Temperature distribution detection system in poultry house

Through the combination of temperature sensing rod and thermal imaging equipment, the problems of high cost and poor intuitiveness of temperature distribution evaluation in the poultry house are solved, and low-cost and high-precision temperature distribution trend evaluation is achieved.

CN120507047APending Publication Date: 2025-08-19青岛大牧人机械股份有限公司
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Patent Information

Application Number
CN202510643560.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-19
Publication Date
2025-08-19

AI Technical Summary

Technical Problem

In the prior art, the temperature distribution evaluation cost in the poultry house is high and cannot be visually displayed, and the sensor failure rate is high, which affects the evaluation accuracy.

Method used

The thermal conduction part using a temperature sensing rod is combined with a thermal imaging device. The temperature sensing rod includes a long support and a plurality of metal thermal conduction parts. The thermal imaging device detects the temperature of the thermal conduction part and provides an intuitive display of the temperature distribution.

Benefits of technology

It reduces costs, improves the analysis accuracy of temperature distribution trends, reduces equipment damage, and realizes intuitive evaluation of temperature distribution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of breeding poultry houses, and provides a poultry house internal temperature distribution detection system which comprises a house room, and a temperature sensing rod is suspended at a preset position in the house room; the temperature sensing rod comprises a supporting body of a long-strip structure. A plurality of metal heat conduction parts which are separated from one another are distributed on the support body in a linear manner; the heat conduction part is configured to perform heat transfer with the air at the position and achieve heat balance; thermal imaging equipment is also arranged in the house; the thermal imaging apparatus is configured to detect temperatures of all of the thermally conductive portions on the support body. Therefore, each heat conduction part of the temperature sensing rod is used as a reference object for reflecting the temperature of each point in the poultry house space, and the temperature state of each heat conduction part is detected by using the thermal imaging equipment, so that the temperature distribution state in the house can be intuitively and clearly known, and the temperature distribution trend and distribution condition in the house can be quickly judged. The temperature sensing rod is not prone to being damaged, a large number of temperature collecting points can be formed in the house, and the analysis precision of the temperature distribution trend is improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of poultry houses, and in particular relates to a temperature distribution detection system in a poultry house. Background Art

[0002] Uniform temperature distribution within a poultry house is a crucial parameter for ensuring successful breeding. Currently, temperature distribution within a poultry house is typically measured by installing temperature sensors at multiple locations within the house, collecting temperature data at multiple points, and then summarizing the data to assess the temperature distribution within each area.

[0003] This method collects temperature information in the form of data, preventing technicians from intuitively understanding temperature distribution trends within the poultry house, such as along the length of the house or the airflow temperature distribution at the top of the house. Furthermore, achieving accurate assessment of temperature distribution trends requires a large number of test points, which in turn requires a large number of temperature sensors throughout the house, resulting in high costs. Furthermore, high humidity within poultry houses increases the failure rate of temperature sensors, resulting in missing test point data and compromising temperature distribution assessment.

[0004] In summary, the existing technology has obvious inconveniences and defects in actual use, so it is necessary to improve it. Summary of the Invention

[0005] In response to the above-mentioned defects, the present invention mainly provides a temperature distribution detection system in a poultry house to solve the technical problems that the cost of multi-point temperature collection in the poultry house is high and the temperature detection results cannot be displayed intuitively, which is not conducive to the judgment of temperature distribution trends.

[0006] In order to solve the above problems, the present invention provides a temperature distribution detection system in a poultry house, comprising a house, wherein a temperature sensing rod is suspended at a predetermined position in the house;

[0007] The temperature sensing rod includes a support body with an elongated structure; a plurality of mutually separated heat-conducting parts made of metal are linearly distributed on the support body; the heat-conducting parts are configured to: conduct heat transfer with the air at the location and achieve thermal equilibrium;

[0008] The room is further provided with a thermal imaging device, which is configured to detect the temperature of all heat-conducting parts on the support.

[0009] According to the temperature distribution detection system in a poultry house of the present invention, the thermal imaging device is a thermal imager or thermal imaging glasses.

[0010] According to the temperature distribution detection system in a poultry house of the present invention, the support body is a long circular tube; at least three rows of heat conducting parts are evenly arranged circumferentially on the outer side surface of the circular tube.

[0011] According to the temperature distribution detection system in a poultry house of the present invention, a reinforcing rod is sleeved in the support body.

[0012] According to the temperature distribution detection system in a poultry house of the present invention, the reinforcing rod is an aluminum tube.

[0013] According to the temperature distribution detection system in a poultry house of the present invention, the heat conducting part is made of stainless steel, copper or aluminum.

[0014] According to the temperature distribution detection system in a poultry house of the present invention, the support body is made of plastic.

[0015] According to the temperature distribution detection system in a poultry house of the present invention, the heat conducting part is a heat conducting sheet; the heat conducting sheet is fixed to the support body by bonding or embedding.

[0016] According to the temperature distribution detection system in the poultry house of the present invention, the temperature sensing rod is suspended in the top area of the house, and the temperature sensing rod is arranged along the width direction of the house.

[0017] According to the temperature distribution detection system in the poultry house of the present invention, the temperature sensing rod is provided at a predetermined height above the ground in the house, and the temperature sensing rod is provided along the length direction of the house.

[0018] In summary, the present invention uses the heat-sensing rod's various heat-conducting sections as reference points for measuring the temperature at various points in the poultry house. Using thermal imaging equipment to monitor the temperature of each heat-conducting section, the present invention provides a clear and intuitive understanding of the temperature distribution within the house, enabling rapid assessment of the temperature distribution trend and status within the house. Compared to temperature sensors, the present invention's temperature-sensing rod is inexpensive to manufacture, is less susceptible to damage, and can be used to establish a large number of temperature collection points within the house, improving the accuracy of temperature distribution trend analysis. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a structural schematic diagram of the temperature distribution detection system in a poultry house of the present invention;

[0020] Figure 2 yes Figure 1 Structural diagram of the middle A direction;

[0021] Figure 3 1 is a schematic structural diagram of an embodiment of a temperature sensing rod of the present invention;

[0022] Figure 4 yes Figure 3 Schematic diagram of the structure in the AA direction;

[0023] Figure 5 1 is a schematic structural diagram of an embodiment of a temperature sensing rod of the present invention;

[0024] In the figure: 1-support body, 11-reinforcement rod; 2-heat conduction part, 21-heat conduction column; 3-thermal imaging equipment, 4-ventilation window, 41-air damper; 5-mobile vehicle, 51-hanging rail; 100-room. DETAILED DESCRIPTION

[0025] See also Figure 1 , the present invention provides a temperature distribution detection system in a poultry house, comprising a house chamber 100, wherein a temperature sensing rod is suspended at a predetermined position in the house chamber 100;

[0026] Combine Figure 3 The temperature sensor comprises a long support body 1 with a plurality of mutually separated metal heat-conducting portions 2 arranged linearly on the support body 1. The heat-conducting portions 2 are configured to transfer heat with the air at their location and achieve thermal equilibrium. After thermal equilibrium is reached, the temperature of the heat-conducting portions 2 is the same as the temperature of the location.

[0027] The heat conducting portion 2 of the present invention is preferably made of a metal material with good thermal conductivity, such as stainless steel, copper, or aluminum. The heat conducting portion 2 has a fast heat transfer speed. When the temperature at that location changes, the heat conducting portion 2 can quickly respond to the change and reflect the temperature status of that location in real time.

[0028] The support body 1 of the present invention is made of plastic, such as PVC or PE, which has good thermal insulation properties and prevents heat transfer between adjacent heat-conducting parts 2. This allows the heat-conducting parts 2 to accurately reflect the temperature state of the location.

[0029] The room 100 is further provided with a thermal imaging device 3 ; the thermal imaging device 3 is configured to: detect the temperature of all heat-conducting parts 2 on the support 1 ;

[0030] Optionally, the thermal imaging device 3 may be fixed in the chamber 100 so that its field of view can cover all the heat-conducting parts 2 on the support body 1 .

[0031] Optionally, the thermal imaging device 3 can move in the chamber 100 and detect the temperatures of all the heat-conducting parts 2 on the support body 1 during the movement.

[0032] The technician uses thermal imaging equipment 3 to observe the temperature of each heat-conducting part. On the display screen of thermal imaging equipment 3, each heat-conducting part displays a color corresponding to its temperature. By observing the color differences between each heat-conducting part, the technician can understand the temperature distribution in the linear direction along the support body 1 in the chamber 100. This allows the technician to intuitively understand the temperature distribution trend and temperature distribution status in this linear direction.

[0033] The present invention uses the heat-conducting portions 2 of the temperature-sensing rod as reference points for measuring the temperature at various points in the poultry house. Using thermal imaging equipment 3 to detect the temperature status of each heat-conducting portion 2, the temperature distribution within the poultry house 100 can be intuitively and clearly determined, enabling rapid assessment of the temperature distribution trend and status within the house 100. Compared to temperature sensors, the temperature-sensing rod of the present invention is inexpensive to manufacture and less susceptible to damage. It can also form a large number of temperature collection points within the house 100, improving the accuracy of temperature distribution trend analysis.

[0034] Optionally, the thermal imaging device 3 of the present invention may be a thermal imager, which may be fixedly installed in the room 100 .

[0035] See also Figure 2 As an embodiment, a hanging rail 51 is provided in the room 100, and a mobile vehicle 5 is provided on the hanging rail 51; the thermal imager is fixed on the mobile vehicle 5; the mobile vehicle 5 moves along the hanging rail 51 to collect temperature information of each heat conducting part 2, and transmits the collected image to the terminal display device in real time for viewing by technicians.

[0036] Optionally, the thermal imaging device 3 of the present invention can be thermal imaging glasses. A technician wearing the glasses can find the optimal observation position on their own. They can also patrol the room 100, observing the temperature detection results at each point in real time and accurately assessing the temperature distribution and trends.

[0037] Optionally, the heat conducting portion 2 of the present invention is a heat conducting sheet, which is small in size and light in weight and can be fixed on the support body 1 by bonding or embedding, and is easy to manufacture, repair and replace.

[0038] See also Figure 4 As an embodiment, the support body 1 is a long circular tube; at least three rows of heat conducting parts 2 are evenly arranged on the circumference of the outer surface of the circular tube; thermal imaging equipment 3 can be used for observation from any direction without blind spots, which is convenient for operators to judge.

[0039] Each row of heat conducting parts 2 is arranged at equal intervals, and the interval distance can be adaptively set according to the number of collection points, such as 20 cm, 30 cm, 40 cm or 50 cm.

[0040] As an example, see Figure 5 The circular tube is sleeved with a reinforcing rod 11 to increase the overall strength and improve stability. The reinforcing rod 11 is preferably an aluminum metal tube with high strength and light weight.

[0041] As an embodiment, the temperature sensing rod of the present invention is suspended in the top area of the room 100 and is arranged along the width direction of the room 100; the distribution trend of the air flow temperature in the top area of the room 100 can be detected, providing a basis for judging the ventilation condition in the room 100.

[0042] The support body 1 of the temperature sensing rod is in an upwardly convex arc shape; the arc size is adapted to the structure of the chamber 100, so that each heat conducting part 2 is located on the flow path of the airflow, thereby accurately collecting temperature distribution information.

[0043] See also Figure 2 Optionally, the present invention can set the number of temperature sensing rods in the top area according to the length of the room 100, such as three, four or five, so as to comprehensively evaluate the ventilation conditions in the room 100.

[0044] In one embodiment, the temperature sensing rod is positioned at a predetermined height from the floor of the room 100 and is disposed along the length of the room 100. This allows technicians to fully understand the temperature conditions within the room 100. The height of the temperature sensing rod from the floor can be adjusted based on testing requirements.

[0045] In summary, the present invention provides a system for detecting temperature distribution within a poultry house. By using the heat-conducting portions of a temperature-sensing rod as reference points for measuring the temperature at various points within the poultry house, and using thermal imaging equipment to detect the temperature status of each heat-conducting portion, the system provides a clear and intuitive understanding of the temperature distribution within the house, enabling rapid assessment of the temperature distribution trend and status within the house. Compared to temperature sensors, the temperature-sensing rods of the present invention are inexpensive to manufacture, are less susceptible to damage, and can be used to establish a large number of temperature collection points within the house, improving the accuracy of temperature distribution trend analysis.

[0046] Of course, the present invention may have many other embodiments. Without departing from the spirit and essence of the present invention, those skilled in the art may make various corresponding changes and modifications based on the present invention, but these corresponding changes and modifications should all fall within the scope of protection of the claims attached to the present invention.

Claims

1. A temperature distribution detection system in a poultry house, characterized in that: The invention comprises a room, wherein a temperature sensing rod is suspended at a predetermined position in the room; The temperature sensing rod includes a support body with an elongated structure; a plurality of mutually separated heat-conducting parts made of metal are linearly distributed on the support body; the heat-conducting parts are configured to: conduct heat transfer with the air at the location and achieve thermal equilibrium; The room is further provided with a thermal imaging device, which is configured to detect the temperature of all heat-conducting parts on the support.

2. The temperature distribution detection system in a poultry house according to claim 1, characterized in that: The thermal imaging device is a thermal imager or thermal imaging glasses.

3. The temperature distribution detection system in a poultry house according to claim 1, characterized in that: The support body is a long circular tube; at least three rows of heat conducting parts are evenly arranged on the circumference of the outer side of the circular tube.

4. The temperature distribution detection system in a poultry house according to claim 3, characterized in that: A reinforcing rod is sleeved in the support body.

5. The temperature distribution detection system in a poultry house according to claim 4, characterized in that: The reinforcing rod is an aluminum tube.

6. The temperature distribution detection system in a poultry house according to claim 1, characterized in that: The heat conducting part is made of stainless steel, copper or aluminum.

7. The temperature distribution detection system in a poultry house according to claim 1, characterized in that: The supporting body is made of plastic.

8. The temperature distribution detection system in a poultry house according to claim 7, characterized in that: The heat conducting part is a heat conducting sheet; the heat conducting sheet is fixed on the supporting body by bonding or embedding.

9. The temperature distribution detection system in a poultry house according to any one of claims 1 to 8, characterized in that: The temperature sensing rod is suspended in the top area of the room, and is arranged along the width direction of the room.

10. The temperature distribution detection system in a poultry house according to claim 9, characterized in that: The temperature sensing rod is arranged at a predetermined height from the ground in the room, and the temperature sensing rod is arranged along the length direction of the room.

Citation Information

Patent Citations

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