A special container for soilless culture of cherry
By designing a special container for hydroponics of cherries, and utilizing water storage and distribution components to automate the delivery and distribution of nutrient solution, the problem of low efficiency of manual spraying in existing technologies has been solved, thus improving cultivation efficiency, saving land and costs, simplifying management processes, and enhancing the consistency of the growing environment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHAANXI QIN BA MODERN AGRI DEV CO LTD
- Filing Date
- 2025-07-15
- Publication Date
- 2026-05-29
AI Technical Summary
In existing hydroponic cherry cultivation technology, a single bucket or a square container divided into multiple culture chambers requires manual spraying of nutrient solution, which results in low efficiency, time and labor costs, large land area and inconvenient management, and poor consistency of the growth environment.
Design a special container for hydroponics of cherries, including a water storage component, a pumping component, a cultivation component, and a distribution component. The nutrient solution is automatically delivered and distributed through splicing columns and connecting pipes. The pumping component in the water storage component delivers the nutrient solution to the connecting pipe, and the distribution component evenly distributes it to the carrying cup, thus achieving automated irrigation.
It improves cherry cultivation efficiency, saves land and nutrient solution costs, simplifies management processes, and enhances the consistency of the growing environment.
Smart Images

Figure CN224290929U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of plant cultivation technology, and in particular to a special container for hydroponics of cherries. Background Technology
[0002] Soilless cultivation is a modern cultivation technique that does not rely on traditional soil but uses artificially prepared nutrient solutions or solid substrates to provide plants with the nutrients they need for growth. By precisely controlling environmental factors such as light, temperature, and humidity, soilless cultivation can achieve efficient, land-saving, and environmentally friendly agricultural production, while effectively avoiding soil-borne pests and diseases, and improving crop yield and quality.
[0003] Existing hydroponic cherry cultivation techniques mostly use a single bucket or a square container divided into multiple cultivation chambers. They rely on manual spraying of nutrient solution onto each container, resulting in low cultivation efficiency, time and labor costs, and the use of flat ground occupies a large amount of land, making management inconvenient and resulting in poor consistency of the growth environment. Utility Model Content
[0004] One objective of this invention is to provide a special container for hydroponic cherry cultivation. This invention addresses the problems mentioned in the background that existing hydroponic cherry cultivation techniques often use a single bucket or a square container divided into multiple cultivation chambers, relying on manual spraying of nutrient solution onto each container, resulting in low cultivation efficiency, time and labor costs, and the inconvenience of management and inconsistent growth environment when placed on flat ground, which are caused by the large amount of land occupied.
[0005] A special container for hydroponics of cherries according to an embodiment of the present utility model includes:
[0006] A water storage assembly includes a water storage basin and a basin cover that is snapped onto the top of the water storage basin. A splicing column is fixedly installed on the top of the basin cover, and a first support is fixedly installed inside the basin cover. A first connecting pipe is fixedly installed through the inside of the first support.
[0007] The pumping unit is installed inside the water storage basin of the water storage unit and is used to deliver nutrient solution.
[0008] A cultivation component, installed on top of the pot lid in the water storage component, is used to realize soilless cultivation of cherries. The cultivation component includes a cultivation container, the outer side of which is circular and fixedly equipped with a placement chamber. The upper and lower ends of the cultivation container are respectively provided with a docking column and a docking groove. The inside of the cultivation container is fixedly equipped with a second support. The inside of the second support is fixedly equipped with a second connecting pipe. The upper and lower ends of the second connecting pipe are respectively provided with a splicing joint and a splicing groove. The placement chamber is equipped with a detachable load-bearing component.
[0009] The nutrient solution distribution component is installed on top of the cultivation container in the cultivation assembly to distribute the nutrient solution.
[0010] Preferably, the top of the basin lid has a water inlet.
[0011] Preferably, the pumping assembly includes a pump, and the output end and delivery end of the pump are respectively fixedly provided with a flexible rubber connecting pipe and a pumping pipe.
[0012] Preferably, the soft rubber connecting tube is sleeved onto the bottom of the first connecting tube.
[0013] Preferably, the cultivation container and the connecting column are connected to the pot lid through the splicing column, and several cultivation containers are spliced and engaged with the connecting column and the connecting groove.
[0014] Preferably, the second connecting pipe is engaged with the first connecting pipe via a splicing groove, and several of the second connecting pipes are engaged with the splicing joint via splicing grooves.
[0015] Preferably, the carrier component includes a carrier inlet cup for cultivating cherries. The carrier inlet cup is movably connected to the placement groove via a limiting post. A handle is fixedly provided on the top of the limiting post. A guide plate is fixedly provided on the outer side of the second connecting pipe near the upper part of the carrier inlet cup.
[0016] Preferably, the diversion component includes a diversion plate, which is engaged with the cultivation container via a docking groove. Each diversion plate has a diversion hole inside, and a water outlet pipe is fixedly installed inside the diversion plate and connected to a second connecting pipe.
[0017] The beneficial effects of this utility model are:
[0018] This invention, through the design of a special container for hydroponic cherry cultivation, effectively avoids the inefficiency of manual nutrient solution spraying. During cherry cultivation, the sprouted cherry substrate is placed in a carrier cup, and then each carrier cup is evenly placed in the cultivation container. The nutrient solution is transported to the first and second connecting pipes by the water pumping component in the water storage component, until it is transported to the distribution plate through the outlet pipe in the distribution component. The nutrient solution is then evenly discharged downwards through the distribution holes in the distribution plate. At this point, the nutrient solution falls onto the guide plate and is guided to the carrier cup containing the cherry substrate for cultivation. This cultivation method avoids the need for manual watering of the cherry substrate one by one, and the nutrient solution after watering flows back into the water storage basin for recycling. This not only improves the efficiency of cherry cultivation but also saves costs.
[0019] This utility model effectively avoids the problems of large footprint and inconvenient management by setting up a special container for hydroponic cherry cultivation. The cultivation containers in the container are spliced together by connecting columns and connecting grooves. This not only solves the problems of large footprint and inconvenient management, but also saves on the cost of nutrient solution. At the same time, the multiple detachable containers make it easy to maintain and carry. Therefore, the device has a simple structure, is easy to operate, and has good practicality. Attached Figure Description
[0020] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:
[0021] Figure 1 This is a three-dimensional structural diagram of one side of a special container for hydroponics of cherries proposed in this utility model;
[0022] Figure 2 This is a schematic diagram of the water pump structure for a special container for hydroponics of cherries proposed in this utility model;
[0023] Figure 3 This is a schematic diagram of the flow guide plate structure of a special container for hydroponics of cherries proposed in this utility model;
[0024] Figure 4 This is a schematic diagram of the water supply pipe structure of a special container for hydroponics of cherries proposed in this utility model;
[0025] In the diagram: 1. Water storage component; 101. Water storage basin; 102. Basin lid; 103. Splicing column; 104. Water inlet; 105. First support; 106. First connecting pipe; 2. Water pumping component; 201. Water pump; 202. Soft rubber connecting pipe; 203. Water pumping pipe; 3. Cultivation component; 301. Cultivation container; 302. Placement chamber; 303. Connecting column; 304. Second support; 305. Second connecting pipe; 306. Splicing groove; 307. Splicing joint; 308. Flow guide plate; 309. Supporting cup; 310. Limiting column; 311. Handle; 312. Connecting groove; 4. Diversion component; 401. Diversion plate; 402. Diversion hole; 403. Water outlet pipe. Detailed Implementation
[0026] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.
[0027] refer to Figure 1-4 A special container for hydroponics of cherries, comprising:
[0028] The water storage component 1 includes a water storage basin 101 and a basin cover 102 that is snapped onto the top of the water storage basin 101. A splicing column 103 is fixedly installed on the top of the basin cover 102. A first support 105 is fixedly installed inside the basin cover 102. A first connecting pipe 106 is fixedly installed through the inside of the first support 105 to store nutrient solution into the water storage basin for nutrient solution cultivation of cherry trees.
[0029] The water pumping component 2 is installed inside the water storage basin 101 in the water storage component 1 and is used to transport nutrient solution. The water pumping component 2 includes a water pump 201. The output end and the delivery end of the water pump 201 are respectively fixed with a soft rubber connecting pipe 202 and a water pumping pipe 203. The water pump can carry the nutrient solution to each cherry substrate for cultivation and also has a circulating aquaculture system.
[0030] Cultivation component 3, installed on top of the pot cover 102 in water storage component 1, is used to achieve soilless cherry cultivation. Cultivation component 3 includes a cultivation container 301, with a circular outer side of the container 301 fixedly fitted with a placement chamber 302. The upper and lower ends of the cultivation container 301 are respectively provided with connecting posts 303 and connecting grooves 312. A second support 304 is fixedly installed inside the cultivation container 301, and a second connecting pipe 305 is fixedly installed through the second support 304. The upper and lower ends of the second connecting pipe 305 are respectively provided with splicing joints 307 and splicing grooves 306. A detachable support component, including a support inlet cup, is installed inside the placement chamber 302. 309, the carrier cup 309 is used for cultivating cherries. The carrier cup 309 is movably set with the placement groove through the limiting post 310. The top of the limiting post 310 is fixedly set with a handle 311. The outside of the second connecting pipe 305 is fixedly set with a guide plate 308 near the upper part of the carrier cup 309. Nutrient solution is transported to the first connecting pipe and the second connecting pipe until it is transported to the distribution plate through the water outlet pipe in the distribution assembly. The nutrient solution is evenly discharged downward through the distribution hole in the distribution plate. At this time, the nutrient solution will fall onto the guide plate and then be guided to the carrier cup containing cherry substrate for cultivation. This cultivation method can avoid manually watering the cherry substrate one by one.
[0031] The diversion component 4 is installed on top of the cultivation container 301 in the cultivation component 3 to realize the diversion of nutrient solution. The diversion component 4 includes a diversion plate 401, which is engaged with the cultivation container 301 through a docking groove 312. The diversion plate 401 has diversion holes 402 inside, and a water outlet pipe 403 is fixedly installed through the inside of the diversion plate 401. The water outlet pipe 403 is connected to the second connecting pipe 305. The nutrient solution is sprayed into the basin cavity of the diversion plate through the water outlet pipe, and then evenly distributed into the container through the diversion holes. This can improve the growth efficiency of the cherry substrate.
[0032] Example 1: A water inlet 104 is provided at the top of the pot lid 102. A soft rubber connecting tube 202 is sleeved on the bottom of the first connecting tube 106. The cultivation container 301 and the docking column 303 are connected to the pot lid 102 through the splicing column 103. Several cultivation containers 301 are spliced and locked together with the docking groove 312 through the docking column 303. The cultivation containers in the container are spliced together through the docking column and the docking groove. This not only solves the problems of large area and inconvenient management, but also saves the cost of nutrient solution.
[0033] Example 2: The second connecting pipe 305 is engaged with the first connecting pipe 106 through the splicing groove 306. Several second connecting pipes 305 are also engaged with the splicing joint 307 through the splicing groove 306. The connecting pipes are connected through the splicing groove, which can smoothly deliver the nutrient solution to the outlet pipe, thereby improving the breeding efficiency.
[0034] Working principle: First, the nutrient solution is stored in the water storage basin 101 of the water storage component 1. The water inlet 104 on the basin cover 102 facilitates the replenishment of the nutrient solution. The water pump 201 of the water pumping component 2 delivers the nutrient solution to the first connecting pipe 106 through the flexible connecting pipe 202 and the water pumping pipe 203. The nutrient solution enters the cultivation container 301 of the cultivation component 3 through the first connecting pipe 106, and reaches the distribution plate 401 of the distribution component 4 through the second connecting pipe 305. The distribution holes 402 in the distribution plate 401 ensure that the nutrient solution is evenly distributed to each carrying cup 3. 09. The guide plate 308 guides the nutrient solution to drip accurately into the cherry substrate, achieving precise irrigation. Multiple cultivation containers 301 can be spliced together through the docking column 303 and the docking groove 312 to form a three-dimensional cultivation structure, saving space and facilitating management. At the same time, the second connecting pipe 305 is connected to each other through the splicing groove 306 and the splicing joint 307 to ensure continuous delivery of nutrient solution and improve cultivation efficiency. This design effectively avoids the time-consuming and labor-intensive problems of traditional manual spraying, reduces nutrient solution waste, and improves the consistency of the growth environment of the cherry substrate and the overall cultivation efficiency.
[0035] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A special container for hydroponics of cherries, characterized in that, include: The water storage component (1) includes a water storage basin (101) and a basin cover (102) that is snapped onto the top of the water storage basin (101). A splicing column (103) is fixedly provided on the top of the basin cover (102). A first support (105) is fixedly provided inside the basin cover (102). A first connecting pipe (106) is fixedly provided through the inside of the first support (105). The pumping assembly (2) is installed inside the water storage basin (101) in the water storage assembly (1) and is used to deliver nutrient solution. The cultivation component (3) is installed on the top of the pot cover (102) in the water storage component (1) to realize soilless cherry cultivation. The cultivation component (3) includes a cultivation container (301). The outer side of the cultivation container (301) is circular and is fixedly provided with a placement chamber (302). The upper and lower ends of the cultivation container (301) are respectively provided with a docking column (303) and a docking groove (312). The inside of the cultivation container (301) is fixedly provided with a second support (304). The inside of the second support (304) is fixedly provided with a second connecting pipe (305). The upper and lower ends of the second connecting pipe (305) are respectively provided with a splicing joint (307) and a splicing groove (306). The placement chamber (302) is installed with a detachable bearing component. The diversion component (4) is installed on top of the cultivation container (301) in the cultivation component (3) to realize the diversion of nutrient solution.
2. The special container for hydroponics of cherries according to claim 1, characterized in that, The top of the basin cover (102) is provided with a water inlet (104).
3. The special container for hydroponics of cherries according to claim 1, characterized in that, The pumping assembly (2) includes a pump (201), and the output end and the delivery end of the pump (201) are respectively fixedly provided with a soft rubber connecting pipe (202) and a pumping pipe (203).
4. The special container for hydroponics of cherries according to claim 3, characterized in that, The soft rubber connecting tube (202) is sleeved on the bottom of the first connecting tube (106).
5. The special container for hydroponics of cherries according to claim 1, characterized in that, The cultivation container (301) and the docking column (303) are connected to the pot lid (102) by the splicing column (103), and several of the cultivation containers (301) are spliced and engaged with the docking groove (312) by the docking column (303).
6. The special container for hydroponics of cherries according to claim 1, characterized in that, The second connecting pipe (305) is engaged with the first connecting pipe (106) through the splicing groove (306), and several of the second connecting pipes (305) are engaged with the splicing joint (307) through the splicing groove (306).
7. The special container for hydroponics of cherries according to claim 1, characterized in that, The supporting component includes a supporting inlet cup (309) for cultivating cherries. The supporting inlet cup (309) is movably connected to the placement groove via a limiting post (310). A handle (311) is fixedly provided on the top of the limiting post (310). A guide plate (308) is fixedly provided on the outer side of the second connecting pipe (305) near the upper part of the supporting inlet cup (309).
8. The special container for hydroponics of cherries according to claim 1, characterized in that, The diversion component (4) includes a diversion plate (401), which is engaged with the cultivation container (301) via a docking groove (312). Each diversion plate (401) has a diversion hole (402) inside. A water outlet pipe (403) is fixedly installed inside the diversion plate (401) and is connected to the second connecting pipe (305).