Low-carbon integrated intelligent temperature control breeding module
By using a low-carbon integrated intelligent temperature-controlled breeding module, which utilizes a photovoltaic roof system and self-fermenting bedding to treat manure, the problem of low manure cleaning efficiency in poultry farming has been solved, achieving efficient cleaning and recycling, and ensuring the hygiene and environmental friendliness of the breeding environment.
Patent Information
- Application Number
- CN202511062142.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-31
- Publication Date
- 2025-11-14
AI Technical Summary
Current poultry farming practices suffer from low efficiency in manure removal and a high risk of disease transmission. Existing slatted floor methods still have limitations, hindering efficient cleaning and recycling.
The system adopts a low-carbon integrated intelligent temperature-controlled breeding module, including a photovoltaic roof system, a slatted floor, self-fermenting bedding, a turning system, and a sprinkler system. The slatted floor allows manure to fall onto the self-fermenting bedding, where the turning system mixes and ferments it into organic fertilizer. The sprinkler system cleans up the manure, and the photovoltaic roof provides electricity to support the operation of the equipment.
It achieves efficient manure cleaning and recycling, ensures a hygienic breeding environment, reduces the risk of disease transmission, and has low-carbon and environmentally friendly characteristics.
Smart Images

Figure CN120937779A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of poultry farming technology, and in particular to a low-carbon integrated intelligent temperature-controlled farming module. Background Technology
[0002] Poultry farming refers to the artificial breeding and management of poultry such as chickens, ducks, and geese for the production of meat, eggs, and feathers. Current large-scale farming technologies typically utilize standardized sheds and automated feeding and watering systems, offering advantages such as large stocking capacities and high efficiency. However, a crucial issue is ensuring a hygienic environment within the sheds to reduce the risk of disease transmission; timely cleaning and disposal of poultry manure is paramount. Currently, there are two main methods for cleaning poultry manure: one is to remove the poultry from the shed before cleaning and disposal, but this method is extremely inefficient; the other is to construct a slatted floor at a certain height above the ground, with a fence built on top to form a pens for the poultry. While this method avoids the need to herd the poultry in and out, some manure still remains on the slatted floor, potentially leading to disease transmission. Summary of the Invention
[0003] In order to overcome the shortcomings of the existing technology, the purpose of this invention is to provide a low-carbon integrated intelligent temperature-controlled breeding module that can efficiently complete the cleaning and recycling of manure, ensure the hygiene of the breeding environment, and has the advantages of low carbon and environmental protection.
[0004] The objective of this invention is achieved through the following technical solution: A low-carbon integrated intelligent temperature-controlled aquaculture module includes a breeding shed, a sprinkler system, self-fermenting bedding material, and a turning system. The breeding shed includes a shed frame and a photovoltaic roof system and a slatted floor installed on the shed frame. The photovoltaic roof system is located at the top of the shed frame, and the slatted floor is located below the photovoltaic roof system and suspended off the ground. The self-fermenting bedding material is placed on the ground and below the slatted floor. The turning system is located on the ground and is used to turn the self-fermenting bedding material and manure. The sprinkler system includes sprinkler heads installed inside the breeding shed, and the sprinkler heads are used to clean the manure.
[0005] Furthermore, the manure slatted floor is equipped with shed partitions.
[0006] Furthermore, the low-carbon integrated intelligent temperature-controlled breeding module also includes a three-dimensional planting system, which is located below or next to the breeding shed.
[0007] Furthermore, the low-carbon integrated intelligent temperature-controlled aquaculture module also includes an automatic water supply system and an automatic feeding system. The automatic water supply system includes a water trough installed in the aquaculture shed, and the automatic feeding system includes a feeding tray installed in the aquaculture shed.
[0008] Furthermore, the spray system also includes spray nozzles installed inside the breeding shed, which are used for cooling.
[0009] Furthermore, the low-carbon integrated intelligent temperature-controlled breeding module also includes a lighting and heating system and a windproof and heat-preserving system. The lighting and heating system includes lighting lamps and heating lamps installed inside the breeding shed. The windproof and heat-preserving system is located on the side of the breeding shed and is used to ventilate or isolate the interior of the breeding shed from the external environment. Temperature sensors are also installed inside the breeding shed.
[0010] Furthermore, the windproof and heat-preserving system is an electrically operated lifting curtain.
[0011] Furthermore, the breeding shed is also equipped with fans and air purifiers.
[0012] Furthermore, air quality sensors are also installed inside the breeding sheds.
[0013] Furthermore, a wind speed sensor is installed on the exterior of the breeding shed.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: The low-carbon integrated intelligent temperature-controlled breeding module provided by this invention can clean poultry manure through a spray system. The poultry manure falls onto the self-fermenting bedding material under its own weight and water flow. The turning and turning system turns the self-fermenting bedding material and manure together to achieve uniform mixing. The manure is then fermented through the bedding material to produce organic fertilizer. In addition, the photovoltaic roof system can convert solar energy into electrical energy to provide power for the power-consuming equipment of the breeding module.
[0015] As can be seen from the above, the low-carbon integrated intelligent temperature-controlled breeding module can efficiently complete the cleaning and recycling of manure, ensuring the hygiene of the breeding environment, and has the advantages of being low-carbon and environmentally friendly. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of the low-carbon integrated intelligent temperature-controlled aquaculture module according to an embodiment of the present invention (part of the roof structure is omitted for ease of illustration). Figure 2 The structural diagram of the low-carbon integrated intelligent temperature-controlled aquaculture module of this invention omits the roof of one of the sheds. Figure 3The structural diagram of one of the breeding sheds is omitted in the low-carbon integrated intelligent temperature-controlled breeding module of this embodiment of the invention. Figure 4 This is an exploded view of a portion of the structure of the low-carbon integrated intelligent temperature-controlled aquaculture module according to an embodiment of the present invention.
[0017] In the diagram: 1. Automatic feeding system; 2. Sprinkler system; 3. Automatic water supply system; 4. Photovoltaic roof system; 5. Vertical planting system; 6. Lighting and heating system; 7. Turning and turning system; 8. Fan; 9. Shed frame; 10. Windproof and heat preservation system; 11. Self-fermenting bedding material; 12. Slatted floor. Detailed Implementation
[0018] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0019] refer to Figures 1-4 This invention provides a low-carbon integrated intelligent temperature-controlled breeding module. The module includes a breeding shed, a sprinkler system 2, self-fermenting bedding material 11, and a turning system 7. The breeding shed includes a shed frame 9, a photovoltaic roof system 4, and a slatted floor 12 installed on the frame 9. The photovoltaic roof system 4 is located at the top of the frame 9, and the slatted floor 12 is below it and suspended off the ground. The self-fermenting bedding material 11 is placed on the ground below the slatted floor 12 and is used to collect poultry manure falling from it. The turning system 7 is located on the ground and is used to turn the self-fermenting bedding material and manure. Typically, the turning system 7 includes a moving track, a turning machine that travels along the track, and a drive motor to move the turning machine. The sprinkler system 2 includes sprinkler heads installed inside the poultry shed for cleaning manure. The interior of the poultry shed refers to the poultry farming space above the slatted floor 12 and below the photovoltaic roof system 4. The sprinkler system 2 also obviously includes water pipes connected to the sprinkler heads and extending outside the shed to connect to water tanks, water pumps, etc. To facilitate poultry management, several shed partitions can be installed on the slatted floor 12 to form rows of poultry pens.
[0020] The low-carbon integrated intelligent temperature-controlled breeding module of this invention also includes a three-dimensional planting system 5, which is located below or next to the breeding shed. Organic fertilizer made from bedding and manure fermentation can be used in the three-dimensional planting system 5, specifically for planting grass or vegetables.
[0021] The low-carbon integrated intelligent temperature-controlled breeding module of this invention also includes an automatic water supply system 3 and an automatic feeding system 1. The automatic water supply system 3 includes a water trough installed inside the breeding shed for poultry to drink and play. The automatic water supply system 3 also includes water pipes that can extend outside the shed to connect with water tanks, water pumps, etc. The automatic feeding system 1 includes a feeding tray installed inside the breeding shed. The automatic feeding system 1 may also include a feed conveying pipe, a feed pump, and a feed tank, etc. The feed tank is connected to the feeding tray via the feed conveying pipe and the feed pump.
[0022] In the low-carbon integrated intelligent temperature-controlled aquaculture module of this invention, the spray system 2 further includes spray nozzles installed inside the aquaculture shed. These spray nozzles are used for cooling. The spray nozzles perform spraying operations, similar to rain, to clean up manure; the spray nozzles also spray water mist to achieve a cooling effect.
[0023] The low-carbon integrated intelligent temperature-controlled aquaculture module of this invention also includes a lighting and heating system 6 and a windproof and heat-insulating system 10. The lighting and heating system 6 includes lighting and heating lamps installed inside the aquaculture shed, while the windproof and heat-insulating system 10 is located on the side of the aquaculture shed and is used to ventilate or isolate the interior of the shed from the external environment. A temperature sensor is also installed inside the aquaculture shed. Specifically, the windproof and heat-insulating system 10 can be an electrically operated lifting curtain; raising the curtain allows ventilation between the aquaculture shed and the external environment, while lowering the curtain isolates the aquaculture shed from the external environment, thus providing wind protection and heat insulation.
[0024] In the low-carbon integrated intelligent temperature-controlled breeding module of this invention embodiment, a fan 8, an air purifier and an air quality sensor are also installed inside the breeding shed; a wind speed sensor is installed outside the breeding shed.
[0025] The working principle of the low-carbon integrated intelligent temperature-controlled aquaculture module in this embodiment of the invention is as follows: 1) Photovoltaic rooftop systems can convert solar energy into electricity, which can power electrical equipment such as lighting and heating systems, fans, and air purifiers.
[0026] 2) This invention can clean poultry manure by spraying through a spraying system. The poultry manure falls onto the self-fermenting bedding material under its own weight and the action of water flow. The turning and turning system turns the self-fermenting bedding material and manure together to achieve uniform mixing of the bedding material and manure. The manure is processed by fermenting the bedding material to produce organic fertilizer, which can be used in a three-dimensional planting system.
[0027] 3) The present invention can monitor the wind speed of the external environment through a wind speed sensor. When the wind speed is greater than the preset threshold, the windproof and heat preservation system (i.e., lowering the curtain) plays a role in isolating the interior of the breeding shed from the external environment, thereby achieving the windproof function and preventing feed, manure or even poultry from flying out of the shed due to excessive wind force.
[0028] 4) This invention monitors the temperature inside the shed using a temperature sensor. When the temperature exceeds a preset threshold, the fan is activated for ventilation, and the sprinkler system sprays mist (the curtain should be raised at this time). The combined action of the fan and sprinkler system rapidly cools the environment, ensuring a comfortable breeding environment. When the temperature falls below another preset threshold, the windproof and heat-preserving system (i.e., lowering the curtain) isolates the interior of the shed from the external environment, while the heating lamps provide heat to maintain a comfortable breeding environment.
[0029] 5) This invention can monitor the air quality inside the shed through an air quality sensor. When the air quality exceeds the preset threshold (i.e., when the air quality is poor to a certain extent), the windproof and heat-preserving system (i.e., lowering the curtain) will isolate the interior of the breeding shed from the external environment and start the fan and air purifier to purify the air.
[0030] The above embodiments are merely preferred embodiments of the present invention and should not be construed as limiting the scope of protection of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention shall fall within the scope of protection claimed by the present invention.
Claims
1. A low-carbon integrated intelligent temperature-controlled aquaculture module, characterized in that, The system includes a breeding shed, a sprinkler system, self-fermenting bedding, and a turning system. The breeding shed includes a shed frame, a photovoltaic roof system, and a slatted floor installed on the shed frame. The photovoltaic roof system is located at the top of the shed frame, and the slatted floor is located below the photovoltaic roof system and suspended off the ground. The self-fermenting bedding is placed on the ground and below the slatted floor. The turning system is located on the ground and is used to turn the self-fermenting bedding and manure. The sprinkler system includes sprinkler heads installed inside the breeding shed, and the sprinkler heads are used to clean the manure.
2. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 1, characterized in that, The manure slatted floor is equipped with shed partitions.
3. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 1, characterized in that, The low-carbon integrated intelligent temperature-controlled aquaculture module also includes a three-dimensional planting system, which is located below or next to the aquaculture shed.
4. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 1, characterized in that, The low-carbon integrated intelligent temperature-controlled aquaculture module also includes an automatic water supply system and an automatic feeding system. The automatic water supply system includes a water trough installed in the aquaculture shed, and the automatic feeding system includes a feeding tray installed in the aquaculture shed.
5. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 1, characterized in that, The spray system also includes spray nozzles installed inside the breeding shed, which are used for cooling.
6. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 5, characterized in that, The low-carbon integrated intelligent temperature-controlled breeding module also includes a lighting and heating system and a windproof and heat-preserving system. The lighting and heating system includes lighting lamps and heating lamps installed in the breeding shed. The windproof and heat-preserving system is located on the side of the breeding shed and is used to ventilate or isolate the interior of the breeding shed from the external environment. Temperature sensors are also installed in the breeding shed.
7. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 6, characterized in that, The windproof and heat-insulating system is an electrically operated lifting curtain.
8. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 6, characterized in that, The breeding sheds are also equipped with fans and air purifiers.
9. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 8, characterized in that, Air quality sensors are also installed inside the breeding sheds.
10. The low-carbon integrated intelligent temperature-controlled aquaculture module as described in claim 6, characterized in that, The exterior of the breeding shed is equipped with a wind speed sensor.
Citation Information
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