Movable photovoltaic power generation wall and movable photovoltaic power station

By designing a movable photovoltaic power generation fence, and utilizing a combination of counterweight bases and longitudinal connecting rods, the problem of short power supply cycles in remote areas is solved, achieving the stability and convenience of the photovoltaic power generation fence and adapting to the flexible needs of engineering construction.

CN223922772UActive Publication Date: 2026-02-17CHINA HUANENG INT ENG & TECH CO LTD
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Patent Information

Application Number
CN202423016004.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2026-02-17
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Existing engineering projects suffer from short power supply cycles, a problem that is particularly difficult to solve in remote areas.

Method used

Design a movable photovoltaic power generation fence. Through the combination of counterweight base and longitudinal connecting rod, the counterweight base stabilizes the longitudinal connecting rod and the photovoltaic fence, and the connection can be disassembled to meet the power needs of remote areas.

Benefits of technology

It achieves the stability and convenience of photovoltaic power generation fences, which can be disassembled and rearranged when needed, adapting to the short and frequently changing electricity demand in remote areas.

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Abstract

The utility model provides a movable photovoltaic power generation enclosing wall and a movable photovoltaic power station, relates to the technical field of solar power generation, and aims to solve the problem of short power utilization period in engineering construction. The movable photovoltaic power generation enclosing wall comprises counterweight bases, longitudinal connecting rods and a photovoltaic enclosing wall body, each counterweight base is fixedly connected with one longitudinal connecting rod or two longitudinal connecting rods, and the photovoltaic enclosing wall body is detachably connected to the adjacent longitudinal connecting rods. And the requirement of short power utilization period in engineering construction can be met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to solar power generation technical field, specifically, relate to a movable photovoltaic power generation enclosure wall and movable photovoltaic power station. BACKGROUND

[0002] Solar energy is inexhaustible. In response to the call of "carbon peak and carbon neutral", the photovoltaic industry has developed rapidly, and it is particularly important to vigorously promote the application of solar photovoltaic cells in the field of building integration. In engineering construction, electricity is difficult to use in remote areas, users are scattered, and the electricity period is short. CONTENT

[0003] The first aspect of the utility model aims to provide a movable photovoltaic power generation enclosure wall to solve the technical problem of short electricity period in existing engineering construction.

[0004] The movable photovoltaic power generation enclosure wall provided by the first aspect of the utility model comprises counterweight bases, longitudinal connecting rods and photovoltaic enclosure walls, each counterweight base is fixedly connected with the longitudinal connecting rod, the number of longitudinal connecting rods arranged on each counterweight base is one or two, and the photovoltaic enclosure wall is detachably connected to adjacent longitudinal connecting rods.

[0005] The movable photovoltaic power generation enclosure wall has the following beneficial effects:

[0006] By arranging the counterweight base to install the longitudinal connecting rod, the longitudinal connecting rod and the photovoltaic enclosure wall can be stabilized by using the counterweight base after the movable photovoltaic power generation enclosure wall is installed. The photovoltaic enclosure wall can be separated from the longitudinal connecting rod when the movable photovoltaic power generation enclosure wall needs to be transported or stored, so as to meet the demand of short electricity period and frequent relocation.

[0007] In an optional technical solution, the counterweight base comprises a counterweight box body, and a material injection port is arranged at the top of the counterweight box body.

[0008] In an optional technical solution, a material discharge port is arranged at the lower part of the counterweight box body.

[0009] In an optional technical solution, the material discharge port is arranged at the bottom of the side wall of the counterweight box body.

[0010] In an optional technical solution, the material injection port is located at the edge area of the top of the counterweight box body.

[0011] In an optional technical solution, the bottom surface of the counterweight box body is provided with a box body insertion part, and the box body insertion part is configured to be vertically inserted into the ground.

[0012] In an optional technical solution, the box insertion part comprises a columnar part and a conical part, the columnar part is located above the conical part and connects the conical part and the bottom surface of the counterweight box.

[0013] In an optional technical solution, the counterweight base is further connected with a pull ring, an anchor pin is inserted in the pull ring, and the anchor pin is used for being inserted into the ground.

[0014] In an optional technical solution, the longitudinal connecting rod comprises a connecting flange, the connecting flange is attached to and fixedly connected with the top surface of the counterweight box.

[0015] The second aspect of the utility model aims at providing a movable photovoltaic power station to solve the technical problem of short power consumption period in engineering construction.

[0016] The movable photovoltaic power station provided by the second aspect of the utility model comprises the movable photovoltaic power fence.

[0017] By arranging the movable photovoltaic power fence in the movable photovoltaic power station, the movable photovoltaic power station has all the advantages of the movable photovoltaic power fence, which will not be repeated here. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments or the background art of the utility model, the drawings needed to be used in the embodiment or the background art description will be briefly introduced as follows, and obviously, the drawings in the following description can be used to obtain other drawings without creative labor according to the provided drawings for those skilled in the art.

[0019] Figure 1 The structure schematic view of the movable photovoltaic power fence provided by the utility model embodiment.

[0020] Figure 2 The partial schematic view of the movable photovoltaic power fence provided by the utility model embodiment.

[0021] Figure 3 The top view of the counterweight base and the longitudinal connecting rod in the movable photovoltaic power fence provided by the utility model embodiment.

[0022] EXPLANATION OF REFERENCE NUMERALS:

[0023] 100 - counterweight box; 110 - material injection port; 120 - material discharge port; 130 - box insertion part; 131 - columnar part; 132 - conical part; 140 - pull ring; 150 - anchor pin; 200 - longitudinal connecting rod; 210 - groove; 220 - connecting flange; 300 - photovoltaic fence. Detailed Implementation

[0024] To make the above-mentioned objectives, features, and advantages of this utility model more apparent and understandable, specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely illustrative of this utility model and are not intended to limit it.

[0025] Example 1:

[0026] Figure 1 This is a structural schematic diagram of the movable photovoltaic power generation fence provided in an embodiment of the present utility model. Figure 2 This is a partial schematic diagram of a movable photovoltaic power generation fence provided in an embodiment of the present utility model. Figure 3 This is a top view of the counterweight base and longitudinal connecting rod in the movable photovoltaic power generation fence provided in an embodiment of this utility model. Figures 1-3 As shown, the movable photovoltaic power generation fence provided in Embodiment 1 of this utility model includes a counterweight base, a longitudinal connecting rod 200 and a photovoltaic fence 300. Each counterweight base is fixedly connected to a longitudinal connecting rod 200. The number of longitudinal connecting rods 200 provided on each counterweight base is one or two. The photovoltaic fence 300 is detachably connected to the adjacent longitudinal connecting rods 200.

[0027] By installing a counterweight base to mount the longitudinal connecting rod 200, the longitudinal connecting rod 200 and the photovoltaic fence 300 can be stabilized after the movable photovoltaic power generation fence is installed. Furthermore, the photovoltaic fence 300 can be detached from the adjacent longitudinal connecting rod 200 when the movable photovoltaic power generation fence needs to be moved or stored, thus meeting the needs of short power supply cycles and frequent relocation during construction projects in remote areas.

[0028] In this embodiment, the cross-section of the longitudinal connecting rod 200 can be U-shaped, meaning that a groove 210 is formed on one side wall of the longitudinal connecting rod 200. The photovoltaic fence 300 can slide along the groove 210, and the groove wall of the groove 210 can position the photovoltaic fence 300. After the counterweight bases and the longitudinal connecting rod 200 are installed in place, the bottom of the groove 210 on the longitudinal connecting rod 200 can clamp the photovoltaic fence 300 from both sides to fix the photovoltaic fence 300.

[0029] Among the multiple counterweight bases that are connected to form the entire movable photovoltaic power generation fence, the counterweight bases at both ends of the movable photovoltaic power generation fence are equipped with one longitudinal connecting rod 200, while the remaining counterweight bases are equipped with two longitudinal connecting rods 200. The surfaces of the grooves 210 provided on the two longitudinal connecting rods 200 are opposite surfaces, that is, the grooves 210 of the two longitudinal connecting rods 200 on the two adjacent counterweight bases are arranged opposite each other.

[0030] like Figure 3 As shown, optionally, the counterweight base includes a counterweight box 100, and the top of the counterweight box 100 is provided with a material inlet 110.

[0031] By using a hollow counterweight box 100 as the counterweight base, material can be injected into the counterweight box 100 through the material inlet 110 at the top of the counterweight box 100 when it is needed to fix the counterweight base, thereby significantly increasing the weight of the counterweight box 100 and improving the stability of the mobile photovoltaic power generation fence. When it is necessary to move the counterweight base, the material can be discharged from the counterweight box 100, significantly reducing the weight of the counterweight base, thus facilitating carrying and transportation.

[0032] It should be noted that those skilled in the art should understand that the material inlet 110 is equipped with an openable and closable cover. Similarly, the material outlet 120, described later, is also equipped with an openable and closable cover.

[0033] Specifically, in this embodiment, the material injected into the counterweight box 100 can be sand, gravel, soil, or water. These materials are readily available locally during construction and are inexpensive. The counterweight box 100 can be rectangular or cubic in shape.

[0034] like Figure 2 As shown, optionally, the lower part of the counterweight box 100 is provided with a material discharge port 120.

[0035] When it is necessary to discharge the material in the counterweight box 100, the material discharge port 120 can be opened to discharge the flowing material from the material discharge port 120, which significantly reduces the weight of the counterweight base.

[0036] Of course, in another implementation, the material outlet 120 can be omitted. When the movable photovoltaic power generation fence needs to be disassembled and transported, the longitudinal box can be pushed down, and the material can be poured out through the material inlet 110. Using this method, the longitudinal connecting rod 200 can be fixedly connected to the counterweight box 100. The longitudinal connecting rod 200 increases the lever arm, making it easier to push down the heavier counterweight box 100, so that the material inlet 110 is located on the lower side of the counterweight box 100. Furthermore, the longitudinal connecting rod 200 can be separated from the counterweight box 100, so that the side of the counterweight box 100 with the material outlet 120 faces downwards, allowing the material to leak out from the material outlet 120.

[0037] like Figure 2 As shown, optionally, the material discharge port 120 is located at the bottom of the side wall of the counterweight box 100.

[0038] The material discharge port 120 is located at the bottom of the side wall of the counterweight box 100. When it is necessary to discharge material from the counterweight box 100, the operator can directly open the material discharge port 120 from the side of the counterweight box 100, allowing most of the material to be discharged directly. After most of the material is discharged, the weight of the counterweight base is also significantly reduced, making it easier to tilt the counterweight box 100 to empty as much material as possible. Using this method can significantly reduce the difficulty of emptying the material from the counterweight box 100 and improve operational efficiency.

[0039] like Figure 3 As shown, optionally, the material inlet 110 is located in the top edge region of the counterweight box 100.

[0040] By positioning the material inlet 110 in this way, when the counterweight box 100 is tilted 90°, the material inlet 110 is located at the bottom side of the counterweight box 100, allowing most of the material to be discharged from the counterweight box 100. After most of the material has been discharged, the weight of the counterweight base is also significantly reduced, making it easier to continue tilting the counterweight box 100 to empty as much material as possible from it. Moreover, positioning the material inlet 110 in this location increases the horizontal distance between the material inlet 110 and the longitudinal connecting rod 200, preventing the longitudinal connecting rod 200 from interfering with the injection of material into the counterweight box 100.

[0041] like Figure 2 As shown, optionally, the bottom surface of the counterweight box 100 is provided with a box insertion part 130, which is configured to be inserted vertically downward into the ground.

[0042] In addition to utilizing the weight and area of ​​the counterweight box 100 itself, by setting the box insertion part 130 to insert into the ground, the stability of the counterweight base can be further improved, reducing the possibility of the movable photovoltaic power generation fence being overturned by external wind or collision.

[0043] Specifically, in this embodiment, the box insertion part 130 can be located at the four corners of the bottom surface of the box.

[0044] like Figure 2 As shown, optionally, the box insertion part 130 includes a columnar part 131 and a conical part 132, the columnar part 131 being located above the conical part 132 and connecting the conical part 132 and the bottom surface of the counterweight box 100.

[0045] By providing a conical portion 132 at the bottom of the box insertion portion 130, the resistance of the box insertion portion 130 entering the ground can be reduced.

[0046] Specifically, in this embodiment, the shape of the columnar part 131 can be a quadrangular prism, and the cone part 132 can be a quadrangular pyramid. Of course, the quadrangular pyramid does not have to be a regular quadrangular pyramid. The two lateral faces of the quadrangular pyramid are coplanar with the lateral faces of the quadrangular prism.

[0047] like Figure 2 and Figure 3 As shown, optionally, the counterweight base is also connected to a pull ring 140, in which an anchoring pin 150 is inserted for insertion into the ground.

[0048] By setting pull ring 140 to insert anchor pin 150, the distance between the counterweight base and the ground connection position can be increased, thereby further improving the stability of the movable photovoltaic power generation fence.

[0049] like Figure 2 and Figure 3 As shown, optionally, the longitudinal connecting rod 200 includes a connecting flange 220, which is attached to and fixedly connected to the top surface of the counterweight box 100.

[0050] By providing a connecting flange 220, male threaded fasteners such as screws or bolts can pass through the connecting flange 220 and connect to the top surface of the counterweight box 100, so that the longitudinal connecting rod 200 can be detachably connected to the counterweight box 100.

[0051] The connecting flange 220 is rectangular in shape, with through holes at each of the four corners for male threaded fasteners such as screws or bolts to pass through and connect to the threaded holes on the top wall of the counterweight box 100.

[0052] Example 2:

[0053] Example 2 also provides a mobile photovoltaic power station, including the aforementioned mobile photovoltaic power generation fence.

[0054] By installing the aforementioned movable photovoltaic power generation fence in the movable photovoltaic power station, the movable photovoltaic power station will have all the advantages of the aforementioned movable photovoltaic power generation fence, which will not be elaborated here.

[0055] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the present invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

[0056] Finally, it should be noted that in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the term "comprising" or any other variations thereof is intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0057] In the above embodiments, descriptions of directions such as "up" and "down" are based on the accompanying drawings.

[0058] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention.

[0059] Therefore, this invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A movable photovoltaic power generation fence, characterized in that, The system includes a counterweight base, longitudinal connecting rods (200), and a photovoltaic fence (300). Each counterweight base is fixedly connected to the longitudinal connecting rod (200). Each counterweight base has one or two longitudinal connecting rods (200). The photovoltaic fence (300) is detachably connected to the adjacent longitudinal connecting rods (200). The counterweight base includes a counterweight box (100). The top of the counterweight box (100) is provided with a material inlet (110). The bottom of the counterweight box (100) is provided with a material outlet (120).

2. The movable photovoltaic power generation fence according to claim 1, characterized in that, The material discharge port (120) is located at the bottom of the side wall of the counterweight box (100).

3. The movable photovoltaic power generation fence according to claim 1 or 2, characterized in that, The material inlet (110) is located at the top edge of the counterweight box (100).

4. The movable photovoltaic power generation fence according to claim 1 or 2, characterized in that, The bottom surface of the counterweight box (100) is provided with a box insertion part (130), which is configured to be inserted vertically downward into the ground.

5. The movable photovoltaic power generation fence according to claim 4, characterized in that, The box insertion part (130) includes a columnar part (131) and a conical part (132). The columnar part (131) is located above the conical part (132) and connects the conical part (132) and the bottom surface of the counterweight box (100).

6. The movable photovoltaic power generation fence according to claim 1 or 2, characterized in that, The counterweight base is also connected to a pull ring (140), and an anchoring pin (150) is inserted into the pull ring (140) for insertion into the ground.

7. The movable photovoltaic power generation fence according to claim 1 or 2, characterized in that, The longitudinal connecting rod (200) includes a connecting flange (220), which is attached to and fixedly connected to the top surface of the counterweight box (100).

8. A portable photovoltaic power station, characterized in that, The mobile photovoltaic power station includes the mobile photovoltaic power generation enclosure as described in any one of claims 1-7.