Rosemary three-dimensional cultivation device

Through the design of hollow cultivation pipelines and water diversion holes of the rosemary three-dimensional cultivation device, combined with liquid level float monitoring, the problem of inaccurate moisture control in traditional irrigation methods is solved, and the balanced growth and efficient planting of rosemary is achieved.

CN120457907APending Publication Date: 2025-08-12HENAN JIANYUAN ROSEMARY PROD CO LTD
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Patent Information

Application Number
CN202510965703.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-14
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

In the existing three-dimensional cultivation of rosemary, traditional irrigation methods are difficult to accurately control the water supply, resulting in unbalanced growth, increasing labor costs and management difficulties, and equipment is prone to clogging and affecting efficiency.

Method used

The three-dimensional cultivation device is adopted to achieve slow penetration and supply of water through the design of hollow cultivation pipelines and water diversion holes, and combined with liquid level float monitoring to ensure accurate water control.

Benefits of technology

It achieves the accuracy and sustainability of rosemary moisture supply, reduces manual operation and management costs, and improves growth quality and planting efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of plant cultivation equipment, and discloses a rosemary three-dimensional cultivation device which comprises two symmetrically-arranged stand columns, a plurality of cultivation pipelines are arranged between the two stand columns from top to bottom at intervals, the cultivation pipelines are hollow, and a plurality of cultivation holes are formed in the cultivation pipelines in the length direction at intervals. A cultivation box is arranged in each cultivation hole, and a water diversion hole is formed in each cultivation box; according to the rosemary water supply device, the defects of an existing irrigation mode can be overcome, precise and continuous control over rosemary water supply is achieved, the manual operation difficulty and management cost are reduced, healthy growth of rosemary is guaranteed, and planting benefits are improved.
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Description

Technical Field

[0001] The invention relates to the technical field of plant cultivation equipment, in particular to a three-dimensional rosemary cultivation device. Background Art

[0002] With the widespread use of rosemary in medicine, food preservation, spices, and daily chemicals, its market demand continues to rise, making large-scale, efficient cultivation an inevitable trend. Currently, in three-dimensional rosemary cultivation, regular spraying or drip irrigation is typically used to provide the plants with the water they need for growth. However, this traditional irrigation method has many drawbacks. Firstly, it is difficult to precisely control the amount of spraying or drip irrigation. Rosemary requires different amounts of water at different growth stages, and the cultivation environment (such as temperature, humidity, and light intensity) also affects the rate of water evaporation. This makes it difficult for operators to accurately adjust the amount of water used in spraying or drip irrigation equipment based on actual conditions. Too little water can lead to slow growth and wilting of the leaves due to lack of water, seriously affecting its quality and yield.

[0003] On the other hand, regular spraying or drip irrigation requires workers to regularly activate the relevant equipment and constantly monitor the moisture status of the rosemary so that they can adjust the irrigation strategy in a timely manner. This places extremely high demands on the workers, not only increasing labor costs but also making it easy for negligence or operational errors to lead to delayed irrigation, putting the rosemary at risk of water shortage and withering. Especially in large-scale planting scenarios, the difficulty and workload of manual monitoring increase dramatically, making it difficult to ensure that every rosemary plant receives the appropriate amount of water. Furthermore, with long-term use, traditional irrigation equipment can easily clog drip or sprinkler heads, resulting in poor water flow and further impacting irrigation effectiveness. Troubleshooting and clearing blockages also requires considerable time and effort, reducing planting efficiency and increasing management costs.

[0004] Therefore, there is an urgent need for a rosemary three-dimensional cultivation device that can overcome the defects of existing irrigation methods, achieve accurate and continuous control of rosemary water supply, reduce the difficulty of manual operation and management costs, ensure the healthy growth of rosemary, and improve planting efficiency. Summary of the Invention

[0005] The purpose of the present invention is to provide a rosemary three-dimensional cultivation device, which can overcome the defects of existing irrigation methods, realize accurate and continuous control of rosemary water supply, reduce the difficulty of manual operation and management costs, ensure the healthy growth of rosemary, and improve planting efficiency.

[0006] The present invention adopts the following technical solutions: A three-dimensional rosemary cultivation device comprises two symmetrically arranged columns, with a plurality of cultivation pipes spaced apart from top to bottom between the two columns. The cultivation pipes are hollow inside and have a plurality of cultivation holes spaced apart along their lengths. A cultivation box is provided in each cultivation hole, and each cultivation box is provided with a water diversion hole.

[0007] Preferably, cultivation pipes are provided on both sides of the column from top to bottom.

[0008] Preferably, the cultivation pipes on both sides of the column are arranged alternately up and down.

[0009] Preferably, the distance between the cultivation pipe on each side and the column gradually increases from top to bottom.

[0010] Preferably, support parts are provided on both sides of the column, and the cultivation pipe is provided on the support parts.

[0011] Preferably, except for the support part on the bottom side, the other support parts are all provided with a cavity, and a limit baffle is provided at the end of the support part connected to the cultivation pipe; a diversion channel is provided in the column, and the support parts located on both sides of the column are connected through the diversion channel; the support part located at the top is connected to the water pipe.

[0012] Preferably, the guide channel is arranged to be inclined downward.

[0013] Preferably, a liquid level float is provided on the cultivation pipe at the lowest end.

[0014] Preferably, the liquid level float is provided with scale lines.

[0015] Preferably, each of the cultivation pipes is provided with the liquid level float.

[0016] Compared with the prior art, the present invention has the following beneficial effects: the rosemary three-dimensional cultivation device of the present invention injects water into the hollow cultivation pipe, and uses the water inlet holes on the cultivation box to slowly and continuously penetrate the water into the culture soil, thereby providing the rosemary with the water required for growth. This water supply method can accurately meet the water needs of rosemary at different growth stages. Compared with traditional regular spraying or drip irrigation, there is no need for construction workers to frequently manually adjust the water volume according to factors such as weather and plant growth status, avoiding the problem of too much or too little water due to human misjudgment, effectively ensuring that rosemary is always in a suitable water environment, reducing adverse phenomena such as slow growth and leaf withering caused by water imbalance, significantly improving the growth quality of rosemary, and laying a solid foundation for its high yield and high quality.

[0017] In addition, construction workers do not need to regularly start the sprinkler or drip irrigation equipment. They only need to ensure the water level in the cultivation pipes. They also do not need to keep a close eye on the moisture status of the rosemary, which greatly reduces the burden of manual operation. In large-scale planting scenarios, this advantage is even more prominent, which can significantly reduce labor costs. At the same time, it reduces losses caused by manual negligence or untimely operation, such as rosemary withering due to lack of water. In addition, there is no need to frequently maintain and debug traditional irrigation equipment, which reduces the risk of equipment failure and the time and energy spent on troubleshooting and cleaning blockages of drip irrigation heads and sprinkler heads, further reducing planting management costs and improving planting benefits. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a structural schematic diagram of the present invention; Figure 2 It is a side sectional view of the column of the present invention; Figure 3 It is a structural schematic diagram of the cultivation box of the present invention. DETAILED DESCRIPTION

[0019] The present invention will be described clearly and completely below with reference to the accompanying drawings and embodiments: like Figures 1 to 3 As shown, the present invention discloses a three-dimensional rosemary cultivation device comprising two symmetrically arranged columns 1, with a plurality of cultivation pipes 2 spaced apart from each other from top to bottom. The cultivation pipes 2 are hollow and have a plurality of cultivation holes 3 spaced apart along their length. Each cultivation hole 3 is provided with a cultivation box 4, and each cultivation box 4 is provided with a water diversion hole 5. In the present invention, water is injected into the hollow cultivation pipes 2, and the water diversion holes 5 on the cultivation box 4 allow water to slowly and continuously penetrate into the culture soil, providing the rosemary with the water required for growth. This water supply method can accurately meet the water needs of rosemary at different growth stages. Compared with traditional regular spraying or drip irrigation, construction workers do not need to manually adjust the water volume frequently according to factors such as weather and plant growth status, avoiding the problem of too much or too little water due to human misjudgment. It effectively ensures that rosemary is always in a suitable moisture environment, reduces adverse phenomena such as slow growth and leaf withering caused by water imbalance, significantly improves the growth quality of rosemary, and lays a solid foundation for its high yield and high quality.

[0020] Furthermore, in this embodiment, cultivation pipes 2 are provided on both sides of the column 1 from top to bottom, which can effectively expand the cultivation area and improve the utilization rate of space; wherein, the cultivation pipes 2 on both sides of the column 1 are gradually increased in distance from the column 1 from top to bottom, which can avoid interference between the upper and lower layers of rosemary during the growth process and ensure the normal growth of rosemary.

[0021] Preferably, support parts 6 are provided on both sides of the column 1, and the cultivation pipes 2 are provided on two symmetrical support parts 6 on each side of the column 1. In the present invention, except for one support part 6 on the bottom end, the other support parts 6 are provided with cavities inside, and a limit baffle 9 is provided at one end of the support part 6 connected to the cultivation pipe 2; a diversion channel 8 is provided inside the column 1, and the support parts 6 on both sides of the column 1 are connected through the diversion channel 8, and the diversion channel 8 is arranged obliquely to ensure the smooth flow of water; the support part 6 at the top is connected to the water pipe; such a setting facilitates the simultaneous quantitative water supply to multiple cultivation pipes 2; when working, the valve controlling the water pipe is opened, and the water flow will Entering the corresponding cultivation pipe 2, when the water level is higher than the top of the limit baffle 9, it will flow out from the gap between the cultivation pipe 2 and the limit baffle 9 into the cavity of the corresponding end support part 6, and the water flowing into the support part 6 will flow through the diversion channel to the support part 6 below, and enter the cultivation pipe 2 below from the support part 6. In this way, the circulating water flow can be injected into the cultivation pipe 2 from top to bottom in sequence, which is easy to operate and can ensure the uniformity of water injection between each cultivation pipe 2, providing a uniform environment for the growth of each layer of rosemary. At the same time, the setting of the limit baffle 9 can also control the uniformity of the water injection amount, which not only ensures the growth needs of rosemary, but also reduces the adverse effects of too much or too little water flow on the growth of rosemary. The support part 6 that is not hollow inside in the present invention is the support part 6 connected to the bottom cultivation pipe 2, which is located at the end of the water injection direction. Figure 1 As shown, the sealing portion of the non-hollow structure is located at Figure 1 The leftmost side of the bottom of the front end is arranged diagonally to the support portion 6 connected to the water pipe.

[0022] Further, be positioned at the cultivation pipeline 2 of bottom end and be provided with liquid level float 7, liquid level float 7 is the bottom float ball, the structure of top float rod, and float rod is movably passed out from the cultivation pipeline 2, and top is provided with limit cap.The setting of liquid level float 7 can have clear indication to the water injection in the bottom end cultivation pipeline 2, avoids the situation that the water injection in the bottom cultivation pipeline 2 is too much.Wherein, liquid level float 7 is provided with scale mark, so that the reading of data promotes the convenience of judging water injection in the cultivation pipeline 2.In addition, preferably on each cultivation pipeline 2, liquid level float 7 is all provided with among the present invention, so be provided with, can accurately understand the required water quantity of rosemary growth in each cultivation pipeline 2, be convenient to observe the water requirement state of rosemary in different cultivation pipelines 2, thus growing way is provided with reference index, also conveniently carry out water replenishment operation in time, for the rosemary in a plurality of cultivation pipelines 2 provides uniform water consumption, get rid of the growth difference that causes because of water flow difference, for the optimization cultivation of follow-up rosemary provides data reference.

[0023] The present invention injects water into the hollow cultivation pipe 2 and utilizes the water diversion holes 5 on the cultivation box 4 to slowly and continuously infiltrate water into the culture soil, providing rosemary with the moisture required for growth. This water supply method can accurately meet the water needs of rosemary at different growth stages. Compared to traditional regular spraying or drip irrigation, there is no need for construction personnel to frequently manually adjust the water volume according to factors such as weather and plant growth status. This avoids the problem of too much or too little water caused by manual misjudgment, effectively ensures that rosemary is always in a suitable moisture environment, reduces undesirable phenomena such as slow growth and leaf wilting caused by moisture imbalance, significantly improves the growth quality of rosemary, and lays a solid foundation for its high yield and high quality. In addition, construction personnel do not need to regularly turn on the spraying or drip irrigation equipment. They only need to ensure the water volume in the cultivation pipe 2, and do not need to keep a close eye on the moisture status of rosemary at all times, greatly reducing the burden of manual operation. In large-scale planting scenarios, this advantage is even more prominent and can significantly reduce labor cost investment. At the same time, it reduces losses caused by manual negligence or untimely operation, such as the withering of rosemary due to lack of water. In addition, there is no need to frequently maintain and debug traditional irrigation equipment, which reduces the risk of equipment failure and the time and effort spent on troubleshooting and cleaning clogged drip irrigation heads and sprinkler heads, further reducing planting management costs and improving planting benefits.

Claims

1. A rosemary three-dimensional cultivation device, characterized in that: The invention comprises two symmetrically arranged upright posts, with a plurality of cultivation pipes arranged at intervals from top to bottom between the two upright posts. The cultivation pipes are hollow inside and have a plurality of cultivation holes arranged at intervals along the length direction. A cultivation box is arranged in each cultivation hole, and each cultivation box is provided with a water inlet hole.

2. The rosemary three-dimensional cultivation device according to claim 1, wherein: Cultivation pipes are arranged on both sides of the column from top to bottom.

3. The rosemary three-dimensional cultivation device according to claim 2, wherein: The cultivation pipes on both sides of the column are arranged alternately up and down.

4. The rosemary three-dimensional cultivation device according to claim 3, wherein: The distance between the cultivation pipe on each side and the upright column increases gradually from top to bottom.

5. The rosemary three-dimensional cultivation device according to claim 4, wherein: Support parts are provided on both sides of the column, and the cultivation pipe is arranged on the support parts.

6. The rosemary three-dimensional cultivation device according to claim 5, characterized in that: Except for the support part on the bottom side, the other support parts are all provided with a cavity, and a limit baffle is provided at the end of the support part connected to the cultivation pipe; a diversion channel is provided in the column, and the support parts located on both sides of the column are connected through the diversion channel; the support part located at the top is connected to the water pipe.

7. The rosemary three-dimensional cultivation device according to claim 6, characterized in that: The diversion channel is arranged to be inclined downward.

8. The rosemary three-dimensional cultivation device according to claim 6, characterized in that: The cultivation pipe at the lowest end is provided with a liquid level float.

9. The rosemary three-dimensional cultivation device according to claim 8, characterized in that: The liquid level float is provided with scale lines.

10. The rosemary three-dimensional cultivation device according to claim 9, characterized in that: Each of the cultivation pipes is provided with the liquid level float.

Citation Information

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