A special water line system for breeding of broiler breeders

By designing a water supply system specifically for broiler breeders with parallel connection between the main water supply pipe and the main medication supply pipe, the problem of traditional water supply pipelines being unable to be controlled independently has been solved. This enables precise medication and drinking water control for each flock, reduces the risk of repeated medication, and improves breeding quality.

CN224583987UActive Publication Date: 2026-08-04FUJIAN SHENGZE BIOLOGICAL TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN SHENGZE BIOLOGICAL TECH DEV CO LTD
Filing Date
2025-07-15
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

Traditional integrated water supply systems cannot individually control the amount of medication administered to each chicken house, leading to repeated medication use and insufficient dosage. The system is complex to operate and costly, and cannot meet the customized medication needs of broiler breeders.

Method used

Design a water line system specifically for broiler breeding, including a main water supply pipe and a main medication supply pipe connected in parallel. Independent control of each flock is achieved through a water control valve and a medication control branch valve. Combined with a filter and a chlorination pump, it ensures that the medication is delivered separately and administered accurately.

Benefits of technology

It enables precise medication and drinking water control for each flock, reduces the risk of repeated medication, improves breeding quality, and reduces operational complexity and cost.

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Abstract

The utility model discloses a meat breeders' breeding special water line system of technical field, including clear water main pipe, dosing main pipe, send medicine pump, send medicine branch pipe and water line, clear water main pipe feeds water, and dosing main pipe cooperates send medicine pump and send medicine branch pipe and feeds medicine, the device directly installs the medicine feeding device on every water pipeline of chicken coop, and is related, so that all chicken groups of the whole chicken farm can be separately controlled water feeding and medicine feeding amount, be applicable to the breeding chicken group's brooding period, growing period, egg laying period, can reach accurate dosing or water control, maximum limit reduces repeated dosing and drug immunity, reduces breeding risk as far as possible, also can improve breeding quality, the dosing data accurate control of chicken growth process, and the breeding dosing amount of different chicken groups compares accurately, only needs a set of pipeline, can carry out custom dosing to every separate chicken group, and reduces the influence of medicine residue in pipeline on water feeding.
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Description

Technical Field

[0001] This utility model relates to the field of broiler breeding technology, and in particular to a dedicated water line system for broiler breeding. Background Technology

[0002] Broiler breeder flocks are small, with multiple batches raised in a single chicken house. The age intervals are long, and medication and drinking water immunization trials are conducted at different ages. Chickens of different ages are fed at the same time in the chicken house, and the medications required for different age batches are also different, as are the dosages. This means that each batch of chicks needs to be fed individually, and the water supply line also needs to be independent, requiring customized medication and customized water supply.

[0003] By administering different medications to chickens of different ages, and also administering different dosages of medication to chickens of the same age, we can determine the dosage and safe range of use for various medications. We have also learned that chickens will have abnormal reactions when overdosing on medication. Therefore, we need to conduct multi-dimensional comparative medication administration for all chickens in the coop.

[0004] Currently, most breeding chicken houses use integrated water and feed pipelines, with each house having its own water valve. However, the amount of water and medication given to each house is different and needs to be controlled individually. Because the pipelines are integrated, it is impossible to customize the dosage of medication. This integrated feeding method can lead to some chicks not being given enough medication and others being given too much. Chickens that are given too much medication may develop drug resistance, while chickens that are given too little medication may have their drug efficacy inaccurately judged. This results in inaccurate comparison of medication administration among multiple flocks in the same house and errors in the determination of medication administration for each flock.

[0005] Therefore, integrated traditional chicken water lines are not suitable for use by breeding flocks. Integrated medication feeding can lead to duplicate medication and insufficient dosage. This requires separate pipelines to administer medication and water to each flock of different ages. This necessitates the installation of separate equipment for each flock in the chicken house. However, it is very laborious and costly to set up a separate pipeline for watering only a few dozen or a hundred chickens. This also means that each pipeline needs to be controlled separately, making the operation even more complicated.

[0006] Based on this, this utility model designs a special water line system for broiler breeding to solve the above problems. Utility Model Content

[0007] The purpose of this invention is to provide a dedicated water line system for broiler breeding. This device directly installs a medication feeding device on each drinking water pipeline in the chicken house and links them together, allowing all chicken flocks in the entire chicken farm's hatchery to have their water and medication dosages controlled individually. It can be used in small-scale breeding enterprises during the brooding, rearing, and laying periods to achieve precise medication or water control, minimizing duplicate medication and drug immunization, reducing breeding risks, improving breeding quality, accurately controlling medication data during chicken growth, and accurately comparing the dosage of different breeding flocks. Only one pipeline is needed to customize medication for each individual flock, and any medication residue in the pipeline does not affect water supply.

[0008] This utility model is implemented as follows: a dedicated water line system for broiler breeding, comprising:

[0009] Main water supply pipe, main chemical supply pipe, chemical delivery pump, filter, chlorination pump, chemical delivery branch pipe and drinking water line;

[0010] The main water supply pipe and the main chemical supply pipe are water pipes, and the inlets of the main water supply pipe and the main chemical supply pipe are both connected to an external pure water supply.

[0011] The main water supply pipe and the main chemical supply pipe are connected in parallel. The front ends of the main water supply pipe and the main chemical supply pipe are connected through a flushing valve, and the rear ends of the main water supply pipe and the main chemical supply pipe are not connected.

[0012] Multiple water control valves are connected in parallel at the rear end of the main water pipe, and each water control valve is connected to a water pipe at its rear end.

[0013] The main dosing pipe is connected in sequence from front to back to a dosing pump, a dosing valve, a meter, a flow control valve, a filter, a drain pipe, and a chlorination pump; a water valve is also installed on the drain pipe.

[0014] The flushing valve is connected to the front end of the drug delivery pump;

[0015] The main dosing pipe is connected to multiple drug control branch valves at its rear end, and these multiple drug control branch valves are arranged in parallel with each other; the rear end of each drug control branch valve is connected to a drug delivery branch pipe.

[0016] Each of the aforementioned clean water pipes and a drug control branch valve is connected to the same drug delivery branch pipe via a tee;

[0017] Each of the drug delivery branches is connected to a water line valve at its rear end. The water line is a water pipe and is connected to the rear end of the water line valve.

[0018] The drinking water line is also equipped with multiple water-pecking nozzles, and the water line valve is located at the front end of the multiple water-pecking nozzles;

[0019] A water-receiving trough is also provided directly below each of the water-pecking nozzles, and the water-receiving trough is a box with an opening at the top.

[0020] Furthermore, the drug delivery pump is also equipped with a replenishment pipe, which is a flexible hose, and the inlet of the replenishment pipe is connected to an external drug tank.

[0021] Furthermore, the chlorination pump is also equipped with a chlorination pipe, which is a flexible hose, and the chlorination pipe is connected to a solvent containing chloride ions.

[0022] Furthermore, a hanging rod is provided on the side of the water receiving trough, and the water receiving trough is fixedly suspended below the drinking water line.

[0023] Furthermore, the dosing valve and the flow control valve are electric valves.

[0024] The beneficial effects of this utility model compared with the prior art are as follows: 1. This utility model adds parallel clean water main pipe and dosing main pipe, so that this device can feed medicine through the dosing main pipe in conjunction with the clean water control valve, or control the dosage through the dosing valve, making medicine feeding more convenient; moreover, by feeding medicine through the dosing main pipe and the clean water control valve, and by delivering water through the clean water main pipe and the clean water branch pipe, the purpose of separating the delivery of medicine and clean water is achieved, so that the delivery of medicine and water does not affect each other;

[0025] 2. This device is equipped with a main water supply pipe and a main medication supply pipe connected in parallel. The water supply control valve and medication control branch valve for each flock are also connected in parallel. Moreover, the water supply control valve and water supply pipe are precisely controlled by the flow control valve. This allows each flock to be fed medication and water separately or in combination. At the same time, different proportions of medication can be supplied to different flocks to achieve the purpose of comparing the medication dosage of the flocks.

[0026] 3. This device adds a filter, a drain pipe, and a chlorination pump to the clean water pipeline. The filter can purify and filter residual medicine, and the drain pipe can remove overly concentrated medicine. The chlorination pump can also add a small amount of chlorine to the water line, making this water system more flexible and convenient to use for chickens to use clean water, chlorinated drinking water, medicine solution, and drinking water for immunization. Attached Figure Description

[0027] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0028] Figure 1 This is a schematic diagram of the overall pipeline structure of this utility model;

[0029] Figure 2 This is a schematic diagram of the water receiving trough structure of this utility model.

[0030] The attached diagram lists the components represented by each number as follows:

[0031] 1-Clean water main pipe, 11-Flush valve, 12-Clean water control valve, 13-Clean water branch pipe, 2-Dosing main pipe, 21-Flow control valve, 22-Meter, 23-Dosing valve, 3-Dosing pump, 31-Replenishment pipe, 4-Filter, 41-Drain pipe, 5-Chlorination pump, 51-Chlorination pipe, 6-Dosing branch pipe, 61-Dosing control branch valve, 62-Clean water branch valve, 7-Drinking water line, 71-Water spout, 72-Water line valve, 73-Water receiving trough, 74-Hanging rod. Detailed Implementation

[0032] Please see Figures 1 to 2 As shown, this utility model provides a dedicated water line system for broiler breeding. To better understand the above technical solution, the following will provide a detailed description of the above technical solution in conjunction with the accompanying drawings and specific embodiments.

[0033] In a specific embodiment of the technical solution of this utility model:

[0034] It includes a clean water main pipe 1, a chemical dosing main pipe 2, a chemical delivery pump 3, a filter 4, a chlorination pump 5, a chemical delivery branch pipe 6, and a drinking water line 7;

[0035] The main water pipe 1 and the main chemical dosing pipe 2 are water pipes, and the inlets of both the main water pipe 1 and the main chemical dosing pipe 2 are connected to an external pure water supply.

[0036] The main water supply pipe 1 and the main chemical supply pipe 2 are connected in parallel. The front ends of the main water supply pipe 1 and the main chemical supply pipe 2 are connected by a flushing valve 11, but the rear ends of the main water supply pipe 1 and the main chemical supply pipe 2 are not connected.

[0037] Multiple water control valves 12 are connected in parallel at the rear end of the main water pipe 1. Each water control valve 12 is connected to a water pipe 13 at the rear end. The water output of each water pipe 13 is controlled by the water control valve 12, and the water pipe 13 guides the water to the drinking point of each flock of chickens.

[0038] The main dosing pipe 2 is connected in sequence from front to back to the following components: a drug delivery pump 3, a dosing valve 23, a meter 22, a flow control valve 21, a filter 4, a drain pipe 41, and a chlorination pump 5. A water valve is also installed on the drain pipe 41 to control whether to discharge sewage. When it is necessary to flush the filter 4 and the main dosing pipe 2, the flushing valve 11 is opened to flush clean water into the main dosing pipe 2 and the flushing water is discharged from the drain pipe 41. The main dosing pipe 2 itself is a pre-mixed drug solution pipe. Generally, only the drug solution is fed, and clean water is not fed separately. Clean water is only fed intermittently when needed.

[0039] The flushing valve 11 is connected to the front end of the drug delivery pump 3;

[0040] The drug delivery pump 3 is also equipped with a replenishment pipe 31, which is a flexible hose. The inlet of the replenishment pipe 31 is connected to an external drug tank. This allows the device to control the delivery of drugs through the replenishment pipe 31, and also makes it easy to change different drugs without switching systems. Simply place the inlet of the replenishment pipe 31 in the different drug tanks.

[0041] The drug delivery pump 3 is located at the front end of the drug delivery valve 23; the drug delivery valve 23 and the flow control valve 21 are electric valves. The drug delivery valve 23 can control the opening and delivery amount of the drug, and the flow control valve 21 can control both the delivery amount of the drug and the delivery amount of clean water. The operation is flexible and can be controlled individually for each breeding flock.

[0042] The back end of the main dosing pipe 2 is connected to multiple drug control branch valves 61, which are arranged in parallel with each other; the back end of each drug control branch valve 61 is connected to the drug delivery branch pipe 6.

[0043] Each drug control branch valve 61 is connected to a drug delivery branch pipe 6 at its rear end, and each clearing water branch pipe 13 and a drug control branch valve 61 are connected to the same drug delivery branch pipe 6 via a tee; so that the clearing water control valve 12 and the drug control branch valve 61 are connected in parallel, and drug and water feeding do not affect each other.

[0044] The chlorination pump 5 is also equipped with a chlorination pipe 51, which is a flexible hose connected to a solvent containing chloride ions. This design allows for convenient supply of chlorinated water to the chicken house to meet the water requirements for breeding, and the chlorination pump 5 also makes chlorination control more convenient in actual use.

[0045] Each medicine delivery branch pipe 6 is connected to a water line valve 72 at its rear end. The drinking water line 7 is a water pipe connected to the rear end of the water line valve 72.

[0046] The drinking line 7 is also equipped with a water line valve 72 and multiple pecking nozzles 71. The pecking nozzles 71 can be nipples for pecking water. Currently, farms use these nipples to give chickens water. The water line valve 72 is located at the front end of the multiple pecking nozzles 71.

[0047] A water collection trough 73 is installed directly below each pecking spout 71. The water collection trough 73 is a box with an open top. A hanging rod 74 is also installed on the side of the water collection trough 73. The water collection trough 73 is fixedly suspended below the drinking line 7, so as to collect the water droplets dripping from the pecking spout 71 and prevent the fine water droplets from falling on the chicken coop, thereby effectively preventing the chicken coop from becoming damp and moldy.

[0048] It should be noted that:

[0049] Breeding flocks generally need to be divided into different feeding cycles according to age: brooding period, growing period, and laying period. The same flock also needs to be composed of flocks of different age groups. That is, a flock of chickens in the same chicken house is composed of 4 or more small groups of different age groups. When raising them, multi-group classification feeding and management is required. For flocks of the same age, different dosages of medicine need to be fed for comparison, and different drugs need to be fed for comparison. For flocks of different age groups, different dosages and different types of medicine need to be compared with reference to obtain accurate drug feeding information for this type of chick. It is also necessary to set up a reference sample that only feeds water and does not give medicine. That is, for each flock of different age groups, at least four groups are needed for comparison and reference.

[0050] 1. Currently, during the broiler breeding and rearing period, the diverse needs of various chicken flocks necessitate manual feeding, which is difficult to control in terms of medication dosage. Furthermore, the feeding process for each type of chick is complex, requiring personnel to prepare medications and administer water according to set ratios, making operation challenging. This device, through the coordination of the main water supply pipe 1 and the main medication supply pipe 2, allows for the feeding of water, individual medication administration, and proportional mixing of different medications. The device's water control valve 12 and medication control branch valve 61 also allow for the separate administration of different substances to different chicken flocks. Water can be administered individually through the water control valve 12, while medication can be administered through the medication control branch valve 61. Additionally, the filter 4, drain pipe 41, and chlorination pump 5 on the main medication supply pipe 2 filter, purify, and chlorinate the delivered medications, making water feeding and delivery very convenient. This prevents unevenly dispersed large particles of medication or other impurities from flowing into the chicken house and effectively keeps the pecking nozzle 71 unobstructed.

[0051] In use, when clean water needs to be added, the flushing valve 11 and the dosing valve 23 are closed, and clean water flows out through the main clean water pipe 1, and then is sent to the drinking water line 7 through the clean water branch pipe 13. The flow rate of each clean water branch pipe 13 is controlled by the water control valve 12.

[0052] When medication is needed, the flushing valve 11 should still be closed, the dosing valve 23 should be opened, and the medication pump 3 should be turned on to deliver the medication into the meter 22. At the same time, the flow control valve 21 should be adjusted, and all the clear water control valves 12 should be closed. Finally, the medication delivery amount is controlled by the medication control branch valve 61, and the total amount of water and medication is controlled by the water line valve 72. The medication is fed through the drinking water line 7, and the filter 4 can filter the clear water during this period.

[0053] When it is necessary to flush the filter 4, open the flushing valve 11, close all the drug control branch valves 61, open the water valve on the drain pipe 41, and discharge the drugs and impurities through the drain pipe 41 until the water is clear. Then, open the drug control branch valve 61 to deliver clean water to the drinking water line 7 to clean the entire pipeline.

[0054] This device also includes a water trough 73, through which chicks can drink water through the pecking spout 71. Any water droplets accidentally dripping from the chicks will fall onto the water trough 73, preventing them from dripping onto the ground.

[0055] Under normal circumstances, no medication is needed, so medication pump 3 should not be turned on. Broilers should drink water with a mixture of clean water and chlorine preparation for a long time, so only chlorination pump 5 needs to be turned on.

[0056] During the medication period for a small group of chickens, the other groups of chickens drink clean water through the main water pipe 1. When medication is needed, the clean water control valve for this small group is turned off directly in the chicken house, and only the medicine is provided.

[0057] Conversely, most of the animals are fed water, while a small group is given medication through a medicine tube.

[0058] While specific embodiments of the present invention have been described above, those skilled in the art should understand that the specific embodiments described are merely illustrative and not intended to limit the scope of the present invention. Equivalent modifications and variations made by those skilled in the art in accordance with the spirit of the present invention should be covered within the scope of protection of the claims of the present invention.

Claims

1. A dedicated water line system for broiler breeder chickens, characterized in that, include: Main water supply pipe (1), main chemical supply pipe (2), chemical delivery pump (3), filter (4), chlorination pump (5), chemical delivery branch pipe (6), and drinking water line (7); The main water pipe (1) and the main chemical dosing pipe (2) are water pipes, and the inlets of the main water pipe (1) and the main chemical dosing pipe (2) are connected to external pure water. The main water supply pipe (1) and the main chemical supply pipe (2) are connected in parallel. The front ends of the main water supply pipe (1) and the main chemical supply pipe (2) are connected through a flushing valve (11), and the rear ends of the main water supply pipe (1) and the main chemical supply pipe (2) are not connected. Multiple water control valves (12) are connected in parallel at the rear end of the main water pipe (1), and each water control valve (12) is connected to a water pipe (13) at the rear end. The main dosing pipe (2) is connected in sequence from front to back to the following components: a dosing pump (3), a dosing valve (23), a meter (22), a flow control valve (21), a filter (4), a drain pipe (41), and a chlorination pump (5); a water valve is also installed on the drain pipe (41). The flushing valve (11) is connected to the front end of the drug delivery pump (3); The dosing main pipe (2) is connected to a plurality of drug control branch valves (61) at its rear end, and the plurality of drug control branch valves (61) are arranged in parallel with each other; the rear end of each drug control branch valve (61) is connected to a drug delivery branch pipe (6); Each of the aforementioned clean water pipes (13) and a drug control branch valve (61) is connected to the same drug delivery branch pipe (6) via a tee; Each of the drug delivery branch pipes (6) is connected to a water line valve (72) at its rear end. The drinking water line (7) is a water pipe and is connected to the rear end of the water line valve (72). The drinking water line (7) is also equipped with multiple water-pecking nozzles (71); A water receiving trough (73) is provided directly below each of the water-pecking nozzles (71), and the water receiving trough (73) is a box with an opening at the top.

2. A dedicated water line system for broiler breeder chickens as claimed in claim 1, wherein: The drug delivery pump (3) is also equipped with a drug replenishment pipe (31), which is a flexible hose, and the inlet of the drug replenishment pipe (31) is connected to an external drug tank.

3. A dedicated water line system for broiler breeder chickens as claimed in claim 1, wherein: The chlorination pump (5) is also equipped with a chlorination pipe (51), which is a flexible hose and is connected to a solvent containing chloride ions.

4. A dedicated water line system for broiler breeder chickens as claimed in claim 1, wherein: A hanging rod (74) is also provided on the side of the water receiving trough (73), and the water receiving trough (73) is fixedly suspended below the drinking water line (7).

5. A dedicated water line system for broiler breeder chickens as claimed in claim 1, wherein: The flushing valve (11), the dosing valve (23), and the flow control valve (21) are electric valves.