Water drinking device for laying duck breeding
By introducing water storage tanks, disinfection water tanks and filters into the egg-laying duck breeding equipment, and setting sensors and water outlet nozzles in the drinking troughs, the cleaning and pollution problems in traditional equipment are solved, efficient filtration and disinfection of drinking water are achieved, and the health and egg-laying performance of egg-laying ducks are improved.
Patent Information
- Application Number
- CN202422554119.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-22
AI Technical Summary
Traditional egg-laying duck farming drinking water systems have problems with cleanliness and hygiene. The drinking water is not disinfected and filtered, and the water tanks are easily contaminated, affecting the health and egg-laying performance of egg-laying ducks.
A drinking water device is designed, which includes a water storage tank, a disinfection water tank and a filter. The water tank is connected through pipes and a disinfection device is connected to the outside to ensure water filtration and disinfection. Sensors and water nozzles are set in the drinking trough to spray drinking water only when ducks approach.
Ensure clean and hygienic drinking water, reduce the risk of pathogens, extend the service life of equipment, prevent tank contamination, and improve the health and egg production performance of laying ducks.
Smart Images

Figure CN223298300U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of drinking water for laying duck breeding, and specifically relates to a drinking water device for laying duck breeding. Background Art
[0002] Drinking water management for laying ducks is a crucial component of the farming process. Drinking water quality is crucial, particularly in terms of cleanliness and hygiene. The water used by laying ducks must be clean and pollution-free. It must be free of harmful substances such as silt, rust, bacteria, viruses, and parasite eggs. For example, fecal contamination in water can lead to infections like E. coli and Salmonella in laying ducks, impacting their health and egg production. Traditional drinking troughs are a common drinking water system used in laying duck farming. These troughs are approximately 5-10 cm deep, thus requiring a certain depth and width. Analysis has revealed several shortcomings in traditional drinking water systems for laying ducks. Most drinking water used by laying ducks is unsterilized and unfiltered, leading to issues with cleanliness and hygiene, making it difficult to ensure that the water they drink meets farming requirements. Furthermore, traditional drinking troughs are common, long, and simple to construct, offering ducks access to water at any time. However, when the ducks are not drinking, a significant amount of water remains in the trough. This excess water, if left there for extended periods, can become contaminated, leading to potential health risks. This drinking water system inherently poses certain risks. Utility Model Content
[0003] Therefore, in order to solve the above-mentioned shortcomings, the present invention provides a drinking water device for laying duck farming. Therefore, the implementation of this solution can ensure that the drinking water used by laying ducks is filtered and disinfected, and its cleanliness and hygiene are fully guaranteed. On the other hand, the drinking trough described in the present invention has a circular trough body, the middle part of the trough body has a protrusion, and water nozzles are arranged around the protrusion. Sensors are arranged around the trough body. When the duck is close to the drinking trough, the sensor is sensed, and then the corresponding water nozzle sprays drinking water into the trough body. In this way, when the duck is not drinking water, there will not be much water left in the trough. That is, a certain amount of water will be sprayed only when the duck is close to the drinking trough, preventing the duck from drinking potentially contaminated water next time.
[0004] The utility model is achieved in this way: a drinking water device for laying duck farming is constructed, which is characterized in that: the device comprises a water storage tank and a disinfection water tank, the water storage tank and the disinfection water tank are connected by a pipeline, and a filter is added in the pipeline between the water storage tank and the disinfection water tank, the filter is used to filter impurities, mud, microorganisms, etc. in the water, protect the drinking water system from being blocked, and also provide relatively clean drinking water for ducks, thereby extending the service life of the drinking water equipment; the disinfection water tank is externally connected to a disinfection device, and the output end of the disinfection water tank is connected to different drinking troughs through pipelines, so that the disinfected water can be transported to different drinking troughs.
[0005] According to the drinking water device for laying duck farming described in the utility model, it is characterized in that the disinfection equipment is an ultraviolet disinfector and a chlorine-containing disinfectant delivery device, which can reduce pathogens in the water through disinfection and reduce the risk of ducks getting sick.
[0006] According to the utility model, a drinking water device for laying duck farming is characterized in that the water storage tank and the disinfection water tank are respectively plastic boxes or stainless steel boxes, which can prevent rust from affecting their use.
[0007] A drinking water device for laying duck farming is characterized in that: the device comprises a water storage tank and a disinfection water tank, the water storage tank and the disinfection water tank are connected by a pipeline, and a filter is added in the pipeline between the water storage tank and the disinfection water tank, the filter is used to filter impurities, mud, microorganisms, etc. in the water, protect the drinking water system from being blocked, and also provide relatively clean drinking water for the ducks, thereby extending the service life of the drinking water equipment; the disinfection water tank is externally connected to a disinfection device, and the output end of the disinfection water tank is connected to different drinking troughs through pipelines, so that the disinfected water can be transported to different drinking troughs, the drinking trough has a circular trough body, the middle part of the trough body has a protrusion, water outlet nozzles are arranged around the protrusion, and sensors are arranged around the trough body. When the duck is close to the drinking trough, the sensor is sensed, and then the corresponding water outlet nozzle sprays drinking water into the trough body.
[0008] According to the utility model, a drinking water device for laying duck farming is characterized in that a group of control units for controlling water output are respectively provided on the pipelines connected to different drinking troughs.
[0009] According to the drinking water device for laying duck farming described in the utility model, it is characterized in that the disinfection equipment is an ultraviolet disinfector and a chlorine-containing disinfectant delivery device, which can reduce pathogens in the water through disinfection and reduce the risk of ducks getting sick.
[0010] According to the utility model, a drinking water device for laying duck farming is characterized in that the water storage tank and the disinfection water tank are respectively plastic boxes or stainless steel boxes, which can prevent rust from affecting their use.
[0011] The present invention has the following advantages: The present invention provides a drinking water device for laying ducks, which comprises a water storage tank and a disinfecting water tank. The water storage tank and the disinfecting water tank are connected by a pipeline, and a filter is added to the pipeline between the water storage tank and the disinfecting water tank. The filter is used to filter impurities, sediment, microorganisms, etc. in the water, protecting the drinking water system from blockage, while also providing relatively clean drinking water for the ducks and extending the service life of the drinking water equipment. The disinfecting water tank is externally connected to a disinfecting device, and the output end of the disinfecting water tank is connected to different drinking troughs through pipelines, which can transport the disinfected water to different drinking troughs. Therefore, the implementation of this solution can ensure that the drinking water used by laying ducks is filtered and disinfected, and its cleanliness and hygiene are completely guaranteed.
[0012] On the other hand, the drinking trough described in the present invention has a circular trough body with a protrusion in the middle of the trough body, water nozzles are arranged around the protrusion, and sensors are arranged around the trough body. When the duck is close to the drinking trough, the sensor is sensed, and then the corresponding water nozzle sprays drinking water into the trough body. In this way, when the duck is not drinking water, there will not be much water left in the trough, that is, a certain amount of water will be sprayed only when the duck is close to the drinking trough, preventing the duck from drinking potentially contaminated water next time. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a structural diagram of Example 1 of the present application;
[0014] Figure 2 This is a structural diagram of Example 2 of the present application. DETAILED DESCRIPTION
[0015] The following will be combined with the Figure 1-Figure 2 This utility model is described in detail, and the technical solutions in the embodiments of this utility model are clearly and completely described. Obviously, the embodiments described are only some of the embodiments of this utility model, not all of them. Based on the embodiments of this utility model, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this utility model.
[0016] Example 1, the utility model provides a drinking water device for laying duck farming, such as Figure 1As shown, it can be implemented as follows: the device comprises a water storage tank 1 and a disinfection water tank 2 (water pumps can be provided in each of the water storage tank 1 and the disinfection water tank 2 for outputting water). The water storage tank 1 and the disinfection water tank 2 are connected by a pipeline, and a filter 3 is added to the pipeline between the water storage tank 1 and the disinfection water tank 2. The filter 3 is used to filter impurities, sediment, microorganisms, etc. in the water, protecting the drinking water system from blockage, while also providing relatively clean drinking water for the ducks and extending the service life of the drinking water equipment. The disinfection water tank 2 is externally connected to a disinfection device 4, and the output end of the disinfection water tank 2 is connected to different drinking troughs 5 via pipelines, which can transport the disinfected water to different drinking troughs 5. Therefore, the implementation of this solution can ensure that the drinking water used by laying ducks is filtered and disinfected, and its cleanliness and hygiene are completely guaranteed.
[0017] It should be noted that when implementing Example 1, the disinfection equipment 4 can be an ultraviolet disinfector or a chlorine-containing disinfectant delivery device. Disinfection can reduce pathogens in the water and reduce the risk of ducks getting sick.
[0018] It should be noted that when implementing Example 1, the water storage tank 1 and the disinfection water tank 2 are respectively plastic boxes or stainless steel boxes, which can prevent rust from affecting their use.
[0019] Example 2, the utility model provides a drinking water device for laying duck farming, such as Figure 2 As shown, the device comprises a water storage tank 1 and a disinfection water tank 2, the water storage tank 1 and the disinfection water tank 2 are connected by a pipeline, and a filter 3 is added in the pipeline between the water storage tank 1 and the disinfection water tank 2, the filter 3 is used to filter impurities, sediment, microorganisms, etc. in the water, protect the drinking water system from being blocked, and also provide relatively clean drinking water for ducks, extending the service life of the drinking water equipment; the disinfection water tank 2 is externally connected to a disinfection device 4, and the output end of the disinfection water tank 2 is connected to different drinking troughs 5 through pipelines, which can transport the disinfected water to different drinking troughs 5, the drinking trough 5 has a circular trough body 5-1, a protrusion 5-2 is provided in the middle of the trough body 5-1, water nozzles 5-3 are arranged around the protrusion 5-2, and sensors 5-4 are arranged around the trough body 5-1. When the duck is close to the drinking trough 5, the sensor 5-4 is sensed, and then the corresponding water nozzle 5-3 sprays drinking water to the trough body 5-1. In this way, when the duck is not drinking water, there will not be much water left in the trough, that is, a certain amount of water will be sprayed only when the duck is close to the drinking trough 5, preventing the duck from drinking potentially contaminated water next time.
[0020] It should be noted that when implementing Example 2, a group of control units 6 for controlling water output are respectively provided on the pipelines connected to different drinking troughs 5. Control of the control units 6 can achieve the purpose of opening and closing the corresponding pipelines.
[0021] It should be noted that when implementing Example 2, the disinfection equipment 4 is an ultraviolet disinfector and a chlorine-containing disinfectant delivery device, which can reduce pathogens in the water and reduce the risk of ducks getting sick through disinfection.
[0022] It should be noted that when implementing Example 2, the water storage tank 1 and the disinfection water tank 2 are respectively plastic boxes or stainless steel boxes, which can prevent rust from affecting their use.
[0023] The above description of the disclosed embodiments will enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A drinking water device for laying duck farming, characterized in that; The device comprises a water storage tank (1) and a disinfection water tank (2), wherein the water storage tank (1) and the disinfection water tank (2) are connected via a pipeline, and a filter (3) is added to the pipeline between the water storage tank (1) and the disinfection water tank (2), and the filter (3) is used to filter impurities, sediment, and microorganisms in the water; the disinfection water tank (2) is externally connected to a disinfection device (4), and the output end of the disinfection water tank (2) is connected to different drinking troughs (5) via pipelines, so that the disinfected water can be transported to the different drinking troughs (5).
2. A drinking water device for laying duck farming according to claim 1, characterized in that; The disinfection equipment (4) is an ultraviolet disinfector and a chlorine-containing disinfectant delivery device, which can reduce pathogens in the water and reduce the risk of ducks getting sick through disinfection.
3. The drinking water device for laying duck farming according to claim 1, characterized in that: The water storage tank (1) and the disinfection water tank (2) are respectively plastic boxes or stainless steel boxes, which can prevent rust from affecting their use.
4. A drinking water device for laying duck farming, characterized in that: The device comprises a water storage tank (1) and a disinfection water tank (2), wherein the water storage tank (1) and the disinfection water tank (2) are connected via a pipeline, and a filter (3) is added to the pipeline between the water storage tank (1) and the disinfection water tank (2), and the filter (3) is used to filter impurities, sediment, and microorganisms in the water; the disinfection water tank (2) is externally connected to a disinfection device (4), and the output end of the disinfection water tank (2) is connected to different drinking troughs (5) via pipelines, so that the disinfected water can be The water is transported to different drinking troughs (5), wherein the drinking trough (5) has a circular trough body (5-1), a protrusion (5-2) is provided in the middle of the trough body (5-1), water outlet nozzles (5-3) are arranged around the protrusion (5-2), and sensors (5-4) are arranged around the trough body (5-1). When the duck is close to the drinking trough (5), the sensor (5-4) is sensed, and then the corresponding water outlet nozzle (5-3) sprays drinking water into the trough body (5-1).
5. The drinking water device for laying duck farming according to claim 4, characterized in that: A group of control units (6) for controlling water output is respectively provided on the pipelines communicating with different drinking troughs (5).
6. A drinking water device for laying duck farming according to claim 4, characterized in that: The disinfection equipment (4) is an ultraviolet disinfector and a chlorine-containing disinfectant delivery device, which can reduce pathogens in the water and reduce the risk of ducks getting sick through disinfection.
7. The drinking water device for laying duck farming according to claim 4, characterized in that: The water storage tank (1) and the disinfection water tank (2) are respectively plastic boxes or stainless steel boxes, which can prevent rust from affecting their use.