Novel industrial dehumidifier structure in energy storage industry

By designing a new industrial dehumidifier structure for the energy storage industry, and using fans and filters to achieve constant temperature dehumidification, the problem of traditional energy storage devices lacking dehumidification function is solved, and the safety and quality of energy storage equipment are improved.

CN223760744UActive Publication Date: 2026-01-06SANHE TONGFEI REFRIGERATION
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Patent Information

Application Number
CN202520541171.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-01-06
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

Traditional energy storage devices lack dehumidification capabilities, leading to condensation buildup inside the container and posing an explosion risk.

Method used

Design a novel industrial dehumidifier structure for the energy storage industry, including a housing, condenser, evaporator, fan, compressor, dryer filter, and sensors. By monitoring humidity and temperature, constant temperature dehumidification is achieved using the fan and filter.

Benefits of technology

This reduces the risk of explosion due to excessive humidity inside energy storage devices, and improves the safety and quality of energy storage devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an industrial dehumidifier, in particular to a novel industrial dehumidifier structure in the energy storage industry, which comprises a box body, two butt flanges which are longitudinally arranged are arranged on the back of the box body, a condenser and an evaporator are respectively arranged on the butt flanges from top to bottom, a fan is arranged in the box body, and the air inlet end of the fan is in butt joint with the corresponding position of the evaporator. The air outlet end of the fan is in butt joint with the corresponding position of the condenser through an air pipe, a compressor and a drying filter are connected between the evaporator and the condenser in series through pipelines, and the two ends of the compressor are connected with a first control valve and a second control valve respectively. Compared with traditional energy storage equipment, the device is arranged in the external space of the equipment in a communicating mode, the humidity and the temperature of the environment in the energy storage equipment are monitored in real time, constant-temperature dehumidification of air is achieved through the centrifugal fan, the risk of explosion caused by too high humidity in the energy storage equipment is reduced, and the energy storage quality is improved.
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Description

Technical Field

[0001] This utility model relates to an industrial dehumidifier, and more particularly to a novel industrial dehumidifier structure for the energy storage industry. Background Technology

[0002] Industrial dehumidification refers to the removal of excess moisture generated during industrial production from the air through technical means in order to maintain the dryness and stability of the production environment. The commonly used equipment is the industrial dehumidifier, which uses the condensation principle to achieve efficient dehumidification.

[0003] Existing medium and large-sized energy storage container systems may experience excessive humidity, leading to condensation that flows into the container. This phenomenon exposes the lack of professional dehumidification function in traditional industrial temperature control and air conditioning energy storage temperature control systems, which pose risks to battery cell operation.

[0004] Given the limitation of existing energy storage devices in dehumidification, this paper proposes an industrial dehumidifier for the energy storage industry, aiming to provide safe and efficient dehumidification. Utility Model Content

[0005] In order to overcome the shortcomings of traditional energy storage devices that lack dehumidification function, resulting in condensate retention inside the container, the purpose of this utility model is to provide a new industrial dehumidifier structure for the energy storage industry.

[0006] The technical solution is as follows: a new type of industrial dehumidifier structure for the energy storage industry, including a box, the box having a first side wall, two docking flanges arranged along a first direction on the first side wall, a condenser and an evaporator being arranged inside the box, the condenser and the evaporator respectively corresponding to the two docking flanges;

[0007] The housing is also equipped with a fan, which has an air inlet and an air outlet. The air inlet corresponds to the evaporator, and the air outlet corresponds to the condenser through a duct. The evaporator and the condenser are connected to a compressor through a first pipe, and a dryer filter is also connected to the evaporator and the condenser through a second pipe.

[0008] As an improvement to the above solution, the compressor is provided with a first pipe at both ends, and a first control valve and a second control valve are respectively provided on the two first pipes; the dryer filter is provided with a second pipe at both ends.

[0009] As an improvement to the above solution, a control component is also included. The control component is disposed inside the housing and located on the side of the fan away from the evaporator. The control component is used to control the evaporator and the condenser.

[0010] As an improvement to the above solution, it also includes a fixed frame, a folding baffle, a handle, and a magnet. The lower mating flange is connected to the fixed frame, the fixed frame is provided with a folding baffle, the folding baffle is provided with a handle, and a magnet is provided between the folding baffle and the fixed frame.

[0011] As an improvement to the above solution, filter cotton is also included, with filter cotton placed in the gaps of the folded baffles.

[0012] As an improvement to the above solution, a temperature sensor is also included. The upper docking flange is equipped with a temperature sensor, which is connected to the control component.

[0013] As an improvement to the above solution, a humidity sensor is also included. The upper docking flange is also equipped with a humidity sensor, which is connected to the control component.

[0014] In summary, this technical solution specifically discloses a novel industrial dehumidifier structure for the energy storage industry, including a housing with a first side wall. Two docking flanges are arranged along a first direction on the first side wall. A condenser and an evaporator are also installed inside the housing, each corresponding to one of the two docking flanges. A fan is also installed inside the housing, with an air inlet and an air outlet. The air inlet corresponds to the evaporator, and the air outlet corresponds to the condenser via a duct. A compressor is connected between the evaporator and the condenser via a first pipe, and a drying filter is also connected between the evaporator and the condenser via a second pipe.

[0015] Compared to traditional energy storage devices, this device is connected to the external space of the device to monitor the humidity and temperature of the internal environment in real time. It also uses a centrifugal fan to dehumidify the air at a constant temperature, reducing the risk of explosion due to excessive humidity inside the energy storage device and improving the quality of energy storage. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of the front of this utility model.

[0017] Figure 2 This is a three-dimensional structural diagram of the back of this utility model.

[0018] Figure 3 This is a three-dimensional structural cross-sectional view of the present invention.

[0019] Figure 4 This is a three-dimensional structural diagram of the fan and duct of this utility model.

[0020] Figure 5 This is a three-dimensional structural diagram of the folding baffle and magnet of this utility model.

[0021] The labels in the diagram are as follows: 1. Housing, 2. Control components, 3. Connecting flange, 4. Evaporator, 5. First pipe, 6. First control valve, 7. Compressor, 8. Second control valve, 9. Condenser, 10. Dryer filter, 11. Fan, 12. Air duct, 13. Fixing frame, 14. Filter cotton, 15. Folding baffle, 16. Magnet, 17. Handle, 18. Temperature sensor, 19. Humidity sensor. Detailed Implementation

[0022] The above-described solution will be further illustrated below with reference to specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of this application. The implementation conditions used in the embodiments may be further adjusted according to the conditions of specific manufacturers, and the implementation conditions not specified are generally those in routine experiments.

[0023] Example: A novel industrial dehumidifier structure for the energy storage industry, such as... Figures 1-5 As shown, the device includes a housing 1 with a first side wall. Two connecting flanges 3 are arranged on the first side wall along a first direction. A condenser 9 and an evaporator 4 are arranged inside the housing 1 along the first direction, with the condenser 9 positioned above the evaporator 4. The condenser 9 and evaporator 4 correspond to the two connecting flanges 3 respectively. Two openings are provided on the first side wall corresponding to the condenser 9 and evaporator 4. The first direction is... Figure 1 The middle arrow indicates direction;

[0024] The housing 1 is equipped with a fan 11 and a duct 12. The duct 12 has a first end and a second end. The first end is connected to the condenser 9. The fan 11 has an air inlet end and an air outlet end. The air inlet end is connected to the evaporator 4, and the air outlet end is connected to the second end.

[0025] Thus, by rotating the fan 11, airflow can be blown through the duct 12 to the condenser 9.

[0026] The housing 1 is also equipped with a compressor 7. Both ends of the compressor 7 are provided with first pipes 5. The two first pipes 5 are respectively connected to the evaporator 4 and the condenser 9, and the two first pipes 5 are respectively provided with a first control valve 6 and a second control valve 8.

[0027] The housing 1 is also equipped with a dryer filter 10. The dryer filter 10 has a second pipe at each end. The two second pipes are connected to the evaporator 4 and the condenser 9 respectively.

[0028] The housing 1 is also equipped with a control component 2, which is located on the side of the air duct 12 inside the housing 1 away from the evaporator 4, and is used to control the evaporator 4 and the condenser 9.

[0029] like Figure 5As shown, it also includes a fixing frame 13, a folding baffle 15, a handle 17, and a magnet 16. The fixing frame 13 is disposed on the first side wall and corresponds to and is connected to the mating flange 3 below. The fixing frame 13 has a rectangular structure, and a folding baffle 15 that can be opened and closed in a second direction is provided inside the fixing frame 13. The folding baffle 15 is equipped with a handle 17; the second direction is... Figure 5 The middle arrow indicates the direction, and the second direction is perpendicular to the first direction;

[0030] Pulling the handle 17 can move the folding baffle 15, allowing the folding baffle 15 to open and close.

[0031] There is a gap in the folding baffle 15, and a filter cotton 14 is installed in the gap. Thus, when the fan 11 is started, the external airflow passes through the folding baffle 15 and can be filtered by the filter cotton 14.

[0032] A magnet 16 is provided between the folding baffle 15 and the fixed frame 13;

[0033] The magnet 16 enables a stable connection between the folding baffle 15 and the fixed frame 13, thus achieving a limiting function.

[0034] like Figure 2 As shown, it also includes a temperature sensor 18 and a humidity sensor 19. The upper docking flange 3 is equipped with a temperature sensor 18 and a humidity sensor 19, both of which are connected to the control component 2.

[0035] Working principle: This device is located outside the energy storage equipment, which can be a container, storage box, etc. It is connected to the energy storage equipment through the upper and lower connecting flanges 3, and the connection is sealed with rubber strips. The control component 2 is a controller with a display screen, specifically the DLPC8445 display controller. The internal environment of the energy storage equipment is monitored by temperature sensor 18 and humidity sensor 19. When the humidity is high and reaches the preset value, the fan 11 can be turned on by the control component 2. Humid air is drawn into the device through the fan 11. The gas absorbs heat and condenses into liquid through the evaporator 4, and the water is separated from the air. The water is absorbed by the dryer filter 10, and the air temperature decreases. Then, the air is cooled by the condenser 9, and the temperature of the dried air increases. This completes the whole process of constant temperature and dehumidification of the internal air in the energy storage system.

[0036] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.

Claims

1. A new type of industrial dehumidifier structure in the energy storage industry, comprising a box (1), characterized in that, The box (1) has a first side wall, two butt flanges (3) are arranged on the first side wall in a first direction, a condenser (9) and an evaporator (4) are arranged in the box (1), and the condenser (9) and the evaporator (4) correspond to the two butt flanges (3) respectively; The box (1) is further provided with a fan (11), the fan (11) has an air inlet end and an air outlet end, the air inlet end corresponds to the evaporator (4), the air outlet end corresponds to the condenser (9) through a wind pipe (12), the evaporator (4) and the condenser (9) are connected by a first pipeline (5), and the evaporator (4) and the condenser (9) are further connected by a second pipeline.

2. The new industrial dehumidifier structure for energy storage industry of claim 1, characterized in that, The compressor (7) is provided with the first pipeline (5) at both ends, the first control valve (6) and the second control valve (8) are arranged on the two first pipelines (5) respectively; the drying filter (10) is provided with the second pipeline at both ends.

3. The new industrial dehumidifier structure for energy storage industry of claim 2, characterized in that, The control assembly (2) is arranged in the box (1) and located on the side, away from the evaporator (4), of the fan (11), and is used for controlling the evaporator (4) and the condenser (9).

4. The new industrial dehumidifier structure for energy storage industry of claim 3, characterized in that, The fixed frame (13), the folding baffle (15), the handle (17) and the magnet (16) are further included, the lower butt flange (3) is connected with the fixed frame (13), the folding baffle (15) is arranged in the fixed frame (13), the handle (17) is arranged on the folding baffle (15), and the magnet (16) is arranged between the folding baffle (15) and the fixed frame (13).

5. The new industrial dehumidifier structure for energy storage industry of claim 4, characterized in that, The filter cotton (14) is further included, and the filter cotton (14) is arranged at the gap of the folding baffle (15).

6. The new industrial dehumidifier structure for energy storage industry of claim 5, characterized in that, The temperature sensor (18) is further included, and the upper butt flange (3) is provided with the temperature sensor (18), and the temperature sensor (18) is connected with the control assembly (2).

7. The new industrial dehumidifier structure for energy storage industry of claim 6, characterized in that, The humidity sensor (19) is further included, and the upper butt flange (3) is further provided with the humidity sensor (19), and the humidity sensor (19) is connected with the control assembly (2).