Cultivation device for mangroves
By designing rotating nozzles and rationally arranged mangrove cultivation devices, the problems of uneven irrigation, complex operation, inconvenient movement, and difficult maintenance have been solved, achieving uniform distribution of water resources and convenient operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LANQIAN ECOLOGY (HAINAN) CO LTD
- Filing Date
- 2025-05-30
- Publication Date
- 2026-04-24
AI Technical Summary
Existing mangrove cultivation devices suffer from problems such as uneven irrigation, complex operation, inconvenient mobility, high energy consumption, and difficult maintenance.
A mangrove cultivation device was designed, comprising components such as a rotating nozzle, a water storage tank, a support structure, a bearing seat, and a power output section. Through the uniform spraying and reasonable layout of the rotating nozzle, water resources are evenly distributed. The device is simple in structure, easy to operate, and convenient to move and maintain.
It achieves even distribution of water resources, reduces operational difficulty, improves irrigation efficiency, and the device is easy to move and maintain.
Smart Images

Figure CN224154839U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mangrove seedling cultivation technology, specifically a mangrove cultivation device. Background Technology
[0002] Mangroves are a type of woody plant that grows in the intertidal zone of tropical oceans. They play an important role in regulating tropical climates and preventing coastal erosion.
[0003] In existing technologies, mangrove cultivation devices used in forestry seedling production suffer from problems such as uneven irrigation, complex operation, inconvenient mobility, high energy consumption, and difficult maintenance. Specifically, traditional irrigation methods cannot achieve even distribution of water resources, resulting in some seedlings not receiving sufficient irrigation while others are damaged by over-irrigation. In addition, traditional devices are complex in structure, inconvenient to operate, and lack portability, making it difficult to meet the diverse needs of forestry seedling production. Utility Model Content
[0004] The purpose of this invention is to provide a mangrove cultivation device to solve the above-mentioned problems.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a mangrove cultivation device, comprising a first horizontal plate, a support member, a water storage tank, a support column, a rotating nozzle, a second horizontal plate, a bearing seat, a rotating rod, a power output part, a base plate, a base column, and a power supply part. Several base columns are uniformly fixed to the bottom of the base plate. The power supply part is fixed to the center of the bottom of the base plate. The power output part is fixed to the center of the upper surface of the base plate. The rotating rod is fixed to the output end of the power output part. A second horizontal plate is mounted on the rotating rod. The bearing seat is fixed to the center of the bottom of the second horizontal plate. A rotating nozzle is mounted at the top of the rotating rod. The water storage tank is positioned above the rotating nozzle and is connected to the first horizontal plate via several support members.
[0006] Preferably, the support column fixes the first horizontal plate, the second horizontal plate and the bottom plate together, and the water storage tank includes a tank body, a water inlet, a baffle and a valve. The water storage tank has a water inlet at the top, and a baffle is fixed inside the tank body. A valve is located at the center of the baffle.
[0007] Preferably, the rotating nozzle includes a nozzle, a first connector, a rotating component, a clamping component, a guide groove, a water outlet, a flow channel, and a second connector. The rotating nozzle has a plurality of nozzles evenly distributed. The lower end of the first connector is connected to the top end of the rotating rod. The inner wall of the rotating component is fixedly provided with a clamping component. The lower end of the guide groove is disposed in a sliding groove opened inside the clamping component. The upper end of the guide groove is fixedly provided with a flow plate.
[0008] Preferably, the bearing housing includes a base, a first outer ring, a first rotating part, a first inner ring, and a second inner ring. The base is fixed to the center of the lower surface of the second horizontal plate through a first fixing hole. The first outer ring is fixed to the base. The first rotating part is disposed on the inner wall of the first outer ring. The first inner ring is disposed on the inner wall of the first rotating part. The first inner ring is fixed to the second inner ring. A third connecting member is fixed to the second inner ring. A fourth connecting member is disposed at the bottom of the third connecting member. The fourth connecting member is fixed to the rotating rod. A second fixing hole is provided on the third connecting member, through which the third connecting member is fixedly connected to the second inner ring.
[0009] Preferably, the power output part includes a motor, a rotating shaft, and a protective shell. The motor is fixed at the center of the upper surface of the base plate, the protective shell is fixed around the rotating shaft, and the rotating shaft is the power output shaft of the motor.
[0010] Preferably, a power supply section is provided at the bottom of the base plate. The power supply section includes a power source and a protective cover. The power source is located at the center of the bottom of the base plate, and the protective cover is fixed directly below the power source.
[0011] Preferably, the flow plate is provided with a plurality of flow grooves, the flow guide groove is provided with a flow groove in the middle, the water outlet is evenly provided at the bottom of the flow groove, the lower end of the second connector is fixed on the third inner ring, the upper end of the second connector is fixed on the lower surface of the flow plate, the inner ring is connected to the second rotating part, the second rotating part is connected to the second outer ring, and the second outer ring is not connected to the bottom of the flow plate.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] 1. The rotating sprinkler head, through its internal flow channel design, can evenly disperse and spray water onto mangrove seedlings, ensuring the uniform distribution of water resources and thus improving irrigation efficiency;
[0014] 2. The device has a clear structural design, with stable connections and a reasonable layout between components such as the water storage tank, guide channel, flow plate, and rotating rod. Operation is simple and easy to understand, greatly reducing the difficulty of use.
[0015] 3. Rollers can be added to the bottom of the base column according to actual conditions, allowing users to easily move the entire device for convenient irrigation operations in different areas;
[0016] 4. The connections between components are ingenious, both tight and easy to disassemble. This design allows users to easily disassemble and reinstall each component during routine maintenance and troubleshooting, greatly improving maintenance convenience. Attached Figure Description
[0017] Figure 1 This is a front view of the present utility model;
[0018] Figure 2 This is a front sectional view of the present invention;
[0019] Figure 3 This is a schematic diagram of the front and side structure of this utility model;
[0020] Figure 4 This is a schematic diagram of the reverse side structure of this utility model;
[0021] Figure 5 This is a cross-sectional view of the flow plate of this utility model;
[0022] Figure 6 This is a cross-sectional view of the rotating nozzle of this utility model.
[0023] In the diagram: 1. First horizontal plate; 2. Support component; 3. Water storage tank; 301. Tank body; 302. Water inlet; 303. Baffle; 304. Valve; 4. Support column; 5. Rotating nozzle; 501. Spray nozzle; 502. First connecting component; 503. Rotating component; 504. Clamping component; 505. Guide channel; 506. Water outlet; 507. Flow channel; 508. Second connecting component; 6. Second horizontal plate; 7. Bearing seat; 7. Base; 701. First outer ring; 702. First rotating part; 703. 704 Inner ring, 705 Third connector, 706 Second inner ring, 707 Fourth connector, 708 First fixing hole, 709 Second fixing hole, 8 Rotating rod, 9 Power output part, 901 Motor, 902 Rotating shaft, 903 Protective shell, 10 Base plate, 11 Base column, 12 Power supply part, 1201 Power supply, 1202 Protective cover, 13 Flow plate, 1301 Second outer ring, 1302 Second rotating part, 1303 Third inner ring. Detailed Implementation
[0024] The following will refer to the appendix in the embodiments of this utility model. Figure 1-6 The technical solutions in the embodiments of this utility model are clearly and completely described herein. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, those skilled in the art...
[0025] All other embodiments obtained by those skilled in the art without inventive effort are considered...
[0026] Scope of protection of this utility model.
[0027] Please see Figure 1-6This utility model provides a technical solution: a mangrove cultivation device, including a first horizontal plate 1, a support member 2, a water storage tank 3, a support column 4, a rotating nozzle 5, a second horizontal plate 6, a bearing seat 7, a rotating rod 8, a power output part 9, a base plate 10, base columns 11, and a power supply part 12. Several base columns 11 are evenly fixed to the bottom of the base plate 10 by screw connections. Rollers can be added to the bottom of the base columns 11 for easy movement, depending on the actual situation. The power supply part 12 is fixed at the center of the bottom of the base plate 10, and the power output part 9 is fixed at the center of the upper surface of the base plate 10. The rotating rod 8... The rotating rod 8 is fixed to the output end of the power output section 9 by screws. A second horizontal plate 6 is provided on the rotating rod 8. A bearing is provided at the connection between the rotating rod 8 and the second horizontal plate 6, so that the rotation of the rotating rod 8 can be realized without affecting the fixing function of the second horizontal plate 6. The bearing seat 7 is fixed to the bottom center of the second horizontal plate 6 by screws. A rotating nozzle 5 is provided at the top of the rotating rod 8. The water tank 3 is located above the rotating nozzle 5. The water tank 3 is connected to the first horizontal plate 1 by several support members 2 on it. The connectors at both ends of the support members 2 are fixed to the surface of the water tank 3 and the bottom surface of the first horizontal plate 1 by screws.
[0028] The support column 4 fixes the first horizontal plate 1, the second horizontal plate 6 and the bottom plate 10 together by screwing. The water storage tank 3 includes a tank body 301, a water inlet 302, a baffle 303 and a valve 304. The water inlet 302 is opened on the top of the water storage tank 3 for replenishing the water in the water storage tank 3. The baffle 303 is fixed inside the tank body 301. The valve 304 is set at the center of the baffle 303. The valve 304 is an electric valve and is powered by the power supply 1201.
[0029] The rotating nozzle 5 includes a nozzle 501, a first connector 502, a rotating component 503, a clamping component 504, a guide groove 505, a water outlet 506, a flow channel 507, and a second connector 508. The rotating nozzle 5 has several nozzles 501 evenly distributed on it. The nozzles 501 can be changed to different shapes of holes or connected to different types of nozzles depending on the specific situation. The lower end of the first connector 502 is connected to the top end of the rotating rod 8. The clamping component 504 is fixedly provided on the inner wall of the rotating component 503. The lower end of the guide groove 505 is set in a sliding groove opened inside the clamping component 504. The upper end of the guide groove 505 is fixedly provided with a flow plate 13.
[0030] The bearing housing 7 includes a base 701, a first outer ring 702, a first rotating part 703, a first inner ring 704, and a second inner ring 706. The base 701 is fixed to the center of the lower surface of the second horizontal plate 6 by bolts through a first fixing hole 708. The first outer ring 702 can be fixed to the base 701 by welding or screwing. The first rotating part 703 is disposed on the inner wall of the first outer ring 702, and the first rotating part 703 is provided with balls. The first inner ring 704 is disposed on the inner wall of the first rotating part 703. The first inner ring 704 is fixed to the second inner ring 706 by screws. The second inner ring 706 is fixed to the third connecting member 705 by screws. The bottom of the third connecting member 705 is provided with a fourth connecting member 707. The fourth connecting member 707 is fixed to the rotating rod 8. The fourth connecting member 707 is used to assist in reinforcing the connection between the second inner ring 706 and the rotating rod 8. The third connecting member 705 is provided with a second fixing hole 709. The third connecting member 705 and the second inner ring 706 are fixedly connected through the second fixing hole 709.
[0031] The power output section 9 includes a motor 901, a rotating shaft 902, and a protective shell 903. The motor 901 is fixed to the center of the upper surface of the base plate 10 by screwing. The protective shell 903 is fixed around the rotating shaft 902. The protective shell 903 can be fixed to the exterior of the motor 901 by welding or screwing. The rotating shaft 902 is the power output shaft of the motor 901.
[0032] The bottom of the base plate 10 is provided with a power supply section 12, which includes a power supply 1201 and a protective cover 1202. The power supply 1201 is located at the center of the bottom of the base plate 10. The protective cover 1202 is fixed to the power supply 1201 directly below it by screws. The protective cover 1202 is removable, which facilitates maintenance and replacement of the power supply 1201.
[0033] The flow plate 13 has several flow grooves 507. The flow guide 505 has a flow groove 507 in the middle. The outlets 506 are evenly distributed at the bottom of the flow grooves 505. The number of outlets 506 can be increased or decreased according to the actual situation. The lower end of the second connector 508 is fixed to the third inner ring 1303 by screw connection. The upper end of the second connector 508 is fixed to the lower surface of the flow plate 13. The inner ring 1303 is connected to the second rotating part 1302. The second rotating part 1302 is provided with several balls inside, which can realize rotation. The second rotating part 1302 is connected to the second outer ring 1301. The second outer ring 1301 is not connected to the bottom of the flow plate 13.
[0034] In actual operation, the device is moved to the mangrove seedling nursery area that needs irrigation. Water is added to the tank 301 inside the water storage tank 3 through the water inlet 302. Once the water level reaches the required level, the valve 304 is closed. The motor 901 is started, and the rotating shaft 902 of the motor 901 drives the rotating rod 8 to rotate. Since the rotating rod 8 is connected to the second horizontal plate 6 through a bearing, the second horizontal plate 6 remains stable. The rotation of the rotating rod 8 further drives the rotating nozzle 5 to rotate. The water in the water storage tank 3 flows into the guide channel 505 through the valve 304, and then flows into the outlet 506 through the flow channel 507 of the flow plate 13. Finally, it is evenly sprayed out through the nozzle 501 to irrigate the mangrove seedlings. The entire device is stably supported by the base column 11. The power supply 1201 provides power to the motor 901, and the protective cover 1202 protects the power supply 1201 from damage.
[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A mangrove cultivation device, comprising a first horizontal plate (1), a support member (2), a water storage tank (3), a support column (4), a rotating nozzle (5), a second horizontal plate (6), a bearing seat (7), a rotating rod (8), a power output section (9), a base plate (10), a base column (11), and a power supply section (12), characterized in that: The bottom of the base plate (10) is uniformly fixed with several bottom columns (11), the power supply part (12) is fixed at the center of the bottom of the base plate (10), the power output part (9) is fixed at the center of the upper surface of the base plate (10), the rotating rod (8) is fixed at the output end of the power output part (9), the rotating rod (8) is provided with a second horizontal plate (6), the bearing seat (7) is fixed at the center of the bottom of the second horizontal plate (6), the top of the rotating rod (8) is provided with a rotating nozzle (5), the water storage tank (3) is provided above the rotating nozzle (5), and the water storage tank (3) is connected to the first horizontal plate (1) through several support members (2) on it.
2. A mangrove cultivation device according to claim 1, characterized by: The support column (4) fixes the first horizontal plate (1), the second horizontal plate (6) and the bottom plate (10) together. The water storage tank (3) includes a tank body (301), a water inlet (302), a baffle (303) and a valve (304). The water storage tank (3) has a water inlet (302) on the top. The baffle (303) is fixed inside the tank body (301). A valve (304) is set at the center of the baffle (303).
3. A mangrove cultivation device as claimed in claim 1, wherein: The rotating nozzle (5) includes a nozzle (501), a first connector (502), a rotating component (503), a clamping component (504), a guide groove (505), a water outlet (506), a flow channel (507), and a second connector (508). The rotating nozzle (5) has several nozzles (501) evenly distributed on it. The lower end of the first connector (502) is connected to the top end of the rotating rod (8). The clamping component (504) is fixedly provided on the inner wall of the rotating component (503). The lower end of the guide groove (505) is set in a sliding groove opened inside the clamping component (504). The upper end of the guide groove (505) is fixedly provided with a flow plate (13).
4. The device for cultivating mangrove according to claim 1, wherein: The bearing housing (7) includes a base (701), a first outer ring (702), a first rotating part (703), a first inner ring (704), and a second inner ring (706). The base (701) is fixed to the center of the lower surface of the second horizontal plate (6) through a first fixing hole (708). The first outer ring (702) is fixed on the base (701). The first rotating part (703) is disposed on the inner wall of the first outer ring (702). The first inner ring (704) is disposed on the first rotating part (706). The inner wall of part (703) has a first inner ring (704) fixed on a second inner ring (706), a third connector (705) fixed on the second inner ring (706), a fourth connector (707) at the bottom of the third connector (705), the fourth connector (707) fixed on the rotating rod (8), and a second fixing hole (709) on the third connector (705) to fix the third connector (705) to the second inner ring (706) through the second fixing hole (709).
5. A mangrove cultivation device as claimed in claim 1, wherein: The power output section (9) includes a motor (901), a rotating shaft (902), and a protective shell (903). The motor (901) is fixed at the center of the upper surface of the base plate (10). The protective shell (903) is fixed around the rotating shaft (902) and is fixed on the outer surface of the motor (901). The rotating shaft (902) is the power output shaft of the motor (901).
6. A mangrove cultivation device as claimed in claim 1, wherein: The bottom of the base plate (10) is provided with a power supply section (12), which includes a power supply (1201) and a protective cover (1202). The power supply (1201) is located at the center below the base plate (10), and the protective cover (1202) is fixed directly below the power supply (1201).
7. The mangrove cultivation device according to claim 3, characterized in that: The flow plate (13) is provided with a plurality of flow grooves (507), the flow guide groove (505) is provided with a flow groove (507) in the middle, the outlet (506) is evenly provided at the bottom of the flow groove (507), the lower end of the second connector (508) is fixed on the third inner ring (1303), the upper end of the second connector (508) is fixed on the lower surface of the flow plate (13), the inner ring (1303) is connected to the second rotating part (1302), the second rotating part (1302) is connected to the second outer ring (1301), and the second outer ring (1301) is not connected to the bottom of the flow plate (13).