Integrated steel pipe truss photovoltaic parking shed based on thin film battery

By integrating thin-film batteries with steel pipe truss structures, the problems of safety hazards, instability, and aesthetics of urban photovoltaic parking sheds have been solved, achieving an efficient and environmentally friendly autonomous power generation and charging solution that is adaptable to complex urban environments.

CN223952356UActive Publication Date: 2026-02-27SICHUAN PROVINCIAL ARCHITECTURAL DESIGN & RES INST
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Patent Information

Application Number
CN202520555180.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-02-27
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

Existing urban photovoltaic parking sheds pose safety hazards, have poor stability, and lack aesthetic appeal in complex urban environments. Traditional monocrystalline silicon solar cell modules are easily blocked, leading to hot spot effects, and their planar structure is monotonous and cannot be well integrated with the urban environment.

Method used

The integrated design of thin-film batteries and steel pipe truss structure includes support columns, steel pipe trusses and photovoltaic roof. Combined with rectangular and triangular cantilever trusses, inverters and combiner boxes are installed and connected by purlins to form a photovoltaic roof with varying heights to adapt to complex urban environments.

Benefits of technology

It enables efficient and safe power generation in urban environments, while beautifying the urban environment, improving structural stability and safety, reducing dependence on the power grid, and making charging safer and more environmentally friendly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated steel pipe truss photovoltaic parking shed based on a thin film battery, and relates to the technical field of parking sheds. The integrated steel pipe truss photovoltaic parking shed comprises supporting columns fixed to the ground, a steel pipe truss structure connected with the supporting columns and a photovoltaic shed roof connected with the steel pipe truss structure. The steel pipe truss structure comprises a main cross beam connected with the supporting columns, the main cross beam is connected with a first overhanging truss and a second overhanging truss which are uneven in height, the photovoltaic shed roof is provided with a panel with the four faces inclining upwards, the panel is connected with the first overhanging truss and the second overhanging truss, and the panel is connected with the first overhanging truss and the second overhanging truss. Rainwater gutters are arranged at the intersecting positions of the panels on the four faces and connected with the main cross beams. The photovoltaic panel is used for power generation, autonomous power supply is achieved, dependence of charging of the electric bicycle on a power grid is reduced, and the parking charging system is an efficient, environment-friendly and safe parking charging solution.
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Description

TECHNICAL FIELD

[0001] The utility model relates to parking shed technical field, concretely relates to an integrated steel pipe truss photovoltaic parking shed based on thin film battery. BACKGROUND

[0002] The photovoltaic parking shed not only can realize all functions of the traditional carport, but also can bring power generation benefits, and is applied more and more widely in cities, and most of existing photovoltaic parking sheds adopt the planar structure form based on crystalline silicon components, and in the city environment with high city style and safety requirement, the traditional photovoltaic parking shed cannot satisfy the city development demand, and mainly has the following problems:

[0003] 1. The traditional photovoltaic parking shed mainly uses monocrystalline silicon battery components, and in the complex city environment, the monocrystalline silicon battery components can produce hot spot effect due to local shielding of buildings, electric poles, leaves and the like, thereby causing safety hazards, and due to the particularity of the material, the color, shape and light transmittance of the monocrystalline silicon battery components cannot be changed, the modeling is monotonous and uniform, and the photovoltaic parking shed cannot be well integrated with the city environment, and the hot spot effect of the thin film battery component is small, the safety performance is high (A type fireproof component), and different colors, shapes and light transmittances can be combined for use, and the thin film battery component can better adapt to the complex city environment.

[0004] 2. Most of the traditional carports adopt the planar structure form, and the bridge, the current collection box and the inverter are often exposed and separately arranged, and have certain safety hazards, the modeling of the parking shed with the planar structure form cannot be changed too much due to the constraint of the structure, and therefore the overall appearance is monotonous and uniform, and furthermore, the structural stability of the parking shed with the planar structure form is poor. UTILITY MODEL CONTENTS

[0005] The utility model solves the technical problem that the existing city photovoltaic canopy structure is unsafe, has poor stability and is not beautiful, and aims to provide an integrated steel pipe truss photovoltaic parking shed based on thin film battery, which realizes self-generation and beautification of the city environment through the integrated structure form of the thin film battery and the steel truss structure, and is a high-efficiency, environment-friendly and safe parking and charging solution.

[0006] The utility model realizes the following technical scheme:

[0007] The utility model provides a kind of integrated steel pipe truss photovoltaic parking shed based on thin film battery, it includes and ground fixed support column, and the steel pipe truss structure connected with the support column and the photovoltaic canopy top connected with the steel pipe truss structure,

[0008] The steel pipe truss structure comprises a main cross beam connected with the support column, the main cross beam is connected with a first cantilever truss and a second cantilever truss with different heights, the photovoltaic shed roof has four upwardly inclined panels, the panels are connected with the first cantilever truss and the second cantilever truss, and rainwater grooves are arranged at the intersection of the four panels, and the rainwater grooves are connected with the main cross beam.

[0009] Further, in the utility model, the main cross beam is a steel pipe truss with a rectangular cross section, and the main cross beam is internally provided with an inverter and a bus box.

[0010] Further, in the utility model, the first cantilever truss and the second cantilever truss are triangular steel pipe trusses.

[0011] Further, in the utility model, the first cantilever truss and the second cantilever truss are connected by a reinforcing connecting rod.

[0012] Further, in the utility model, the edge of the photovoltaic shed roof is provided with purlins, the purlins are connected with the first cantilever truss and the second cantilever truss, and the purlins are arranged at equal intervals.

[0013] Further, in the utility model, the inclination angle of the panel is not more than 15°.

[0014] Further, in the utility model, the bottom of the support column is provided with a cement base.

[0015] Further, in the utility model, the support column is provided with an advertising light board.

[0016] Further, in the utility model, the photovoltaic shed roof is provided with a thin-film battery.

[0017] Compared with the prior art, the utility model has the following advantages and beneficial effects:

[0018] In the utility model, an integrated steel pipe truss photovoltaic parking shed based on a thin-film battery is provided, the support column, the steel pipe truss structure and the photovoltaic shed roof are combined, the photovoltaic shed roof can not only shield wind and rain for the electric bicycles below, but also convert solar energy into electric energy to supplement the energy of the electric bicycles, reduce the dependence on the power grid, is very environmentally friendly, reduces the load of the power grid and is safer to charge. BRIEF DESCRIPTION OF DRAWINGS

[0019] The drawings described herein are used to provide further understanding of the embodiments of the utility model and form a part of the application, and do not constitute limitations to the embodiments of the utility model.

[0020] Figure 1It is an outline view of an integrated steel pipe truss photovoltaic parking shed based on thin film battery;

[0021] Figure 2 It is a schematic view of a photovoltaic roof;

[0022] Figure 3 It is a front view of an integrated steel pipe truss photovoltaic parking shed based on thin film battery;

[0023] Figure 4 It is a partial sectional view of a photovoltaic roof;

[0024] Figure 5 It is a schematic view of a thin film battery.

[0025] Markings in the drawings and corresponding component names: 1-photovoltaic roof, 101-rainwater ditch, 102-back frame, 103-stiffener, 2-steel pipe truss structure, 201-main cross beam, 202-first cantilever truss, 203-second cantilever truss, 3-support column, 301-cement base, 4-inverter, 5-converging box, 6-stiffening connecting rod, 7-purlin, 8-drain pipe. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantages of the utility model more clear and intelligible, the utility model is further described in detail below in combination with embodiments and drawings, the schematic implementation mode of the utility model and its description are only used for explaining the utility model, and do not serve as the limitation of the utility model. The following detailed description of the embodiments of the utility model provided in the drawings is not intended to limit the scope of the claimed utility model, but only represents selected embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without making creative efforts fall within the scope of the utility model protection.

[0027] It should be noted that: similar signs and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. In the description of the embodiments of the utility model, it also needs to be explained that, unless otherwise explicitly defined and limited, if the terms "arrange", "mount", "connect" appear, they should be understood broadly, for example, can be fixedly connected, or can be detachably connected, or integrally connected, can be mechanically connected, or electrically connected, can be directly connected, or indirectly connected through an intermediate medium, can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to specific circumstances.

[0028] Embodiment 1

[0029] In combination withFigures 1 to 5 As shown in the figure, it is an integrated steel pipe truss photovoltaic parking shed based on thin film battery according to the utility model embodiments, and the specific structure is described as follows.

[0030] Combined Figure 1 and Figure 2 As shown in the figure, the integrated steel pipe truss photovoltaic parking shed based on thin film battery of the embodiment comprises three parts of support column 3, steel pipe truss structure 2 and photovoltaic shed roof 1, the support column 3 is used to play a supporting role, the steel pipe truss structure 2 is used to connect the photovoltaic shed roof 1 and the support column 3, and the photovoltaic shed roof 1 is used to convert solar energy into electric energy.

[0031] Further, the bottom of the support column 3 is provided with a cuboid cement base 301, and the bottom end of the support column 3 is fixed on the ground by means of cement pouring and fixing, so that the support column 3 is stably kept upright. Figure 1 and Figure 3 As shown in the figure, one support column 3 is composed of four steel pipes, and multiple horizontal rods are connected between the steel pipes, and the steel pipes and the horizontal rods cooperate to form the whole support column 3, so that the support column 3 has the advantages of light weight and high strength.

[0032] It should be noted that the advertising light board or the advertising light box can be installed on the outer side wall surface of the support column 3, which has more uses and improves the practicality. The inside of the support column 3 is hollow and can be used as a maintenance passage.

[0033] In some embodiments of the embodiment, combined Figure 1 and Figure 3 As shown in the figure, the steel pipe truss structure 2 comprises three parts of main cross beam 201, first cantilever truss 202 and second cantilever truss 203, wherein the main cross beam 201 adopts a steel pipe truss with a rectangular cross section, specifically four relatively thick steel pipes are installed in parallel and located at four nodes of the rectangular cross section, and then relatively thin steel pipes are connected between the adjacent steel pipes to cooperate to form the main cross beam 201.

[0034] It should be noted that the inverter 4 and the current collection box 5 are fixedly installed in the inside of the main cross beam 201,

[0035] Further, combined Figure 1 and Figure 3 As shown in the figure, the first cantilever truss 202 is symmetrically installed on the left and right sides of the main cross beam 201, and the second cantilever truss 203 is symmetrically installed on the left and right sides of the main cross beam 201. Combined Figure 1 and Figure 3 The outer shape of the first cantilever truss 202 and the second cantilever truss 203 is isosceles triangle, and the angle of the tip of the first cantilever truss 202 is greater than that of the tip of the second cantilever truss 203. This shape structure is suitable for large span and forms good space stability.

[0036] And, combinedFigure 1 As shown, the height of the first cantilever truss 202 is greater than the height of the second cantilever truss 203, and since the photovoltaic canopy 1 is connected with the first cantilever truss 202 and the second cantilever truss 203, the photovoltaic canopy 1 appears in a state of ups and downs. And the first cantilever truss 202 and the second cantilever truss 203 are connected through a plurality of reinforcing connecting rods 6, further improving the stability of the steel pipe truss structure 2 as a whole.

[0037] In some embodiments of the present embodiment, in combination with Figure 3 and Figure 1 As shown, the photovoltaic canopy 1 is composed of a plurality of thin film batteries, and the middle is a standard rectangular thin film battery, and the edge accessory is a non-standard rectangular thin film battery. As shown in Figure 1 As shown, the thin film battery is externally mounted with a back frame 102, and a reinforcing rib 103 is mounted in the middle of the back frame 102, and the gap between the reinforcing rib 103, the back frame 102 and the thin film battery is filled with sealant. The photovoltaic canopy 1 serves as a carport top surface, and the photovoltaic canopy 1 is connected with the inverter 4 and the current collecting box 5, and at the same time provides solar power generation for the entire charging system.

[0038] Further, in combination with Figure 2 As shown, the photovoltaic canopy 1 has four panels of front, back, left and right, and the inclination angle of the panel is 15°, and the four panels form a square basin shape with an open top. In combination with Figure 5 and Figure 2 As shown, since the four panels need to be connected with the first cantilever truss 202 and the second cantilever truss 203 which are not level, the panels present a shape of ups and downs, forming a stable whole of the folding roof.

[0039] In combination with Figure 1 As shown, a rainwater gutter 101 is arranged at the intersection of the central four panels of the photovoltaic canopy 1, and the main cross beam 201 is fixedly connected with the rainwater gutter 101. In combination with Figure 2 As shown, a drain pipe 8 is connected with the rainwater gutter 101, and when it rains, the rainwater is collected in the rainwater gutter 101, and then flows away along the drain pipe 8, forming an organized drainage, having a good drainage effect.

[0040] In some embodiments of the present embodiment, in combination with Figure 1 and Figure 4 Figure 1 Figure 3 As shown, the purlin 7 is installed along the edge of the photovoltaic canopy 1 at equal intervals, and the first cantilever truss 202, the second cantilever truss 203 and part of the purlin 7 are connected. The connection effect of the steel pipe truss structure 2 to the photovoltaic canopy 1 is better.

[0041] The working principle of the integrated steel pipe truss photovoltaic parking shed based on thin film batteries is as follows:

[0042] The integrated steel pipe truss photovoltaic parking shed based on thin film batteries combines the support column 3, the steel pipe truss structure 2 and the photovoltaic shed roof 1, the photovoltaic shed roof 1 can not only shelter the electric bicycles below from wind and rain, but also convert solar energy into electric energy to supplement the energy of the electric bicycles and reduce the dependence on the power grid, which is very environmentally friendly and reduces the load of the power grid, and charging is safer.

[0043] The utility model provides a kind of integrated steel pipe truss photovoltaic parking shed based on thin film batteries, it includes and ground fixed support column 3, and the steel pipe truss structure 2 connected with support column 3 and the photovoltaic shed roof 1 connected with steel pipe truss structure 2, steel pipe truss structure 2 includes and support column 3 is connected main crossbeam 201, main crossbeam 201 is connected with uneven first cantilever truss 202 and second cantilever truss 203, photovoltaic shed roof 1 has four sides upward inclined panel, panel is connected with first cantilever truss 202 and second cantilever truss 203, four panels intersection part is provided as rainwater ditch 101, rainwater ditch 101 is connected with main crossbeam 201.Main crossbeam 201 is configured as the steel pipe truss of rectangular section, and inverter 4 and confluence box 5 are provided in main crossbeam 201.The first cantilever truss 202 and second cantilever truss 203 are configured as the steel pipe truss of triangle.The first cantilever truss 202 and second cantilever truss 203 are connected using reinforcing link 6.The edge of photovoltaic shed roof 1 is provided with purline 7, and purline 7 is connected with first cantilever truss 202, second cantilever truss 203.The inclination angle of panel is not more than 15 °.The bottom of support column 3 is provided with cement base 301.Support column 3 is provided with advertising placard.Photovoltaic shed roof 1 is provided with thin film battery.The integrated steel pipe truss photovoltaic parking shed based on thin film batteries provided by the utility model generates electricity through photovoltaic panel, realizes independent power supply, reduces the dependence on power grid for electric bicycle charging, and is a kind of efficient, environmentally friendly and safe parking charging solution.

[0044] The above specific embodiments further illustrate the purpose, technical solutions and beneficial effects of the utility model, and it should be understood that the above description is only a specific embodiment of the utility model, and is not used to limit the protection scope of the utility model, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A thin film battery based integrated steel pipe truss photovoltaic parking canopy characterized in that, The utility model relates to a photovoltaic shed roof (1) and a steel pipe truss structure (2) connected with the support column (3) and the steel pipe truss structure (2), and a support column (3) fixed on the ground, The steel pipe truss structure (2) comprises a main crossbeam (201) connected with the support column (3), the main crossbeam (201) is connected with a first cantilever truss (202) and a second cantilever truss (203) with different heights, the photovoltaic shed roof (1) has four upwardly inclined panels, the panels are connected with the first cantilever truss (202) and the second cantilever truss (203), and the intersection of the four panels is provided with a rainwater gutter (101) connected with the main crossbeam (201).

2. The thin-film battery based integrated steel pipe truss photovoltaic parking shed according to claim 1, characterized in that, The main crossbeam (201) is configured as a steel pipe truss with a rectangular cross section, and the inside of the main crossbeam (201) is provided with an inverter (4) and a bus box (5).

3. The thin-film battery based integrated steel pipe truss photovoltaic parking shed according to claim 1, characterized in that, The first cantilever truss (202) and the second cantilever truss (203) are configured as triangular steel pipe trusses.

4. The thin-film battery based integrated steel pipe truss photovoltaic parking shed according to claim 3, characterized in that, The first cantilever truss (202) and the second cantilever truss (203) are connected by a reinforcing connecting rod (6).

5. The thin-film battery based integrated steel pipe truss photovoltaic parking canopy according to claim 1, wherein, The edge of the photovoltaic shed roof (1) is provided with a purlin (7) connected with the first cantilever truss (202) and the second cantilever truss (203).

6. The thin-film battery based integrated steel pipe truss photovoltaic parking shed according to claim 5, characterized in that, The purlins (7) are arranged at equal intervals.

7. The thin-film battery based integrated steel pipe truss photovoltaic parking canopy according to claim 1, wherein, The inclination angle of the panel is not more than 15°.

8. The thin-film battery based integrated steel pipe truss photovoltaic parking canopy according to claim 1, characterized in that, The bottom of the support column (3) is provided with a cement base (301).

9. The thin-film battery based integrated steel pipe truss photovoltaic parking canopy according to claim 1, wherein, The support column (3) is provided with an advertising light board.

10. The thin-film battery-based integrated steel pipe truss photovoltaic parking shed according to any one of claims 1-9, characterized in that, The photovoltaic shed roof (1) is provided with a thin-film cell.