Fin cooling system

By designing a fin cooling system that utilizes the temperature difference in winter and using a submersible pump and sensor components to achieve automatic control, the high energy consumption and freezing problems in the existing technology are solved, and an energy-saving and environmentally friendly cooling effect is achieved.

CN223429022UActive Publication Date: 2025-10-14BEIJING POULTRY BREEDING
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Patent Information

Application Number
CN202422964251.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-10-14
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

The existing chick hatchery cooling system relies on electrically driven refrigeration equipment, which has high operating costs and is not environmentally friendly. It also lacks effective anti-freeze measures and is prone to pipe freezing in low temperature environments.

Method used

A fin cooling system is designed to utilize the temperature difference in winter for heat exchange. It uses components such as a submersible pump, a fin machine structure, and temperature and pressure sensors. It is automatically controlled through an intelligent control box to prevent pipe freezing and achieve a cooling effect without additional energy consumption.

Benefits of technology

It achieves a cooling effect in winter without the need for additional energy consumption, reduces operating costs, improves the intelligence and safety of the system, and prevents pipe freezing.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223429022U_ABST
    Figure CN223429022U_ABST
Patent Text Reader

Abstract

The utility model relates to a fin cooling system, which belongs to the technical field of cooling systems and comprises a cold water tank body, and a heat insulation plate is arranged on the right side of the front of the cold water tank body. According to the fin cooling system, the fin machine structure is installed on the outer wall of the hatching chamber, no less than two cooling fins are made of high-heat-conduction materials, the heat exchange effect is improved, a cold water tank body is made of stainless steel materials, cooled water flows back into the cold water tank body through an input pipe, circulating heat exchange is conducted, and the heat exchange efficiency is improved. The intelligent control box can close a fan in the fin machine structure to prevent a pipeline from freezing, when the internal pressure of the second output pipe is too high and exceeds a threshold value set by the pressure sensor, the pressure sensor sends a signal to the intelligent control box, and the intelligent control box can open the electric pressure release valve to release part of the pressure to ensure the safety of the pipeline. And therefore, additional energy consumption is not needed, and energy conservation and environmental protection are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a cooling system technical field, concretely is a fin cooling system. BACKGROUND

[0002] The fin cooling system is a kind of efficient thermal management system, and the system is widely used in multiple fields, including being used in chick incubator, heat exchange cooling is carried out to the cold water tank in the incubator by using low temperature environment outside in winter.

[0003] In the field of chick incubation, it is crucial to keep the temperature in the incubator stable, at present, commonly used cooling methods include using air conditioner, fan and other equipment, but these methods have high energy consumption, and high operating cost, do not meet the requirements of energy saving and emission reduction, at the same time, lack effective anti-freezing measures, prone to pipeline freezing problem in low temperature environment, therefore, how to utilize natural resources, such as low temperature environment in winter, effective cooling becomes the key point of technical research. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of prior art, the utility model provides a fin cooling system, has the advantages such as utilizing winter temperature difference to carry out heat exchange, without additional energy consumption, energy saving and environmental protection, solves the problems that the existing cooling system is mostly electric drive refrigeration equipment, although the cooling effect is remarkable, but operating cost is high, and long-term operation causes certain influence to environment.

[0005] To achieve the above object, the utility model provides the following technical scheme: a fin cooling system, including cold water tank body, the right side of the front of cold water tank body is provided with heat insulation board, the front of heat insulation board is provided with intelligent control box, the bottom wall of the inner chamber of cold water tank body is equipped with cooling mechanism;

[0006] The cooling mechanism includes submersible pump, first output pipe, electric pressure relief valve, second output pipe, fin machine structure, input pipe, first temperature sensor and pressure sensor, the submersible pump is arranged at the bottom wall in the inner chamber of cold water tank body, the first output pipe is fixed at the output end of submersible pump, the one end away from submersible pump of first output pipe penetrates cold water tank body and extends to left side, the electric pressure relief valve is communicated at the outside of the one end away from submersible pump of first output pipe, the second output pipe is communicated at the inside left side of electric pressure relief valve, the left side of second output pipe is communicated with the water inlet end of fin machine structure, the left side of input pipe is communicated with the water outlet end of fin machine structure;

[0007] The fin machine structure includes a box body, a plurality of heat dissipation fins, a rack, a fan, a protective net, a plurality of heating wires, and a second temperature sensor.

[0008] By using the technical scheme, heat exchange is performed by using the temperature difference in winter, without additional energy consumption, saving energy and protecting the environment.

[0009] Further, the first temperature sensor is arranged inside the input pipe, the right side of the input pipe is in communication with the left side of the cold water tank body, and the pressure sensor is arranged inside the second output pipe.

[0010] By using the technical scheme, the first temperature sensor can prevent the pipeline from freezing.

[0011] Further, the electric pressure relief valve, the first temperature sensor, the pressure sensor, the second temperature sensor, the plurality of heating wires, the submersible pump, and the fan are electrically connected to the intelligent control box through wires.

[0012] By using the technical scheme, the intelligence of the fin cooling system is improved.

[0013] Further, the plurality of heating wires are evenly distributed on the bottom wall of the box cavity.

[0014] By using the technical scheme, the plurality of heating wires can heat the ice water inside the box.

[0015] Further, the heat insulation plate is a polyurethane plate, and mounting support frames are arranged at the four corners of the lower surface of the box body.

[0016] By using the technical scheme, the heat insulation plate can insulate the intelligent control box.

[0017] Further, a third temperature sensor is arranged on the lower side of the right side wall of the cold water tank body cavity, and the third temperature sensor is electrically connected to the intelligent control box through wires.

[0018] By using the technical scheme, the third temperature sensor can detect the temperature inside the cold water tank body.

[0019] Further, the front and back of the frame body are provided with air flow ports, and the air flow ports are symmetrically distributed on the front and back of the transverse central axis of the frame body.

[0020] By adopting the technical scheme, the air in the frame body can be discharged through the air flow ports on the upper and lower sides.

[0021] Further, the right side of the protective net is attached to the left side of the frame body, and the protective net is a stainless steel net.

[0022] By adopting the technical scheme, the protective performance of the fan can be improved through the protective net.

[0023] Compared with the prior art, the technical scheme of the present application has the following beneficial effects:

[0024] The fin cooling system, the fin machine structure is installed on the outer wall of the incubator, the number of the heat dissipation fins is not less than two, the heat dissipation fins are made of high thermal conductivity material, the heat exchange effect is improved, the cold water tank body is made of stainless steel material, the water in the cold water tank body can be transported into the inside of the tank body through the first output pipe, the electric pressure relief valve and the second output pipe by setting the submersible pump, the fan is started by operating the intelligent control box, the water in the tank body can be cooled through the number of the heat dissipation fins not less than two, the cooled water is returned to the inside of the cold water tank body through the input pipe, and the water is circulated and heat exchanged, the first temperature sensor can sense the water temperature in the input pipe, when the water temperature in the input pipe is lower than the threshold value set by the first temperature sensor, the first temperature sensor sends a signal to the intelligent control box, and the fan in the fin machine structure is closed by the intelligent control box, so that the pipeline is prevented from freezing, the pressure value in the second output pipe is sensed by the pressure sensor, when the pressure in the second output pipe is too high and exceeds the threshold value set by the pressure sensor, the pressure sensor sends a signal to the intelligent control box, and the electric pressure relief valve is opened by the intelligent control box, so that part of the pressure is released, the safety of the pipeline is ensured, and then the heat exchange is carried out by utilizing the temperature difference in winter, without additional energy consumption, energy saving and environmental protection are achieved. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is a structural schematic view of the utility model;

[0026] Figure 2 It is a cooling mechanism schematic view of the utility model;

[0027] Figure 3 It is a connecting structure schematic view of the frame body and the tank body of the utility model.

[0028] In the figure: 1. Cold water tank body; 2. Heat insulation board; 3. Intelligent control box; 4. Cooling mechanism; 41. Submersible pump; 42. First output pipe; 43. Electric pressure relief valve; 44. Second output pipe; 45. Fin machine structure; 451. Box body; 452. Heat dissipation fins; 453. Frame; 454. Fan; 455. Protective net; 456. Heating wire; 457. Second temperature sensor; 46. Input pipe; 47. First temperature sensor; 48. Pressure sensor. DETAILED DESCRIPTION

[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] See also Figure 1 A fin cooling system in this embodiment includes a cold water tank body 1, an insulation board 2 is provided on the right side of the front of the cold water tank body 1, an intelligent control box 3 is provided on the front of the insulation board 2, and a cooling mechanism 4 is provided on the bottom wall of the inner cavity of the cold water tank body 1. The cooling mechanism 4 utilizes the temperature difference in winter for heat exchange, without the need for additional energy consumption, and is energy-saving and environmentally friendly.

[0031] See also Figures 2 to 3 In order to utilize the temperature difference in winter for heat exchange, no additional energy consumption is required, energy saving and environmental protection are achieved. In this embodiment, the cooling mechanism 4 includes a submersible pump 41, a first output pipe 42, an electric pressure relief valve 43, a second output pipe 44, a fin machine structure 45, an input pipe 46, a first temperature sensor 47 and a pressure sensor 48. The submersible pump 41 is arranged on the bottom wall of the inner cavity of the cold water tank body 1, and the first output pipe 42 is fixed to the output end of the submersible pump 41. The end of the first output pipe 42 away from the submersible pump 41 passes through the cold water tank body 1 and extends to the left side.

[0032] In this embodiment, the electric pressure relief valve 43 is connected to the outside of the first output pipe 42 away from the end of the submersible pump 41, and the second output pipe 44 is connected to the inside of the left side of the electric pressure relief valve 43. The left side of the second output pipe 44 is connected to the water inlet end of the fin machine structure 45, and the left side of the input pipe 46 is connected to the water outlet end of the fin machine structure 45.

[0033] In the embodiment, the fin machine structure 45 comprises a box body 451, a plurality of heat dissipation fins 452, a rack body 453, a fan 454, a protective net 455, a plurality of heating wires 456, and a second temperature sensor 457. The plurality of heat dissipation fins 452 are arranged on the left side wall of the inner cavity of the heat dissipation fins 452. The left side of the plurality of heat dissipation fins 452 penetrates the box body 451 and extends to the left side. The rack body 453 is arranged on the left side of the box body 451 and located outside the left side of the plurality of heat dissipation fins 452. The fan 454 is arranged inside the rack body 453.

[0034] In the embodiment, the protective net 455 is arranged on the left side of the rack body 453. The plurality of heating wires 456 are arranged on the bottom wall of the inner cavity of the box body 451. The second temperature sensor 457 is arranged on the left side of the box body 451. The water in the cold water tank body 1 is transported to the inside of the box body 451 through the first output pipe 42, the electric pressure relief valve 43, and the second output pipe 44. The fan 454 is started by operating the intelligent control box 3. The water in the box body 451 is cooled through the plurality of heat dissipation fins 452. The cooled water is returned to the inside of the cold water tank body 1 through the input pipe 46 to circulate heat exchange. The water temperature in the input pipe 46 is sensed by the first temperature sensor 47.

[0035] In the embodiment, the first temperature sensor 47 is arranged inside the input pipe 46. The right side of the input pipe 46 is in communication with the left side of the cold water tank body 1. The pressure sensor 48 is arranged inside the second output pipe 44. The electric pressure relief valve 43, the first temperature sensor 47, the pressure sensor 48, the second temperature sensor 457, the plurality of heating wires 456, the submersible pump 41, and the fan 454 are electrically connected to the intelligent control box 3 through wires.

[0036] In the embodiment, the cold water tank body 1 in the chick incubation room is an important part of the incubation equipment. It works with the heating system to adjust the temperature and humidity in the incubator to ensure the stability of the incubation environment. In the incubation process, appropriate temperature and humidity are crucial for the incubation of chicks. The fin machine structure 45 is installed on the outer wall of the incubation room. The plurality of heat dissipation fins 452 are made of high thermal conductivity materials to improve the heat exchange effect. The cold water tank body 1 is made of stainless steel.

[0037] In the embodiment, the plurality of heating wires 456 are evenly distributed on the bottom wall of the inner cavity of the box body 451, the heat insulation plate 2 is a polyurethane plate, mounting support frames are arranged at the four corners of the lower surface of the box body 451, a third temperature sensor is arranged on the lower side of the right side wall of the inner cavity of the cold water tank body 1, the third temperature sensor is electrically connected to the intelligent control box 3 through a wire, air flow ports are arranged on the front and back of the frame body 453, the air flow ports are symmetrically arranged on the front and back of the transverse central axis of the frame body 453, the right side of the protective net 455 is attached to the left side of the frame body 453, and the protective net 455 is a stainless steel net.

[0038] It should be noted that the first temperature sensor 47 sends a signal to the intelligent control box 3, the intelligent control box 3 can close the fan 454 in the fin machine structure 45 to prevent the pipeline from freezing, the pressure sensor 48 can sense the pressure value in the second output pipe 44, when the pressure in the second output pipe 44 is too high and exceeds the threshold value set by the pressure sensor 48, the pressure sensor 48 sends a signal to the intelligent control box 3, and the intelligent control box 3 can open the electric pressure relief valve 43 to release part of the pressure, so as to ensure the safety of the pipeline, and the system can also be equipped with remote monitoring equipment to realize real-time data monitoring and remote control functions.

[0039] It should be noted that when the external temperature is lower than 17℃, the second temperature sensor 457 senses and then sends a signal to the intelligent control box 3, the intelligent control box 3 starts the submersible pump 41 and the fan 454, and then performs cyclic heat exchange, the third temperature sensor senses when the temperature of the cold water tank body 1 is 12℃, sends a signal to the intelligent control box 3, and the intelligent control box 3 closes the submersible pump 41 and the fan 454.

[0040] The working principle of the above embodiment is as follows:

[0041] The cold water tank body 1 in the chick hatching room is an important part of the hatching equipment, which works with the heating system to adjust the temperature and humidity in the hatching box, and ensures the stability of the hatching environment. In the hatching process, appropriate temperature and humidity are crucial for the hatching of chicks. The fin machine structure 45 is installed on the outer wall of the hatching room, and the number of heat dissipation fins 452 is not less than two, which are made of high thermal conductivity materials to improve the heat exchange effect. The cold water tank body 1 is made of stainless steel material, and through the setting of the submersible pump 41, the water in the cold water tank body 1 can be transported to the inside of the box body 451 through the first output pipe 42, the electric pressure relief valve 43 and the second output pipe 44. The operation of the intelligent control box 3 starts the fan 454, which can cool the water in the box body 451 through the number of not less than two heat dissipation fins 452. The cooled water flows back to the inside of the cold water tank body 1 through the input pipe 46 for circulation heat exchange. The first temperature sensor 47 can sense the water temperature in the input pipe 46. When the water temperature in the input pipe 46 is lower than the threshold set by the first temperature sensor 47, the first temperature sensor 47 will send a signal to the intelligent control box 3, and the intelligent control box 3 can close the fan 454 in the fin machine structure 45 to prevent pipe freezing. The pressure sensor 48 can sense the pressure value in the second output pipe 44. When the pressure in the second output pipe 44 is too high and exceeds the threshold set by the pressure sensor 48, the pressure sensor 48 will send a signal to the intelligent control box 3, and the intelligent control box 3 can open the electric pressure relief valve 43 to release part of the pressure to ensure the safety of the pipeline. The system can also be equipped with remote monitoring equipment to realize real-time data monitoring and remote control function.

Claims

1. A fin cooling system, comprising a cold water tank body (1), characterized in that: A heat insulation board (2) is provided on the right side of the front of the cold water tank body (1), an intelligent control box (3) is provided on the front of the heat insulation board (2), and a cooling mechanism (4) is provided on the bottom wall of the inner cavity of the cold water tank body (1); The cooling mechanism (4) includes a submersible pump (41), a first output pipe (42), an electric pressure relief valve (43), a second output pipe (44), a fin machine structure (45), an input pipe (46), a first temperature sensor (47) and a pressure sensor (48), wherein the submersible pump (41) is arranged on the bottom wall of the inner cavity of the cold water tank body (1), the first output pipe (42) is fixed to the output end of the submersible pump (41), the end of the first output pipe (42) away from the submersible pump (41) passes through the cold water tank body (1) and extends to the left side, the electric pressure relief valve (43) is connected to the outside of the end of the first output pipe (42) away from the submersible pump (41), the second output pipe (44) is connected to the inside of the left side of the electric pressure relief valve (43), the left side of the second output pipe (44) is connected to the water inlet end of the fin machine structure (45), and the left side of the input pipe (46) is connected to the water outlet end of the fin machine structure (45); The fin machine structure (45) includes a box (451), at least two heat dissipation fins (452), a frame (453), a fan (454), a protective net (455), at least two heating wires (456) and a second temperature sensor (457). The at least two heat dissipation fins (452) are all arranged on the left side wall of the inner cavity of the heat dissipation fin (452), and the left side of the at least two heat dissipation fins (452) passes through the box (451). The frame (453) is arranged on the left side of the box (451) and is located on the outside of the left side of at least two heat dissipation fins (452). The fan (454) is arranged inside the frame (453). The protective net (455) is arranged on the left side of the frame (453). At least two heating wires (456) are arranged on the bottom wall of the inner cavity of the box (451). The second temperature sensor (457) is arranged on the upper left side of the box (451).

2. The fin cooling system according to claim 1, characterized in that: The first temperature sensor (47) is arranged inside the input pipe (46), the right side of the input pipe (46) is connected to the left side of the cold water tank body (1), and the pressure sensor (48) is arranged inside the second output pipe (44).

3. The fin cooling system according to claim 1, characterized in that: The electric pressure relief valve (43), the first temperature sensor (47), the pressure sensor (48), the second temperature sensor (457), at least two heating wires (456), the submersible pump (41) and the fan (454) are all electrically connected to the intelligent control box (3) via wires.

4. The fin cooling system according to claim 1, characterized in that: The heating wires (456), numbering not less than two, are evenly distributed on the bottom wall of the inner cavity of the box body (451).

5. The fin cooling system according to claim 1, characterized in that: The heat insulation board (2) is a polyurethane board, and mounting support frames are provided at the four corners of the lower surface of the box body (451).

6. The fin cooling system according to claim 1, characterized in that: A third temperature sensor is provided on the lower side of the right side wall of the inner cavity of the cold water tank body (1), and the third temperature sensor is electrically connected to the intelligent control box (3) via a wire.

7. The fin cooling system according to claim 1, characterized in that: The front and back sides of the frame (453) are both provided with air circulation openings, and the front and rear air circulation openings are symmetrically distributed on the front and rear sides of the transverse central axis of the frame (453).

8. The fin cooling system according to claim 1, characterized in that: The right side of the protective net (455) is in contact with the left side of the frame (453), and the protective net (455) is a stainless steel net.