Air-dividing power-assisted heat dissipation device, breeding cage and poultry house

By designing a divided air-supported heat dissipation device, using a divided air duct and a universal pipe to adjust the wind direction, combined with the design of the filter net and air belt, the existing poultry house heat dissipation device has solved the problems of direct blowing birds, difficulty in filtration of impurities, difficulty in intuitive understanding of wind power, and inconvenient cleaning, achieving a more flexible and comfortable poultry house ventilation effect.

CN120202960APending Publication Date: 2025-06-27青岛大牧人机械股份有限公司
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Patent Information

Application Number
CN202510543512.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

The existing poultry house heat dissipation device has the problem that the air outlet is fixed and cannot be adjusted, causing the air to blow directly on the birds; the air outlet cannot filter impurities; the wind power is difficult to intuitively understand; the air outlet is easily blocked and inconvenient to clean.

Method used

A wind-dividing and heating device is designed, using two air ducts and universal pipes to guide the air to an adjustable air outlet, and adjust the wind direction by rotating the universal pipe; a filter net and air belt are installed at the air outlet to filter impurities and indicate the wind force; the air outlet is designed to send air to the edge of the breeding cage to avoid direct blowing birds.

Benefits of technology

It realizes flexible adjustment of the direction of the air outlet, avoids direct blowing of birds, filters out impurities in the air, intuitively displays the wind power, and facilitates cleaning and replacement of the device, improving the ventilation effect of the poultry house and the comfort of the birds.

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Abstract

The invention discloses an air distribution assisting heat dissipation device, a breeding cage and a poultry house, and belongs to the technical field of poultry house ventilation, the air distribution assisting heat dissipation device comprises a main air pipe with the front end provided with an air inlet, the rear end of the main air pipe is provided with two air distribution pipes extending towards the left rear portion and the right rear portion respectively, and the air distribution pipes are communicated with a pipe cavity of the main air pipe; a universal pipe with a corrugated pipe body is detachably installed at the rear end of each air distribution pipe, and an air outlet is formed in the rear end of each universal pipe. During ventilation of the device, air is guided to the air outlet through the two air distribution pipes and the universal pipe and finally blown out to the left side and the right side through the air outlet, the air outlet direction can be adjusted by rotating the pipe body of the universal pipe, and the device is more flexible in application, so that the original air direction is changed to supply air to the edge of the breeding cage; therefore, direct blowing type air supply to poultry in the breeding cage is avoided, and a more comfortable growth environment is created for a poultry house.
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Description

Technical Field

[0001] The present invention relates to the technical field of poultry house ventilation, and specifically relates to an air distribution and boosting heat dissipation device, a breeding cage and a poultry house. Background Art

[0002] With the development of large-scale breeding, the environmental control of poultry houses is crucial for the healthy growth of poultry. Good heat dissipation conditions can effectively reduce the temperature in the poultry house, reduce the stress response of poultry caused by high temperature, and improve the survival rate and production performance of poultry.

[0003] However, the existing poultry house heat dissipation devices have the following deficiencies:

[0004] First, the air outlets of some heat dissipation devices directly send air to the center of the poultry house, and the orientations of the air outlets are mostly fixed and cannot be adjusted. The air outlets will directly blow on the poultry, which not only has low application flexibility but also affects the health of the poultry. Second, the air in the breeding cage is mixed with impurities such as hair, and the air outlets of some heat dissipation devices cannot filter such impurities. Third, when the air outlets of some heat dissipation devices send air, it is impossible to intuitively understand the magnitude of the wind force at this time. Fourth, the air outlets of the heat dissipation devices in the breeding cage are easily blocked by impurities such as hair. Since the air outlets are in the breeding cage, it is very inconvenient to clean them. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to provide an air distribution and boosting heat dissipation device, a breeding cage and a poultry house with a flexible adjustable orientation of the air outlet and avoiding direct blowing air supply to the poultry in the breeding cage.

[0006] The technical solution of the present invention is realized as follows:

[0007] An air distribution and boosting heat dissipation device includes a main air duct with an air inlet at the front end. At the rear end of the main air duct, there are two branch air ducts extending left-rearward and right-rearward respectively. The branch air ducts are in communication with the lumen of the main air duct. A universal pipe with a corrugated pipe body is detachably installed at the rear end of each branch air duct, and an air outlet is provided at the rear end of each universal pipe.

[0008] With the above scheme, when the device ventilates, the wind is guided to the air outlet through the two branch air ducts and the universal pipes, and finally blows out from the air outlets to the left and right sides. By rotating the pipe body of the universal pipe, the direction of the air outlet can be adjusted, which is more flexible in application. In this way, the original wind direction is changed to supply air to the edge of the breeding cage, thus avoiding direct blowing air supply to the poultry in the breeding cage and creating a more comfortable growth environment for the poultry house.

[0009] As a preferred implementation manner of the air distribution and boosting heat dissipation device, the two branch air ducts are symmetric about the position where the main air duct is located.

[0010] With the above - mentioned solution, in order to achieve uniform air volume distribution, the two branch air ducts are symmetrically arranged. At this time, the air volume in the main air duct will be evenly distributed into the two branch air ducts, thus realizing uniform air supply.

[0011] As a preferred embodiment of the air - distributing and assisting heat - dissipating device, the branch air duct is a bent pipe.

[0012] With the above - mentioned solution, in order to facilitate air - supply guidance, a bent branch air duct is adopted, which is convenient for better air supply to the air outlet.

[0013] As a preferred embodiment of the air - distributing and assisting heat - dissipating device, a filter screen is installed at the air outlet.

[0014] With the above - mentioned solution, in order to filter impurities such as hair mixed in the air in the breeding cage, a filter screen is installed in the air outlet, which can effectively filter out impurities in the air, thereby purifying the air in the breeding cage.

[0015] As a preferred embodiment of the air - distributing and assisting heat - dissipating device, a wind belt that flutters outward is tied at the center of the filter screen.

[0016] With the above - mentioned solution, in order to better indicate the magnitude of the wind force at the air outlet, the fluttering situation of the wind belt can be observed. The greater the amplitude and frequency of the wind - belt fluttering, the greater the wind force at this time.

[0017] A breeding cage includes a cage frame. In front of, behind, above, and below the cage frame, a front cage net, a rear cage net, a top cage net, and a bottom cage net are fixedly installed in sequence. On the left and right sides of the cage frame, cage partition nets are slidably installed in sequence. The above - mentioned air - distributing and assisting heat - dissipating device is installed on the cage partition net, and a blower is installed at the air inlet of the air - distributing and assisting heat - dissipating device. The air outlet of the air - distributing and assisting heat - dissipating device blows air towards the edge of the breeding cage.

[0018] With the above - mentioned solution, in order to realize air supply in the breeding cage, air is blown into the air inlet through the blower, the original wind direction is changed by the air outlet, and the air is blown towards the edge of the breeding cage, thus avoiding direct blowing of air towards the poultry in the breeding cage.

[0019] As a preferred embodiment of a breeding cage, a large cage door that can be opened is installed in the middle of the front cage net, and a small cage door that can be opened is also installed beside the large cage door; a push - pull handle is installed in front of the cage partition net;

[0020] After the small cage door is opened, sliding the cage partition net forward can move the air - distributing and assisting heat - dissipating device in the cage out of the cage through the small cage door.

[0021] With the above solution, in order to facilitate the replacement or cleaning of the air-distributing and assisting heat dissipation device, when replacing or cleaning, first open the small cage door, and slide the cage partition net through the push-pull handle. At this time, the air-distributing and assisting heat dissipation device slides out of the cage along with the cage partition net from the small cage door, thus facilitating the replacement or cleaning of the air-distributing and assisting heat dissipation device.

[0022] As a preferred implementation of a breeding cage, sliding rails are connected to both sides of the top and bottom of the cage partition net, and the cage partition net is slidably assembled with the cage frame through the sliding rails above and below.

[0023] With the above solution, in order to improve the sliding stability of the cage frame, sliding rails are installed at the top and bottom of the cage partition net, making it more stable and reliable when sliding.

[0024] A poultry house is equipped with the above-mentioned breeding cages. The breeding cages are arranged in sequence from left to right. Only one cage partition net is installed between every two adjacent breeding cages, and the air-distributing and assisting heat dissipation devices on all cage partition nets face the same direction.

[0025] With the above solution, in order to achieve ventilation of all breeding cages in the entire poultry house, an air-distributing and assisting heat dissipation device is installed between every two adjacent breeding cages, thereby improving the ventilation effect of the entire poultry house.

[0026] After adopting the above technical solution, the beneficial effects of the present invention are as follows:

[0027] 1. When the device is ventilating, the wind is guided to the air outlet through two air distribution pipes and a universal pipe, and finally blown out to the left and right sides from the air outlet. By rotating the body of the universal pipe, the direction of the air outlet can be adjusted, making it more flexible in application. In this way, the original wind direction is changed to blow towards the edge of the breeding cage, thus avoiding direct blowing of the wind towards the poultry in the breeding cage and creating a more comfortable growth environment for the poultry house.

[0028] 2. In order to achieve even distribution of the air volume, the two air distribution pipes are symmetrically arranged. At this time, the air volume in the main air pipe will be evenly distributed into the two air distribution pipes, thereby achieving uniform air supply.

[0029] 3. In order to facilitate air supply guidance, a bent air distribution pipe is adopted, which is convenient for better air supply to the air outlet.

[0030] 4. In order to filter impurities such as hair mixed in the air in the breeding cage, a filter screen is installed in the air outlet, which can effectively filter out impurities in the air, thereby purifying the air in the breeding cage.

[0031] 5. In order to better indicate the magnitude of the wind force at the air outlet, the floating situation of the wind belt can be observed. The greater the amplitude and frequency of the floating of the wind belt, the greater the wind force at this time.

[0032] 6. To achieve air supply inside the breeding cage, air is supplied to the air inlet through a fan, and the original air direction is changed at the air outlet and air is supplied towards the edge of the breeding cage, thereby avoiding direct blowing of air onto the poultry inside the breeding cage;

[0033] 7. To facilitate the replacement or cleaning of the air distribution and heat dissipation device, when replacing or cleaning, first open the small cage door, and slide the cage partition net through the push-pull handle. At this time, the air distribution and heat dissipation device slides out of the cage from the small cage door following the cage partition net, thus facilitating the replacement or cleaning of the air distribution and heat dissipation device;

[0034] 8. To enhance the stability of the sliding of the cage frame, slide rails are installed at both the top and bottom of the cage partition net, making its sliding more stable and reliable;

[0035] 9. To achieve ventilation for all breeding cages in the entire poultry house, an air distribution and heat dissipation device is installed between every two adjacent breeding cages, thereby enhancing the ventilation effect of the entire poultry house. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0037] Figure 1 It is a three-dimensional structure diagram of the front view air distribution and heat dissipation device in Embodiment 1;

[0038] Figure 2 It is a three-dimensional structure diagram of the front view air distribution and heat dissipation device assembled with a fan in Embodiment 1;

[0039] Figure 3 It is a three-dimensional structure diagram of the rear view air distribution and heat dissipation device assembled with a fan in Embodiment 1;

[0040] Figure 4 It is a three-dimensional structure diagram of the rear view air distribution and heat dissipation device assembled with a fan in Embodiment 2;

[0041] Figure 5 It is a three-dimensional structure diagram of the front view breeding cage;

[0042] Figure 6 It is a three-dimensional structure diagram of the rear view breeding cage;

[0043] Figure 7 For cleaning or replacement Figure 5 of the air distribution and heat dissipation device

[0044] Figure 8 ForFigure 7 Partial enlarged view at A in the figure;

[0045] Figure 9 It is a partial three-dimensional structure diagram looking down on the poultry house;

[0046] Markings in the figure: 1 - air inlet; 2 - main air duct; 3 - branch air duct; 4 - universal pipe; 5 - air outlet; 6 - setscrew; 7 - filter screen; 8 - air belt; 9 - cage frame; 10 - cage partition net; 11 - fan; 12 - large cage door; 13 - small cage door; 14 - slide rail; 15 - push-pull handle. Specific implementation mode

[0047] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the protection scope of the present invention.

[0048] Embodiment 1, as Figures 1 to 3 shown, a wind distribution and boosting heat dissipation device includes a main air duct 2 with an air inlet 1 at the front end. At the rear end of the main air duct 2, there are two branch air ducts 3 extending respectively to the left rear and right rear. The branch air ducts 3 are in communication with the lumen of the main air duct 1. At the rear end of each branch air duct 3, a universal pipe 4 with a corrugated pipe body is detachably installed. At the rear end of each universal pipe, there is an air outlet 5. When the device is ventilated, the wind is guided to the air outlet 5 through the two branch air ducts 3 and the universal pipes 4, and finally blown out from the air outlet 5 to both left and right sides. By rotating the pipe body of the universal pipe 4, the direction of the blown air can be adjusted, which is more flexible in application. In this way, the original wind direction is changed to send air to the edge of the breeding cage, thus avoiding direct blowing of air to the poultry in the breeding cage and creating a more comfortable growth environment for the poultry house.

[0049] As Figures 1 to 3 shown, the two branch air ducts 3 are symmetric about the position where the main air duct 2 is located, and the junction of the two branch air ducts 3 and the main air duct 2 is connected by threads. In order to achieve uniform air volume distribution, the two branch air ducts 3 are symmetrically arranged. At this time, the air volume in the main air duct 2 will be evenly divided into the two branch air ducts 3, so as to achieve uniform air supply.

[0050] As Figures 1 to 3 shown, the branch air duct 3 is a bent pipe. In order to facilitate the guidance of the blown air, the bent branch air duct 3 is adopted to facilitate better air supply to the air outlet 5.

[0051] Embodiment 2, as Figure 4As shown in the figure, the difference between this embodiment and the first embodiment is only that, based on the first embodiment, a filter screen 7 is installed at the air outlet 5 by screws. In order to filter impurities such as hair mixed in the air in the breeding cage, installing the filter screen 7 inside the air outlet 5 can effectively filter out the impurities in the air, thereby purifying the air in the breeding cage.

[0052] As Figure 4 shown, a wind belt 8 that flutters outward is tied at the center of the filter screen 7. In order to better indicate the magnitude of the wind force at the air outlet 5, the fluttering condition of the wind belt 8 can be observed. The greater the amplitude and frequency of the fluttering of the wind belt 8, the greater the wind force at this time.

[0053] As Figures 5 to 6 shown, a breeding cage includes a cage frame 9. A cage front net, a cage rear net, a cage top net, and a cage bottom net are fixedly installed in sequence in front of, behind, above, and below the cage frame 9. Cage partition nets 10 are slidably installed in sequence on the left and right sides of the cage frame 9. A wind distribution and boosting heat dissipation device in the first embodiment or the second embodiment is installed at the top of the cage partition net 10, and a blower 11 is installed at the air inlet 1 of the wind distribution and boosting heat dissipation device by screws. The air outlet 5 of this wind distribution and boosting heat dissipation device blows air towards the edge of the breeding cage. In order to achieve air supply inside the breeding cage, air is sent to the air inlet 1 through the blower 11, and the original wind direction is changed by the air outlet 5 and blows towards the edge of the breeding cage, thereby avoiding direct blowing of air towards the poultry inside the breeding cage.

[0054] As Figure 7 shown, a large cage door 12 that can be opened is installed in the middle of the cage front net, and a small cage door 13 that can be opened is also installed beside the large cage door 12; a push-pull handle 15 is installed in front of the cage partition net 10; after the small cage door 13 is opened, sliding the cage partition net 10 forward can move the wind distribution and boosting heat dissipation device inside the cage to outside the cage through the small cage door 13. In order to facilitate the replacement or cleaning of the wind distribution and boosting heat dissipation device, when replacing or cleaning, first open the small cage door 13, and slide the cage partition net 10 through the push-pull handle 15. At this time, the wind distribution and boosting heat dissipation device follows the cage partition net 10 and slides to outside the cage through the small cage door 13, thereby facilitating the replacement or cleaning of the wind distribution and boosting heat dissipation device.

[0055] As Figure 8 shown, slide rails 14 are welded on both sides of the top and bottom of the cage partition net 10. The cage partition net 10 is slidably assembled with the cage frame 9 through the slide rails 14 above and below at the same time. In order to improve the sliding stability of the cage frame 9, slide rails 14 are installed at both the top and bottom of the cage partition net 10, making it more stable and reliable when sliding.

[0056] As Figure 9As shown in the figure, there is a poultry house, in which the above-mentioned breeding cages are installed, and the breeding cages are arranged in sequence from left to right. Only one cage partition net 10 is installed between every two adjacent breeding cages, and the air distribution and boosting heat dissipation devices on all the cage partition nets 10 face the same direction. In order to achieve ventilation of all the breeding cages in the entire poultry house, an air distribution and boosting heat dissipation device is installed between every two adjacent breeding cages, thereby improving the ventilation effect of the entire poultry house.

[0057] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An air distribution assisted heat dissipation device, characterized in that: It comprises a main air duct with an air inlet at the front end, and two branch air ducts extending to the left rear and the right rear respectively at the rear end of the main air duct, the branch air ducts are connected with the tube cavity of the main air duct, and a universal tube with a corrugated tube body is detachably installed at the rear end of each branch air duct, and an air outlet is arranged at the rear end of each universal tube.

2. The air distribution assisted heat dissipation device according to claim 1, characterized in that: The two branch air ducts are symmetrical about the main air duct.

3. The air distribution assisted heat dissipation device according to claim 2, characterized in that: The air distribution pipe is a curved pipe.

4. The air distribution assisted heat dissipation device according to claim 3, characterized in that: A filter screen is installed at the air outlet.

5. The air distribution and assisted heat dissipation device according to claim 4, characterized in that: A wind belt floating outwards is bound at the center of the filter screen.

6. A breeding cage, comprising a cage frame, wherein the front, rear, upper and lower parts of the cage frame are fixedly installed with a cage front net, a cage rear net, a cage top net and a cage bottom net in sequence, and the left and right parts of the cage frame are slidably installed with cage partition nets in sequence, characterized in that: The cage body partition net is installed with an air-dividing and heat-dissipating device according to any one of claims 1-5, and a fan is installed at the air inlet of the air-dividing and heat-dissipating device, and the air outlet of the air-dividing and heat-dissipating device supplies air toward the edge of the breeding cage.

7. The breeding cage according to claim 6, characterized in that: A large cage door that can be opened is installed in the middle of the front net of the cage body, and a small cage door that can be opened is also installed on the side of the large cage door; After the small cage door is opened, the cage body partition net can be slid forward to move the air distribution and heat dissipation device in the cage from the small cage door to the outside of the cage.

8. The breeding cage according to claim 7, characterized in that: Both sides of the top and bottom of the cage partition net are connected with slide rails, and the cage partition net is slidably assembled with the cage frame through the upper and lower slide rails at the same time.

9. The breeding cage according to claim 8, characterized in that: A push-pull handle is installed in front of the cage partition net.

10. A poultry house, characterized in that: The poultry house is installed with breeding cages according to claim 9, which are arranged in sequence on the left and right, with only one cage partition installed between every two adjacent breeding cages, and the air distribution and heat dissipation devices on all the cage partitions are facing in one direction.

Citation Information

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