Land reclamation irrigation device
Patent Information
- Application Number
- CN202522277038.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-28
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-28
AI Technical Summary
[0005]为了克服现有的土地灌溉装置通常喷洒结构为固定设置,喷洒方式单一,不便于根据不同的喷洒需求进行对应调节,灌溉效果具有局限性,且不便于根据不同的灌溉需求控制喷洒时间,易于导致灌溉过量,造成水资源浪费的问题
[0015] 1. By setting up a first, second, and third spraying components with different spraying structures, irrigation can be carried out individually or in combination to meet different irrigation needs. By setting a timer, the irrigation time can be set according to actual irrigation needs, controlling the irrigation volume, saving water resources, and ensuring irrigation effect. The first spraying component can spray water linearly and evenly in a small area, the second spraying component can spray water evenly in a circumferential direction, and the third spraying component can spray water by rotating. The three different spraying methods can meet different irrigation needs. By setting a timer connected to the electrical box at the upper end of the first water pressure controller, the irrigation time can be set according to different irrigation needs, so that each component can irrigate according to the set time, which will not easily cause water waste.
Smart Images

Figure CN224747157U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of irrigation devices, and more particularly to a land improvement irrigation device. Background Technology
[0002] Land irrigation refers to the technical measures to supplement the water needed by crops in agricultural areas. Simply put, it means watering the land. It is an important means to ensure the normal growth of crops and obtain high and stable yields. Land irrigation devices are mainly used for farmland irrigation. Through modern irrigation technologies such as drip irrigation and sprinkler irrigation, the necessary water is provided to crops, helping farmers increase production and income.
[0003] Existing land irrigation systems typically have fixed spray structures and a single spraying method, making it difficult to adjust to different spraying needs. This limits the irrigation effect and makes it difficult to control the spraying time according to different irrigation requirements, which can easily lead to over-irrigation and waste of water resources.
[0004] Therefore, existing land irrigation devices typically have fixed spray structures and a single spraying method, making it difficult to adjust to different spraying needs. This limits the irrigation effect and makes it difficult to control the spraying time according to different irrigation requirements, easily leading to over-irrigation and water waste. By setting up first, second, and third spray components with different configurations, irrigation can be carried out individually or in combination to meet different irrigation needs. Furthermore, by setting a timer, the irrigation time can be set according to actual irrigation needs, controlling the irrigation volume, saving water resources, and ensuring irrigation effectiveness. Utility Model Content
[0005] To overcome the problems of existing land irrigation devices, which typically have fixed spray structures, a single spraying method, and are not easy to adjust according to different spraying needs, resulting in limited irrigation effects and difficulty in controlling spraying time according to different irrigation needs, which can easily lead to over-irrigation and waste of water resources.
[0006] The technical solution of this utility model is as follows: a land improvement irrigation device, comprising a water tank, a first spraying assembly, a second spraying assembly, a third spraying assembly, a first water pressure controller, a timer, a water inlet pipe, a support column, a support base, and anti-slip blocks. A first spraying assembly for linear circumferential uniform irrigation of the land is fixedly installed on the upper side of the water tank. A second spraying assembly for circumferential uniform irrigation is fixedly installed in the upper middle of the water tank. A third spraying assembly for rotating spraying irrigation is fixedly installed in the upper middle of the second spraying assembly. A control device is fixedly installed in the front middle of the water tank near the bottom. The water tank has a first water pressure controller for controlling the water pressure. A timer is fixedly installed on the upper end of the first water pressure controller to control its working time. The timer is electrically connected to the first water pressure controller. A water inlet pipe is fixedly installed on the middle right side of the water tank near the bottom. A control valve for controlling the water inflow and outflow is provided on the outside of the water inlet pipe. Four sets of support seats are fixedly installed around the lower side of the water tank to support the water tank. Support seats are fixedly installed at the lower end of the support seats to increase the stability of the support. Anti-slip blocks for inserting into the ground are evenly distributed and fixedly installed around the lower end of the support seats.
[0007] Preferably, by setting a first spraying component, a second spraying component, and a third spraying component with different spraying structures, irrigation can be carried out individually or in combination to meet different irrigation needs. By setting a timer, the irrigation time can be set according to the actual irrigation needs, the irrigation volume can be controlled, water resources can be saved, and irrigation effect can be guaranteed. The first spraying component can spray water linearly and evenly in a small area, the second spraying component can spray water evenly in a circumferential direction, and the third spraying component can spray water by rotating. The three different spraying methods can meet different irrigation needs.
[0008] Preferably, the first spraying assembly includes an annular pipe and a connecting pipe. The annular pipe is arranged in four sets from the inside to the outside of the water tank. The four sets of annular pipes are connected to the water tank through four sets of evenly arranged connecting pipes. A control valve for controlling the inflow and outflow of water is provided on the outside of the connection between the connecting pipe and the water tank. The connecting pipe extends through the water tank to its bottom. The lower end of the annular pipe is evenly arranged with spray holes for spraying water.
[0009] Preferably, the second spraying assembly includes a spray pipe, a first nozzle, a flow guide box, a first flow guide pipe, a support block, and a second water pressure controller. The lower end of the flow guide box is fixedly installed with a first flow guide pipe for guiding water from the water tank into the flow guide box, and the lower end of the first flow guide pipe extends through the upper end of the water tank to its bottom.
[0010] Preferably, a control valve for controlling the inflow and outflow of water is provided on the outside of the connection between the first guide pipe and the guide box, and the lower side of the guide box is fixedly connected to the upper end of the water tank through four sets of support blocks arranged around it.
[0011] Preferably, eight sets of nozzles are fixedly installed around the sides of the flow guide box to guide the water in the flow guide box to the first nozzle. The first nozzle for spraying water is fixedly installed at the end of the nozzle away from the flow guide box. A control valve for controlling the water inlet and outlet is provided on the outside of the connection between the nozzle and the flow guide box. A second water pressure controller for controlling the water pressure in the flow guide box is fixedly installed at the front of the upper end of the flow guide box.
[0012] Preferably, the third spraying assembly includes a second nozzle, a rotating block, and a second guide pipe. The second guide pipe is connected to the second spraying assembly, and a control valve for controlling the inflow and outflow of water is provided on the outside of the connection between the second guide pipe and the second spraying assembly.
[0013] Preferably, the upper end of the second guide pipe is rotatably connected to a rotating block for guiding water to the second nozzle, and four sets of second nozzles for rotating water spraying are fixedly installed around the side of the rotating block.
[0014] The beneficial effects of this utility model are:
[0015] 1. By setting up a first, second, and third spraying components with different spraying structures, irrigation can be carried out individually or in combination to meet different irrigation needs. By setting a timer, the irrigation time can be set according to actual irrigation needs, controlling the irrigation volume, saving water resources, and ensuring irrigation effect. The first spraying component can spray water linearly and evenly in a small area, the second spraying component can spray water evenly in a circumferential direction, and the third spraying component can spray water by rotating. The three different spraying methods can meet different irrigation needs. By setting a timer connected to the electrical box at the upper end of the first water pressure controller, the irrigation time can be set according to different irrigation needs, so that each component can irrigate according to the set time, which will not easily cause water waste. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the land improvement irrigation device of this utility model.
[0017] Figure 2 The diagram shown is a three-dimensional structural schematic of the first spraying component of the land improvement irrigation device of this utility model;
[0018] Figure 3 The diagram shown is a three-dimensional structural schematic of the second spraying component of the land improvement irrigation device of this utility model;
[0019] Figure 4 The diagram shown is a three-dimensional structural schematic of the third spraying component of the land improvement irrigation device of this utility model.
[0020] Explanation of reference numerals in the attached drawings: 1. Water tank; 5. First water pressure controller; 6. Timer; 7. Inlet pipe; 8. Support column; 9. Support base; 10. Anti-slip plug; 201. Annular pipe; 202. Connecting pipe; 203. Spray hole; 301. Spray pipe; 302. First nozzle; 303. Flow guide box; 304. First flow guide pipe; 305. Support block; 306. Second water pressure controller; 401. Second nozzle; 402. Rotating block; 403. Second flow guide pipe. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figures 1-2 This utility model provides an embodiment: a land improvement irrigation device, including a water tank 1, a first spraying assembly, a second spraying assembly, a third spraying assembly, a first water pressure controller 5, a timer 6, a water inlet pipe 7, a support column 8, a support base 9, and an anti-slip block 10. A first spraying assembly for linear circumferential uniform irrigation is fixedly installed on the upper side of the water tank 1. A second spraying assembly for circumferential uniform irrigation is fixedly installed in the upper middle of the water tank 1. A third spraying assembly for rotating spraying irrigation is fixedly installed in the upper middle of the second spraying assembly. A control device for the water tank 1 is fixedly installed in the front middle near the bottom of the water tank 1. The water tank 1 has a first water pressure controller 5 for controlling the water pressure. A timer 6 is fixedly installed on the upper end of the first water pressure controller 5 to control the working time of the first water pressure controller 5. The timer 6 is electrically connected to the first water pressure controller 5. A water inlet pipe 7 is fixedly installed on the middle right side of the water tank 1 near the bottom. A control valve for controlling the water inlet and outlet is provided on the outside of the water inlet pipe 7. Four sets of support seats 9 are fixedly installed around the lower side of the water tank 1 to support the water tank 1. A support seat 9 is fixedly installed at the lower end of the support seat 9 to increase the stability of the support. Anti-slip blocks 10 for inserting into the ground are evenly distributed and fixedly installed around the lower end of the support seat 9.
[0023] Please see Figure 2 In this embodiment, the first spraying assembly includes an annular pipe 201 and a connecting pipe 202. The annular pipe 201 is evenly distributed in four sets from the inside to the outside around the water tank 1. The four sets of annular pipes 201 of the water tank 1 are connected to the water tank 1 through the four sets of evenly distributed connecting pipes 202. A control valve for controlling the inflow and outflow of water is provided on the outside of the connection between the connecting pipe 202 and the water tank 1. The connecting pipe 202 extends through the water tank 1 to its bottom. The lower end of the annular pipe 201 is evenly distributed with spray holes 203 for spraying water. By evenly distributing the spray holes 203 at the lower end of the annular pipe 201, the water spraying can be more uniform.
[0024] Please see Figure 3In this embodiment, the second spraying assembly includes a spray pipe 301, a first nozzle 302, a flow guide box 303, a first flow guide pipe 304, support blocks 305, and a second water pressure controller 306. A first flow guide pipe 304 for guiding water from the water tank 1 into the flow guide box 303 is fixedly installed at the lower end of the flow guide box 303. The lower end of the first flow guide pipe 304 extends through the upper end of the water tank 1 to its bottom. A control valve for controlling the inflow and outflow of water is provided on the outer side of the connection between the first flow guide pipe 304 and the flow guide box 303. The lower side of the flow guide box 303 is connected to the water tank 1 by four sets of support blocks 305 arranged around it. The upper end is fixedly connected, and eight sets of spray pipes 301 for guiding water in the guide box 303 to the first nozzle 302 are fixedly installed around the side of the guide box 303. The first nozzle 302 for spraying water is fixedly installed at the end of the spray pipe 301 away from the guide box 303. A control valve for controlling the inlet and outlet of water is provided on the outside of the connection between the spray pipe 301 and the guide box 303. A second water pressure controller 306 for controlling the water pressure in the guide box 303 is fixedly installed at the front of the upper end of the guide box 303. By setting the second water pressure controller 306, the water pressure can be adjusted according to the actual spraying needs.
[0025] Please see Figure 4 In this embodiment, the third spraying assembly includes a second nozzle 401, a rotating block 402, and a second guide pipe 403. The second guide pipe 403 is connected to the second spraying assembly. A control valve for controlling the inflow and outflow of water is provided on the outer side of the connection between the second guide pipe 403 and the second spraying assembly. The upper end of the second guide pipe 403 is rotatably connected to a rotating block 402 for guiding water to the second nozzle 401. Four sets of second nozzles 401 for rotating and spraying water are fixedly installed around the side of the rotating block 402. By rotatably connecting the rotating block 402 to the second guide pipe 403, the rotating block 402 can rotate under the action of the water pressure sprayed from the second nozzle 401, thereby enabling the second nozzle 401 to rotate and spray water.
[0026] When working, first open the control valve on the outside of the water inlet pipe 7 to introduce water into the water tank 1;
[0027] Then, the water pressure in the water tank 1 is adjusted to a suitable level by the first water pressure controller 5, and the irrigation time is set by the timer 6.
[0028] Then, select the corresponding spraying method according to the actual spraying needs. When irrigation is required using the first spraying component, open the control valve on the outside of the connecting pipe 202 so that water enters the annular pipe 201 from the connecting pipe 202 and sprays out from the nozzle 203 at the lower end of the annular pipe 201.
[0029] When irrigation is needed using the second spraying assembly, the control valve outside the first guide pipe 304 is opened, allowing water to enter the guide box 303 from the first guide pipe 304. The water pressure in the guide box 303 is adjusted to a suitable level by the second water pressure controller 306, allowing water to enter the first nozzle 302 from the spray pipe 301, so that the first nozzle 302 sprays water to irrigate the land.
[0030] When irrigation is needed using the third spraying assembly, the control valve on the outside of the second guide pipe 403 is opened, allowing water to enter the rotating block 402 through the second guide pipe 403 and then enter the second nozzle 401 through the rotating block 402, causing the second nozzle 401 to spray water for irrigation. Under the action of water pressure, the second nozzle 401 drives the rotating block 402 to rotate and spray water.
[0031] The first, second, and third spraying components can spray water for irrigation simultaneously, or the corresponding control valves can be turned off, and each component can spray individually.
[0032] Finally, when the time reaches the initially set value, the first water pressure controller 5 will stop working under the action of timer 6, preventing water from entering the various components and thus stopping the spraying irrigation.
[0033] Through the above steps, by setting up first, second, and third spraying components with different spraying structures, irrigation can be carried out individually or in combination to meet different irrigation needs. By setting timer 6, the irrigation time can be set according to actual irrigation needs, controlling the irrigation volume, saving water resources, and ensuring irrigation effect. The first spraying component can spray water linearly and evenly in a small area, the second spraying component can spray water evenly in a circumferential direction, and the third spraying component can spray water by rotating. These three different spraying methods can meet different irrigation needs. By setting timer 6 at the upper end of the first water pressure controller 5 and connecting it to the electrical box, the irrigation time can be set according to different irrigation needs, so that each component can irrigate according to the set time, which is not easy to cause water waste. This solves the problem that the existing land irrigation devices usually have fixed spraying structures, single spraying methods, and are not easy to adjust according to different spraying needs. The irrigation effect is limited, and it is not easy to control the spraying time according to different irrigation needs, which can easily lead to over-irrigation and water waste.
Claims
1. A land improvement irrigation device, comprising a water tank (1); characterized in that: It also includes a first spraying assembly, a second spraying assembly, a third spraying assembly, a first water pressure controller (5), a timer (6), an inlet pipe (7), a support column (8), a support base (9), and an anti-slip plug (10). A first spraying assembly for linear circumferential uniform irrigation of the land is fixedly installed on the upper side of the water tank (1). A second spraying assembly for circumferential uniform irrigation is fixedly installed in the middle of the upper end of the water tank (1). A third spraying assembly for rotating spray irrigation is fixedly installed in the middle of the upper end of the second spraying assembly. A first water pressure controller (5) for controlling the water pressure in the water tank (1) is fixedly installed in the middle of the front end of the water tank (1) near the bottom. A timer (6) for controlling the working time of the first water pressure controller (5) is fixedly installed on the upper end of the pressure controller (5). The timer (6) is electrically connected to the first water pressure controller (5). A water inlet pipe (7) for introducing water is fixedly installed in the middle of the right end of the water tank (1) near the bottom. A control valve for controlling the water inlet and outlet is provided on the outside of the water inlet pipe (7). Four sets of support seats (9) for supporting the water tank (1) are fixedly installed around the lower side of the water tank (1). A support seat (9) for increasing the support stability is fixedly installed at the lower end of the support seat (9). Anti-slip blocks (10) for inserting into the ground are evenly distributed and fixedly installed around the lower end of the support seat (9).
2. The land improvement irrigation device according to claim 1, characterized in that: The first spraying assembly includes an annular pipe (201) and a connecting pipe (202). The annular pipe (201) is arranged in four sets from the inside to the outside around the water tank (1). The four sets of annular pipes (201) are connected to the water tank (1) through the four sets of evenly arranged connecting pipes (202). A control valve for controlling the inflow and outflow of water is provided on the outside of the connection between the connecting pipe (202) and the water tank (1). The connecting pipe (202) extends through the water tank (1) to its bottom. The lower end of the annular pipe (201) is evenly arranged with spray holes (203) for spraying water.
3. The land improvement irrigation device according to claim 1, characterized in that: The second spraying assembly includes a spray pipe (301), a first nozzle (302), a flow guide box (303), a first flow guide pipe (304), a support block (305), and a second water pressure controller (306). The lower end of the flow guide box (303) is fixedly installed with a first flow guide pipe (304) for guiding water in the water tank (1) into the flow guide box (303). The lower end of the first flow guide pipe (304) extends through the upper end of the water tank (1) to its bottom.
4. The land improvement irrigation device according to claim 3, characterized in that: A control valve for controlling the inflow and outflow of water is provided on the outside of the connection between the first guide pipe (304) and the guide box (303). The lower side of the guide box (303) is fixedly connected to the upper end of the water tank (1) through four sets of support blocks (305) arranged around it.
5. A land improvement irrigation device according to claim 3, characterized in that: Eight sets of nozzles (301) for guiding water in the flow box (303) to the first nozzle (302) are fixedly installed around the side of the flow box (303). The first nozzle (302) for spraying water is fixedly installed at the end of the nozzle (301) away from the flow box (303). A control valve for controlling the inflow and outflow of water is provided on the outside of the connection between the nozzle (301) and the flow box (303). A second water pressure controller (306) for controlling the water pressure in the flow box (303) is fixedly installed at the front of the upper end of the flow box (303).
6. The land improvement irrigation device according to claim 1, characterized in that: The third spraying assembly includes a second nozzle (401), a rotating block (402), and a second guide pipe (403). The second guide pipe (403) is connected to the second spraying assembly, and a control valve for controlling the inflow and outflow of water is provided on the outside of the connection between the second guide pipe (403) and the second spraying assembly.
7. A land improvement irrigation device according to claim 6, characterized in that: The upper end of the second guide pipe (403) is rotatably connected to a rotating block (402) for guiding water to the second nozzle (401). Four sets of second nozzles (401) for rotating and spraying water are fixedly installed around the side of the rotating block (402).