Ozone water spray cooling fan

By adding a BDD active oxygen generator and a photoplasma generator to the water mist generation pipeline of the cooling fan, active oxygen water is prepared and sterilized, solving the problem of lung diseases caused by unsterilized water mist and realizing a highly safe active oxygen water spray cooling fan design.

CN223826398UActive Publication Date: 2026-01-23GUANGZHOU BAIWUCHUN TECH CO LTD
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Patent Information

Application Number
CN202520164015.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-23
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

The water mist sprayed by the existing cooling fans is not disinfected, which can easily cause lung diseases in workers.

Method used

A BDD active oxygen generator is added to the water mist generation pipeline to produce active oxygen water, and the water mist is sterilized by a photoplasma generator. Combined with a dustproof net and fan design, air purification is ensured.

Benefits of technology

It effectively kills biological contaminants in water mist, reduces the risk of lung diseases caused by workers inhaling untreated water mist, and improves the safety of cooling fans.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cooling fans, in particular to an active oxygen water spray cooling fan which comprises a shell with an opening in the side face and a water spray outlet fixedly installed at the opening and further comprises a water spray pipeline connected with an inlet of the water spray outlet, and the water spray pipeline comprises a water pump, a water flow pipeline, a BDD active oxygen generator, an atomization device and a spray head which are sequentially connected. A light plasma generator is arranged between the nozzle outlet and the water mist outlet, and the light plasma generation direction of the light plasma generator is aligned with the outlet of the water mist outlet. According to the active oxygen water spray cooling fan, the bdd active oxygen generator is arranged in the water conveying pipeline, used for generating water mist, of a conventional cooling fan, water is prepared into active oxygen water in the pipeline, then the active oxygen water is sent to the atomization spray head to be sprayed out, biological pollution in water is reduced through the water mist formed through active oxygen water sterilization, and the water mist is sprayed out. Lung diseases caused by the fact that workers in a service area inhale untreated water mist are reduced.
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Description

Technical Field

[0001] This utility model relates to the field of cooling fan technology, and in particular to an active oxygen water spray cooling fan. Background Technology

[0002] A fresh air system is an independent air handling system, its core components being an air supply system and an exhaust system. This system continuously supplies fresh air into a sealed indoor space using dedicated equipment on one side, while simultaneously exhausting stale air outdoors using another dedicated system on the other side. This inlet-outlet design creates a continuously flowing fresh air field within the room, effectively meeting the urgent need for indoor ventilation. The cooling fan is a crucial component of the air supply system. Existing cooling fans use atomizing nozzles to convert water into mist to increase air cooling; however, the water used (such as tap water) is often untreated, resulting in bacteria in the mist sprayed by the cooling fan. In areas where these cooling fans are used, long-term inhalation of this mist can easily lead to lung diseases among workers. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a highly safe active oxygen water spray cooling fan.

[0004] To solve the above-mentioned technical problems, this utility model provides an active oxygen water spray cooling fan, including a housing with a side opening and a water mist outlet fixedly installed at the opening, and a water mist pipeline connected to the inlet of the water mist outlet. The water mist pipeline includes a water pump, a water flow pipe, a BDD active oxygen generator, an atomizing device and a nozzle connected in sequence. A photoplasma generator is provided between the nozzle outlet and the water mist outlet, and the photoplasma generation direction of the photoplasma generator is aligned with the outlet of the water mist outlet.

[0005] Furthermore, it includes a mounting bracket embedded in the opening of the housing, with the water mist outlet fixedly installed within the mounting bracket.

[0006] Furthermore, the water mist outlet has its inlet on the top and its outlet on the front.

[0007] Furthermore, it includes multiple sets of mounting brackets arranged vertically on the side of the housing and water mist outlets.

[0008] Furthermore, a dustproof net is installed inside the other side of the housing where the water mist outlet is installed.

[0009] Furthermore, the photoplasma generator is mounted on the top surface inside the mounting bracket.

[0010] Furthermore, a perforated mesh is provided at the outlet of the photoplasma generator.

[0011] Furthermore, the mesh panel has multiple ports of varying sizes.

[0012] The present invention incorporates a BDD active oxygen generator in the water transmission pipeline used by conventional cooling fans to generate water mist. Water is prepared into active oxygen water in the pipeline and then sent to the atomizing nozzle for spraying. The water mist formed after being sterilized by active oxygen water reduces biological pollution in the water and reduces lung diseases caused by workers in the service area inhaling untreated water mist. Attached Figure Description

[0013] Figure 1 This is a 3D schematic diagram of an active oxygen water spray cooling fan;

[0014] Figure 2 This is a schematic diagram of the internal piping structure of an active oxygen water spray cooling fan;

[0015] Figure 3 This is a schematic diagram of the water mist outlet structure of an active oxygen water spray cooling fan. Detailed Implementation

[0016] The present invention will be further described in detail below with reference to specific embodiments.

[0017] The active oxygen water spray cooling fan in this embodiment is shown below. Figure 1 It includes a housing 1 with a side opening, a mounting bracket 2 embedded in the opening of the housing 1, and a water mist outlet 21 fixedly installed within the mounting bracket 2. See Figure 2 The activated oxygen water spray cooling fan also includes a water mist pipe 22 connecting to the inlet of the water mist outlet 21. The water mist pipe 22 includes a water pump 3, a water flow pipe 4, a BDD activated oxygen generator 5, an atomizing device 6, and a nozzle 7 connected in sequence. A photoplasma generator 26 is installed between the outlet of the nozzle 7 and the water mist outlet 21, with the photoplasma generation direction aligned with the outlet of the water mist outlet 21. The cooling fan incorporates a BDD activated oxygen generator within the water transmission pipe used by conventional cooling fans to generate water mist. Water is prepared into activated oxygen water within the pipe and then sent to the atomizing nozzle for spraying. The water mist formed after sterilization by the activated oxygen water reduces biological contamination in the water, minimizing lung diseases caused by inhaling untreated water mist by staff in the service area. Furthermore, see... Figure 2 The inlet of the water mist outlet 21 is on the side and the outlet is on the front. A photoplasma generator 26 is provided on the inner periphery of the mounting bracket 2. The photoplasma generation direction of the photoplasma generator is aligned with the outlet of the water mist outlet, thereby performing disinfection treatment.

[0018] The water mist pipe 22 of the active oxygen water spray cooling fan starts at a water pump 3 connected to a water storage chamber. The water pump 3 is welded inside the water storage chamber. The other end of the water pump 3 is connected to a water flow pipe 4. One end of the water flow pipe 4 is connected to the BDD active oxygen generator 5 by a snap-fit. The BDD active oxygen generator 5 is equipped with a filter plate inside. The other end of the BDD active oxygen generator 5 is connected to the inlet of the atomizing device 6. The outlet of the atomizing device 6 is the nozzle 7.

[0019] The working process of this active oxygen water spray cooling fan is as follows: the water pump 3 draws water from the water storage chamber into the water flow pipe 4 through the pumping pipe; the water drawn into the water flow pipe 4 enters the BDD active oxygen generator 5 for treatment, and the treated water flows into the atomizing device 6 for atomization treatment, specifically, it is atomized and sprayed out through the nozzle 7 to form water mist. After the water mist is sterilized by the photoplasma generator, it diffuses out of the shell 1 together with the photoplasma, thus realizing a highly safe active oxygen water spray cooling fan.

[0020] See Figure 1 The activated oxygen water spray cooling fan has multiple sets of mounting brackets 2 and water mist outlets 21 arranged vertically on the side of the housing 1. Each set of mounting brackets 2 and water mist outlet 21 is equipped with a photoplasma generator. A dust filter 11 is installed inside the housing 1 on the other side where the water mist outlets 21 are installed. This side can be opened to replace the dust filter 11. Outside air can enter the housing 1 through the dust filter 11, and the purified air will be discharged outside the housing 11 through the outlets of the water mist outlets 21.

[0021] The bottom of the housing 1 is welded with casters 12, which can facilitate the movement or transport of the active oxygen water spray cooling fan, making it possible for a single person to operate, saving both time and energy.

[0022] See Figure 3 The activated oxygen water spray cooling fan has a perforated mesh 27 at the outlet of the photoplasma generator 26. Multiple meshes 27 with varying mesh sizes are installed at the outlet of the photoplasma generator 26 to regulate the amount of photoplasma diffused outward from the generator. A fan 24 is also fixedly installed in this space. The fan blades 25 of the fan 24 are angled counterclockwise to align the airflow direction with the airflow direction of the water mist outlet 21. Specifically, the fan 24 is fixed to the middle of the mounting frame 2 via spacer bars 23, and the water mist outlet 21 is fixed to the other side of the spacer bars 23.

[0023] The above description is merely an embodiment of the present invention and does not limit the scope of patent protection. Any non-substantial changes or substitutions made by those skilled in the art based on the present invention will still fall within the scope of patent protection.

Claims

1. A living oxygen water spray cooling fan, characterized by: The shell (1) with side opening and the water mist outlet (21) fixedly installed at the opening, further comprising the water mist pipeline (22) connected with the inlet of the water mist outlet (21), the water mist pipeline (22) comprising the water pump (3), water flow pipeline (4), BDD active oxygen generator (5), atomizing device (6) and spray head (7) connected in sequence, the light plasma generator (26) is arranged between the outlet of the spray head (7) and the water mist outlet (21), and the light plasma generation direction of the light plasma generator is aligned with the outlet of the water mist outlet (21).

2. The active oxygen water mist cooling fan of claim 1, wherein: The mounting rack (2) embeddedly installed at the opening of the shell (1) is further included, and the water mist outlet (21) is fixedly installed in the mounting rack (2).

3. The active oxygen water misting cooling fan of claim 1, wherein: The inlet of the water mist outlet (21) is on the upper side and the outlet is on the front side.

4. The active oxygen water misting cooling fan of claim 2, wherein: The shell (1) is provided with multiple groups of mounting racks (2) and water mist outlets (21) arranged vertically on the side of the shell (1).

5. The active oxygen water misting cooling fan of claim 1, wherein: The other side of the shell (1) where the water mist outlet (21) is installed is internally provided with a dust screen (11).

6. The active oxygen water misting cooling fan of claim 2, wherein: The light plasma generator (26) is installed on the top surface inside the mounting rack (2).

7. The active oxygen water misting cooling fan of claim 6, wherein: The light plasma generator (26) is provided with a mesh screen with hollow holes.

8. The active oxygen water misting cooling fan of claim 7, wherein: The mesh screen has multiple mesh openings with different sizes.