, and the left and right W-shaped structure assembled support parts are left and right mirror structures. The top frame part includes left and right top longitudinal beams 6 and a number of top cross beams 7 uniformly fixed on them by bolts; the photovoltaic power generation panel group 9 is mainly composed of a number of photovoltaic power generation components, and the photovoltaic power generation components are fixed to the top cross beams by component buckles 8; the left and right W-shaped structure assembled support parts include a rear integral column 3, a middle X-shaped column 2, and a front integral column 4; wherein the middle X-shaped column 2 includes a middle integral column 21 and upper and lower half columns 22, 23 respectively arranged on the upper and lower sides of the middle part by using internal and external four-way connectors 24 and bolts (the external shape structure and connection method of the internal and external four-way connectors are respectively shown in Figure 3 and 4 ); at the upper ends of the upper half column and the middle integral column, internal and external inclined three-way connectors 5 are respectively used to connect and fix to the top longitudinal beam 6 by bolts (the external shape structure and connection method of the internal and external inclined three-way connectors are respectively shown in Figure 5 and 6 ); the upper ends of the front and rear integral columns are respectively connected and fixed to the top longitudinal beam 6 by using internal and external inclined three-way connectors 5 through bolts; the lower end of the rear integral column 3 and the lower end of the lower half column 23 are fixedly connected together by using a rear connection base through bolts; the lower end of the front integral column 4 and the lower end of the middle integral column 21 are connected together by using a front connection base through bolts; and the overall photovoltaic panel integrated carport is fixed on the ground through the front / rear connection base 1. The plugs 10 are installed at both ends of the top cross beam of the square steel.

[0031] The front / rear connection base 1 includes a bottom plate and two vertical inclined groove bodies respectively connected to its surface at a certain angle on the left and right, and the side openings of the two vertical inclined groove bodies face inward into the carport, as shown in Figure 2 shown.

[0032] The component buckle 8 includes an upper buckle 81, a lower buckle 83 and bolts 82 connecting them front and back and buckling on the top cross beam, and the outer edge of the upper buckle 81 presses on the aluminum frame of the photovoltaic power generation panel component, as shown in Figure 7 and 8 shown.

[0033] When the length of the top cross beam is insufficient, its length can be increased by adding extension connectors 11 at both ends. The extension connectors 11 are respectively upper / lower groove bodies that can be buckled on the top cross beam, and they can be fixed to the top cross beam by bolts for extension, as shown inFigure 1 as shown

[0034] The photovoltaic panel group 9 faces south or north and slopes downward at a certain angle, and the inclination angle is between 5° and 30°. In this way, it can maximize the sunlight absorption to generate more electricity, and at the same time, it can facilitate the drainage of rainwater and stains, and keep the shed roof clean.

[0035] The above-mentioned rear integral column, front integral column, middle integral column, upper half column, lower half column, and top longitudinal beam can respectively adopt square steel or rectangular steel of the same specification. The top cross beam can adopt square steel or rectangular steel; the specification of the square steel is 60mmX60mm; the rear integral column, front integral column, middle integral column, upper half column, lower half column, and top longitudinal beam respectively adopt square steel of the same specification with a specification of 120mmX60mm.

[0036] Based on the above-mentioned photovoltaic panel integrated shed, it also includes a energy storage unit and a charging pile respectively connected to the photovoltaic panel group 9, providing a photovoltaic-storage-charging integrated energy system based on the photovoltaic panel integrated shed.

[0037] A number of photovoltaic power generation components are matrix-connected and fixed on the W-shaped structure assembled support body and connected to the energy storage unit. The photovoltaic inverter in the energy storage unit is used to convert the direct current generated by solar energy into alternating current and output it to the charging pile. The excess power is stored in the energy storage battery and can also be sent to the power grid for power sales. When the photovoltaic power generation is weak, the energy storage battery releases electric energy for the charging pile to use, and the mains power is supplemented if it is not enough.

[0038] The invention point of the present utility model is the W-shaped photovoltaic panel integrated shed. Its top frame part includes left and right top longitudinal beams 6 and several top cross beams 7 uniformly fixed on them by bolts; the left and right W-shaped structure assembled support parts include a rear integral column 3, a middle X-shaped column 2, and a front integral column 4; their structural parts are all standard square tubes, rectangular profiles, and sheet metal bending parts, which are not only lightweight and do not require on-site mechanical equipment hoisting; they are quickly and conveniently installed without welding, and all structures are connected by bolts; moreover, the left and right structure assembled support parts adopt a W-shaped structure, and the span between the structure assembled support parts is increased to two parking spaces, greatly enhancing the wind and snow resistance compared with the X-shaped left and right structure assembled support parts; in addition, by using the component buckle and the through-length top cross beam 7 of the present invention, photovoltaic power generation components of any specification size can be selected, and the compatibility is good. Here, the claims describe the protection scope of the present utility model. However, any variation scheme that includes the invention points of the present utility model and does not deviate from the purpose of the present invention falls within the protection scope of the present utility model.

Claims

1. A W-shaped photovoltaic panel integrated carport bracket, characterized in that: It comprises a W-shaped structure assembled bracket body, which comprises left and right W-shaped structure assembly support parts, which are left and right mirror structures, and which comprise a rear full column, a middle X-shaped column, and a front full column; wherein the middle X-shaped column comprises a middle full column and upper and lower half columns which are respectively arranged on the upper and lower sides of the middle part thereof by bolts using inner and outer four-way connectors.

2. The photovoltaic panel integrated carport bracket according to claim 1, characterized in that: The bracket faces south or north and is tilted downward at an angle of 5° to 30°.

3. The photovoltaic panel integrated carport bracket according to claim 1 or 2, characterized in that: The W-shaped structure assembly type bracket body also includes an assembly type top frame part for supporting a photovoltaic power generation panel group connected to the top ends of the left and right W-shaped structure assembly support parts.

4. The photovoltaic panel integrated carport bracket according to claim 3, characterized in that: The top frame portion includes left and right top longitudinal beams and a plurality of top cross beams evenly fixed thereon by bolts; the photovoltaic power generation panel group is mainly composed of a plurality of photovoltaic power generation components, and the photovoltaic power generation components are fixed to the top cross beam by a buckle component; the upper ends of the upper half columns and the upper ends of the middle whole columns are respectively connected and fixed to the top longitudinal beams by bolts using inner and outer oblique three-way connectors; the upper ends of the front and rear whole columns are respectively connected and fixed to the top longitudinal beams by bolts using inner and outer oblique three-way connectors; the lower end of the rear whole column is fixed together with the lower end of the lower half column by bolts using a rear connecting base, and the lower end of the front whole column is fixed together with the lower end of the middle whole column by bolts using a front connecting base; the photovoltaic panel integrated carport is fixed to the ground as a whole by the front and rear connecting bases.

5. The photovoltaic panel integrated carport bracket according to claim 4, characterized in that: The rear column, the front column, the middle column, the upper half column, the lower half column and the top longitudinal beam are respectively made of square steel or rectangular steel of the same specification.

6. The photovoltaic panel integrated carport bracket according to claim 5, characterized in that: The top crossbeam is made of square steel or rectangular steel, and the square steel specification is 60mmX60mm; the rear full column, front full column, middle full column, upper half column, lower half column, and top longitudinal beam respectively use the same square steel specification of 120mmX60mm.

7. A W-shaped photovoltaic panel integrated carport, characterized in that: The carport includes a photovoltaic panel group and a W-shaped structure assembly bracket body supporting it, and the left and right sides are repeatedly built; the W-shaped structure assembly bracket body includes left and right W-shaped structure assembly support parts, the left and right W-shaped structure assembly support parts are left and right mirror structures, and the left and right W-shaped structure assembly support parts include a rear full column, a middle X-shaped column, and a front full column; wherein the middle X-shaped column includes a middle full column and upper and lower half columns respectively arranged on the upper and lower sides of the middle part by bolts using internal and external four-way connectors.

8. The photovoltaic panel integrated carport according to claim 7, characterized in that: The photovoltaic panel group faces south or north and is tilted downward at an angle of 5° to 30°.

9. The photovoltaic panel integrated carport according to claim 7 or 8, characterized in that: The W-shaped structure assembly type bracket body also includes an assembly type top frame part for supporting a photovoltaic power generation panel group connected to the top ends of the left and right W-shaped structure assembly support parts.

10. The photovoltaic panel integrated carport according to claim 9, characterized in that: The top frame portion includes left and right top longitudinal beams and a plurality of top cross beams evenly fixed thereon by bolts; the photovoltaic power generation panel group is mainly composed of a plurality of photovoltaic power generation components, and the photovoltaic power generation components are fixed to the top cross beam by a buckle component; the upper ends of the upper half columns and the upper ends of the middle whole columns are respectively connected and fixed to the top longitudinal beams by bolts using inner and outer oblique three-way connectors; the upper ends of the front and rear whole columns are respectively connected and fixed to the top longitudinal beams by bolts using inner and outer oblique three-way connectors; the lower end of the rear whole column is fixed together with the lower end of the lower half column by bolts using a rear connecting base, and the lower end of the front whole column is fixed together with the lower end of the middle whole column by bolts using a front connecting base; the photovoltaic panel integrated carport is fixed to the ground as a whole by the front and rear connecting bases.

11. The photovoltaic panel integrated carport according to claim 10, characterized in that: The rear column, the front column, the middle column, the upper half column, the lower half column and the top longitudinal beam are respectively made of square steel or rectangular steel of the same specification.

12. The photovoltaic panel integrated carport according to claim 11, characterized in that: The top crossbeam is made of square steel or rectangular steel, and the square steel specification is 60mmX60mm; the rear full column, front full column, middle full column, upper half column, lower half column, and top longitudinal beam respectively use the same square steel specification of 120mmX60mm.

13. The photovoltaic panel integrated carport according to claim 7 or 8 or 10 or 11 or 12, characterized in that: The photovoltaic panel integrated carport also includes an energy storage unit connected to the photovoltaic power generation panel group.

14. The photovoltaic panel integrated carport according to claim 9, characterized in that: The photovoltaic panel integrated carport also includes an energy storage unit connected to the photovoltaic power generation panel group.

15. The photovoltaic panel integrated carport according to claim 13, characterized in that: The photovoltaic panel integrated carport also includes a charging pile connected to the energy storage unit.

16. The photovoltaic panel integrated carport according to claim 14, characterized in that: The photovoltaic panel integrated carport also includes a charging pile connected to the energy storage unit.