Ecological nutritive water generator for crops

By using a parallel multi-channel structure and distributed magnetic circuit array technology, the problem of water pipe rupture caused by pressure imbalance in the water flow channel was solved, achieving safe and reliable magnetized water generation and enhancing plant absorption efficiency.

CN224147882UActive Publication Date: 2026-04-21中农数科(北京)新材料有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
中农数科(北京)新材料有限公司
Filing Date
2025-05-09
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing crop ecological nutrient water generators cause the water flow channel diameter to narrow when the water flows through a magnetic field, resulting in an imbalance of pressure difference between the inlet and outlet ends. Long-term use can lead to problems such as water pipe rupture or leakage at the connection.

Method used

The design incorporates a parallel multi-channel structure and distributed magnetic circuit array technology. By using a multi-channel diversion design, the total cross-sectional area of ​​the water outlet is increased. An independent magnetized water outlet device is configured in each water outlet branch pipe to enhance the magnetic field strength and reduce the pressure difference between the inlet and outlet ends. The parallel magnetized water outlet devices undergo multiple magnetization reactions.

Benefits of technology

It effectively reduces the pressure difference between the inlet and outlet by 78%-92%, eliminates the risk of pipe bursts, and significantly enhances the permeation and absorption efficiency of plant cells.

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Abstract

A crop ecological nutritive water generator belongs to the technical field of water purification equipment. A water segregator is arranged on the top of a shell, a water outlet filter is arranged on the upper portion in the shell and sleeved on the outer side of a water inlet pipe, the water segregator comprises an inner cavity and an outer cavity which are annularly sleeved, a water inlet and a water outlet are processed on the water segregator, the water inlet is communicated with the inner cavity, and the water outlet is communicated with the outer cavity. The bottom of the inner cavity is fixedly connected with the top of the water inlet pipe, the bottom of the water inlet pipe is provided with a water inlet filter, a water outlet is provided with a water outlet pipe, the water outlet pipe is divided into a plurality of water outlet branch pipes, and the water outlet branch pipes are provided with magnetized water outlet devices. The crop ecological nutritive water generator solves the problems that when a crop ecological nutritive water generator in the prior art is actually used, the diameter of a water flow channel is narrowed when water flow passes through a magnetic field, the pressure difference between a water inlet end and a water outlet end is unbalanced, and water pipes are broken or water leaks at the joint after long-term use, eliminates the risk of pipeline burst, and meanwhile enhances the magnetic field intensity.
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Description

Technical Field

[0001] This utility model relates to an ecological nutrient water generator for crops, belonging to the technical field of water purification equipment. Background Technology

[0002] With the rapid development of modern industry and agriculture, especially the technological advancements in the chemical industry, various chemical fertilizers and pesticides have been produced to promote crop growth and increase yield, as well as various hormones, ripening agents, weight-gain agents, swelling agents, and preservatives to accelerate animal growth. While these industrially produced chemicals have greatly benefited agricultural production, long-term practice has proven that their long-term use in agricultural production poses potential or obvious harm to the soil, the health of plants and animals, and the resulting agricultural products. For example, excessive use of pesticides and chemical hormones in agricultural production has led to severely excessive residues in various agricultural products, resulting in drug poisoning or other adverse effects in many consumers, posing a significant health risk.

[0003] However, if only purified water is used for irrigation, a lack of trace elements will occur. Research has found that elements have synergistic and antagonistic effects. Therefore, the growth and health of both plants and animals cannot be separated from the participation and presence of trace elements. Because trace elements participate in the physiological catalytic reactions of the body, the lack of certain trace elements will have a significant impact on the growth and health of organisms, resulting in symptoms such as stunted growth and slow development of plants and animals, as well as weakened immunity leading to various diseases. For example, deficiencies in elements such as selenium, zinc, and molybdenum in crops can cause low plant immunity, slow growth, little leaf disease, mosaic disease, viral diseases, and other deficiency-related diseases. At the same time, agricultural products lacking these elements have poor taste, weak fruits, and lack the expected appearance and quality. The yield of agricultural products is significantly reduced.

[0004] In addition, the prior art discloses an ecological nutrient water generator for crops, patent publication number CN118439754A. Water passing through a magnetic field is cut by magnetic cutting lines, and the water molecule structure undergoes physical changes through the magnetic field, turning large water molecules into small active water molecules. However, in practice, the diameter of the water flow channel narrows when the water flows through the magnetic field, causing an imbalance in the pressure difference between the inlet and outlet ends. Long-term use can lead to water pipe rupture or leakage at the connection.

[0005] Therefore, there is an urgent need to develop a new type of ecological nutrient water generator for crops to solve the above-mentioned technical problems. Utility Model Content

[0006] The purpose of this invention is to solve the problem in existing crop ecological nutrient water generators where, in practice, the diameter of the water flow channel narrows when the water flows through a magnetic field, causing an imbalance in the pressure difference between the inlet and outlet ends. This imbalance leads to pipe rupture or leakage at connections over long-term use. A brief overview of this invention is provided below to offer a basic understanding of certain aspects of it. It should be understood that this overview is not an exhaustive summary of the invention. It is not intended to identify key or essential parts of the invention, nor is it intended to limit its scope.

[0007] The technical solution of this utility model:

[0008] A crop ecological nutrient water generator includes a shell, a magnetized water outlet device, a water outlet pipe, a water distributor, a water inlet pipe, an inlet filter, and an outlet filter. A water distributor is threaded onto the top outlet of the shell. An outlet filter is fitted inside the shell and mounted on the outside of the inlet pipe. The water distributor includes an annularly fitted inner chamber and an outer chamber. The water distributor has an inlet and an outlet machined on it. The inlet communicates with the inner chamber, and the outlet communicates with the outer chamber. The outer chamber of the water distributor communicates with the outlet filter. The bottom of the inner chamber is fixedly connected to the top of the inlet pipe. An inlet filter is installed at the bottom of the inlet pipe, and an outlet pipe is installed at the outlet. The outlet pipe branches into multiple outlet branches, which eventually converge. A magnetized water outlet device is installed on each outlet branch.

[0009] Preferably, the outer shell is lined with a granular layer.

[0010] Preferably, a sealing ring is provided between the water distributor and the outer casing.

[0011] Preferably, the magnetized water outlet device includes a connector, a reaction tube, an adapter, strong magnetic blocks, and a magnetic field dividing ring. The two ends of the reaction tube are fixedly connected to the connector and the adapter, respectively. The connector is threadedly connected to the water distributor. At least three strong magnetic blocks are installed inside the reaction tube, and a magnetic field dividing ring is provided between two adjacent strong magnetic blocks.

[0012] Preferably, the water inlet filter includes a water inlet top seat, a water inlet base, and inner and outer water inlet filter sleeves. The water inlet top seat and the water inlet base are fixedly installed at the upper and lower ends of the inner and outer water inlet filter sleeves, respectively. The water inlet top seat is fixedly connected to the bottom of the water inlet pipe, and the water inlet pipe is connected to the inner and outer water inlet filter sleeves.

[0013] Preferably, the water outlet filter includes a water outlet top seat, a water outlet base, and inner and outer water outlet filter sleeves. The water outlet top seat and the water outlet base are fixedly installed at the upper and lower ends of the inner and outer water outlet filter sleeves, respectively. The top surface of the water outlet top seat is in contact with the bottom surface of the water distributor. The water outlet top seat, the water outlet base, and the inner and outer water outlet filter sleeves are all fitted onto the outside of the water inlet pipe, and the water outlet base is in contact with the outer wall of the water inlet pipe. The inner and outer water outlet filter sleeves are connected to the outer chamber.

[0014] This utility model has the following beneficial effects:

[0015] 1. This utility model designs the water outlet end as a parallel multi-channel structure and simultaneously configures a parallel magnetized water outlet device. Through the multi-channel diversion design, the total cross-sectional area of ​​the water outlet is effectively increased, reducing the water flow velocity to 1 / 3-1 / 2 of the original single-channel design. Fluid dynamics simulation shows that the pressure difference between the inlet and outlet ends can be controlled within a safe range of 0.05-0.15MPa, which is 78%-92% lower than the original structure, completely eliminating the risk of pipe bursting.

[0016] 2. This utility model adopts distributed magnetic circuit array technology, and each parallel water outlet branch is equipped with an independent magnetized water outlet device, which further enhances the magnetic field strength and significantly enhances the permeation and absorption efficiency of plant cells. Attached Figure Description

[0017] Figure 1 This is the front view of an ecological nutrient water generator for crops;

[0018] Figure 2 This is a schematic diagram of the structure of an ecological nutrient water generator for crops;

[0019] Figure 3 A schematic diagram of the magnetized water outlet device;

[0020] Figure 4 This is a schematic diagram of the water distributor;

[0021] Figure 5 This is a schematic diagram of the inlet filter structure;

[0022] Figure 6 This is a schematic diagram of the water filter structure;

[0023] In the diagram, 1-outer shell, 2-magnetized water outlet device, 3-outlet pipe, 4-water distributor, 5-inlet pipe, 6-inlet filter, 7-outlet filter, 8-granular layer, 9-sealing ring, 21-connector, 22-reaction tube, 23-adapter, 24-strong magnetic block, 25-magnetic field dividing ring, 31-outlet branch pipe, 41-inner chamber, 42-outer chamber, 43-inlet, 44-outlet, 61-inlet top seat, 62-inlet base, 63-inlet inner and outer filter sleeves, 71-outlet top seat, 72-outlet base, 73-outlet inner and outer filter sleeves. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model is described below with reference to specific embodiments shown in the accompanying drawings. However, it should be understood that these descriptions are merely exemplary and not intended to limit the scope of the present utility model. Furthermore, in the following description, descriptions of well-known structures and technologies are omitted to avoid unnecessarily obscuring the concept of the present utility model.

[0025] The connections mentioned in this utility model are divided into fixed connections and detachable connections. Fixed connections, also known as non-detachable connections, include but are not limited to conventional fixed connection methods such as folded connections, riveted connections, adhesive connections, and welded connections. Detachable connections include but are not limited to conventional disassembly methods such as threaded connections, snap-fit ​​connections, pin connections, and hinged connections. When a specific connection method is not explicitly defined, it is assumed that at least one existing connection method can always be found to achieve the function, and those skilled in the art can choose according to their needs. For example, a welded connection can be chosen for fixed connections, and a hinged connection can be chosen for detachable connections.

[0026] Specific implementation method one: Combining Figures 1-6 This embodiment describes an agricultural ecological nutrient water generator, comprising a shell 1, a magnetized water outlet device 2, an outlet pipe 3, a water distributor 4, an inlet pipe 5, an inlet filter 6, and an outlet filter 7. The outlet filter 7 is fitted inside the upper part of the shell 1 and is also fitted onto the outside of the inlet pipe 5. The water distributor 4 is threadedly installed at the top outlet of the shell 1. The water distributor 4 includes an annularly fitted inner chamber 41 and an outer chamber 42. The water distributor 4 also has an inlet 43 and an outlet 44 machined on it. The inlet 43 communicates with the inner chamber 41, and the outlet 44... The outer chamber 42 of the water distributor 4 is connected to the water outlet filter 7. At the same time, the bottom surface of the outer chamber 42 of the water distributor 4 and the top surface of the water outlet filter 7 are sealed together by a sealing gasket. The bottom of the inner chamber 41 is fixedly and sealed to the top of the water inlet pipe 5. A water inlet filter 6 is installed at the bottom of the water inlet pipe 5. A pressurized water source is connected to the water inlet 43. A water outlet pipe 3 is installed at the water outlet 44. The water outlet pipe 3 is divided into multiple water outlet branch pipes 31. The multiple water outlet branch pipes 31 eventually converge together. A magnetized water outlet device 2 is installed on the water outlet branch pipe 31.

[0027] The shell 1 is lined with a particle layer 8, which completely covers the water inlet filter 6 located at the bottom of the shell 1. The purpose is to ensure that the water to be processed entering the shell through the water inlet filter 6 can completely pass through the particle layer 8, allowing the two to react fully.

[0028] To ensure sufficient contact between the granular layer and the water, the mineral particles in the granular layer are dispersed. The purpose is to allow the particles to collide with each other as the water flows through the granular layer, thereby accelerating the dissolution of trace elements and increasing the oxygen content. The inlet and outlet filters effectively prevent the mineral particles in the granular layer from being discharged with the water flow.

[0029] The granular layer 8 can be conventional filter particles, such as activated carbon particles, quartz sand particles, zeolite, ceramics, etc.

[0030] More preferably, the granular layer 8 can be a mineralized filter material, mineralized balls / mineralized ceramics, which slowly release trace elements such as calcium (Ca), magnesium (Mg), strontium (Sr), zinc (Zn), and selenium (Se) during the filtration process by adding natural mineral materials such as maifanite, tourmaline, and coral sand.

[0031] The water to be processed enters the inner chamber 41 of the water distributor 4, and then is transported to the inlet filter 6 through the inlet pipe 5 for filtration. It then enters the lower part of the inner shell 1 and reacts fully with the particle layer 8 inside the shell 1 until the water level line inside the shell 1 submerges the outlet filter 7. Since the water to be processed is continuously entering, under the action of the pressure difference between the inside and outside, the processed water located at the upper part of the inner shell 1 enters the outer chamber 42 of the water distributor 4 through the outlet filter 7, and then is discharged after undergoing a magnetization reaction through the magnetized water outlet device 2 at the outlet 44.

[0032] A sealing ring 9 is provided between the water distributor 4 and the outer casing 1 to maintain the airtightness between the water distributor 4 and the outer casing 1. A rubber base is provided at the bottom of the outer casing 1 for stable installation.

[0033] The magnetized water outlet device 2 includes a connector 21, a reaction tube 22, an adapter 23, strong magnetic blocks 24, and a magnetic field dividing ring 25. The two ends of the reaction tube 22 are fixedly connected to the connector 21 and the adapter 23, respectively. The adapter 23 is connected to the water outlet irrigation pipeline. The connector 21 is threadedly connected to the inlet 43 or outlet 44 of the water distributor 4. At least three strong magnetic blocks 24 are installed inside the reaction tube 22, and a magnetic field dividing ring 25 is provided between adjacent strong magnetic blocks 24. Each strong magnetic block 24 has a through hole for water to flow through. Figure 3 As shown, in this embodiment, there are three strong magnetic blocks 24, and a magnetic field dividing ring 25 is provided between two adjacent strong magnetic blocks 24 to divide the three strong magnetic blocks 24 into three 4500 Gauss strong magnetic field reaction zones. The water to be processed can achieve three magnetization reactions after passing through the magnetized water outlet device 2 of this embodiment, which forces the water to be processed to cut the long chain of water molecules into short chains under the action of the strong magnetic field each time it passes through the 4500 Gauss strong magnetic field reaction zone.

[0034] The water inlet filter 6 includes a water inlet top seat 61, a water inlet base 62, and a water inlet inner and outer filter sleeve 63. The water inlet top seat 61 and the water inlet base 62 are fixedly installed at the upper and lower ends of the water inlet inner and outer filter sleeve 63, respectively. The water inlet top seat 61 is fixedly connected to the bottom of the water inlet pipe 5, and the water inlet pipe 5 is connected to the water inlet inner and outer filter sleeve 63. The water inlet base 62 is a sealed base.

[0035] The water outlet filter 7 includes a water outlet top seat 71, a water outlet base 72, and water outlet inner and outer filter sleeves 73. The water outlet top seat 71 and the water outlet base 72 are fixedly installed at the upper and lower ends of the water outlet inner and outer filter sleeves 73, respectively. The top surface of the water outlet top seat 71 is sealed to the bottom surface of the water distributor 4 through a sealing gasket. The water outlet top seat 71, the water outlet base 72, and the water outlet inner and outer filter sleeves 73 are all fitted on the outside of the water inlet pipe 5, and the water outlet base 72 is in contact with the outer wall of the water inlet pipe 5. The water outlet inner and outer filter sleeves 73 are connected to the outer chamber 42. The water outlet inner and outer filter sleeves 73 and the water inlet inner and outer filter sleeves 63 each include two layers of filter sleeves. The inner filter sleeve can be grid-shaped or mesh-shaped, etc.

[0036] Specific Implementation Method Two: Combining Figures 1-6 This embodiment, based on specific embodiment one, describes an ecological nutrient water generation method that includes the following steps:

[0037] Step 1: The water to be processed enters the inner chamber 41 of the water distributor 4, and then is transported to the water inlet filter 6 through the water inlet pipe 5 for the first filtration to generate primary filtered reaction water.

[0038] Step 2: The filtered reaction water enters the lower part of the shell 1 and reacts fully with the particle layer 8 inside the shell 1 to form primary nutrient water;

[0039] Step 3: When the water level of the primary nutrient water is above the outlet filter 7, under the action of the pressure difference between the inside and outside, the primary nutrient water located above the inside of the outer shell 1 enters the outer chamber 42 of the water distributor 4 through the outlet filter 7.

[0040] Step 4: The primary nutrient water in the outer chamber 42 enters the magnetized water outlet 2 through the outlet 44 to undergo a magnetization reaction, and finally the magnetized nutrient water is discharged.

[0041] It should be noted that in the above embodiments, as long as the technical solutions are not contradictory, they can be arranged and combined. Those skilled in the art can exhaust all possibilities based on the mathematical knowledge of permutation and combination. Therefore, this utility model will not describe the technical solutions after permutation and combination one by one, but it should be understood that the technical solutions after permutation and combination have been disclosed by this utility model.

[0042] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A crop eco-nutrient water generator characterized by: The system includes a housing (1), a magnetized water outlet device (2), a water outlet pipe (3), a water distributor (4), a water inlet pipe (5), a water inlet filter (6), and a water outlet filter (7). The water distributor (4) is threadedly installed at the top outlet of the housing (1). The water outlet filter (7) is fitted inside the upper part of the housing (1). The water outlet filter (7) is fitted around the outside of the water inlet pipe (5). The water distributor (4) includes an annularly fitted inner chamber (41) and an outer chamber (42). The water distributor (4) has an inlet (43) and an outlet (44) machined on it. The inlet (43) is connected to the inner chamber (41), the outlet (44) is connected to the outer chamber (42), the outer chamber (42) of the water distributor (4) is connected to the outlet filter (7), the bottom of the inner chamber (41) is fixedly connected to the top of the inlet pipe (5), the bottom of the inlet pipe (5) is equipped with an inlet filter (6), the outlet (44) is equipped with an outlet pipe (3), the outlet pipe (3) is divided into multiple outlet branches (31), the multiple outlet branches (31) eventually converge together, and a magnetized water outlet device (2) is installed on the outlet branch (31).

2. The ecological nutrient water generator for crops according to claim 1, characterized in that: The outer shell (1) is lined with a granular layer (8).

3. The ecological nutrient water generator for crops according to claim 2, characterized in that: A sealing ring (9) is provided between the water distributor (4) and the outer casing (1).

4. The agricultural eco-nutritious water generator according to claim 3, characterized by: The magnetized water outlet device (2) includes a connector (21), a reaction tube (22), an adapter (23), strong magnetic blocks (24), and a magnetic field dividing ring (25). The two ends of the reaction tube (22) are fixedly connected to the connector (21) and the adapter (23) respectively. The connector (21) is threadedly connected to the water distributor (4). At least three strong magnetic blocks (24) are installed inside the reaction tube (22), and a magnetic field dividing ring (25) is provided between two adjacent strong magnetic blocks (24).

5. The crop eco-nutrient water generator according to claim 4, characterized in that: The water inlet filter (6) includes a water inlet top seat (61), a water inlet base (62), and a water inlet inner and outer filter sleeve (63). The water inlet top seat (61) and the water inlet base (62) are fixedly installed at the upper and lower ends of the water inlet inner and outer filter sleeve (63), respectively. The water inlet top seat (61) is fixedly connected to the bottom of the water inlet pipe (5), and the water inlet pipe (5) is connected to the water inlet inner and outer filter sleeve (63).

6. The crop eco-nutritive water generator according to claim 5, characterized in that: The water outlet filter (7) includes a water outlet top seat (71), a water outlet base (72), and a water outlet inner and outer filter sleeve (73). The water outlet top seat (71) and the water outlet base (72) are fixedly installed at the upper and lower ends of the water outlet inner and outer filter sleeve (73). The top surface of the water outlet top seat (71) is in contact with the bottom surface of the water distributor (4). The water outlet top seat (71), the water outlet base (72), and the water outlet inner and outer filter sleeve (73) are all fitted on the outside of the water inlet pipe (5), and the water outlet base (72) is in contact with the outer wall of the water inlet pipe (5). The water outlet inner and outer filter sleeve (73) is connected to the outer chamber (42).

Citation Information

Patent Citations

  • Crop ecological nutritive water generator and method

    CN118439754A