Photovoltaic panel device

The photovoltaic panel device, with its snap-fit ​​connection plate and high bracket design, solves the problems of large space occupation by photovoltaic panels and the obstruction of residents' activities by the brackets. It enables flexible adjustment and rainwater drainage, providing convenience and cost savings for rural residents.

CN224178110UActive Publication Date: 2026-04-28JIANGSU HONGYU ELECTROMECHANICAL EQUIP MAINTENANCE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU HONGYU ELECTROMECHANICAL EQUIP MAINTENANCE CO LTD
Filing Date
2024-07-12
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

When photovoltaic panels are installed in rural areas, they take up a lot of space and cannot be freely adjusted according to the terrain and open space. In addition, the base supports are too numerous and the gaps are too small, which affects the daily life of residents.

Method used

The system employs a snap-fit ​​connection plate structure, combined with a high bracket design and a rainproof drainage system. LED lights are installed to provide illumination, and transparent panels and water tanks are used for the factory roof, reducing the number of brackets and optimizing space utilization.

Benefits of technology

It allows for flexible adjustment of the number of photovoltaic panels, reduces the number of supports, provides residents with activity space and lighting convenience, reduces costs, and effectively drains rainwater without affecting residents and factories.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224178110U_ABST
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Abstract

The utility model relates to a photovoltaic panel device, which belongs to the technical field of energy equipment and comprises a photovoltaic panel, a support and a first connecting group obliquely arranged on the support, the first connecting group comprises a first connecting plate, a second connecting plate and a third connecting plate, one side of the first connecting plate is provided with a first protruding block, and the other side of the first connecting plate is provided with a second protruding block. A first rectangular groove matched with the first protruding block is formed in one side of the second connecting plate, a second protruding block is arranged on the other side of the second connecting plate, a second rectangular groove matched with the second protruding block is formed in one side of the third connecting plate, and the first connecting plate and the second connecting plate are connected by inserting the first protruding block into the first rectangular groove. The second connecting plate and the third connecting plate are inserted into the second rectangular groove through the second protruding block to be connected, and the photovoltaic panel is located on the first connecting plate, the second connecting plate and the third connecting plate. The number of the photovoltaic panels can be freely adjusted according to the terrain and the open space range, the number of the supports is reduced, rainwater flows down from the drainage pipe, residents can freely walk at the bottoms of the photovoltaic panels to enjoy the cool, and convenience is provided for rural residents.
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Description

Technical Field

[0001] This utility model relates to the field of energy equipment technology, and in particular to a photovoltaic panel device. Background Technology

[0002] Photovoltaic panels are devices that convert solar energy into electrical energy. Rural areas, with their vast lands and abundant sunshine, provide ideal conditions for their installation. However, when installing photovoltaic panels in rural ditches and country roads, the large space they occupy can impact the living and leisure areas of rural residents. Furthermore, the limited number of panels cannot be freely adjusted according to the terrain and available space. Additionally, the numerous base supports and narrow gaps can obstruct residents' daily activities. Therefore, a photovoltaic panel system that does not disrupt residents' lives is needed. Utility Model Content

[0003] The purpose of this invention is to provide a photovoltaic panel device to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A photovoltaic panel device includes a photovoltaic panel, a support frame, and a first connecting group inclinedly mounted on the support frame. The first connecting group includes a first connecting plate, a second connecting plate, and a third connecting plate. One side of the first connecting plate has a protrusion 1. One side of the second connecting plate has a rectangular groove 1 that matches the protrusion 1, and the other side has a protrusion 2. One side of the third connecting plate has a rectangular groove 2 that matches the protrusion 2. The first connecting plate and the second connecting plate are connected by inserting the protrusion 1 into the rectangular groove 1, and the second connecting plate and the third connecting plate are connected by inserting the protrusion 2 into the rectangular groove 2. The photovoltaic panel is located on the first connecting plate, the second connecting plate, and the third connecting plate.

[0006] Preferably, the photovoltaic panel device further includes a second connecting group connected below the first connecting group. The second connecting group includes a fourth connecting plate, a fifth connecting plate, and a sixth connecting plate. The fourth connecting plate has a protrusion three on one side, the fifth connecting plate has a rectangular groove three matching the protrusion three on one side and a protrusion four on the other side, and the sixth connecting plate has a rectangular groove four matching the protrusion four on one side. The fourth and fifth connecting plates are connected by the protrusion three inserted into the rectangular groove three, and the fifth and sixth connecting plates are connected by the protrusion four inserted into the rectangular groove four. The photovoltaic panel is located on the fourth, fifth, and sixth connecting plates. The first and second connecting groups are inclined from high to low on the support. The support is respectively located below the first, third, fourth, and sixth connecting plates.

[0007] Preferably, the fourth connecting plate has a first extension on the side adjacent to the third protrusion, the fifth connecting plate has a second extension on the side adjacent to the third rectangular groove and the fourth protrusion, and the sixth connecting plate has a third extension on the side adjacent to the fourth rectangular groove. The fourth connecting plate is bolted to the bottom of the first connecting plate via the first extension, the fifth connecting plate is bolted to the bottom of the second connecting plate via the second extension, and the sixth connecting plate is bolted to the bottom of the third connecting plate via the third extension.

[0008] Preferably, the photovoltaic panel is bolted to the first connecting group and the second connecting group. The photovoltaic panel on the first connecting plate has a gap matching the convex edge of the rectangular groove one on one side of the protrusion one. The photovoltaic panel on the second connecting plate has a gap matching the convex edge of the rectangular groove two on one side of the protrusion two. The photovoltaic panel on the fourth connecting plate is located outside the first extension and has a gap matching the convex edge of the rectangular groove three on one side of the protrusion three. The photovoltaic panel on the fifth connecting plate is located outside the second extension and has a gap matching the convex edge of the rectangular groove four on one side of the protrusion four. The photovoltaic panel on the sixth connecting plate is located outside the third extension.

[0009] Preferably, adjacent photovoltaic panel devices are connected end to end by a rain shield. The rain shield is obliquely connected between the top of the first connecting group and the bottom of the second connecting group on the adjacent photovoltaic panel device. The rain shield has a through hole on one side of the second connecting group, and a drain pipe is connected below the through hole. The end of the drain pipe extends and is mounted on the bracket.

[0010] Preferably, the height of the support below the third connecting plate and the sixth connecting plate is greater than 1.5m, and the height of the support below the first connecting plate and the third connecting plate is greater than 2m.

[0011] Preferably, LED lights are installed below the second and fifth connecting plates and electrically connected to the photovoltaic panel.

[0012] Preferably, adjacent photovoltaic panel devices are connected end to end by a transparent plate. The bottom of the second connecting group is connected to a concave water tank. One side of the water tank is welded to the bottom of the second connecting group. The transparent plate is inclinedly connected between the other side of the water tank and the top of the first connecting group in the adjacent photovoltaic panel device. The two sides of the transparent plate are respectively connected to the top of the first connecting group and the other side of the water tank by a waterproof adhesive. The two ends of the water tank are connected to the second drainage pipe on the factory wall.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] This invention connects the connecting plates under the photovoltaic panels with interlocking mechanisms, allowing for flexible adjustment of the number of photovoltaic panels based on terrain and available space, thus reducing the number of supporting supports. Rain shields are installed between adjacent photovoltaic panels, with holes in the shields connecting to drainage pipes extending to the supports. During rain, rainwater flows from the drainage pipes along the supports to the ground, without affecting residents at the base of the photovoltaic panels. The high supports allow residents to walk freely under the photovoltaic panels, providing shade and coolness. LED lights are installed under the photovoltaic panels to provide illumination at night, offering convenience to rural residents. This invention can also be installed on the roof of a steel structure factory building, with transparent panels and water troughs installed between adjacent photovoltaic panels. This eliminates the need for the original corrugated steel roof and insulation, providing both light transmission and heat insulation while saving costs and effectively utilizing space. During rain, rainwater is discharged through the water troughs into drainage pipes on the factory wall, without affecting the interior of the factory. Attached Figure Description

[0015] Figure 1 This is an exploded structural view of the present invention;

[0016] Figure 2 This utility model's splicing structure is viewed Figure 1 ;

[0017] Figure 3 This is a structural view of the connection relationship of the first connection group of this utility model;

[0018] Figure 4 This is an exploded structural view of the second connecting group of this utility model;

[0019] Figure 5 This is a side view of Embodiment 1 of the present utility model;

[0020] Figure 6 This is a side view of Embodiment 2 of the present invention;

[0021] Figure 7 This is a view showing the connection relationship of the water tank in Embodiment 2 of this utility model.

[0022] Figure Labels

[0023] 100. First connecting group, 101. First connecting plate, 102. Second connecting plate, 103. Third connecting plate, 200. Second connecting group, 201. Fourth connecting plate, 202. Fifth connecting plate, 203. Sixth connecting plate, 3. Bracket, 4. Photovoltaic panel, 5. Rectangular groove one, 6. Rectangular groove two, 7. Rectangular groove three, 8. Rectangular groove four, 9. Protrusion one, 10. Protrusion two, 11. Protrusion three, 12. Protrusion four, 13. First extension, 14. Second extension, 15. Third extension, 16. Rain shield, 17. Drain pipe one, 18. LED light, 19. Transparent plate, 20. Water tank, 21. Drain pipe two. Detailed Implementation

[0024] To further illustrate the technical means and effects of the present invention in achieving its intended purpose, the following detailed description of the specific implementation methods, structures, features, and effects of the present invention, in conjunction with the accompanying drawings and preferred embodiments, is provided below.

[0025] Example 1

[0026] like Figure 1-5 As shown, a photovoltaic panel device includes a photovoltaic panel 4, a support 3, a first connecting group 100 inclinedly disposed on the support 3, and a second connecting group 200 connected below the first connecting group. The first connecting group 100 includes a first connecting plate 101, a second connecting plate 102, and a third connecting plate 103. The first connecting plate 101 has a protrusion 9 on one side, the second connecting plate 102 has a rectangular groove 5 matching the protrusion 9 on one side and a protrusion 10 on the other side, and the third connecting plate 103 has a rectangular groove 6 matching the protrusion 2 on one side. The first connecting plate 101 and the second connecting plate 102 are connected by inserting the protrusion 9 into the rectangular groove 5, and the second connecting plate 102 and the third connecting plate 103 are connected by inserting the protrusion 20 into the rectangular groove 6. The photovoltaic panel 4 is located on the first connecting plate 101, the second connecting plate 102, and the third connecting plate 103.

[0027] The second connecting group 200 includes a fourth connecting plate 201, a fifth connecting plate 202, and a sixth connecting plate 203. The fourth connecting plate 201 has a protrusion 311 on one side. The fifth connecting plate 202 has a rectangular groove 3 7 on one side that matches the protrusion 311, and a protrusion 4 12 on the other side. The sixth connecting plate 203 has a rectangular groove 4 8 on one side that matches the protrusion 4 12. The fourth connecting plate 201 and the fifth connecting plate 202 are connected by the protrusion 311 inserted into the rectangular groove 3 7, and the fifth connecting plate 202 and the sixth connecting plate 203 are connected by the protrusion 4 111 inserted into the rectangular groove 3 7. 2. The photovoltaic panel 4 is connected to the rectangular slot 8. The photovoltaic panel 4 is located on the fourth connecting plate 201, the fifth connecting plate 202 and the sixth connecting plate 203. The first connecting group 100 and the second connecting group 200 are inclined from high to low on the bracket 3. The four brackets 3 are respectively located below the first connecting plate 101, the third connecting plate 103, the fourth connecting plate 201 and the sixth connecting plate 203. The height of the bracket 3 below the third connecting plate 103 and the sixth connecting plate 203 is greater than 1.5m, and the height of the bracket below the first connecting plate 101 and the third connecting plate 103 is greater than 2m.

[0028] The fourth connecting plate 201 has a first extension 13 on the side adjacent to the protrusion 3 11; the fifth connecting plate 202 has a second extension 14 on the side adjacent to the rectangular groove 3 7 and the protrusion 4 12; and the sixth connecting plate 203 has a third extension 15 on the side adjacent to the rectangular groove 4 8. The photovoltaic panel 4 is bolted to the first connecting group 100 and the second connecting group 200. The photovoltaic panel 4 on the first connecting plate 101 has a gap from the side of the protrusion 1 9 that matches the protruding edge of the rectangular groove 1 5. The second connecting plate 102... The photovoltaic panel on the fourth connecting plate 201 has a gap on one side of the protrusion 10 that matches the protruding edge of the rectangular groove 6. The photovoltaic panel on the fourth connecting plate 201 is located outside the first extension 13 and has a gap on one side of the protrusion 11 that matches the protruding edge of the rectangular groove 7. The photovoltaic panel on the fifth connecting plate 202 is located outside the second extension 14 and has a gap on one side of the protrusion 12 that matches the protruding edge of the rectangular groove 8. The photovoltaic panel on the sixth connecting plate 203 is located outside the third extension 15.

[0029] The fourth connecting plate 201 is inserted into the bottom of the first connecting plate 101 through the first extension 13 and is connected to the first connecting plate by bolts; the fifth connecting plate 202 is inserted into the bottom of the second connecting plate 102 through the second extension 14 and is connected to the second connecting plate by bolts; the sixth connecting plate 203 is inserted into the bottom of the third connecting plate 103 through the third extension 15 and is connected to the third connecting plate by bolts.

[0030] like Figure 5 As shown, adjacent photovoltaic panel devices are connected end to end by a rain shield 16. The rain shield 16 is inclinedly set between the top of the first connecting group 100 and the bottom of the second connecting group 200 on the adjacent photovoltaic panel device. The rain shield 16 has a through hole on one side of the second connecting group 200. A drain pipe 17 is connected below the through hole. The end of the drain pipe 17 extends and is set on the bracket 3. LED lights 18 are installed below the second connecting plate 102 and the fifth connecting plate 202 and electrically connected to the photovoltaic panel 4.

[0031] Example 2

[0032] like Figure 6-7 As shown, the difference between this embodiment and embodiment one is that adjacent photovoltaic panel devices are connected end to end by a transparent plate 19. The bottom end of the second connecting group 200 is connected to a concave water tank 20. One side of the water tank 20 is welded to the bottom end of the second connecting group 200. The transparent plate 19 is inclinedly connected between the other side of the water tank 20 and the top of the first connecting group 100 in the adjacent photovoltaic panel device. The two sides of the transparent plate 19 are respectively connected to the top of the first connecting group 100 and the other side of the water tank 20 by a waterproof adhesive. The two ends of the water tank 20 are connected to the second drainage pipe 21 on the factory wall.

[0033] This invention connects the connecting plates below the photovoltaic panels with interlocking mechanisms, allowing for flexible adjustment of the number of photovoltaic panels based on terrain and available space, thus reducing the number of support brackets 3 below. By installing rain shields 16 between adjacent photovoltaic panel units, with holes in the rain shields 16 connecting to drainage pipes extending to the support brackets 3, rainwater flows from the drainage pipes along the support brackets 3 to the ground during rain, without affecting residents at the bottom of the photovoltaic panels. The support brackets are high, allowing residents to walk freely under the photovoltaic panels and enjoy shade. LED lights 18 are installed below the photovoltaic panels to provide lighting at night, providing convenience for rural residents. This invention can also be installed on the roof of a steel structure factory building, with transparent panels 19 and water troughs 20 installed between adjacent photovoltaic panel units, eliminating the need for the original corrugated steel roof tiles and insulation cotton. It provides both lighting and heat insulation while saving costs and effectively utilizing space. During rain, rainwater is discharged through the water troughs 20 into the drainage pipes on the factory building walls, without affecting the interior of the factory building.

[0034] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Although the present invention has been disclosed above with reference to preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present invention. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the scope of the present invention.

Claims

1. A photovoltaic panel device, characterized in that: The system includes a photovoltaic panel, a support frame, and a first connecting group inclinedly mounted on the support frame. The first connecting group includes a first connecting plate, a second connecting plate, and a third connecting plate. One side of the first connecting plate has a protrusion 1. One side of the second connecting plate has a rectangular groove 1 that matches the protrusion 1, and the other side has a protrusion 2. One side of the third connecting plate has a rectangular groove 2 that matches the protrusion 2. The first connecting plate and the second connecting plate are connected by inserting the protrusion 1 into the rectangular groove 1, and the second connecting plate and the third connecting plate are connected by inserting the protrusion 2 into the rectangular groove 2. The photovoltaic panel is located on the first connecting plate, the second connecting plate, and the third connecting plate.

2. The photovoltaic panel device according to claim 1, characterized in that: The photovoltaic panel device further includes a second connecting group connected below the first connecting group. The second connecting group includes a fourth connecting plate, a fifth connecting plate, and a sixth connecting plate. The fourth connecting plate has a protrusion three on one side, the fifth connecting plate has a rectangular groove three matching the protrusion three on one side and a protrusion four on the other side, and the sixth connecting plate has a rectangular groove four matching the protrusion four on one side. The fourth and fifth connecting plates are connected by inserting the protrusion three into the rectangular groove three, and the fifth and sixth connecting plates are connected by inserting the protrusion four into the rectangular groove four. The photovoltaic panel is located on the fourth, fifth, and sixth connecting plates. The first and second connecting groups are inclined from high to low on the support. The support is respectively located below the first, third, fourth, and sixth connecting plates.

3. A photovoltaic panel device according to claim 2, characterized in that: The fourth connecting plate has a first extension on the side adjacent to the third protrusion, the fifth connecting plate has a second extension on the side adjacent to the third rectangular groove and the fourth protrusion, and the sixth connecting plate has a third extension on the side adjacent to the fourth rectangular groove. The fourth connecting plate is bolted to the bottom of the first connecting plate via the first extension, the fifth connecting plate is bolted to the bottom of the second connecting plate via the second extension, and the sixth connecting plate is bolted to the bottom of the third connecting plate via the third extension.

4. A photovoltaic panel device according to claim 3, characterized in that: The photovoltaic panels are bolted to the first and second connecting groups. The photovoltaic panels on the first connecting plate have a gap on one side of the protrusion block 1 that matches the protruding edge of the rectangular groove 1. The photovoltaic panels on the second connecting plate have a gap on one side of the protrusion block 2 that matches the protruding edge of the rectangular groove 2. The photovoltaic panels on the fourth connecting plate are located outside the first extension and have a gap on one side of the protrusion block 3 that matches the protruding edge of the rectangular groove 3. The photovoltaic panels on the fifth connecting plate are located outside the second extension and have a gap on one side of the protrusion block 4 that matches the protruding edge of the rectangular groove 4. The photovoltaic panels on the sixth connecting plate are located outside the third extension.

5. A photovoltaic panel device according to claim 4, characterized in that: Adjacent photovoltaic panel devices are connected end to end by a rain shield. The rain shield is inclined between the top of the first connecting group and the bottom of the second connecting group on the adjacent photovoltaic panel device. The rain shield has a through hole on one side of the second connecting group, and a drain pipe is connected below the through hole. The end of the drain pipe extends and is mounted on the bracket.

6. A photovoltaic panel device according to claim 5, characterized in that: The height of the supports below the third and sixth connecting plates is greater than 1.5m, and the height of the supports below the first and third connecting plates is greater than 2m.

7. A photovoltaic panel device according to claim 6, characterized in that: LED lights are installed below the second and fifth connecting plates and are electrically connected to the photovoltaic panel.

8. A photovoltaic panel device according to claim 4, characterized in that: Adjacent photovoltaic panel devices are connected end-to-end by a transparent plate. The bottom of the second connecting group is connected to a concave water tank. One side of the water tank is welded to the bottom of the second connecting group. The transparent plate is inclinedly connected between the other side of the water tank and the top of the first connecting group in the adjacent photovoltaic panel device. The two sides of the transparent plate are respectively connected to the top of the first connecting group and the other side of the water tank by a waterproof adhesive. Both ends of the water tank are connected to a second drain pipe.