Environment-friendly refrigerator for air conditioner

By optimizing the vaporization heat dissipation structure and compression circulation structure, and combining the design of the annular water tank and submersible pump spray head, the problems of rapid airflow and low cooling efficiency of air conditioning refrigerants have been solved, achieving a more efficient cooling effect and quieter operation.

CN224230387UActive Publication Date: 2026-05-12BEIJING TIMES HUAFENG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BEIJING TIMES HUAFENG TECHNOLOGY CO LTD
Filing Date
2025-04-02
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing air conditioning refrigeration units suffer from problems with rapid airflow and poor cooling performance.

Method used

It adopts an optimized vaporization heat dissipation structure and compression circulation structure, combined with an annular water tank and submersible pump, enhances the cooling effect through spray nozzles, and achieves rapid heat dissipation through air filter plate and fan design.

Benefits of technology

It improves the cooling effect of air conditioning, reduces energy consumption, reduces environmental impact, and controls noise through low-noise design and good aerodynamic layout, making it quieter to operate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an environment-friendly refrigerator for an air conditioner, which relates to the technical field of air conditioner refrigerators, solves the technical problems that air cannot be guided quickly and the cooling effect cannot be improved in the existing technical scheme, and comprises a mainframe box and an air conditioner evaporator, a compression circulation structure is arranged in the main machine box, the output end of the main machine box is connected with a liquid phase pipe, the liquid phase pipe is connected to the input end of an air conditioner evaporator, the output end of the air conditioner evaporator is connected with an air suction pipe, and the air suction pipe is connected to the compression circulation structure. According to the environment-friendly refrigerator, through an optimized vaporization heat dissipation structure and an optimized compression cycle structure, refrigeration can be more effectively achieved, the cooling effect of an air conditioner is improved, and the problems that in the prior art, air cannot be guided rapidly, and the cooling efficiency is low are solved; and by adopting a novel structural design, the energy consumption is reduced, and the influence on the environment is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of refrigeration technology, specifically to an environmentally friendly refrigeration unit for air conditioning. Background Technology

[0002] This utility model relates to the field of environmentally friendly air conditioner refrigerants, which are important devices for improving air conditioning efficiency and have significant high energy efficiency characteristics. They employ novel high-efficiency refrigerants and advanced technical designs, effectively improving energy conversion efficiency and significantly reducing energy loss, thereby lowering overall operating costs. Furthermore, these environmentally friendly refrigerants take environmental factors into account when selecting refrigerants; the substances used are harmless to the ozone layer and have low greenhouse effect potential, effectively reducing negative environmental impacts during the cooling process and complying with established global environmental standards. Simultaneously, the advanced control system equipped with these environmentally friendly refrigerants can precisely regulate indoor temperature and humidity, improving user comfort. Compared to traditional air conditioning equipment, their operating noise is significantly reduced, creating a quieter and more comfortable environment for users.

[0003] Beyond their advantages in energy efficiency and comfort, using environmentally friendly refrigerators also helps achieve energy conservation and emission reduction goals, combating climate change. These devices significantly reduce greenhouse gas emissions by improving cooling efficiency, making a positive contribution to addressing global warming. Promoting and applying environmentally friendly refrigerators not only reflects the environmental responsibility of businesses and individuals but also promotes the development of green technologies and drives society towards an environmentally friendly transformation. In summary, environmentally friendly refrigerators for air conditioning play an increasingly important role in improving cooling performance, reducing operating costs, protecting the ecological environment, and promoting sustainable development, and have profound social and environmental significance.

[0004] Existing technical solutions have technical problems in terms of rapid airflow and improved cooling effect. Utility Model Content

[0005] In view of the shortcomings of the existing technology, this utility model provides an environmentally friendly cooler for air conditioning, which solves the technical problems of existing technical solutions that cannot quickly guide air and improve the cooling effect.

[0006] To achieve the above objectives, this utility model provides the following technical solution: an environmentally friendly air conditioner, comprising a main unit and an air conditioner evaporator. The main unit contains a vaporization heat dissipation structure and a compression circulation structure. A liquid phase pipe is connected to the output end of the main unit, which is connected to the input end of the air conditioner evaporator. An air intake pipe is connected to the output end of the air conditioner evaporator and is connected to the compression circulation structure. An exhaust pipe is located at the top of the main unit. An air inlet is opened on the side wall of the main unit. An annular water tank is installed inside the main unit. A submersible pump is installed inside the annular water tank. A water delivery pipe is located at the output end of the submersible pump. The upper end of the water delivery pipe is connected to the inner wall of the exhaust pipe. A spray nozzle is located at the output end of the water delivery pipe.

[0007] Preferably, the compression cycle structure includes a compressor and a gas-liquid separator. The gas-liquid separator has a liquid storage function. The suction pipe is connected to the input end of the gas-liquid separator. The output end of the gas-liquid separator is connected to the input end of the compressor. The output end of the compressor is connected to the input end of the vaporization heat dissipation structure. The output end of the vaporization heat dissipation structure is connected to a front expansion device. The liquid phase pipe is connected to the output end of the front expansion device. The liquid phase pipe is connected to the input end of the rear expansion device. The output end of the rear expansion device is connected to the input end of the air conditioner evaporator. The compressor, the gas-liquid separator, and the rear expansion device are fixedly installed inside the main unit housing and located inside the annular water tank.

[0008] Preferably, the vaporization heat dissipation structure includes a finned section and an evaporator section. The evaporator section is installed inside the exhaust pipe, the finned section is installed on the upper wall of the main unit casing, the input end of the finned section is connected to the output end of the compressor, the output end of the finned section is connected to the input end of the evaporator section, and the output end of the evaporator section is connected to the input end of the front expansion device.

[0009] Preferably, the fin section includes heat dissipation fins, which are fixedly installed on the upper wall of the main unit chassis. A heat-conducting coil is provided inside the heat dissipation fin, with the input end of the heat-conducting coil connected to the output end of the compressor and the output end of the heat-conducting coil connected to the input end of the evaporator section.

[0010] Preferably, the evaporation section includes a heat-conducting spiral tube, which is fixedly installed on the inner wall of the exhaust pipe. The input end of the heat-conducting spiral tube is connected to the output end of the fin section, and the output end of the heat-conducting spiral tube is connected to the input end of the front expansion device. The spray head is installed outside the heat-conducting spiral tube.

[0011] Preferably, an air filter plate is fixedly installed inside the side wall of the main unit chassis, and an air supply fan is fixedly installed at the rear end of the air filter plate. The air filter plate is installed inside the air inlet, and an exhaust fan is fixedly installed at the upper end of the exhaust pipe. The airflow direction of the exhaust fan is from inside the main unit chassis to outside the main unit chassis, and the airflow direction of the air supply fan is from outside the main unit chassis to inside the main unit chassis. Beneficial effects

[0012] This utility model provides an environmentally friendly cooler for air conditioning. Through an optimized vaporization heat dissipation structure and compression cycle structure, this environmentally friendly cooler can achieve cooling more effectively, improving the cooling effect of the air conditioner and solving the problems of inability to quickly guide airflow and low cooling efficiency in existing technologies. The novel structural design reduces energy consumption and environmental impact. The design includes an effective air intake and exhaust mechanism, which, combined with the use of a filter plate and fan, enables the device, as an outdoor unit, to quickly dissipate heat, thereby improving the cooling effect of the air conditioner. By setting up an annular water tank and a submersible pump, the spray nozzle can further enhance the cooling effect and improve the efficiency of the outdoor unit's heat dissipation system. The annular water tank can significantly increase the temperature around the compressor. Due to the low-noise design and good aerodynamic layout, the noise of the components during operation is effectively controlled, making it quieter to use. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of an environmentally friendly air conditioner according to the present invention.

[0014] In the diagram: 1. Main unit chassis; 2. Air conditioner evaporator; 3. Liquid phase pipe; 4. Intake pipe; 5. Exhaust pipe; 6. Air inlet; 7. Annular water tank; 8. Submersible pump; 9. Water supply pipe; 10. Spray head; 11. Compressor; 12. Gas-liquid separator; 13. Front expansion device; 14. Rear expansion device; 15. Heat dissipation fins; 16. Heat transfer coil; 17. Heat transfer spiral tube; 18. Air filter plate; 19. Supply fan; 20. Exhaust fan; Detailed Implementation

[0015] To further illustrate the technical means and effects adopted by this utility model to achieve its intended purpose, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Detailed description follows.

[0016] Please see Figure 1This utility model provides a technical solution: an environmentally friendly air conditioner, including a main unit 1 and an air conditioner evaporator 2. The main unit 1 is equipped with a vaporization heat dissipation structure and a compression circulation structure. The output end of the main unit 1 is connected to a liquid phase pipe 3, which is connected to the input end of the air conditioner evaporator 2. The output end of the air conditioner evaporator 2 is connected to a suction pipe 4, which is connected to the compression circulation structure. An exhaust pipe 5 is provided at the upper end of the main unit 1. An air inlet 6 is provided on the side wall of the main unit 1. An annular water tank 7 is installed inside the main unit 1. A submersible pump 8 is provided inside the annular water tank 7. A water delivery pipe 9 is provided at the output end of the submersible pump 8. The upper end of the water delivery pipe 9 is connected to the inner wall of the exhaust pipe 5. A spray head 10 is provided at the output end of the water delivery pipe 9.

[0017] In this embodiment, the compression cycle structure includes a compressor 11 and a gas-liquid separator 12. The gas-liquid separator 12 has a liquid storage function. The suction pipe 4 is connected to the input end of the gas-liquid separator 12. The output end of the gas-liquid separator 12 is connected to the input end of the compressor 11. The output end of the compressor 11 is connected to the input end of the vaporization heat dissipation structure. The output end of the vaporization heat dissipation structure is connected to a front expansion device 13. The liquid phase pipe 3 is connected to the output end of the front expansion device 13. The liquid phase pipe 3 is connected to the input end of a rear expansion device 14. The output end of the rear expansion device 14 is connected to the input end of the air conditioner evaporator 2. The compressor 11, the gas-liquid separator 12, and the rear expansion device 14 are fixedly installed inside the main unit housing 1 and located inside the annular water tank.

[0018] In this embodiment, the vaporization heat dissipation structure includes a finned section and an evaporator section. The evaporator section is installed inside the exhaust pipe 5, the finned section is installed on the upper wall of the main unit casing 1, the input end of the finned section is connected to the output end of the compressor 11, the output end of the finned section is connected to the input end of the evaporator section, and the output end of the evaporator section is connected to the input end of the front expansion device 13.

[0019] In this embodiment, the fin section includes heat dissipation fins 15, which are fixedly installed on the upper wall of the main unit chassis 1. A heat conduction coil 16 is provided inside the heat dissipation fins 15. The input end of the heat conduction coil 16 is connected to the output end of the compressor 11, and the output end of the heat conduction coil 16 is connected to the input end of the evaporation section.

[0020] In this embodiment, the evaporation section includes a heat-conducting spiral tube 17, which is fixedly installed on the inner wall of the exhaust pipe 5. The input end of the heat-conducting spiral tube 17 is connected to the output end of the fin section, and the output end of the heat-conducting spiral tube is connected to the input end of the front expansion device 13. The spray head 10 is installed outside the heat-conducting spiral tube 17.

[0021] In this embodiment, a filter plate 18 is fixedly installed inside the side wall of the main unit chassis 1, and a blower fan 19 is fixedly installed at the rear end of the filter plate 18. The filter plate 18 is installed inside the air inlet 6, and an exhaust fan 20 is fixedly installed at the upper end of the exhaust pipe 5. The airflow direction of the exhaust fan 20 is from inside the main unit chassis 1 to outside the main unit chassis 1, and the airflow direction of the blower fan 19 is from outside the main unit chassis 1 to inside the main unit chassis 1.

[0022] Its detailed connection methods are well-known technologies in this field; such as Figure 1 As shown, select a well-ventilated location to install the main unit 1, ensuring that the air inlet 6 and exhaust outlet are not blocked by obstacles; connect the main unit 1 to a suitable power supply to ensure normal operation of the equipment; fill with appropriate environmentally friendly refrigerant according to equipment requirements; after filling, check the system for leaks to ensure good sealing and avoid refrigerant loss.

[0023] Turn on the power to the main unit 1, and start the compressor 11, the supply fan 19, and the exhaust fan 20. Ensure all components are functioning correctly. Set the desired indoor temperature as needed, and adjust the control system for precise temperature control.

[0024] Clean the air filter 18 regularly to ensure unobstructed airflow and improve cooling efficiency. Ensure the supply fan 19 and exhaust fan 20 are operating normally and optimize the air intake and exhaust mechanism.

[0025] Start the annular water tank 7 and submersible pump 8, ensure the spray head 10 is working properly, increase additional water evaporation cooling, and improve the cooling effect; observe the environment: adjust the equipment operation status according to changes in the ambient temperature to maintain efficient cooling capacity.

[0026] Regular Inspection: Regularly inspect the operation of the compression cycle structure, vaporization heat dissipation structure, and liquid phase pipe 3 to promptly identify and resolve any issues. Noise Monitoring: Monitor operating noise; if abnormal noise is detected, immediate repair is necessary. Prevention of Electrical Failures: Ensure there are no flammable materials around the equipment to prevent fires caused by electrical malfunctions. Follow the Operation Manual: Always follow the user manual and maintenance guidelines provided by the equipment manufacturer to ensure safe and effective operation.

[0027] It should be noted that in this paper, relational terms such as first and second are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations.

[0028] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. An environmentally friendly air conditioner, comprising a main unit (1) and an air conditioner evaporator (2), characterized in that, The main unit (1) is equipped with a vaporization heat dissipation structure and a compression circulation structure. The output end of the main unit (1) is connected to a liquid phase pipe (3), which is connected to the input end of the air conditioner evaporator (2). The output end of the air conditioner evaporator (2) is connected to a suction pipe (4), which is connected to the compression circulation structure. The upper end of the main unit (1) is equipped with an exhaust pipe (5). The side wall of the main unit (1) is provided with an air inlet (6). The main unit (1) is equipped with an annular water tank (7), which is equipped with a submersible pump (8). The output end of the submersible pump (8) is equipped with a water delivery pipe (9), which is connected to the inner wall of the exhaust pipe (5). The output end of the water delivery pipe (9) is equipped with a spray head (10).

2. The environmentally friendly air conditioner according to claim 1, characterized in that... The compression cycle structure includes a compressor (11) and a gas-liquid separator (12). The gas-liquid separator (12) has a liquid storage function. The suction pipe (4) is connected to the input end of the gas-liquid separator (12). The output end of the gas-liquid separator (12) is connected to the input end of the compressor (11). The output end of the compressor (11) is connected to the input end of the vaporization heat dissipation structure. The output end of the vaporization heat dissipation structure is connected to a front expansion device (13). The liquid phase pipe (3) is connected to the output end of the front expansion device (13). The liquid phase pipe (3) is connected to the input end of the rear expansion device (14). The output end of the rear expansion device (14) is connected to the input end of the air conditioner evaporator (2). The compressor (11), the gas-liquid separator (12), and the rear expansion device (14) are fixedly installed in the main unit box (1) and located inside the annular water tank.

3. An environmentally friendly air conditioner according to claim 2, characterized in that... The vaporization heat dissipation structure includes a finned section and an evaporator section. The evaporator section is installed inside the exhaust pipe (5). The finned section is installed on the upper wall of the main unit (1). The input end of the finned section is connected to the output end of the compressor (11). The output end of the finned section is connected to the input end of the evaporator section. The output end of the evaporator section is connected to the input end of the front expansion device (13).

4. An environmentally friendly air conditioner according to claim 3, characterized in that... The fin section includes heat dissipation fins (15), which are fixedly installed on the upper wall of the main unit (1). A heat conduction coil (16) is provided inside the heat dissipation fins (15). The input end of the heat conduction coil (16) is connected to the output end of the compressor (11), and the output end of the heat conduction coil (16) is connected to the input end of the evaporator section.

5. An environmentally friendly air conditioner according to claim 3, characterized in that... The evaporation section includes a heat-conducting spiral tube (17), which is fixedly installed on the inner wall of the exhaust pipe (5). The input end of the heat-conducting spiral tube (17) is connected to the output end of the fin section, and the output end of the heat-conducting spiral tube is connected to the input end of the front expansion device (13). The spray head (10) is installed outside the heat-conducting spiral tube (17).

6. An environmentally friendly air conditioner according to claim 1, characterized in that... A filter plate (18) is fixedly installed on the inner side wall of the main unit (1). A blower fan (19) is fixedly installed at the rear end of the filter plate (18). The filter plate (18) is installed inside the air inlet (6). An exhaust fan (20) is fixedly installed at the upper end of the exhaust pipe (5). The air direction of the exhaust fan (20) is from inside the main unit (1) to outside the main unit (1). The air direction of the blower fan (19) is from outside the main unit (1) to inside the main unit (1).