A henhouse environment monitoring system based on automation control and a monitoring method thereof

By designing the collection pipe and branch pipe components in the chicken house environmental monitoring system, and combining structures such as chutes, sliding rods, and limiting rings, the problems of branch pipe swaying and inconvenient air collection were solved, achieving stable and rapid air collection and monitoring results.

CN115097069BActive Publication Date: 2026-02-13YUEAN AGRI BIOTECHNOLOGY (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202210693924.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-06-19
Publication Date
2026-02-13
Estimated Expiration
2042-06-19

AI Technical Summary

Technical Problem

Existing automated control-based chicken house environmental monitoring systems cannot conveniently and quickly collect chicken house air from multiple directions and angles, and the branch pipes are prone to shaking during rotation, affecting operational stability and monitoring results.

Method used

A chicken house environment monitoring system was designed, which includes components such as a collection pipe, a branch pipe, a collection port, a motor, and a rotating shaft. Through the cooperation of structures such as a chute, a sliding rod, a support rod, and a limiting ring, the stable rotation of the branch pipe and multi-directional air collection are achieved.

Benefits of technology

It achieves stable and rapid multi-directional and multi-angle air collection, improving the operational stability and monitoring effect of the monitoring system.

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Abstract

The application relates to the technical field of chicken house environment monitoring systems, in particular to a chicken house environment monitoring system based on automatic control and a monitoring method thereof, which comprises a bottom plate, a collection pump is installed at the top end of the bottom plate on one side, a connecting pipe is connected to the outside of the collection pump, a monitoring box is connected to one end of the connecting pipe, the bottom end of the monitoring box is connected to the top end of the bottom plate, an annular groove is formed at the top end of the monitoring box on the edge, an annular plate is installed at the top end of the monitoring box on the middle, a sliding groove is formed at the top end of the annular plate on the edge, a sealing plate is installed on the inner wall of the annular plate, and a collecting pipe is movably arranged at the top end of the monitoring box on the middle. Through the arrangement of the collecting pipe, the branch pipe, the collecting port, the motor and the rotating shaft and other components, the problem that the air in the chicken house cannot be conveniently and quickly collected in multiple directions and at multiple angles, thereby affecting the subsequent monitoring effect, can be solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of chicken house environment monitoring system, in particular to a chicken house environment monitoring system based on automatic control and a monitoring method thereof. BACKGROUND

[0002] Environment monitoring is to detect the content and emission of various substances that have influence on human and environment, track the change of environment quality, determine the environment quality level, and provide basis and guarantee for environment management and pollution control. Simply speaking, to understand the environment level and carry out environment monitoring is the premise of all environment work. Environment monitoring usually includes background investigation, scheme determination, optimization of site distribution, on-site sampling, sample transportation, experimental analysis, data collection, analysis and synthesis, etc. In general, it is a process of obtaining information through planning-sampling-analysis-comprehensive, and in the process of chicken house breeding, it is necessary to monitor the chicken house environment in real time, at which time an environment monitoring system is needed to monitor in real time. However, the existing chicken house environment monitoring system has many problems in use, so further improvement is needed.

[0003] The existing chicken house environment monitoring system based on automatic control cannot conveniently and quickly collect chicken house air from multiple directions and multiple angles, thereby affecting the subsequent monitoring effect and bringing inconvenience to actual operation. The existing chicken house environment monitoring system based on automatic control has the problem that during the process of collecting chicken house air, the branch pipe is easy to shake when rotating, thereby affecting the subsequent operation and bringing inconvenience to actual operation. SUMMARY

[0004] The present application aims to provide a chicken house environment monitoring system based on automatic control and a monitoring method thereof to solve the problems raised in the background.

[0005] In order to achieve the above object, the present application provides the following technical scheme: a henhouse environment monitoring system based on automatic control and a monitoring method thereof, comprising a bottom plate, a collection pump is installed at the top end of the bottom plate, a connecting pipe is communicated with the outside of the collection pump, a monitoring box is communicated with one end of the connecting pipe, the bottom end of the monitoring box is communicated with the top end of the bottom plate, an annular groove is formed at the edge of the top end of the monitoring box, an annular plate is installed at the middle of the top end of the monitoring box, a sliding groove is formed at the edge of the top end of the annular plate, a sealing plate is installed on the inner wall of the annular plate, a collection pipe is movably arranged at the middle of the top end of the monitoring box, four groups of branch pipes are installed on the outside of the collection pipe, a collection port is installed at one end of each of the four groups of branch pipes, a sliding rod is installed at the bottom end of the outer surface of each of the four groups of branch pipes, an installation disc is installed at the top end of the collection pipe, a through groove is formed at the middle of the inside of the installation disc, a plurality of groups of rolling bars are arranged on the inner wall of the through groove, a rotating shaft is movably arranged in the through groove, a motor is installed at the top end of the rotating shaft, and the collection pipe is installed at the bottom end of the rotating shaft, an installation ring is sleeved on the outer surface of each of the four groups of branch pipes, a supporting rod is installed at the bottom end of each of the four groups of installation rings, an installation plate is installed at the top end of each of the four groups of installation rings, a U-shaped block is installed at the top end of one side of each of the four groups of installation plates, a plurality of groups of rolling balls are arranged on the top end inner wall and the bottom end inner wall of each of the four groups of U-shaped blocks, an installation block is installed at the top end of each of the four groups of U-shaped blocks, a resisting rod is installed on one side of each of the four groups of installation blocks, and the corresponding end of each of the four groups of resisting rods is fixed to the outside of a limiting ring, and a plurality of groups of limiting bars are arranged on the inner wall of the limiting ring.

[0006] Preferably, the four groups of sliding rods are equal in size, the outer diameter of the four groups of sliding rods is adapted to the distance between the inner walls of the two sides of the sliding groove, and the four groups of sliding rods are in sliding connection with the sliding groove.

[0007] Preferably, the four groups of supporting rods are equal in size, the outer diameter of the four groups of supporting rods is adapted to the distance between the inner walls of the two sides of the annular groove, and the four groups of supporting rods are in sliding connection with the annular groove.

[0008] Preferably, the plurality of groups of rolling bars are equal in size, the plurality of groups of rolling bars are centrally symmetrically arranged with the center point of the through groove as the center point, and the outer surfaces of the plurality of groups of rolling bars are in close contact with the outer surface of the rotating shaft.

[0009] Preferably, the plurality of groups of limiting bars are equal in size, the plurality of groups of limiting bars are centrally symmetrically arranged with the center point of the limiting ring as the center point, and the outer surfaces of the plurality of groups of limiting bars are in close contact with the outer surface of the motor.

[0010] Preferably, the sizes of the several groups of the rolling balls are equal, and the outer surfaces of the several groups of the rolling balls are arranged to be in close contact with the corresponding positions of the top surface and the bottom surface of the rotating shaft.

[0011] Preferably, the inside of the monitoring box is hollow, and the bottom end of the collecting pipe extends into the inside of the monitoring box.

[0012] The monitoring method of the environment monitoring system comprises the following steps:

[0013] 1) The user can start the collecting pump, so that the collecting pipe can collect the air in the henhouse through the four groups of branch pipes and the four groups of collecting ports under the action of the collecting pump, and the air is collected into the inside of the monitoring box through the collecting pipe, and the inside of the monitoring box is provided with an air monitor, so that the collected air can be monitored;

[0014] 2) The user can start the motor, so that the rotating shaft rotates under the action of the motor, thereby driving the collecting pipe to rotate, so that the four groups of branch pipes and the four groups of collecting ports can rotate therewith;

[0015] 3) The collecting port rotates while driving the corresponding sliding rod to slide in the inside of the sliding groove, thereby driving the corresponding supporting rod to slide in the inside of the annular groove, so that the corresponding branch pipe is more stable and less likely to shake while rotating, and the rotating shaft plays a limiting role under the setting action of the several groups of rolling bars when rotating, thereby preventing the rotating shaft from shaking when rotating;

[0016] 4) The motor is limited under the setting action of the four groups of abutting rods, the limiting ring and the several groups of limiting bars, so as to prevent the motor from shaking, and the four groups of branch pipes can drive the corresponding U-shaped blocks and the corresponding several groups of rolling balls to rotate when moving, thereby supporting the mounting disc.

[0017] Compared with the prior art, the present application has the following advantages:

[0018] 1. Through the setting of the collecting pipe, the branch pipe, the collecting port, the motor and the rotating shaft, the problem that the air in the henhouse cannot be conveniently and quickly collected in multiple directions and multiple angles, thereby affecting the subsequent monitoring effect, can be effectively solved.

[0019] 2. Through the setting of the annular groove, the annular plate, the sliding groove, the sliding rod, the mounting ring and the supporting rod, the problem that the branch pipe shakes when rotating during the process of collecting the air in the henhouse, thereby affecting the subsequent operation, can be effectively solved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a structure of the main body of the present application;

[0021] Figure 2It is a structure perspective view of the collecting pipe of the present application;

[0022] Figure 3 It is a structure perspective view of the mounting disc of the present application;

[0023] Figure 4 It is a structure perspective view of the resisting rod of the present application;

[0024] Figure 5 It is Figure 4 The enlarged view at A in the figure.

[0025] In the figure: 1, bottom plate; 2, collecting pump; 21, connecting pipe; 3, monitoring box; 31, annular groove; 32, annular plate; 33, sliding groove; 34, sealing plate; 4, collecting pipe; 41, branch pipe; 42, collecting port; 43, sliding rod; 5, mounting disc; 51, through groove; 52, rolling bar; 6, mounting ring; 61, supporting rod; 62, mounting plate; 63, U-shaped block; 631, ball; 64, mounting block; 65, resisting rod; 66, limiting ring; 67, limiting bar; 7, motor; 71, rotating shaft. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work are within the protection scope of the present application.

[0027] Please refer to Figures 1 to 5 The present application provides a technical solution: a chicken house environment monitoring system based on automatic control and a monitoring method thereof, which comprises a bottom plate 1, a collecting pump 2 installed at the top end of the bottom plate 1, a connecting pipe 21 connected to the outside of the collecting pump 2, and a monitoring box 3 connected to one end of the connecting pipe 21.

[0028] The bottom end of the monitoring box 3 is communicated with the top end of the bottom plate 1, an annular groove 31 is arranged at the top end of the monitoring box 3, an annular plate 32 is arranged at the middle of the top end of the monitoring box 3, a sliding groove 33 is arranged at the top end of the annular plate 32, a sealing plate 34 is arranged on the inner wall of the annular plate 32, the sealing plate 34 can prevent the air in the monitoring box 3 from leaking out, a collecting pipe 4 is movably arranged at the middle of the top end of the monitoring box 3, the inside of the monitoring box 3 is hollow, the bottom end of the collecting pipe 4 extends into the inside of the monitoring box 3, four groups of branch pipes 41 are arranged on the outside of the collecting pipe 4, collecting openings 42 are arranged at one end of the four groups of branch pipes 41, sliding rods 43 are arranged at the bottom end of the outer surface of the four groups of branch pipes 41, the four groups of sliding rods 43 are equal in size, the outer diameter of the four groups of sliding rods 43 is matched with the distance between the two inner walls of the sliding groove 33, and the four groups of sliding rods 43 are slidably connected with the sliding groove 33.

[0029] The top end of the collecting pipe 4 is provided with a mounting disc 5, a through groove 51 is arranged at the middle of the inside of the mounting disc 5, a plurality of groups of rolling bars 52 are arranged on the inner wall of the through groove 51, the plurality of groups of rolling bars 52 are equal in size and are centrally symmetrically arranged with the center point of the through groove 51 as the center point, the outer surfaces of the plurality of groups of rolling bars 52 are arranged in close contact with the outer surface of the rotating shaft 71, the rotating shaft 71 is movably arranged in the inside of the through groove 51, the motor 7 is arranged at the top end of the rotating shaft 71, and the collecting pipe 4 is arranged at the bottom end of the rotating shaft 71, the four groups of branch pipes 41 are sleeved with mounting rings 6, the bottom end of the four groups of mounting rings 6 is provided with support rods 61, the four groups of support rods 61 are equal in size, the outer diameter of the four groups of support rods 61 is matched with the distance between the two inner walls of the annular groove 31, the four groups of support rods 61 are slidably connected with the annular groove 31, the top end of the four groups of mounting rings 6 is provided with mounting plates 62, the one side of the top end of the four groups of mounting plates 62 is provided with L-shaped blocks 63, the top end inner wall and the bottom end inner wall of the four groups of L-shaped blocks 63 are provided with a plurality of groups of rolling balls 631, the plurality of groups of rolling balls 631 are equal in size and are arranged in close contact with the corresponding positions of the top surface and the bottom surface of the rotating shaft 71, the top end of the four groups of L-shaped blocks 63 is provided with mounting blocks 64, the one side of the four groups of mounting blocks 64 is provided with abutting rods 65, the corresponding one end of the four groups of abutting rods 65 is fixedly connected with the outer side of the limiting ring 66, the inner wall of the limiting ring 66 is provided with a plurality of groups of limiting bars 67, the plurality of groups of limiting bars 67 are equal in size and are centrally symmetrically arranged with the center point of the limiting ring 66 as the center point, and the outer surfaces of the plurality of groups of limiting bars 67 are arranged in close contact with the outer surface of the motor 7.

[0030] The monitoring method of the environmental monitoring system comprises the following steps:

[0031] In use, the user can start the collection pump 2, under the action of the collection pump 2, so that the collection pipe 4 can collect the air of the henhouse through the four groups of branch pipes 41 and the four groups of collection ports 42, and collect the air to the inside of the monitoring box 3 through the collection pipe 4, the inside of the monitoring box 3 is provided with an air monitor, so that the collected air can be monitored, at the same time, the user can start the motor 7, under the action of the motor 7, the rotating shaft 71 rotates, thereby driving the collection pipe 4 to rotate, thereby driving the four groups of branch pipes 41 and the four groups of collection ports 42 to rotate, thereby realizing convenient and fast multi-directional and multi-angle collection of the air of the henhouse, thereby making the monitoring effect more accurate, thereby driving the corresponding slide rod 43 to slide in the sliding groove 33, thereby driving the corresponding supporting rod 61 to slide in the annular groove 31, thereby making the corresponding branch pipe 41 more stable and not easy to shake while rotating, the rotating shaft 71 rotates, under the setting action of the several groups of rolling bars 52, plays a limiting role, thereby preventing the rotating shaft 71 from shaking while rotating, under the setting action of the four groups of resisting rods 65, the limiting ring 66 and the several groups of limiting strips 67, the motor 7 is limited, preventing the motor 7 from shaking, the four groups of branch pipes 41 can drive the corresponding U-shaped block 63 and the corresponding several groups of balls 631 to rotate, thereby supporting the mounting disc 5.

[0032] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, alternatives and variations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An automated control-based henhouse environment monitoring system comprising a base plate (1), characterized in that; A sampling pump (2) is installed on one side of the top of the base plate (1). A connecting pipe (21) is connected to the outside of the sampling pump (2), and one end of the connecting pipe (21) is connected to a monitoring box (3). The bottom end of the monitoring box (3) is connected to the top end of the base plate (1). An annular groove (31) is provided on the edge of the top end of the monitoring box (3). An annular plate (32) is installed on the middle of the top end of the monitoring box (3). A sliding groove (33) is provided on the edge of the top end of the annular plate (32). The inner wall of the annular plate (32) is fitted with a sealing plate (34). A collection pipe (4) is movably installed at the top center of the monitoring box (3). Four sets of branch pipes (41) are installed on the outside of the collection pipe (4), and a collection port (42) is installed at one end of each of the four sets of branch pipes (41). A sliding rod (43) is installed at the bottom of the outer surface of each of the four sets of branch pipes (41). An installation plate (5) is installed at the top of the collection pipe (4). A through-hole is opened at the center of the inside of the installation plate (5). The inner wall of the through groove (51) is provided with several sets of rolling strips (52). A rotating shaft (71) is movably arranged inside the through groove (51). A motor (7) is installed at the top of the rotating shaft (71), and a collecting pipe (4) is installed at the bottom of the rotating shaft (71). The outer surface of the four sets of branch pipes (41) is fitted with mounting rings (6). A support rod (61) is installed at the bottom of the four sets of mounting rings (6). A mounting plate (62) is installed at the top of the four sets of mounting rings (6). Each of the four sets of mounting plates (62) has a U-shaped block (63) installed on one side near the top. The inner walls of the top and bottom of each of the four sets of U-shaped blocks (63) are provided with several sets of ball bearings (631). Each of the four sets of U-shaped blocks (63) has a mounting block (64) installed on the top. Each of the four sets of mounting blocks (64) has a stop rod (65) installed on one side. The corresponding end of each of the four sets of stop rods (65) is fixed to the outer side of the limiting ring (66). The inner wall of the limiting ring (66) is provided with several sets of limiting strips (67).

2. The chicken house environment monitoring system based on automation control according to claim 1, characterized in that: The four sets of slide rods (43) are of equal size, and the outer diameter of the four sets of slide rods (43) is matched with the distance between the inner walls on both sides of the slide groove (33). The four sets of slide rods (43) are slidably connected to the slide groove (33).

3. The chicken coop environment monitoring system based on automated control according to claim 1, characterized in that: The four sets of support rods (61) are of equal size, and the outer diameter of the four sets of support rods (61) is matched with the distance between the inner walls on both sides of the annular groove (31). The four sets of support rods (61) and the annular groove (31) are slidably connected.

4. The chicken coop environment monitoring system based on automated control according to claim 1, characterized in that: The several sets of the rolling bars (52) are of equal size, and the several sets of rolling bars (52) are arranged in a centrally symmetrical manner with the center point of the through groove (51) as the center point. The outer surface of the several sets of rolling bars (52) is fitted to the outer surface of the rotating shaft (71).

5. The chicken coop environment monitoring system based on automated control according to claim 1, characterized in that: The several sets of limiting strips (67) are of equal size, and the several sets of limiting strips (67) are arranged in a centrally symmetrical manner with the center point of the limiting ring (66) as the center point. The outer surfaces of the several sets of limiting strips (67) are all fitted to the outer surface of the motor (7).

6. The chicken coop environment monitoring system based on automated control according to claim 1, characterized in that: The balls (631) are of equal size and their outer surfaces are fitted to the top and bottom surfaces of the rotating shaft (71).

7. The chicken coop environment monitoring system based on automated control according to claim 1, characterized in that: The monitoring box (3) is hollow inside, and the bottom end of the collection tube (4) extends into the monitoring box (3).

8. A chicken coop environment monitoring system based on automated control according to any one of claims 1-7, characterized in that: The monitoring method of this environmental monitoring system includes the following steps: 1) Users can start the collection pump (2). Under the action of the collection pump (2), the collection pipe (4) can collect the air in the chicken house through four sets of branch pipes (41) and four sets of collection ports (42), and collect the air into the monitoring box (3) through the collection pipe (4). The monitoring box (3) is equipped with an air monitor, so that the collected air can be monitored. 2) The user can start the motor (7), and the rotating shaft (71) will rotate under the action of the motor (7), which will drive the collection pipe (4) to rotate, thereby driving the four sets of branch pipes (41) and the four sets of collection ports (42) to rotate accordingly; 3) When the collection port (42) rotates, it drives the corresponding slide rod (43) to slide inside the slide groove (33), which in turn drives the corresponding support rod (61) to slide inside the annular groove (31), so that the corresponding branch pipe (41) is more stable and less prone to shaking when rotating. When the rotating shaft (71) rotates, it will play a limiting role under the setting of several sets of rolling bars (52), thereby preventing the rotating shaft (71) from shaking when rotating. 4) The motor (7) is limited by the four sets of abutting rods (65), limiting rings (66) and several sets of limiting strips (67) to prevent the motor (7) from shaking. During the movement of the four sets of branch pipes (41), the corresponding shaped blocks (63) and several sets of corresponding balls (631) can be driven to rotate, thereby supporting the mounting plate (5).

Citation Information

Patent Citations

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    CN112833951A

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