Lamb house based on solar energy

By using solar collectors for heating and water supply in lamb sheds, and combining them with light and temperature sensors for intelligent control, the high cost and environmental pollution problems of traditional lamb sheds have been solved. This has enabled efficient energy utilization and environmental regulation, promoting the healthy growth of lambs and improving breeding efficiency.

CN223844609UActive Publication Date: 2026-01-30CHENGDE ACAD OF AGRI & FORESTRY
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Patent Information

Application Number
CN202520424551.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-01-30
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

Traditional lamb sheds rely on electric heating, which increases operating costs and pollutes the environment. They also have low solar energy utilization rates and lack intelligent environmental control, which affects lamb growth and health and increases labor intensity.

Method used

Solar collectors are used for heating and water supply, while light and temperature sensors are used for intelligent control. Temperature and light data are fed back through display devices to adjust the lamb pen environment.

Benefits of technology

It improved the utilization rate of solar energy, reduced labor intensity, ensured the growth and health of lambs, and improved breeding efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223844609U_ABST
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Abstract

The utility model discloses a lamb house based on solar energy, which comprises an enclosing wall which enables the periphery of the lamb house to be closed, the top of a north wall is connected with a shed roof, the shed roof is connected with a south wall through a plurality of frameworks, a solar heat collector is arranged on the outer side of the shed roof, at least two columns of house bodies are arranged in the lamb house, and each column of house body comprises at least two house fences. A water trough and a feed trough are hung on each shed fence, a plurality of heating radiators communicated in sequence are arranged on the north wall, a roller shutter is arranged at one end, close to the framework, of the shed roof, and a light sensor and a temperature sensor are arranged in the lamb shed. According to the lamb house, heat energy generated by solar energy can be supplied to the interior of the lamb house for heating, meanwhile, hot water generated by the solar energy is supplied to the interior of the lamb house through the drinking trough, and the energy utilization rate of the solar energy is increased; the illumination and the temperature in the lamb house are fed back to display equipment of workers, and the workers effectively control the temperature and the illumination of the lamb house.
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Description

TECHNICAL FIELD

[0001] The utility model relates to sheep feeding facilities field, especially, it is a lamb house based on solar energy. BACKGROUND

[0002] Traditional lamb houses mostly rely on electricity for heating, which not only increases operating costs, but also may cause environmental pollution. With the energy crisis and the strengthening of environmental protection awareness, people began to explore the use of renewable energy to improve the lamb house. Solar energy, as a clean and renewable energy source, is very suitable for heating and water heating in lamb houses.

[0003] However, the existing lamb house although utilizes solar energy to a certain extent, but generally has the following problems. First, only the heat energy generated by solar energy is supplied to the lamb house for heating, so that the energy utilization rate of solar energy is low; second, lack of intelligent management, the internal environment of the lamb house is not balanced, that is, there is a lack of effective temperature and light control in the lamb house, which affects the growth and health of lambs, increases labor intensity and reduces breeding efficiency. SUMMARY

[0004] The utility model aims at providing a lamb house based on solar energy, which can supply the heat energy generated by solar energy to the interior of the lamb house for heating, and supply hot water generated by solar energy to the lamb house through a drinking trough, thereby improving the energy utilization rate of solar energy. In addition, light sensors and temperature sensors are arranged to feed the light and temperature in the lamb house to the display device of the staff, so that the staff can effectively control the temperature and light in the lamb house, thereby reducing labor intensity, ensuring the growth and health of lambs and improving breeding efficiency.

[0005] To achieve the above-mentioned purpose, the utility model provides the following scheme:

[0006] The utility model provides a kind of based on solar energy's lamb shed, including enclosure, the enclosure includes south wall, north wall and two side walls, south wall, north wall and two side walls are sequentially head-to-tail connection so that the periphery of lamb shed is closed, the top of north wall is connected with a shed roof, the shed roof is connected with the south wall by several frameworks, several frameworks are sequentially side by side along the wall body direction of south wall, the outside of the shed roof is equipped with solar collector, at least two rows of pens are equipped in the lamb shed, movable passageway is equipped between two rows of pens, each row of pens includes at least two pens, drinking trough and trough are hung on each pen, the drinking trough is connected with the solar collector, several sequentially intercommunicating radiators are equipped on the north wall, the inlet end of the radiator is connected with the solar collector, the side of the shed roof close to the framework is equipped with roller shutter, the roller shutter can be rolled up or put down, when the roller shutter is put down, the framework can be covered, light sensor and temperature sensor are equipped in the lamb shed, the light sensor and temperature sensor are connected with external display device respectively.

[0007] Preferably, the height of the south wall is less than the height of the north wall, and the height of the south wall is 1.2-1.4 meters.

[0008] Preferably, the north wall is connected with the pen close to the north wall, so that the north wall forms one side of the pen close to the north wall, and a space is arranged between the south wall and the pen close to the south wall to form a first playground of the lamb shed.

[0009] Preferably, one of the side walls is connected with one end of the pen, so that the side wall forms one side of the pen, and a space is arranged between the other side wall and the other side of the pen to form a second playground of the lamb shed, the second playground is connected with the first playground, and a pen door is arranged on at least one of the side walls.

[0010] Preferably, the frameworks are uniformly arranged between the shed roof and the south wall.

[0011] Preferably, a scale is arranged on the drinking trough, the drinking trough is connected with a drinking trough thermometer, and the drinking trough thermometer is used to display the water temperature in the drinking trough.

[0012] Preferably, the height of the radiator is greater than 1.2 meters from the bottom surface of the north wall, and a plurality of windows are arranged above the radiators on the north wall.

[0013] Preferably, the light sensor and the temperature sensor are fixedly connected to the inner wall of the shed roof.

[0014] Preferably, the lamb shed is further provided with a lighting device.

[0015] Preferably, the roller shutter is made of waterproof and heat-insulating material.

[0016] The utility model discloses relative to prior art has obtained following beneficial technical effect:

[0017] 1. The utility model provides a based on solar energy's lamb house, the outside of shed roof is equipped with solar energy collector, is equipped with at least two rows of the lamb house in the lamb house, and each row of lamb house includes at least two lamb pens, and each lamb pen is hung with water trough and trough, and a plurality of water troughs are connected with solar energy collector, and a plurality of radiators that are sequentially connected are arranged on the north wall, and the inlet end of radiator is connected with solar energy collector, and solar energy collector converts solar energy into electric energy, and then heats the stored water through the heater to produce hot water, and the hot water is transported to the radiator through the pipeline, circulates in the radiator and releases heat to heat the lamb house, ensures the temperature in the lamb house, and the hot water is also transported to the water trough through the pipeline, and the water trough is connected with the water trough thermometer, and the water trough thermometer is used to display the water temperature in the water trough, ensures the water temperature of the lamb, and ensures the safety of the drinking water of the lamb and the healthy growth.

[0018] 2. The utility model provides a based on solar energy's lamb house, and the lamb house is equipped with light sensor and temperature sensor, and light sensor and temperature sensor are fixedly connected on the inner wall of shed roof respectively, and light sensor and temperature sensor are connected with the outside display device respectively. Light sensor is used for monitoring the illumination in the lamb house and feeds back the illumination value to the outside display device, and temperature sensor is used for monitoring the temperature in the lamb house and feeds back the temperature value to the outside display device, and the staff can control the illumination and temperature in the lamb house according to the value on the outside display device, when the illumination in the lamb house is greater than the required illumination, can close the lighting device to save energy, when the illumination is less than the required illumination, can open the lighting device to increase the illumination. When the temperature in the lamb house is greater than the required temperature, can roll up the roller blind, makes the lamb house ventilation and heat dissipation, when the temperature in the lamb house is less than the required temperature, can put down the roller blind, makes the lamb house heat preservation, through the setting, makes the staff effectively temperature and illumination control to the lamb house, reduces the labor intensity, guarantees the growth and health of the lamb, improves the breeding efficiency. ACCURACY

[0019] Fig. 1 It is the structure schematic view of the based on solar energy's lamb house in the utility model;

[0020] Fig. 2 It is another angle structure schematic view of the based on solar energy's lamb house in the utility model;

[0021] Fig. 3 It is still another angle structure schematic view of the based on solar energy's lamb house in the utility model;

[0022] In the figure: 1 - south wall, 2 - north wall, 3 - shed roof, 4 - skeleton, 5 - solar collector, 6 - drinking trough, 7 - radiator, 8 - roller shutter, 9 - lighting device, 10 - light sensor, 11 - temperature sensor, 12 - trough, 13 - stall, 14 - stall fence, 15 - movable passage, 16 - first playground, 17 - second playground, 18 - stall door, 19 - window, 20 - first side wall, 21 - second side wall. DETAILED DESCRIPTION

[0023] The utility model provides a kind of based on solar energy's lamb shed, sit north to south, as Figs. 1-3As shown, it comprises a fence, the fence comprises a south wall 1, a north wall 2, a first side wall 20 and a second side wall 21, the south wall 1 and the north wall 2 are arranged in parallel, and the south wall 1, the north wall 2, the first side wall 20 and the second side wall 21 are sequentially connected end to end to enclose the perimeter of the lamb house, so that the lamb can be enclosed in the lamb house and freely move in the lamb house. The top of the north wall 2 is connected to a roof 3, which adopts a steel frame structure to increase the structural stability of the lamb house, and the roof 3 is connected to the south wall 1 through a plurality of frames 4, which are arranged in parallel along the wall body direction of the south wall 1 and uniformly arranged between the roof 3 and the south wall 1. The height of the south wall 1 is less than the height of the north wall 2, and by arranging the roof 3, more sunlight can be allowed to enter the lamb house, which can ensure the temperature in the lamb house in cold winter days. The roof is also provided with a flow guide groove (not shown) to guide rainwater and the like to the outside of the lamb house, thereby ensuring the humidity of the lamb house. The height of the south wall 1 is 1.2-1.4 meters, which prevents the lamb from damaging the frame 4 and ensures the service life of the frame 4. The outer side of the roof 3 is provided with a solar heat collector 5, and the lamb house is provided with at least two rows of pens 13, and a movable passage 15 is arranged between the two rows of pens 13 to provide a working space for the staff. Each row of pens 13 comprises at least two pens 14, and in addition, the pens 13 can be suspended to facilitate cleaning of the excrement of the lambs, maintain the cleanliness and hygiene of the lamb house, and reduce the occurrence of diseases of the lambs. In this embodiment, the lamb house is provided with two rows of pens 13, and each row of pens 13 comprises three pens 14. The height of the fence on the pen is 1.2-1.5 m, and the number of pens 13 and pens 14 can be appropriately determined according to the breeding requirements. A water trough 6 and a feeding trough are hung on each pen 14, and the hanging height of the water trough 6 and the feeding trough conforms to the height of the lamb, so that the lamb can more conveniently drink water and eat. The north wall is connected to the pen 13 close to the north wall, so that the north wall forms a side of the pen 13 close to the north wall, thereby reducing the use of fences for the pen 13 and saving costs. A space is arranged between the south wall and the pen 13 close to the south wall to form a first playground 16 of the lamb house, the first side wall 20 is connected to one end of the pen 13, so that the first side wall 20 forms a side of the pen 13, which also saves costs, and a space is arranged between the second side wall 21 and the other side of the pen 13 to form a second playground 17 of the lamb house, the second playground 17 communicates with the first playground 16. By arranging the first playground 16 and the second playground 17, the activity space of the lamb is ensured, and the growth of the lamb is promoted. A gate 18 is arranged on the second side wall 21 for the staff to enter and exit. A plurality of windows 19 are arranged above the heating radiators on the north wall to promote air circulation and achieve the function of ventilation.

[0024] The drinking trough 6 is connected with the solar collector 5, and a plurality of radiators 7 are arranged on the north wall 2 and are connected in sequence. The inlet end of the radiator 7 is connected with the solar collector 5. The solar collector 5 converts solar energy into electric energy, and then heats the stored water through a heater to generate hot water. The hot water is delivered to the radiator 7 through a pipeline, circulates in the radiator 7, and releases heat to heat the lamb shed and ensure the temperature in the lamb shed. At the same time, the hot water is also delivered to the drinking trough 6 through the pipeline. The drinking trough 6 is connected with a drinking trough thermometer (not shown). The drinking trough thermometer is used to display the water temperature in the drinking trough 6, so as to ensure the water temperature fed to the lambs and ensure the safety of the drinking water of the lambs and the healthy growth of the lambs. The drinking trough 6 is provided with a scale (not shown). When the lambs are dosed, the staff can more conveniently determine the volume of the feeding water according to the scale on the drinking trough 6, so that the operation is more convenient. The height of the radiator 7 is greater than 1.2 meters from the bottom surface of the north wall 2, which prevents the lambs from damaging the radiator 7 and avoids the risk of the radiator 7 being close to the lambs and scalding the lambs. One end of the roof 3 close to the framework 4 is provided with a roller shutter 8. The roller shutter 8 can be rolled up or down. When the roller shutter 8 is down, it can cover the framework 4. In cold weather in winter, the roller shutter 8 can be down to ensure the temperature in the lamb shed. In warm weather, the roller shutter 8 can be rolled up to allow sunlight to enter the lamb shed, and at the same time, it can play a role in ventilation and heat dissipation, so as to ensure that the temperature in the lamb shed is between 20℃ and 25℃. The roller shutter 8 is made of waterproof and heat preservation material, so that the lamb shed can avoid being damp in rainy weather, which increases the humidity in the lamb shed and affects the growth and health of the lambs. The lamb shed is also provided with a lighting device 9 to provide lighting for the lamb shed. The lamb shed is also provided with a light sensor 10 and a temperature sensor 11. The light sensor 10 and the temperature sensor 11 are respectively fixedly connected to the inner wall of the roof 3. The light sensor 10 and the temperature sensor 11 are respectively connected with external display equipment (not shown). The light sensor 10 is used to monitor the illumination in the lamb shed and feed the illumination value to the external display equipment. The temperature sensor 11 is used to monitor the temperature in the lamb shed and feed the temperature value to the external display equipment. The staff can control the illumination and temperature in the lamb shed according to the values on the external display equipment. When the illumination in the lamb shed is greater than the required illumination, the lighting device 9 can be turned off to save energy. When the illumination is less than the required illumination, the lighting device 9 can be turned on to increase the illumination. When the temperature in the lamb shed is greater than the required temperature, the roller shutter 8 can be rolled up to ventilate and dissipate heat. When the temperature in the lamb shed is less than the required temperature, the roller shutter 8 can be down to keep warm. Through the above setting, the staff can effectively control the temperature and illumination of the lamb shed, reduce the labor intensity, ensure the growth and health of the lambs, and improve the breeding efficiency.

[0025] The lamb house based on solar energy provided by the utility model can supply the hot water generated in the solar heater to the heating radiators 7 and the drinking trough 6 in the lamb house simultaneously, so that the temperature in the lamb house and the temperature of the feeding water in the drinking trough 6 are ensured. The temperature sensor 11 and the light sensor 10 monitor the temperature and the illumination in the lamb house in real time, and feed back the monitored values to the external display device. The staff can adjust the illumination and the temperature in the lamb house according to the display values of the external display device. When the illumination in the lamb house is greater than the required illumination, the lighting device 9 can be turned off; when the illumination is less than the required illumination, the lighting device 9 can be turned on to increase the illumination. When the temperature in the lamb house is greater than the required temperature, the roller blind 8 can be rolled up to ventilate and dissipate heat; when the temperature in the lamb house is less than the required temperature, the roller blind 8 can be lowered to keep warm.

[0026] The principle and implementation mode of the utility model are described by using specific examples, and the above embodiment is only used for helping to understand the method and the core idea of the utility model; meanwhile, according to the idea of the utility model, the specific implementation mode and the application range will be changed by the general technical personnel in the field. In conclusion, the content of the specification should not be understood as the limitation of the utility model.

Claims

1. A solar based lamb shed comprising a wall, characterised in that: The fence comprises a south wall, a north wall and two side walls, the south wall, the north wall and the two side walls are sequentially connected end to end so as to enclose the lamb house, the top of the north wall is connected with a roof, the roof is connected with the south wall through a plurality of frames, the frames are arranged side by side along the wall body direction of the south wall in sequence, the outer side of the roof is provided with a solar collector, at least two rows of pens are arranged in the lamb house, a movable passageway is arranged between the two rows of pens, each row of pens comprises at least two stalls, a water trough and a feed trough are hung on each stall, the water trough is connected with the solar collector, a plurality of radiators are arranged on the north wall and are sequentially connected, the inlet end of the radiator is connected with the solar collector, a roller shutter is arranged on the side of the roof close to the frame, the roller shutter can be rolled up or down, the roller shutter can cover the frame when the roller shutter is down, a light sensor and a temperature sensor are arranged in the lamb house, and the light sensor and the temperature sensor are connected with an external display device respectively.

2. The solar based lamb hut as claimed in claim 1, wherein: The height of the south wall is less than the height of the north wall, and the height of the south wall is 1.2-1.4 m.

3. The solar based lamb hut as claimed in claim 2, wherein: The north wall is connected with the pen close to the north wall, so that the north wall forms one side of the pen close to the north wall, and a space is arranged between the south wall and the pen close to the south wall to form a first playground of the lamb house.

4. The solar based lamb hut as claimed in claim 3, wherein: One of the side walls is connected with one end of the pen, so that the side wall forms one side of the pen, and a space is arranged between the other side wall and the other side of the pen to form a second playground of the lamb house, the second playground is connected with the first playground, and a gate is arranged on at least one of the side walls.

5. The solar powered lamb hut of claim 1, wherein: The frames are uniformly arranged between the roof and the south wall.

6. The solar powered lamb hut of claim 1, wherein: A scale is arranged on the water trough, the water trough is connected with a water trough thermometer, and the water trough thermometer is used to display the water temperature in the water trough.

7. The solar powered lamb hut of claim 1, wherein: The height of the radiator is greater than 1.2 m from the bottom surface of the north wall, and a plurality of windows are arranged above the radiator on the north wall.

8. The solar powered lamb hut of claim 1, wherein: The light sensor and the temperature sensor are fixedly connected to the inner wall of the roof respectively.

9. The solar powered lamb hut of claim 1, wherein: The lamb house is further provided with a lighting device.

10. The solar powered lamb hut of claim 1, wherein: The roller shutter is made of waterproof and heat-insulating material.