Vegetation reconstruction auxiliary device

By designing a vegetation reconstruction auxiliary device that includes water supply risers and nutrient solution delivery risers, the limitations of root growth and nutrient substrate addition were solved, enabling rapid vegetation growth and flexible supply of water and nutrients, thus improving the efficiency of vegetation reconstruction.

CN223958069UActive Publication Date: 2026-03-03SHENYANG LANDSCAPE CO LTD
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Patent Information

Application Number
CN202520510273.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-22
Publication Date
2026-03-03
Estimated Expiration
2035-03-22

AI Technical Summary

Technical Problem

Existing vegetation restoration devices have limitations in terms of root growth and nutrient substrate addition, resulting in problems such as hindered root growth and poor flexibility of use.

Method used

A vegetation reconstruction auxiliary device was designed, which includes a culture box, a water supply riser and a nutrient solution delivery riser. It achieves unified irrigation and fertilization through the upper and lower annular cavities and pipeline system, and the bottom of the culture box is equipped with a large circular through hole to avoid root obstruction.

Benefits of technology

It enables rapid vegetation growth, ensures flexibility in water and nutrient supply, avoids constraints on root growth space, and improves the efficiency of vegetation reconstruction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a vegetation reconstruction auxiliary device, which comprises an incubator and a support component, and is technically characterized in that a large circular through hole is formed in the center of the bottom of the incubator, plant fiber separation blades are laid on the inner bottom surface of the incubator, and an upper annular cavity and a lower annular cavity are formed in the side wall of the incubator; a water supply vertical pipe and a nutrient solution conveying vertical pipe are symmetrically arranged on the upper edge of the incubator, the lower end of the water supply vertical pipe is communicated with the upper annular cavity, the lower end of the nutrient solution conveying vertical pipe is inserted into the lower annular cavity, and a lower annular pipeline attached to the inner wall of the incubator is arranged above the plant fiber blocking piece and communicated with the lower annular cavity. A plurality of lower radial spray pipes are uniformly arranged on the inner circumferential surface of the lower annular pipeline, an upper annular pipeline is arranged in the upper part of the incubator, the upper annular pipeline is communicated with the upper annular cavity, and a plurality of upper radial spray pipes are uniformly arranged on the inner circumferential surface of the upper annular pipeline. According to the device, the vegetation growth space is prevented from being restrained, the requirements for moisture and nutrients in the vegetation reconstruction process are met, vegetation growth is accelerated, and the use flexibility is good.
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Description

Technical Field

[0001] This utility model relates to the field of planting equipment technology, specifically to a vegetation reconstruction auxiliary device. Background Technology

[0002] In the process of urban greening, a necessary task is to rebuild vegetation. During the rebuilding process, plant roots need a certain amount of time to develop effectively and penetrate deep into the soil. During this period, plants require auxiliary devices for cultivation.

[0003] For example, CN 218473865 U discloses a vegetation reconstruction auxiliary device, which includes land, tree body, fixing components, and reinforcement components. A cultivation box is fixedly installed inside the land, and the bottom of the tree body is located inside the cultivation box. The fixing components are located on the outside and above the tree body, and the reinforcement components are located above the fixing components. This device is intended to effectively fix the tree body to prevent it from tilting or being uprooted in severe weather, thereby improving the survival rate of the vegetation. However, the following problems still exist: 1. The cultivation box uses a first water-absorbing plate and a second water-absorbing plate to store water. The second water-absorbing plate has holes to drain water and prevent excessive water from causing root necrosis. However, the presence of the second water-absorbing plate requires the roots to penetrate downwards through the holes to penetrate the soil layer, which restricts the downward free growth of the roots and the strength of the root system; 2. Nutrient substrate is placed through the storage plate to improve the survival rate of the vegetation, but it is not advisable to store too much at once, otherwise it will have the opposite effect. Moreover, the device cannot add nutrient substrate as needed, resulting in poor flexibility of use. Utility Model Content

[0004] The purpose of this invention is to provide a vegetation reconstruction auxiliary device with a reasonable structure and reliable use that solves the above problems, avoids restricting the vegetation growth space, ensures the demand for water and nutrients during the vegetation reconstruction process, accelerates vegetation growth, and has good flexibility in use.

[0005] The technical solution of this utility model is:

[0006] A vegetation reconstruction aid device includes an incubator and a support assembly. Its key technical features are: a large circular through-hole is located at the center of the bottom of the incubator; a plant fiber baffle is laid on the inner bottom surface of the incubator to seal the large circular through-hole; an upper annular cavity and a lower annular cavity are located in the side wall of the incubator; a water supply riser and a nutrient solution delivery riser are symmetrically arranged along the upper edge of the incubator; the lower end of the water supply riser communicates with the upper annular cavity; the lower end of the nutrient solution delivery riser is inserted into the lower annular cavity; and a support assembly is located above the plant fiber baffle. The incubator has a lower annular pipe attached to its inner wall, which is connected to the lower annular cavity via a connector. Multiple lower radial nozzles are evenly arranged on the inner circumferential surface of the lower annular pipe. An upper annular pipe is built into the upper part of the incubator, which is connected to the upper annular cavity via a connector. Multiple upper radial nozzles are evenly arranged on the inner circumferential surface of the upper annular pipe. The water supply risers of each incubator arranged in the same row are connected to the same main water supply pipe, and the nutrient solution delivery risers of each incubator arranged in the same row are connected to the same main nutrient solution delivery pipe.

[0007] The aforementioned vegetation reconstruction auxiliary device includes a support assembly comprising a front support and a rear support arranged in a cross shape with the water supply riser and the nutrient solution delivery riser, a front support arm hinged to the front support, a rear support arm hinged to the rear support, a front clamping hoop hinged to the upper end of the front support arm, a rear clamping hoop hinged to the upper end of the rear support arm, and a bolt pair connecting the front and rear clamping hoops. The front support and the rear support are respectively connected and fixed to the front and rear parts of the upper edge of the incubator.

[0008] The aforementioned vegetation reconstruction auxiliary device comprises a main water supply pipe consisting of multiple sections of first retractable flexible pipes and a first tee pipe connecting two adjacent sections of first retractable flexible pipes. The lower outlet of the first tee pipe is fixedly connected to the upper end of the water supply riser.

[0009] The above-mentioned vegetation reconstruction auxiliary device, wherein the nutrient solution delivery main pipe is composed of multiple sections of second retractable flexible pipes and a second tee pipe connecting two adjacent sections of second retractable flexible pipes, and the lower outlet of the second tee pipe is connected and fixed to the upper end of the nutrient solution delivery riser.

[0010] The beneficial effects of this utility model are:

[0011] 1. In use, water is delivered into the upward annular cavity via the water supply riser of the cultivation box, and then distributed to the various upward radial nozzles through the inner circumference of the upper annular pipe, thus irrigating the reconstructed plants. This watering is done deep into the soil layer, preventing surface evaporation. Similarly, nutrient solution is delivered into the downward annular cavity via the nutrient solution delivery riser, and then distributed to the various downward radial nozzles through the inner circumference of the lower annular pipe, thus fertilizing the soil for the reconstructed plants. This invention ensures the water and nutrient needs during vegetation reconstruction, allows for unified watering and fertilization of multiple rows and columns of vegetation, offers good flexibility, and guarantees rapid vegetation growth.

[0012] 2. The bottom of the incubator has a large circular through hole, which will not affect or restrict the growth space of the plant roots. In order to prevent the soil in the incubator from leaking out before reconstruction, a plant fiber baffle is laid on the inner bottom of the incubator. The plant fiber baffle can be passed through by the plant roots and can also be used as fertilizer for the plants to absorb after decomposition. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 yes Figure 1 Sectional view along the AA direction;

[0015] Figure 3 yes Figure 1 Cross-sectional view along the BB direction.

[0016] In the diagram: 1. Plant, 2. Second retractable flexible pipe, 3. Front support, 4. Front support arm, 5. Hinge ear, 6. Front clamping clamp, 7. Rear clamping clamp, 8. Hinge ear, 9. Rear support arm, 10. Rear support, 11. Incubator, 12. Second tee pipe, 13. First retractable flexible pipe, 14. First tee pipe, 15. Nutrient solution delivery riser, 16. Lower annular cavity, 17. Lower annular pipe, 18. Large circular through hole, 19. Upper annular cavity, 20. Water delivery riser, 21. Plant fiber baffle, 22. Lower radial nozzle, 23. Upper annular pipe, 24. Upper radial nozzle. Detailed Implementation

[0017] The present invention will be described in detail with reference to the accompanying drawings.

[0018] like Figures 1-3 As shown, the vegetation reconstruction aid device includes an incubator 11 and a support assembly.

[0019] The incubator 11 has a large circular through hole 18 at the bottom center, and the inner bottom surface of the incubator 11 is covered with a plant fiber baffle 21 to block the large circular through hole 18.

[0020] The incubator 11 has an upper annular cavity 19 and a lower annular cavity 16 in its side wall. A water supply riser 20 and a nutrient solution delivery riser 15 are symmetrically arranged along the upper edge of the incubator 11. The lower end of the water supply riser 20 communicates with the upper annular cavity 19, and the lower end of the nutrient solution delivery riser 15 is inserted into the lower annular cavity 16. Above the plant fiber baffle 21, a lower annular pipe 17 is provided, which is attached to the inner wall of the incubator 11. The lower annular pipe 17 communicates with the lower annular cavity 16 via a connector. Multiple downward radial nozzles 22 are evenly arranged on the inner circumferential surface of the lower annular pipe 17. An upper annular pipe 23 is built into the upper part of the incubator 11. The upper annular pipe 23 communicates with the upper annular cavity 19 via a connector. Multiple upward radial nozzles 24 are evenly arranged on the inner circumferential surface of the upper annular pipe 23.

[0021] Each incubator 11 arranged in the same row has its water supply riser 20 connected to the same main water supply pipe, and each incubator 11 has its nutrient solution delivery riser 15 connected to the same main nutrient solution delivery pipe. In this embodiment, the main water supply pipe consists of multiple sections of first retractable flexible pipe 13 and a first tee pipe 14 connecting two adjacent sections of the first retractable flexible pipe 13. The lower outlet of the first tee pipe 14 is fixedly connected to the upper end of the water supply riser 20. The main nutrient solution delivery pipe consists of multiple sections of second retractable flexible pipe 2 and a second tee pipe 12 connecting two adjacent sections of the second retractable flexible pipe 2. The lower outlet of the second tee pipe 12 is fixedly connected to the upper end of the nutrient solution delivery riser 15.

[0022] In this embodiment, the support assembly includes a front support 3 and a rear support 10 arranged in a cross shape with the water supply riser 20 and the nutrient solution delivery riser 15, a front support arm 4 hinged to the front support 3, a rear support arm 9 hinged to the rear support 10, a front clamping clamp 6 hinged to the upper end of the front support arm 4, a rear clamping clamp 7 hinged to the upper end of the rear support arm 9, and a bolt pair connecting the front and rear clamping clamps. The front support 3 and the rear support 10 are respectively connected and fixed to the front and rear parts of the upper edge of the incubator 11. The front clamping clamp 6 and the rear clamping clamp 7 are respectively provided with hinge ears 5 and hinge ears 8 on their opposite sides.

[0023] Working principle:

[0024] In use, multiple elements of this invention are employed to arrange the reconstructed vegetation, forming a rectangular matrix of multiple rows of plants 1. Support components are used to provide stable support for the plants. See [link to related documentation]. Figure 1 .

[0025] When watering is needed, water is introduced into the main water supply pipe, and the water flows through each first tee pipe 14 to each incubator 11. That is, water is delivered to the upper annular cavity 19 through the water supply riser 20 of the incubator 11, and then delivered to each upper radial spray pipe 24 through the inner circumferential surface of the upper annular pipe 23 to realize the irrigation of the reconstructed plants.

[0026] When nutrient solution needs to be replenished, it is introduced into the main nutrient solution delivery pipe. The nutrient solution is then delivered to each incubator 11 through the various second-to-third pipes 12. Specifically, the nutrient solution is delivered to the lower annular cavity 16 via the nutrient solution delivery riser 15 of the incubator 11, and then to each lower radial spray nozzle 22 via the inner circumferential surface of the lower annular pipe 17, thereby enriching the soil for the reconstructed plants. This invention achieves unified watering and fertilization, and is flexible and reliable.

[0027] The embodiments of this utility model have been described in detail above, but the content described is only a preferred embodiment of this utility model and should not be considered as limiting the scope of implementation of this utility model. All equivalent changes and improvements made within the scope of this utility model should still fall within the scope of this patent.

Claims

1. A vegetation reconstruction aid comprising a growth cabinet and a support assembly, characterised in that: The bottom center of the incubator is provided with a large circular through hole, the inner bottom surface of the incubator is paved with a plant fiber baffle blocking the large circular through hole, the sidewall of the incubator is provided with an upper annular cavity and a lower annular cavity, the upper edge of the incubator is symmetrically provided with a water supply riser and a nutrient solution conveying riser, the lower end of the water supply riser is in communication with the upper annular cavity, the lower end of the nutrient solution conveying riser is inserted into the lower annular cavity, a lower annular pipeline is arranged above the plant fiber baffle and attached to the inner wall of the incubator, the lower annular pipeline is in communication with the lower annular cavity through a joint, the inner circumferential surface of the lower annular pipeline is uniformly provided with a plurality of lower radial nozzles, an upper annular pipeline is arranged in the upper part of the incubator, the upper annular pipeline is in communication with the upper annular cavity through a joint, the inner circumferential surface of the upper annular pipeline is uniformly provided with a plurality of upper radial nozzles, the water supply risers of the incubators arranged in the same row are in communication with the same water supply main pipe, and the nutrient solution conveying risers of the incubators arranged in the same row are in communication with the same nutrient solution conveying main pipe.

2. The vegetation reconstruction aid of claim 1, wherein: The support assembly comprises front and rear supports arranged in a cross shape with the water supply riser and the nutrient solution conveying riser, a front support arm hinged to the front support, a rear support arm hinged to the rear support, a front clamping hoop hinged to the upper end of the front support arm, a rear clamping hoop hinged to the upper end of the rear support arm, and a bolt pair connected between the front and rear clamping hoops, and the front and rear supports are respectively connected and fixed to the front and rear parts of the upper edge of the incubator.

3. The vegetation reconstruction aid of claim 1, wherein: The water supply main pipe is composed of a plurality of first stretchable flexible pipelines and first three-way pipes connected between adjacent two first stretchable flexible pipelines, and the lower end outlet of the first three-way pipe is connected and fixed to the upper end of the water supply riser.

4. The vegetation reconstruction aid of claim 1, wherein: The nutrient solution conveying main pipe is composed of a plurality of second stretchable flexible pipelines and second three-way pipes connected between adjacent two second stretchable flexible pipelines, and the lower end outlet of the second three-way pipe is connected and fixed to the upper end of the nutrient solution conveying riser. The nutrient solution conveying main pipe is composed of a plurality of second stretchable flexible pipelines and second three-way pipes connected between adjacent two second stretchable flexible pipelines, and the lower end outlet of the second three-way pipe is connected and fixed to the upper end of the nutrient solution conveying riser.

Citation Information

Patent Citations

  • Vegetation reconstruction auxiliary device

    CN218473865U