Distributed photovoltaic power generation mount foundation and distributed photovoltaic power generation system
By designing a distributed photovoltaic power bracket foundation that integrates cable trays, internal drainage structures and external drainage structures, the problems of low integration and poor versatility of the bracket foundation in the prior art are solved, high integration and versatility are achieved, assembly steps are simplified, and the overall performance and reliability of the system are improved.
Patent Information
- Application Number
- PCT/CN2024/116422
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-12-05
- Filing Date
- 2024-09-02
- Publication Date
- 2025-06-12
AI Technical Summary
The foundation of distributed photovoltaic power generation bracket has low integration and poor versatility, which cannot adapt to different roofing conditions, and the assembly steps are complicated.
A distributed photovoltaic power bracket foundation including box, cable tray, internal drainage structure and external drainage structure was designed. Through the integrated cable connection function and drainage function, the convenience of overall modular installation is improved, and universality is improved by adapting to different roof conditions.
It realizes the high integration and versatility of the distributed photovoltaic power bracket foundation, simplifies the assembly steps, is suitable for different roofing conditions, and improves the overall performance and reliability of the system.
Smart Images

Figure CN2024116422_12062025_PF_FP_ABST
Abstract
Description
Distributed photovoltaic power generation support foundation and distributed photovoltaic power generation system
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS
[0002] This application claims priority to the Chinese patent application filed with the China Patent Office on December 5, 2023, with application number 202311659207.5 and titled “Distributed Photovoltaic Power Generation Bracket Foundation and Distributed Photovoltaic Power Generation System,” the entire contents of which are incorporated by reference into this disclosure. Technical Field
[0003] The present disclosure relates to the technical field of distributed photovoltaic power generation, and in particular to a distributed photovoltaic power generation support foundation and a distributed photovoltaic power generation system. Background Art
[0004] With the increasing global energy shortage and environmental and climate issues, the development and utilization of renewable energy projects such as distributed photovoltaics have made large-scale progress. Distributed photovoltaic power generation projects are characterized by small capacity, large number, and different boundary conditions.
[0005] During the installation of distributed photovoltaic power generation systems, the support foundations in related technologies have poor versatility and cannot adapt to different roof conditions. They also have low integration and complex assembly steps. Summary of the Invention
[0006] The purpose of the present disclosure is to provide a distributed photovoltaic power generation bracket foundation and a distributed photovoltaic power generation system to solve the technical problems of low integration and poor versatility of the distributed photovoltaic power generation bracket foundation.
[0007] In order to achieve the above-mentioned objectives, the present disclosure provides a distributed photovoltaic power generation bracket foundation, comprising: a box body with an opening set at the top, a photovoltaic component fixedly connected to the opening, a cable tray fixedly connected in the box body and extending along the length direction of the box body, an internal drainage structure arranged on the inner surface of the bottom plate of the box body, and an external drainage structure arranged on the outer surface of the bottom plate and fluidically connected to the internal drainage structure.
[0008] Optionally, the internal drainage structure includes a first drainage groove and a second drainage groove arranged on the inner surface of the base plate, the first drainage groove and the second drainage groove intersect, and a central drainage hole is provided on the base plate corresponding to the intersection of the first drainage groove and the second drainage groove, and the external drainage structure includes a groove arranged on the outer surface of the base plate, and the groove is fluidically connected to the internal drainage structure through the central drainage hole.
[0009] Optionally, the inner surface of the bottom plate is sloped toward the first drainage groove and the second drainage groove, and the first drainage groove and the second drainage groove are sloped toward the central drainage hole.
[0010] Optionally, a through hole for drainage is provided at the bottom of the cable tray, and the two ends of the cable tray are fixedly connected to the two first side walls of the box body opposite to each other along the length direction, and a cable laying hole is provided on the first side wall at a position corresponding to the end of the cable tray.
[0011] Optionally, a connector is provided on one of two first side walls of the box body that are opposite to each other along the length direction, and a connection seat that matches the connector is provided on the other of the two first side walls.
[0012] Optionally, grounding wire mounting holes are provided on two first side walls of the box body that are opposite to each other along the length direction.
[0013] Optionally, the distributed photovoltaic power generation bracket foundation also includes a plurality of supporting and fixing components, which are fixedly connected to the inner wall of the box body at intervals along the circumference of the box body, and the supporting and fixing components can be supported below the photovoltaic component and fixedly connected to the photovoltaic component.
[0014] Optionally, the supporting and fixing member includes: a supporting body, fixedly connected to the inner wall of the box body and extending toward the interior of the box body to support the frame of the photovoltaic component, and a clip, arranged on the upper surface of the supporting body to snap into engagement with the frame of the photovoltaic component.
[0015] Optionally, the distributed photovoltaic power generation bracket foundation also includes a plurality of fixed pressure blocks, which are fixedly connected to the second side wall of the box extending along the length direction at intervals, and the fixed pressure blocks include a vertically extending fixing portion and a horizontally extending stop portion, and the fixing portion is fixedly connected to the outer surface of the second side wall, and the stop portion extends from the top of the opening toward the inside of the box to stop above the photovoltaic component, and the lower surface of the stop portion is provided with a tooth groove structure to engage with the upper surface of the frame of the photovoltaic component.
[0016] On the basis of the above technical solution, the present disclosure also includes a distributed photovoltaic power generation system, including photovoltaic components and the distributed photovoltaic power generation system in the above technical solution.
[0017] Through the above technical solution, in the distributed photovoltaic power generation support foundation provided by the present disclosure, by integrating the cable bridge, internal drainage structure and external drainage structure on the box body, the distributed photovoltaic power generation support foundation integrates the cable connection function and the drainage function, thereby facilitating the overall modular installation of the distributed photovoltaic power generation support foundation. In addition, the box body can be adapted to different roof conditions, which increases the versatility of the distributed photovoltaic power generation support foundation. The distributed photovoltaic power generation system provided by the present disclosure has the same technical effects as the distributed photovoltaic power generation support foundation in the above technical solution. In order to avoid unnecessary repetition, it will not be described here.
[0018] Other features and advantages of the present disclosure will be described in detail in the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The accompanying drawings are used to provide a further understanding of the present disclosure and constitute a part of the specification. Together with the following detailed description, they are used to explain the present disclosure but do not constitute a limitation of the present disclosure. In the accompanying drawings:
[0020] FIG1 is a schematic structural diagram of a distributed photovoltaic power generation support foundation according to a specific embodiment of the present disclosure;
[0021] FIG2 is a schematic structural diagram of a supporting and fixing member in a specific embodiment of the present disclosure;
[0022] FIG3 is a schematic structural diagram of a fixed pressing block in a specific embodiment of the present disclosure.
[0023] Description of Reference Numerals
[0024] 1-box, 12-opening, 13-bottom plate, 14-first side wall, 15-second side wall,
[0025] 2-support fixing member, 21-support body, 22-clip,
[0026] 3-Fixed pressure block, 31-Fixed part, 32-Stop part,
[0027] 4-cable tray, 41-through hole,
[0028] 5-internal drainage structure, 51-first drainage groove, 52-second drainage groove,
[0029] 6-Center drainage hole,
[0030] 7-Connector,
[0031] 8-Connection seat,
[0032] 9- Ground wire mounting hole,
[0033] 10- Cable laying hole,
[0034] 11-External drainage structure. Modes for Carrying Out the Invention
[0035] The following describes the specific embodiments of the present disclosure in detail with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only used to illustrate and explain the present disclosure and are not intended to limit the present disclosure.
[0036] In this disclosure, unless otherwise stated, directional words such as "upper" and "lower" generally refer to the upper and lower positions of the distributed photovoltaic power generation bracket foundation when it is installed on the roof in normal use, and "inside" and "outside" refer to the inside and outside relative to the outline of the corresponding component itself. The terms "first" and "second" used in this disclosure are intended to distinguish one element from another and do not have order or importance. In addition, when the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.
[0037] In a specific embodiment of the present disclosure, a distributed photovoltaic power generation support foundation is provided. Referring to FIG1 , the distributed photovoltaic power generation support foundation may include a housing 1, a cable tray 4, an internal drainage structure 5, and an external drainage structure 11. The housing 1 may be made of aging-resistant high-strength polyethylene, and an opening 12 may be provided at the top of the housing 1. The photovoltaic modules may cover and be fixedly connected to the opening 12. The cable tray 4 may be fixedly connected to the housing 1 and extend along the length of the housing 1. The internal drainage structure 5 may be provided on the inner surface of the bottom plate 13 of the housing 1. The external drainage structure 11 may be provided on the outer surface of the bottom plate 13 and be in fluid communication with the internal drainage structure 5. Water accumulated within the housing 1 can be drained through the internal drainage structure 5 and the external drainage structure 11. Furthermore, for areas with strong winds, the housing 1 may also accommodate prefabricated concrete blocks, sandbags, and other counterweights to ensure the reliability of the connection between the distributed photovoltaic power generation support foundation and the roof. The concrete blocks, sandbags, and other counterweights should be placed within the housing 1 away from structures such as the cable tray 4, the internal drainage structure 5, and the external drainage structure 11.
[0038] Through the above technical solution, in the distributed photovoltaic power generation bracket foundation provided by the present invention, by integrating the cable bridge 4, the internal drainage structure 5 and the external drainage structure 11 on the box body 1, the distributed photovoltaic power generation bracket foundation integrates the cable connection function and the drainage function, thereby facilitating the overall modular installation of the distributed photovoltaic power generation bracket foundation. In addition, the box body 1 can be adapted to different roof conditions, thereby increasing the versatility of the distributed photovoltaic power generation bracket foundation.
[0039] As shown in reference figure 1, the internal drainage structure 5 may include a first drainage groove 51 and a second drainage groove 52 arranged on the inner surface of the bottom plate 13. The first drainage groove 51 and the second drainage groove 52 may be arranged crosswise to collect accumulated water at various places on the bottom plate 13. A central drainage hole 6 may be provided on the bottom plate 13 corresponding to the intersection of the first drainage groove 51 and the second drainage groove 52. The external drainage structure 11 may include a groove arranged on the outer surface of the bottom plate 13. The groove is fluidically connected to the internal drainage structure 5 through the central drainage hole 6. The groove extends from the central drainage hole 6 to the edge of the bottom plate 13 to discharge the accumulated water to the outside of the box body 1.
[0040] In order to facilitate the accumulated water to flow into the internal drainage structure 5, as shown in Figure 1, the inner surface of the bottom plate 13 can be sloped toward the first drainage groove 51 and the second drainage groove 52, so that the accumulated water in various parts of the bottom plate 13 can flow into the first drainage groove 51 and the second drainage groove 52 under the action of the slope. In addition, in order to facilitate the accumulated water in the first drainage groove 51 and the second drainage groove 52 to be discharged into the external drainage structure 11, the first drainage groove 51 and the second drainage groove 52 can be sloped toward the central drainage hole 6 at a slope of 1%, so that the first drainage groove 51 and the second drainage groove 52 can flow toward the central drainage hole 6 under the action of the slope.
[0041] As shown in reference figure 1, two parallel cable trays 4 are provided in the box body 1, and the two ends of the cable tray 4 are fixedly connected to the two first side walls 14 of the box body 1 that are opposite to each other along the length direction. Specifically, the cable tray 4 can be integrally formed with the box body 1. The cable tray 4 can not only serve as a channel for laying cables between different support bases, but also enhance the structural rigidity and integrity of the box body 1. In order to facilitate the laying of cables between different support bases, a cable laying hole 10 can be provided on the first side wall 14 at a position corresponding to the end of the cable tray 4, so that the cable in one support base can pass through the cable laying hole 10 and enter the other support base. In addition, a plurality of through holes 41 for drainage can also be provided at the bottom of the cable tray 4, and the accumulated water in the cable tray 4 can be discharged to the bottom plate 13 through the through holes 41.
[0042] In order to connect and relatively fix multiple support foundations to form a photovoltaic string, as shown in Figure 1, a connector 7 can be provided on one of the two first side walls 14 of the box body 1 that are opposite to each other in the length direction, and a connector base 8 that matches the connector 7 can be provided on the other of the two first side walls 14. When multiple support foundations are connected in sequence along the length direction of the box body 1, the connector 7 on one support foundation can be inserted into the connector base 8 on another support foundation, thereby achieving relative fixation between the multiple support foundations. In a specific embodiment of the present disclosure, the connector 7 can be a snap-fit structure, and the connector base 8 can be a slot structure, or the connector 7 and the connector base 8 can be a matching mortise and tenon structure.
[0043] In order to facilitate the wiring of the ground wire between photovoltaic strings, as shown in Figure 1, ground wire mounting holes 9 can be respectively provided on the two first side walls 14 opposite to each other along the length direction of the box body 1. The ground wires between adjacent bracket foundations can be connected through the ground wire mounting holes 9, and the ground wires in the bracket foundation at the end of the photovoltaic string can be connected to the grounding grid of the distributed photovoltaic power generation system through the ground wire mounting holes 9.
[0044] In order to securely connect the photovoltaic module to the housing 1, as shown in Figures 1 and 2, the distributed photovoltaic power generation support foundation may further include a plurality of supporting and securing members 2. The plurality of supporting and securing members 2 may be securely connected to the inner sidewall of the housing 1 at intervals along the circumference of the housing 1. The supporting and securing members 2 may support and securely connect the photovoltaic module to the housing 1. The supporting and securing members 2 provide a secure connection between the photovoltaic module and the housing 1.
[0045] Referring to Figures 1 and 2, the supporting and fixing member 2 may include a supporting body 21 and a buckle 22. Specifically, the supporting body 21 can be fixedly connected to the inner wall of the box body 1 and extend toward the interior of the box body 1. The supporting body 21 can be constructed as a boss-like structure integrally formed with the box body 1. When the photovoltaic component covers the opening 12, the frame of the photovoltaic component can be supported on the supporting body 21. The buckle 22 can be arranged on the upper surface of the supporting body 21. When the frame of the photovoltaic component is supported on the supporting body 21, the buckle 22 can be snapped into the bottom edge of the frame of the photovoltaic component to fix the photovoltaic component.
[0046] In order to further improve the connection reliability between the photovoltaic module and the box body 1, referring to Figures 1 and 3, the distributed photovoltaic power generation bracket foundation can also include a plurality of fixed pressure blocks 3, and the plurality of fixed pressure blocks 3 can be fixedly connected to the second side wall 15 extending along the length direction of the box body 1 at intervals. The fixed pressure blocks 3 can include a vertically extending fixing portion 31 and a horizontally extending stop portion 32. The fixing portion 31 can be detachably connected to the outer surface of the second side wall 15 by bolts to facilitate the disassembly and assembly of the fixed pressure blocks 3 when the photovoltaic module is inspected and replaced. The stop portion 32 can extend from the top of the opening 12 toward the inside of the box body 1 to stop above the photovoltaic module. The lower surface of the stop portion 32 can be provided with a tooth groove structure to engage with the upper surface of the frame of the photovoltaic module, thereby increasing the friction between the stop portion 32 and the photovoltaic module.
[0047] By setting a supporting fixing member 2 below the photovoltaic component and a fixed pressure block 3 above the photovoltaic component, the photovoltaic component can be fixedly connected to the buckle 22 below and stopped by the stopper 32 above, so as to improve the connection reliability between the photovoltaic component and the box 1.
[0048] On the basis of the above technical solution, the present disclosure also includes a distributed photovoltaic power generation system, including photovoltaic components and the distributed photovoltaic power generation system in the above technical solution.
[0049] Through the above technical solution, the distributed photovoltaic power generation system provided by the present disclosure has the same technical effect as the distributed photovoltaic power generation bracket foundation in the above technical solution. In order to avoid unnecessary repetition, it will not be described here.
[0050] Assembling a distributed photovoltaic power generation system on a roof includes the following assembly steps:
[0051] Step 1: Position the box 1 of the distributed photovoltaic power generation support foundation at a preset position on the roof, and place a counterweight in the box 1;
[0052] Step 2: Place the cable in the cable tray 4 and install the plug, then lead the cable out from the cable laying hole 10, fix the ground wire on the back of the photovoltaic module with bolts, and lead it out from the ground wire installation hole 9;
[0053] Step 3: Cover the photovoltaic module at the opening 12 so that the frame of the photovoltaic module is placed on the support body 21 of the support and fixing member 2 and is engaged with the buckle 22;
[0054] Step 4: Install the fixing portion 31 of the fixing block 3 on the side wall of the box 1 by means of bolts, so that the stopper 32 stops above the photovoltaic module;
[0055] When the distributed photovoltaic power generation system includes multiple distributed photovoltaic power generation support foundations, the assembly steps further include step five: inserting the connector 7 of one distributed photovoltaic power generation support foundation into the connector seat 8 of an adjacent distributed photovoltaic power generation support foundation.
[0056] The preferred embodiments of the present disclosure are described in detail above in conjunction with the accompanying drawings. However, the present disclosure is not limited to the specific details of the above embodiments. Within the technical concept of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all fall within the scope of protection of the present disclosure.
[0057] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any appropriate manner without contradiction. In order to avoid unnecessary repetition, the present disclosure will not further describe various possible combinations.
[0058] In addition, the various embodiments of the present disclosure may be arbitrarily combined, and as long as they do not violate the concept of the present disclosure, they should also be regarded as the contents disclosed by the present disclosure.
Claims
1. A distributed photovoltaic power generation support foundation, characterized in that: include: The box body (1) has an opening (12) at the top, and the photovoltaic assembly is fixedly connected to the opening (12). The cable tray (4) is fixedly connected to the box (1) and extends along the length direction of the box (1). an internal drainage structure (5) disposed on the inner surface of the bottom plate (13) of the box body (1), and An external drainage structure (11) is arranged on the outer surface of the bottom plate (13) and is fluidically connected to the internal drainage structure (5).
2. The distributed photovoltaic power generation support foundation according to claim 1, characterized in that: The internal drainage structure (5) comprises a first drainage groove (51) and a second drainage groove (52) arranged on the inner surface of the bottom plate (13), the first drainage groove (51) and the second drainage groove (52) intersecting each other, and a central drainage hole (6) is arranged on the bottom plate (13) at a position corresponding to the intersection of the first drainage groove (51) and the second drainage groove (52). The external drainage structure (11) comprises a groove arranged on the outer surface of the bottom plate (13), and the groove is in fluid communication with the internal drainage structure (5) through the central drainage hole (6).
3. The distributed photovoltaic power generation support foundation according to claim 2 is characterized in that: The inner surface of the bottom plate (13) is sloped toward the first drainage groove (51) and the second drainage groove (52), and the first drainage groove (51) and the second drainage groove (52) are sloped toward the central drainage hole (6).
4. The distributed photovoltaic power generation support foundation according to any one of claims 1 to 3, characterized in that: The bottom of the cable tray (4) is provided with a through hole (41) for drainage. The two ends of the cable tray (4) are fixedly connected to two first side walls (14) of the box body (1) that are opposite to each other along the length direction, and cable laying holes (10) are provided on the first side walls (14) at positions corresponding to the ends of the cable tray (4).
5. The distributed photovoltaic power generation support foundation according to any one of claims 1 to 4, characterized in that: A connecting head (7) is provided on one of two first side walls (14) of the box body (1) that are opposite to each other along the length direction, and a connecting seat (8) that matches the connecting head (7) is provided on the other of the two first side walls (14).
6. The distributed photovoltaic power generation support foundation according to claim 5, characterized in that: Grounding wire installation holes (9) are provided on two first side walls (14) of the box body (1) that are opposite to each other along the length direction.
7. The distributed photovoltaic power generation support foundation according to any one of claims 1 to 6, characterized in that: The distributed photovoltaic power generation support foundation further comprises a plurality of supporting and fixing components (2), wherein the plurality of supporting and fixing components (2) are fixedly connected to the inner side wall of the box body (1) at intervals along the circumference of the box body (1), and the supporting and fixing components (2) are capable of supporting below the photovoltaic component and being fixedly connected to the photovoltaic component.
8. The distributed photovoltaic power generation support foundation according to claim 7, characterized in that: The supporting and fixing member (2) comprises: A supporting body (21) is fixedly connected to the inner wall of the box (1) and extends toward the inside of the box (1) to support the frame of the photovoltaic module; and A buckle (22) is arranged on the upper surface of the supporting body (21) so as to be snap-fitted to the frame of the photovoltaic assembly.
9. The distributed photovoltaic power generation support foundation according to any one of claims 1 to 8, characterized in that: It also comprises a plurality of fixed pressing blocks (3), wherein the plurality of fixed pressing blocks (3) are fixedly connected at intervals to a second side wall (15) extending in the length direction of the box body (1), The fixed pressing block (3) comprises a vertically extending fixing portion (31) and a horizontally extending stopping portion (32), wherein the fixing portion (31) is fixedly connected to the outer surface of the second side wall (15), and the stopping portion (32) extends from above the opening (12) toward the inside of the box body (1) to stop above the photovoltaic module. The lower surface of the stopper (32) is provided with a tooth groove structure so as to engage with the upper surface of the frame of the photovoltaic component.
10. A distributed photovoltaic power generation system, characterized in that: A distributed photovoltaic power generation system comprising a photovoltaic component and any one of claims 1 to 9.
Citation Information
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