Air compression station temperature adjusting device

By installing heat exchangers and staggered baffles in the air compressor station, precise temperature regulation is achieved using refrigerant or heat transfer medium, solving the problem of inaccurate regulation in traditional devices and ensuring stable equipment operation.

CN223513485UActive Publication Date: 2025-11-04HENAN AIJING ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202423098595.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-04
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Traditional air compressor station temperature control devices cannot accurately regulate the temperature near each piece of equipment, leading to unstable equipment operation.

Method used

Employing a heat exchanger and heat exchange channel structure, refrigerant or heat is transferred through inlet and outlet pipes. Combined with staggered baffles and temperature guide plates, precise temperature regulation is achieved near the equipment inside the air compressor station.

Benefits of technology

It enables precise temperature regulation near the equipment inside the air compressor station, avoiding significant temperature changes during transportation and ensuring stable equipment operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a temperature adjusting device of an air compression station. Comprising a heat exchanger and a heat exchange channel, a second cavity separated from a first cavity is formed in the heat exchanger, and the bottom of the first cavity communicates with the bottom of the second cavity; an inlet pipeline is arranged at the top of the first cavity, a discharge pipeline is arranged at the top of the second cavity, the heat exchange channel is arranged in a hanging mode, and the inlet pipeline and the discharge pipeline are arranged in the heat exchange channel in a penetrating mode and extend out of the air compression station through the heat exchange channel. Compared with a traditional mode that only a ventilation opening is adjusted, the air compression station temperature adjusting device can accurately adjust the temperature near equipment in the air compression station, accurate operation of the equipment is facilitated, meanwhile, the inlet pipeline and the discharge pipeline are located in the heat exchange pipeline, and the heat exchange efficiency is improved. And cold insulation or heat insulation can be carried out on a refrigerant or a heating medium, so that the temperature is prevented from being greatly changed in the transportation process.
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Description

TECHNICAL FIELD

[0001] The utility model relates to temperature regulation technical field, concretely relates to a kind of air compression station temperature regulating device. BACKGROUND

[0002] Air compression station is used more and more important in huge industrial production, its construction is more and more valued by user.Air compression station's environment plays a very important role to the operation of air compressor.

[0003] Patent file with the announcement number CN206773546U discloses an air compression station automatic temperature regulating device, including adjustable damper, damper electric drive device, temperature sensor and central control unit;Adjustable damper is arranged on the pipeline wall of heat dissipation exhaust duct, and the air intake of hot air in heat dissipation exhaust duct into air compression station is adjusted by adjusting the opening and closing size of damper;Temperature sensor real-time collection air compression station internal environment temperature;Central control unit controls the size of adjustable damper opening according to real-time environment temperature by damper electric drive device, can automatically adjust the environment temperature of air compression station, has certain positive significance, however, there are certain drawbacks, such as due to the overall space of air compression station is larger, traditional temperature regulating channel cannot carry out the temperature near each equipment in air compression station, cannot satisfy temperature regulating requirement. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of air compression station temperature regulating device, to solve the current problem.

[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

[0006] An air compression station temperature regulating device, including heat exchanger and heat exchange channel, the inside of the heat exchanger is equipped with the second cavity that first cavity is mutually separated, the bottom of the first cavity and the bottom of the second cavity are mutually communicated;The top of the first cavity is equipped with inlet pipeline, the top of the second cavity is equipped with exhaust pipeline, the heat exchange channel is hung and is set, and the inlet pipeline and exhaust pipeline are arranged in the heat exchange channel and are extended to the outside of the air compression station by the heat exchange channel.

[0007] Further, the inside of the first cavity is equipped with multiple first baffle plates, and multiple first baffle plates are staggered;The inside of the second cavity is equipped with multiple second baffle plates, and multiple second baffle plates are staggered.

[0008] Further, the first cavity and the second cavity are separated by a partition plate;The partition plate is equipped with a communication hole, and the first cavity and the second cavity are communicated by the communication hole.

[0009] Furthermore, multiple first partitions and second partitions are respectively staggered on the inner wall of the heat exchanger shell and the sealing plate.

[0010] Furthermore, a temperature-conducting plate is provided between the first partition and the second partition, which are disposed on the inner wall of the heat exchanger. One end of the temperature-conducting plate is located inside the heat exchanger, and the other end is located outside the heat exchanger.

[0011] Furthermore, the first and second partitions located on the sealing plate are circular, while the first and second partitions located on the outer wall of the heat exchanger shell are annular.

[0012] Furthermore, the temperature-conducting plate located on the heat exchanger shell is connected to the first partition plate and the second partition plate disposed on the sealing plate.

[0013] Furthermore, the heat exchanger is provided with support legs at its bottom.

[0014] The beneficial effects of this utility model are as follows: Compared with the traditional method of only adjusting the ventilation opening, the air compressor station temperature regulation device provided in this application can accurately regulate the temperature near the equipment inside the air compressor station, which is conducive to the accurate operation of the equipment. At the same time, the inlet pipe and the outlet pipe are located in the heat exchange pipe, which can keep the refrigerant or heat medium in them cold or hot, and avoid large temperature changes during transportation. Attached Figure Description

[0015] Fig. 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Fig. 2 This is a partially enlarged schematic diagram of the heat exchange channel in this utility model;

[0017] Fig. 3 This is a partially enlarged schematic diagram of the heat exchanger in this utility model.

[0018] The names corresponding to each mark in the diagram:

[0019] 1. Heat exchange channel; 2. Inlet pipe; 3. Outlet pipe; 4. Heat exchanger; 5. Temperature guide plate; 6. Support leg; 7. First partition; 8. Second partition; 9. Flow channel; 10. Sealing partition; 11. Connecting hole. Detailed Implementation

[0020] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0021] Embodiments of this utility model:

[0022] like Figs. 1-3As shown, an air compressor station temperature regulation device includes a heat exchanger 4 and a heat exchange channel 1. The heat exchanger 4 has a first cavity and a second cavity separated from each other. The bottom of the first cavity and the bottom of the second cavity are connected to each other. The top of the first cavity has an inlet pipe 2 and the top of the second cavity has an outlet pipe 3. The heat exchange channel 1 is suspended. The inlet pipe 2 and the outlet pipe 3 pass through the heat exchange channel 1 and extend to the outside of the air compressor station through the heat exchange channel 1.

[0023] When the temperature is high, cold air is introduced into the heat exchange channel 1 to cool the entire air compressor station area. At the same time, refrigerant, which can be cold air or cold liquid, is installed in the inlet pipe 2 and outlet pipe 3. The refrigerant entering the heat exchanger 4 will cool the vicinity of the equipment inside the air compressor station through the heat exchanger 4, thereby achieving cooling.

[0024] When the temperature is low, hot air is introduced into the heat exchange channel 1 to increase the temperature of the entire air compressor station area. At the same time, a heat medium, which can be hot air or hot liquid, is installed in the inlet pipe 2 and the outlet pipe 3. The heat medium entering the heat exchanger 4 will increase the temperature of the vicinity of the equipment inside the air compressor station through the heat exchanger 4, thereby achieving the temperature increase.

[0025] Compared to the traditional method of simply adjusting the ventilation openings, the air compressor station temperature regulation device provided in this application can precisely regulate the temperature near the equipment inside the air compressor station, which is conducive to the precise operation of the equipment. At the same time, the inlet pipe 2 and the outlet pipe 3 are located in the heat exchange pipe, which can keep the refrigerant or heat medium in them cold or hot, and avoid large temperature changes during transportation.

[0026] In some other embodiments, the first cavity is provided with a plurality of first partitions 7, which are arranged alternately; the second cavity is provided with a plurality of second partitions 8, which are arranged alternately.

[0027] The staggered arrangement of the first baffle 7 and the second baffle 8 can increase the path length of the refrigerant and heat medium in the heat exchanger 4, thereby achieving better heat exchange with the external environment of the heat exchanger 4.

[0028] In some other embodiments, the first cavity and the second cavity are separated from each other by a partition plate 10; the partition plate 10 is provided with a connecting hole 11, and the first cavity and the second cavity are connected to each other through the connecting hole 11.

[0029] The baffle plate 10 is located in the middle of the heat exchanger 4 and is vertically arranged. Both the first cavity and the second cavity are semi-cylindrical structures.

[0030] The first cavity and the second cavity are connected through the connecting hole 11 on the partition plate 10.

[0031] In some other embodiments, multiple first partitions 7 and second partitions 8 are respectively staggered on the inner wall of the heat exchanger 4 and the sealing partition 10.

[0032] Some of the first baffles 7 and the second baffles 8 are installed on the outer wall of the shell of the heat exchanger 4, and some of the first baffles 7 and the second baffles 8 are installed on the sealing baffles 10 in the heat exchanger 4. By designing different installation methods, the flow path of the refrigerant or heat medium is increased, thereby increasing the heat exchange effect.

[0033] In some other embodiments, a temperature-conducting plate 5 is provided between the first partition 7 and the second partition 8 disposed on the inner wall of the outer shell of the heat exchanger 4. One end of the temperature-conducting plate 5 is located inside the heat exchanger 4, and the other end is located outside the heat exchanger 4.

[0034] The heat-conducting plate is used to further transfer the temperature to the outside of the heat exchanger 4 to increase the heat exchange effect.

[0035] In some other embodiments, the first partition 7 and the second partition 8 located on the sealing plate 10 are circular, and the first partition 7 and the second partition 8 located on the outer wall of the heat exchanger 4 shell are annular.

[0036] In this embodiment, the first partition 7 and the second partition 8 located on the sealing plate 10 are circular, and the first partition 7 and the second partition 8 located on the outer wall of the heat exchanger 4 shell are annular, thereby achieving an S-shaped flow path for the refrigerant or heat medium and ensuring the heat exchange effect.

[0037] In some other embodiments, the temperature-conducting plate 5 located on the heat exchanger 4 housing is connected to the first partition 7 and the second partition 8 disposed on the sealing plate 10.

[0038] A flow channel 9 is formed between two adjacent heat-conducting plates. When the refrigerant or heat medium flows to the first partition 7 or the second partition 8 set on the sealing plate 10, it flows through the flow channel 9. This can increase the contact area between the refrigerant or heat medium and the internal fastener structure of the heat exchanger 4, and avoid direct flow that would reduce the heat exchange efficiency.

[0039] In some other embodiments, the heat exchanger 4 is provided with support legs 6 at its bottom.

[0040] Working Principle: When the temperature is high, cold air is introduced into heat exchange channel 1 to cool the entire air compressor station area. Simultaneously, refrigerant (either cold air or cold liquid) is placed in inlet pipe 2 and outlet pipe 3. The refrigerant entering heat exchanger 4 cools the vicinity of the equipment inside the air compressor station, thus achieving cooling. When the temperature is low, hot air is introduced into heat exchange channel 1 to warm the entire air compressor station area. Simultaneously, hot medium (either hot air or hot liquid) is placed in inlet pipe 2 and outlet pipe 3. The hot medium entering heat exchanger 4 warms the vicinity of the equipment inside the air compressor station, thus achieving heating. Compared to the traditional method of only adjusting ventilation openings, the air compressor station temperature regulation device provided in this application can precisely regulate the temperature near the equipment inside the air compressor station, which is beneficial for the precise operation of the equipment. Furthermore, since inlet pipe 2 and outlet pipe 3 are located within the heat exchange pipes, they can keep the refrigerant or hot medium cold or hot, preventing significant temperature changes during transportation.

[0041] Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model are within the protection scope of this utility model.

Claims

1. A temperature regulating device for an air compressor station, characterized in that, The device includes a heat exchanger and a heat exchange channel. The heat exchanger has a first cavity and a second cavity separated from it. The bottom of the first cavity and the bottom of the second cavity are connected to each other. The top of the first cavity has an inlet pipe and the top of the second cavity has an outlet pipe. The heat exchange channel is suspended and the inlet pipe and outlet pipe pass through the heat exchange channel and extend to the outside of the air compressor station.

2. The air compressor station temperature regulating device according to claim 1, characterized in that, The first cavity has multiple first partitions inside, which are arranged alternately; the second cavity has multiple second partitions inside, which are arranged alternately.

3. The air compressor station temperature regulating device according to claim 2, characterized in that, The first cavity and the second cavity are separated from each other by a partition plate; the partition plate is provided with a connecting hole, through which the first cavity and the second cavity are connected.

4. The air compressor station temperature regulating device according to claim 3, characterized in that, Multiple first partitions and second partitions are respectively staggered on the inner wall of the heat exchanger shell and the sealing plate.

5. The air compressor station temperature regulating device according to claim 4, characterized in that, A temperature-conducting plate is provided between the first partition and the second partition, which are disposed on the inner wall of the heat exchanger. One end of the temperature-conducting plate is located inside the heat exchanger, and the other end is located outside the heat exchanger.

6. The air compressor station temperature regulating device according to claim 5, characterized in that, The first and second partitions located on the sealing plate are circular, while the first and second partitions located on the outer wall of the heat exchanger shell are annular.

7. The air compressor station temperature regulating device according to claim 6, characterized in that, The temperature-conducting plate located on the heat exchanger shell is connected to the first partition plate and the second partition plate disposed on the sealing plate.

8. The air compressor station temperature regulating device according to claim 7, characterized in that, The heat exchanger is equipped with support legs at its bottom.

Citation Information

Patent Citations

  • Air compression station automatic temperature adjustment device

    CN206773546U