An automatically heated poultry house
By introducing warm air blowers and intelligent air management systems into poultry houses, the problems of heat preservation and ventilation in winter have been solved, achieving constant temperature and air circulation inside the houses and ensuring the health of poultry.
Patent Information
- Application Number
- CN202521356138.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-30
- Publication Date
- 2026-06-23
- Estimated Expiration
- 2035-06-30
Smart Images

Figure CN224386475U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of poultry farming equipment technology, and in particular to an automatically heated poultry farming house. Background Technology
[0002] Poultry refers to birds raised in captivity, primarily for their meat, eggs, and feathers, but also for other purposes. They are generally pheasants and anatidae, such as chickens, ducks, and geese, but also include birds from other families such as turkeys, pigeons, quails, and various songbirds.
[0003] Yes. Currently, poultry often need to be raised in enclosures during winter and other low-temperature environments. Existing enclosures are poorly constructed and can only block wind and frost. Not only is the actual insulation effect poor, but in order to compensate for the insulation effect, existing enclosures are usually highly sealed and have poor ventilation. Under conditions of large temperature differences between day and night, bacteria can easily grow and harm the health of poultry. Utility Model Content
[0004] The purpose of this invention is to provide an automatically heated poultry house that provides heating and ventilation, thus ensuring the health of poultry.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an automatically heated poultry house, comprising a main body of the house, a roof fixedly covering the top of the main body in a herringbone shape, a heater fixedly installed on the back of the main body of the house, an air supply pipe fixed on the back of the main body of the house and connected to the output end of the heater, multiple air outlet pipes fixed to one side of the air supply pipes and penetrating into the interior of the main body of the house, a pair of rectangular ventilation openings respectively opened on both sides of the roof, a pair of rectangular baffles slidably disposed on the inner wall of the roof, and a drive for the two rectangular... The baffles slide to block the sliding components of two rectangular air vents, a pair of rectangular air vents located on the left and right sides of the main body of the enclosure, a pair of rectangular windows that are raised and lowered on the left and right sides of the main body of the enclosure, and a lifting component that drives the two rectangular windows to rise and fall to block the two rectangular air vents. The head of the air outlet pipe is bent downwards and the air outlet direction is tilted downwards. The opening area of the first rectangular air vent is larger than that of the second rectangular air vent, and the second rectangular air vent is closer to the bottom of the main body of the enclosure. An air filter is fixedly installed inside the air outlet pipe.
[0006] The present invention is further configured as follows: the sliding assembly includes a pair of driven shafts that are parallel to each other and rotatably mounted on the inner wall of the ceiling, a pair of driving shafts 1 and 2 that are parallel to each other and rotatably mounted on the inner wall of the ceiling, a worm gear reducer motor fixed to the inner wall of the ceiling and driving the driving shaft 1 to rotate, a pair of gears 1 that are respectively fixed to the driving shaft 1 and the driving shaft 2 and mesh with each other, a pair of gears 2 that are respectively fixed to the two driven shafts, a pair of racks that are respectively fixed to the bottom of the two rectangular baffles and mesh with the two gears 2, a pair of sprockets 1 that are respectively fixed to the driving shaft 1 and the driving shaft 2, a pair of sprockets 2 that are respectively fixed to the two driven shafts, and a chain sleeved on the two pairs of sprockets 1 and sprockets 2.
[0007] A further feature of this invention is as follows: a pair of vertically parallel triangular plates are fixedly installed on the inner wall of the canopy, and the first driving shaft, the second driving shaft, the first gear, the driven shaft, the second gear, the rack, the first sprocket, the second sprocket, and the chain are located between the two triangular plates. A portal-shaped support frame supporting the bottom of the two triangular plates is fixedly installed inside the main body of the enclosure. The two triangular plates are rotatably connected at both ends of the first driving shaft, the second driving shaft, and the driven shaft. A long hole is provided at the connection between the triangular plate and the canopy for a rectangular baffle to pass through and slide. The rack is fixed on the part of the rectangular baffle that passes through the two support plates. The worm gear reducer motor is fixed on the side of one triangular plate facing away from the other triangular plate, and one end of the first driving shaft rotates through the triangular plate and connects to the output end of the worm gear reducer motor.
[0008] A further feature of this invention is that the lifting assembly includes a pair of connecting rods 1 and 2 that are hinged together at the top of the rectangular window. Two pairs of elongated holes 2 are provided at the connection between the enclosure body and the roof. The two ends of the two rectangular sliding plates pass through the enclosure body through the two pairs of elongated holes 2 respectively. The other ends of the connecting rods 1 and 2 are respectively hinged to one end of the two rectangular sliding plates that pass through the enclosure body.
[0009] A further feature of this invention is that the front of the main body of the enclosure is provided with an entrance for poultry to enter and exit the enclosure and a window for staff to observe; the front of the main body of the enclosure is provided with a door panel that can close the entrance; and the front of the main body of the enclosure is provided with a sliding window that can close the window.
[0010] A further feature of this invention is that a pair of rain covers are fixedly installed on the top wall of the canopy, with the two rain covers located above the two rectangular ventilation openings and protecting the rectangular ventilation openings from rain and dew.
[0011] A further feature of this invention is that: a U-shaped support plate is provided on the left and right sides of the enclosure body, and the three sides inside the U-shaped support plate are flush with the three sides of the rectangular ventilation opening. Two vertical grooves are provided on the two sides inside the U-shaped support plate, and two grooves are inserted vertically at both ends of the rectangular window.
[0012] A further feature of this invention is that: the four corners of the bottom of the pen body are fixedly provided with support feet to support and raise the pen body; a discharge port for excreting feces is opened at the center of the bottom of the pen body; and an excrement collection trough is placed below the discharge port; a pair of ramps are fixedly provided on the inner bottom wall of the pen body to guide the flow of excrement to the discharge port; the two ramps are symmetrically located on both sides of the discharge port; and a grid plate for supporting poultry is fixedly placed on the top of the ramps, and the grid plate covers the entire inner bottom of the pen body.
[0013] A further feature of this invention is that the entrance and window of the main body of the enclosure are located above the grid plate, and a second ramp is fixedly installed below the entrance of the main body of the enclosure to facilitate poultry climbing up and down. The second ramp is provided with multiple parallel and spaced anti-slip strips evenly distributed on its surface.
[0014] A further feature of this invention is that the main body of the enclosure is provided with netting to prevent mosquitoes from entering, which is fixedly installed in rectangular ventilation opening one and rectangular ventilation opening two respectively.
[0015] The beneficial effects of this utility model are as follows: By adopting the above-mentioned heating breeding shed, when the temperature is low at night in winter, the warm air blower first continuously delivers warm air to the main body of the shed through the air supply pipe and the air outlet pipe to increase the internal temperature of the breeding shed. Then, the sliding component drives the two rectangular baffles to slide towards the front and rear bottom ends of the ceiling, so that the two rectangular baffles slide to block the two rectangular ventilation openings. Since the air outlet pipe is inclined downward to deliver warm air, and the warm air flows from bottom to top, blocking and closing the rectangular ventilation openings at the top can effectively prevent the loss of warm air and keep the indoor temperature inside the shed constant. At the same time, the lifting component drives the two rectangular windows to rise, so that the two rectangular windows slide to reveal the two rectangular ventilation openings, so as to discharge a small amount of polluted air, thereby ensuring that the air in the shed is circulated and preventing the growth of bacteria. When the daytime temperature is high in winter, the heater works intermittently. The sliding component and the lifting component periodically drive the rectangular baffle one and the rectangular baffle two to slide and lift in opposite directions, thereby temporarily opening the rectangular ventilation port one and closing the rectangular ventilation port two. This allows the polluted air inside the main body of the pen to be quickly discharged in a short time, and further prevents the growth of bacteria and fully protects the health of the poultry. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a three-dimensional structural diagram of this embodiment;
[0018] Figure 2 This is an exploded view of this embodiment;
[0019] Figure 3 This is a structural cross-sectional view of this embodiment;
[0020] Figure 4 This is a schematic diagram of the sliding component structure in this embodiment;
[0021] In the diagram: 1. Main body of the enclosure; 11. Two rectangular ventilation openings; 12. Door-shaped support frame; 13. Two elongated openings; 14. Entrance; 141. Door panel; 15. Window; 151. Sliding window; 16. U-shaped support plate; 161. Groove; 17. Support legs; 18. Excrement outlet; 181. Excrement collection trough; 19. First ramp; 1a. Grid plate; 1b. Second ramp; 1b1. Anti-slip strip; 1c. Mesh screen; 2. Roof; 21. One rectangular ventilation opening; 22. Triangular plate. ; 221. Long slot one; 23. Rain cover; 3. Heater; 4. Air duct; 41. Air outlet duct; 411. Air filter; 5. Rectangular baffle; 6. Sliding assembly; 61. Driven shaft; 62. Drive shaft one; 63. Drive shaft two; 64. Worm gear reducer motor; 65. Gear one; 66. Gear two; 67. Rack; 68. Sprocket one; 69. Sprocket two; 6a. Chain; 7. Rectangular window; 8. Lifting assembly; 81. Connecting rod one; 82. Connecting rod two. Detailed Implementation
[0022] The technical solution of this utility model will now be clearly and completely described with reference to specific embodiments. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.
[0023] Example: An automatically heated poultry house, such as Figure 1-4As shown, the enclosure includes a main body 1, a gable roof 2 fixedly covering the top of the main body 1, a heater 3 fixedly installed on the back of the main body 1, an air duct 4 fixed to the back of the main body 1 and connected to the output end of the heater 3, multiple air outlet pipes 41 fixed to one side of the air duct 4 and penetrating into the interior of the main body 1, a pair of rectangular ventilation openings 21 respectively opened on both sides of the roof 2, a pair of rectangular baffles 5 slidably installed on the inner wall of the roof 2, and a mechanism to drive the two rectangular baffles 5 to slide and block the two rectangular ventilation openings 21 respectively. The sliding component 6, a pair of rectangular ventilation openings 11 on the left and right sides of the main body 1, a pair of rectangular windows 7 respectively raised and lowered on the left and right sides of the main body 1, and a lifting component 8 that drives the two rectangular windows 7 to raise and lower to block the two rectangular ventilation openings 11 respectively. The head of the air outlet pipe 41 is bent downward and the air outlet direction is tilted downward. The opening area of the first rectangular ventilation opening 21 is larger than that of the second rectangular ventilation opening, and the second rectangular ventilation opening is close to the bottom of the main body 1. An air filter 411 is fixedly installed inside the air outlet pipe 41.
[0024] Furthermore, the sliding assembly 6 includes a pair of driven shafts 61 that are parallel to each other and rotatably disposed on the inner wall of the ceiling 2, a pair of driving shafts 62 and 63 that are parallel to each other and rotatably disposed on the inner wall of the ceiling 2, a worm gear reducer motor 64 that is fixed to the inner wall of the ceiling 2 and drives the driving shaft 62 to rotate, a pair of gears 65 that are fixed to the driving shafts 62 and 63 respectively and mesh with each other, a pair of gears 66 that are fixed to the two driven shafts 61 respectively, a pair of racks 67 that are fixed to the bottom of the two rectangular baffles 5 and mesh with the two gears 66 respectively, a pair of sprockets 68 that are fixed to the driving shafts 62 and 63 respectively, a pair of sprockets 69 that are fixed to the two driven shafts 61 respectively, and a chain 6a sleeved on the two pairs of sprockets 68 and 69.
[0025] By employing the aforementioned sliding component 6, when it is necessary to drive the two rectangular baffles 5 to slide, the worm gear reducer motor 64 first drives the drive shaft 62 to rotate. Then, the drive shaft 62 drives the drive shaft 63 to rotate synchronously in the opposite direction through two meshing gears 65. Next, the drive shaft 62 and the drive shaft 63 drive the two pairs of driven shafts 61 and gears 66 to rotate synchronously in the opposite direction through two sets of sprockets 68, sprockets 69 and chains 6a, respectively. Finally, the two gears 66 mesh with the two racks 67, so that the two racks 67 drive the two rectangular baffles 5 to slide together toward the top center of the ceiling 2 or to slide toward the front and rear bottom ends of the ceiling 2, respectively.
[0026] Furthermore, a pair of vertically parallel triangular plates 22 are fixedly installed on the inner wall of the canopy 2, and the drive shaft 1 62, drive shaft 2 63, gear 1 65, driven shaft 61, gear 2 66, rack 67, sprocket 1 68, sprocket 2 69 and chain 6a are located between the two triangular plates 22. The main body 1 of the enclosure is fixedly installed with a portal-shaped support frame 12 supporting the bottom of the two triangular plates 22. The two ends of the drive shaft 1 62, drive shaft 2 63 and driven shaft 61 are rotatably connected to the two triangular plates 22 respectively. A long hole 221 is opened at the connection between the triangular plates 22 and the canopy 2 for the rectangular baffle 5 to pass through and slide. The rack 67 is fixed on the part of the rectangular baffle 5 that passes through the two support plates. The worm gear reducer motor 64 is fixed on the side of one triangular plate 22 facing away from the other triangular plate 22, and one end of the drive shaft 1 62 rotates through the triangular plate 22 and connects to the output end of the worm gear reducer motor 64. By using the aforementioned triangular plate 22 and portal frame 12, not only can the rotation of each shaft be stably supported and the worm gear reducer motor 64 be installed, but also the moving parts such as gears, racks 67, sprockets and chains 6a in the sliding assembly 6 can be hidden and protected to prevent poultry from accidentally injuring themselves.
[0027] Furthermore, the lifting assembly 8 includes a pair of connecting rods 81 and 82, each hinged at one end to the top of the rectangular window 7. Two pairs of elongated holes 13 are provided at the connection between the enclosure body 1 and the roof 2. The two ends of the two rectangular sliding plates pass through the two pairs of elongated holes 13 and exit the enclosure body 1. The other ends of connecting rods 81 and 82 are hinged to the ends of the two rectangular sliding plates that exit the enclosure body 1. By employing the lifting assembly 8, when the top of the two rectangular baffles 5 slides towards the middle of the roof 2 or towards the front and rear bottom of the roof 2, the connecting rods 81 and 82, hinged to one end of the two rectangular baffles 5, will pull upwards or push downwards to move the rectangular window 15. This achieves the effect that when the rectangular baffles 5 slide to block or reveal the first rectangular opening, the rectangular window 15 simultaneously rises and falls to reveal and block the second rectangular opening.
[0028] Furthermore, the front of the main body 1 of the enclosure is provided with an entrance 14 for easy access for poultry and a window 15 for easy observation by staff. The front of the main body 1 is also provided with a door panel 141 that can close the entrance 14, and a sliding window 151 that can close the window 15 is also provided on the front of the main body 1. By using the above-mentioned entrance 14 and door panel 141, it is convenient for poultry and staff to enter and exit the main body 1 of the enclosure. The above-mentioned window 15 and sliding window 151 are used to facilitate staff to observe the internal situation of the main body 1 from the outside, and can also be opened to allow ventilation inside the main body 1.
[0029] Furthermore, a pair of rain shields 23 are fixedly installed on the top wall of the canopy 2. The two rain shields 23 are located above the two rectangular ventilation openings 21 respectively, and they shield the rectangular ventilation openings 21 from rain and dew.
[0030] Furthermore, U-shaped support plates 16 are respectively provided on the left and right sides of the main body 1 of the enclosure, and the three sides inside the U-shaped support plates 16 are flush with the three sides of the rectangular ventilation opening. Two vertical grooves 161 are opened on the two sides inside the U-shaped support plates 16, and the two grooves 161 are inserted vertically at both ends of the rectangular window 7. By using the above-mentioned U-shaped support plates 16 and grooves 161, the stability of the rectangular window 7 in raising and lowering can be ensured.
[0031] Furthermore, support feet 17 are fixedly installed at the four corners of the bottom of the pen body 1 to support and elevate the pen body 1. A drain outlet 18 for excreting feces is opened at the center of the bottom of the pen body 1, and an excrement collection trough 181 is placed below the drain outlet 18. A pair of ramps 19 are fixedly installed on the inner bottom wall of the pen body 1 to guide the flow of excrement to the drain outlet, and the two ramps 19 are symmetrically located on both sides of the drain outlet 18. A grid plate 1a for supporting poultry is fixedly placed on the top of the ramps 19, and the grid plate 1a covers the entire bottom of the pen body 1. By adopting the above-mentioned pen body 1 structure, it is convenient for staff to clean poultry excrement inside the pen body 1, so as to ensure the cleanliness and hygiene of the pen body 1 and further prevent bacterial growth.
[0032] Furthermore, the entrance 14 and window 15 of the main body of the enclosure 1 are located above the grid plate 1a. The main body of the enclosure 1 is fixedly provided with a ramp 1b below the entrance 14 to facilitate poultry climbing up and down. Multiple parallel anti-slip strips 1b1 are evenly arranged on the slope surface of the ramp 1b to ensure the safety of poultry climbing.
[0033] Furthermore, the main body of the enclosure 1 is equipped with netting 1c that blocks mosquitoes from entering through rectangular ventilation opening 21 and rectangular ventilation opening 11, respectively, to prevent poultry from being bitten by mosquitoes and contracting viruses in the summer.
[0034] The working principle of this embodiment:
[0035] When the temperature is low at night in winter, the heater 3 first continuously delivers warm air to the main body 1 of the enclosure through the air supply pipe and the air outlet pipe 41 to increase the temperature inside the enclosure. Then, the sliding component 6 drives the two rectangular baffles 5 to slide relative to the inner wall of the roof 2 towards their tips, so that the two rectangular baffles 5 slide to block the two rectangular ventilation openings 21. Since the air outlet pipe 41 is inclined downward to deliver warm air and the warm air flows from bottom to top, blocking and closing the rectangular ventilation openings 21 at the top can effectively prevent the loss of warm air and keep the indoor temperature inside the main body 1 of the enclosure constant. At the same time, the lifting component 8 drives the two rectangular windows 7 to rise, so that the two rectangular windows 7 slide to expose the two rectangular ventilation openings 11, so as to discharge a small amount of polluted air, ensuring that the main body 1 of the enclosure has a certain air circulation and preventing the growth of bacteria. When the daytime temperature is high in winter, the heater 3 works intermittently. The sliding component 6 and the lifting component 8 periodically drive the rectangular baffle 51 and the rectangular baffle 52 to slide and lift in opposite directions, thereby temporarily opening the rectangular ventilation port 1 21 and closing the rectangular ventilation port 2 11. This allows for the rapid removal of polluted air from the main body of the pen 1 in a short time, further preventing bacterial growth and fully protecting the health of the poultry.
Claims
1. An automatically heated poultry house, characterized in that, Includes the main body of the enclosure (1), a roof (2) fixedly covering the top of the main body of the enclosure (1) and in a herringbone shape, a heater (3) fixedly installed on the back of the main body of the enclosure (1), an air supply pipe (4) fixed on the back of the main body of the enclosure (1) and connected to the output end of the heater (3), multiple air outlet pipes (41) fixed on one side of the air supply pipe (4) and penetrating into the interior of the main body of the enclosure (1), a pair of rectangular ventilation openings (21) respectively opened on both sides of the roof (2), a pair of rectangular baffles (5) slidably set on the inner wall of the roof (2), and driving the two rectangular baffles (5) to slide and block the two rectangular ventilation openings (21) respectively. The sliding component (6), a pair of rectangular ventilation ports (11) opened on the left and right sides of the main body of the enclosure (1), a pair of rectangular windows (7) respectively raised and lowered on the left and right sides of the main body of the enclosure (1), and a lifting component (8) that drives the two rectangular windows (7) to raise and lower to block the two rectangular ventilation ports (11). The head of the air outlet pipe (41) is bent downward and the air outlet direction is tilted downward. The opening area of the first rectangular ventilation port (21) is larger than that of the second rectangular ventilation port, and the second rectangular ventilation port is close to the bottom of the main body of the enclosure (1). An air filter (411) is fixedly installed inside the air outlet pipe (41).
2. The automatically heated poultry shed according to claim 1, characterized in that: The sliding assembly (6) includes a pair of driven shafts (61) that are parallel to each other and rotatably mounted on the inner wall of the canopy (2), a pair of driving shafts 1 (62) and 2 (63) that are parallel to each other and rotatably mounted on the inner wall of the canopy (2), a worm gear reducer motor (64) that is fixed to the inner wall of the canopy (2) and drives the driving shaft 1 (62) to rotate, a pair of gears 1 (65) that are fixed to the driving shaft 1 (62) and 2 (63) respectively and mesh with each other, a pair of gears 2 (66) that are fixed to the two driven shafts (61), a pair of racks (67) that are fixed to the bottom of the two rectangular baffles (5) and mesh with the two gears 2 (66) respectively, a pair of sprockets 1 (68) that are fixed to the driving shaft 1 (62) and 2 (63) respectively, a pair of sprockets 2 (69) that are fixed to the two driven shafts (61), and a chain (6a) that is sleeved on the two pairs of sprockets 1 (68) and sprockets 2 (69).
3. The automatically heated poultry shed according to claim 2, characterized in that: The inner wall of the canopy (2) is fixedly provided with a pair of vertically parallel triangular plates (22), and the drive shaft 1 (62), drive shaft 2 (63), gear 1 (65), driven shaft (61), gear 2 (66), rack (67), sprocket 1 (68), sprocket 2 (69) and chain (6a) are located between the two triangular plates (22). The main body of the enclosure (1) is fixedly provided with a portal-shaped support frame (12) supporting the bottom of the two triangular plates (22). The drive shaft 1 (62), drive shaft 2 (63) and driven shaft 6a are located between the two triangular plates (22). (61) Two triangular plates (22) are rotatably connected at both ends. A long slot (221) is provided at the connection between the triangular plate (22) and the ceiling (2) for the rectangular baffle (5) to pass through and slide. The rack (67) is fixed on the part of the rectangular baffle (5) that passes through the two support plates. The worm gear reducer motor (64) is fixed on the side of one triangular plate (22) facing away from the other triangular plate (22). One end of the drive shaft (62) rotates through the triangular plate (22) and connects to the output end of the worm gear reducer motor (64).
4. The automatically heated poultry shed according to claim 1, characterized in that: The lifting assembly (8) includes a pair of connecting rods 1 (81) and 2 (82) that are hinged together at the top of the rectangular window (7). Two pairs of elongated holes 2 (13) are provided at the connection between the enclosure body (1) and the roof (2). The two ends of the two rectangular sliding plates pass through the enclosure body (1) through the two pairs of elongated holes 2 (13). The other ends of the connecting rods 1 (81) and 2 (82) are respectively hinged to the ends of the two rectangular sliding plates that pass through the enclosure body (1).
5. The automatically heated poultry house according to claim 1, characterized in that: The main body of the enclosure (1) is provided with an entrance (14) for easy access for poultry to enter and exit the enclosure and a window (15) for easy observation by staff. The main body of the enclosure (1) is provided with a door panel (141) that can close the entrance (14) by flipping it over. The main body of the enclosure (1) is provided with a sliding window (151) that can close the window (15) by sliding on the front.
6. The automatically heated poultry shed according to claim 1, characterized in that: The roof (2) is fixedly provided with a pair of rain shields (23). The two rain shields (23) are located above the two rectangular ventilation openings (21) respectively, and they shield the rectangular ventilation openings (21) from rain and dew.
7. The automatically heated poultry shed according to claim 1, characterized in that: The main body of the enclosure (1) is provided with U-shaped support plates (16) on the left and right sides respectively, and the three sides of the U-shaped support plate (16) are flush with the three sides of the rectangular ventilation port respectively. The U-shaped support plate (16) has two vertical grooves (161) on both sides, and the two grooves (161) are inserted into the two ends of the rectangular window (7) respectively.
8. The automatically heated poultry shed according to claim 1, characterized in that: The four corners of the bottom of the pen body (1) are fixed with support feet (17) to support and raise the pen body (1). The bottom center of the pen body (1) has an excretion port (18) for excreting feces, and an excrement collection trough (181) is placed below the excretion port (18). The bottom wall of the pen body (1) is fixed with a pair of ramps (19) to guide the flow of excrement to the excretion hole. The two ramps (19) are symmetrically located on both sides of the excretion port (18). A grid plate (1a) for supporting poultry is fixedly placed on the top of the ramp (19), and the grid plate (1a) covers the bottom of the entire pen body (1).
9. The automatically heated poultry shed according to claim 7, characterized in that: The entrance (14) and window (15) of the main body of the enclosure (1) are located above the grid plate (1a). The main body of the enclosure (1) is fixedly provided with a second slope (1b) below the entrance (14) to facilitate poultry climbing up and down. The slope (1b) is evenly provided with multiple parallel anti-slip strips (1b1).
10. The automatically heated poultry house according to claim 1, characterized in that: The main body of the enclosure (1) is equipped with nets (1c) that prevent mosquitoes from entering, which are fixedly installed in the rectangular ventilation opening one (21) and the rectangular ventilation opening two (11).