Economical herbaceous plant fertilizing device for photovoltaic power station

By designing a motor-driven gear and gear plate meshing system in a photovoltaic power station, the pipeline is rotated and fertilized, the problem of uneven fertilization in the photovoltaic power station is solved and the utilization efficiency of fertilizer is improved.

CN223142494UActive Publication Date: 2025-07-25MENGCAO ECOLOGICAL ENVIRONMENT (GRP) CO LTD +2
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Patent Information

Application Number
CN202422319512.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-25
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

In existing photovoltaic power plants, the pipeline location of the herbic plant fertilization device is fixed, resulting in a fixed fertilization range, which can easily lead to excessive or insufficient local fertilizers, affect plant growth and soil health, and reduce fertilizer utilization efficiency.

Method used

An economical herbal fertilization device for photovoltaic power stations was designed. The motor drive gears meshed with the gear discs, so that the sliding frame moves on the guide rails, drives the mounting frame and pipelines to rotate, realizes the rotation of the pipelines and avoids uneven fertilization.

Benefits of technology

The rotational fertilization of the pipeline is achieved, which avoids uneven fertilization of plants and improves the utilization efficiency of fertilizers.

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Abstract

The utility model relates to the technical field of agricultural irrigation and fertilization, in particular to an economic herbaceous plant fertilization device for a photovoltaic power station. The utility model provides an economic herbaceous plant fertilizing device for a photovoltaic power station, which can enable a pipeline to rotate to fertilize herbaceous plants, avoid uneven fertilization of the plants and improve the utilization efficiency of fertilizers. An economic herbaceous plant fertilizing device for a photovoltaic power station comprises a photovoltaic supporting column, mounting rings and the like, and the mounting rings are clamped to the front side and the rear side of the middle of the photovoltaic supporting column. The motor is started to drive the gear to rotate, the gear and the fluted disc are meshed to move, the sliding frame moves on the guide rail, the mounting frame is driven to move, and the pipeline and the adding pipe rotate around the photovoltaic supporting column, so that the pipeline can rotate to fertilize herbaceous plants, uneven fertilization of the plants is avoided, and the fertilization efficiency is improved. The utilization efficiency of the fertilizer is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of agricultural irrigation and fertilization, in particular to a fertilization device for economic herbaceous plants in a photovoltaic power station. Background Art

[0002] With the rise of photovoltaic agriculture, planting economic herbaceous plants under a photovoltaic power station has become a new land use mode. When planting economic herbaceous plants under the photovoltaic power station, it is necessary to fertilize the herbaceous plants. In the existing technology, pipelines are laid above the herbaceous plants, and the fertilizer solution is sprayed from the pipelines to fertilize the herbaceous plants. However, due to the fixed position of the pipelines, the fertilization range is fixed, which easily causes local fertilizer surplus or deficiency in the herbaceous plants, affects the growth of plants and the health of the soil, and reduces the fertilizer utilization efficiency, which is rather inconvenient.

[0003] Therefore, a fertilization device for economic herbaceous plants in a photovoltaic power station has been developed, which can rotate the pipeline to fertilize the herbaceous plants, avoid uneven fertilization of plants, and improve the fertilizer utilization efficiency. Summary of the Utility Model

[0004] In order to overcome the shortcomings of the existing fertilization of economic herbaceous plants in a photovoltaic power station, where the position of the pipeline is fixed, resulting in a fixed fertilization range, which easily causes local fertilizer surplus or deficiency in the herbaceous plants, affects the growth of plants and the health of the soil, and reduces the fertilizer utilization efficiency, the utility model provides a fertilization device for economic herbaceous plants in a photovoltaic power station, which can rotate the pipeline to fertilize the herbaceous plants, avoid uneven fertilization of plants, and improve the fertilizer utilization efficiency.

[0005] A fertilization device for economic herbaceous plants in a photovoltaic power station includes a photovoltaic support column, mounting rings, a support frame, a toothed disc, guide rails, sliding frames, motors, gears, mounting frames, pipelines and nozzles. Mounting rings are clamped on the front and rear sides of the middle part of the photovoltaic support column, and the mounting rings are detachably connected by a plurality of bolts. The outer sides of the upper parts of the mounting rings are all connected with a support frame, the upper sides inside the support frames are all connected with guide rails, and the guide rails are in contact and closed with each other. The outer sides of the upper parts of the support frames are all connected with toothed discs, and the toothed discs are in contact and closed with each other. Two left and right sliding frames are slidably and detachably connected between the guide rails. Motors are connected to the upper parts of the sliding frames, gears are connected to the output shafts of the motors, and the gears are all meshed with the toothed discs. Mounting frames are connected to the upper sides of the sliding frames, pipelines are connected to the lower sides of the mounting frames, and a plurality of nozzles are connected to the lower sides of the pipelines.

[0006] Optionally, the pipelines are all made of PVC material.

[0007] Optionally, the nozzles are all in a flared shape.

[0008] Optionally, it further includes connecting pipes, the connecting pipes are connected to the upper sides of the pipelines, and the connecting pipes all pass through the adjacent mounting frames.

[0009] Optionally, flanges are provided on both the upper sides of the takeover pipes.

[0010] Optionally, it further includes extension pipes. Extension pipes are threadedly connected to the outer sides of the pipelines, and multiple spray nozzles are also connected to the lower sides of the extension pipes.

[0011] The beneficial effects of the present utility model are as follows: By starting the motor, driving the gear to rotate, meshing the gear with the toothed disc for movement, enabling the sliding frame to move on the guide rail, driving the mounting frame to move, and causing the pipeline and the extension pipes to rotate around the photovoltaic support column, the present utility model achieves the effect of being able to rotate the pipeline to fertilize herbaceous plants, avoiding uneven fertilization of plants, and improving the fertilizer utilization efficiency. Description of the Drawings

[0012] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.

[0013] Figure 2 It is a partial three-dimensional structural schematic diagram of the present utility model.

[0014] Figure 3 It is a partial three-dimensional structural schematic diagram of the present utility model.

[0015] Markings in the drawings: 0: Photovoltaic support column, 1: Mounting ring, 2: Support frame, 3: Toothed disc, 4: Guide rail, 5: Sliding frame, 6: Motor, 7: Gear, 8: Mounting frame, 9: Pipeline, 10: Spray nozzle, 11: Takeover pipe, 12: Extension pipe. Detailed Embodiment

[0016] The following describes the embodiments of the present utility model with reference to the drawings.

[0017] A fertilizing device for economic herbaceous plants in a photovoltaic power station, as Figures 1-3As shown in the figure, it includes a photovoltaic support column 0, an installation ring 1, a support frame 2, a toothed disc 3, a guide rail 4, a sliding frame 5, a motor 6, a gear 7, an installation frame 8, a pipeline 9, a nozzle 10, a connecting pipe 11 and an extension pipe 12. Installation rings 1 are clamped on both the front and rear sides of the middle part of the photovoltaic support column 0. The installation rings 1 are detachably connected by four bolts. The outer sides of the upper parts of the installation rings 1 are all connected with support frames 2. The upper sides inside the support frames 2 are all connected with guide rails 4. The guide rails 4 are in contact and closed with each other. The outer upper sides of the support frames 2 are all connected with toothed discs 3. The toothed discs 3 are in contact and closed with each other. Two sliding frames 5 on the left and right are slidably and detachably connected between the guide rails 4. Motors 6 are connected to the upper parts of the sliding frames 5. Gears 7 are connected to the output shafts of the motors 6. The gears 7 are all meshed with the toothed discs 3. Installation frames 8 are connected to the upper sides of the sliding frames 5. Pipelines 9 are connected to the lower sides of the installation frames 8. The pipelines 9 are all made of PVC material and are not easily corroded by the chemical components in the fertilizer. Ten nozzles 10 are connected to the lower sides of the pipelines 9. The nozzles 10 are all in a horn shape, which is convenient for large-area irrigation. Connecting pipes 11 are connected to the upper sides of the pipelines 9. Flange plates are provided on the upper sides of the connecting pipes 11, which is convenient for connecting the pipes 11 to the pipelines 9. The connecting pipes 11 all pass through the adjacent installation frames 8. Extension pipes 12 are threadedly connected to the outer sides of the pipelines 9. Three nozzles 10 are also connected to the lower sides of the extension pipes 12.

[0018] When using the present utility model, first install the photovoltaic support column 0 in a photovoltaic power station to support the photovoltaic panel, and then splice and fix the installation ring 1 on the photovoltaic support column 0 through bolts, so that the guide rails 4 are in contact and closed with each other, and the toothed discs 3 are in contact and closed with each other. Subsequently, connect the fertilizer supply pipe to the connecting pipe 11, and then splice the corresponding number of extension pipes 12 according to the coverage range of the herbaceous plants, and install the spliced extension pipes 12 on the pipeline 9. When it is necessary to fertilize the herbaceous plants, introduce the fertilizer water into the pipeline 9 and the extension pipes 12, so that the fertilizer water sprays out from the nozzles 10. While the fertilizer water is spraying out, the motor 6 can be started to drive the gear 7 to rotate, so that the gear 7 meshes with the toothed disc 3 to move, so that the sliding frame 5 moves on the guide rail 4, driving the installation frame 8 to move, so that the pipeline 9 and the extension pipes 12 rotate around the photovoltaic support column 0, thus playing the role of being able to rotate the pipeline 9 to fertilize the herbaceous plants, avoiding uneven fertilization of plants, and improving the fertilizer utilization efficiency.

[0019] Although the present disclosure has been shown and described with reference to specific exemplary embodiments thereof, those skilled in the art should understand that various changes in form and detail may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above embodiments, but should be determined not only by the appended claims but also by the equivalents of the appended claims.

Claims

1. A fertilizing device for economic herbaceous plants in a photovoltaic power station, characterized in that: It includes a photovoltaic support column (0), an installation ring (1), a support frame (2), a toothed disc (3), a guide rail (4), a sliding frame (5), a motor (6), a gear (7), an installation frame (8), a pipeline (9) and a nozzle (10). Installation rings (1) are clamped on both the front and rear sides of the middle part of the photovoltaic support column (0). The installation rings (1) are detachably connected by a plurality of bolts. The outer sides of the upper parts of the installation rings (1) are all connected with support frames (2). The upper sides inside the support frames (2) are all connected with guide rails (4). The guide rails (4) are in contact and closed with each other. The outer upper sides of the support frames (2) are all connected with toothed discs (3). The toothed discs (3) are in contact and closed with each other. Two sliding frames (5) are slidably and detachably connected between the guide rails (4). Motors (6) are connected to the upper parts of the sliding frames (5). Gears (7) are connected to the output shafts of the motors (6). The gears (7) are all meshed with the toothed discs (3). Installation frames (8) are connected to the upper sides of the sliding frames (5). Pipelines (9) are connected to the lower sides of the installation frames (8). A plurality of nozzles (10) are connected to the lower sides of the pipelines (9).

2. The fertilizing device for economic herbaceous plants in a photovoltaic power station according to claim 1, characterized in that: The pipelines (9) are all made of PVC material.

3. The fertilizing device for economic herbaceous plants in a photovoltaic power station according to claim 1, characterized in that: The nozzles (10) are all in a horn shape.

4. The fertilizing device for economic herbal plants in a photovoltaic power station according to claim 1, characterized in that: It further includes a connecting pipe (11). The connecting pipes (11) are connected to the upper sides of the pipelines (9). The connecting pipes (11) all pass through the adjacent installation frames (8).

5. The fertilizing device for economic herbaceous plants in a photovoltaic power station according to claim 4, wherein: Flange plates are provided on the upper sides of the connecting pipes (11).

6. The fertilizing device for economic herbaceous plants in a photovoltaic power station according to claim 1, wherein: It further includes an extension pipe (12). The extension pipes (12) are threadedly connected to the outer sides of the pipelines (9). A plurality of nozzles (10) are also connected to the lower sides of the extension pipes (12).