Humidifying device matched with machine room air conditioner

By introducing a filtration mechanism and humidification components into the air conditioning humidification device in the computer room, the water quality problem was solved, and the removal of impurities and odors was achieved efficiently. This improved the humidification efficiency and equipment stability, ensured the cleanliness of the water mist, and met the humidity control requirements of the computer room.

CN223726512UActive Publication Date: 2025-12-26CHINA GEOLOGICAL SURVEY XIAN MINERAL RESOURCES SURVEY CENT
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Patent Information

Application Number
CN202520095793.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2025-12-26
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

In existing computer room air conditioning humidification devices, the water in the water tank is untreated, which may lead to water quality problems, impurities entering the air and causing pollution, and it cannot effectively remove odors from the water, affecting the humidification effect and the lifespan of the equipment.

Method used

A humidification device for computer room air conditioning was designed, including a filtration mechanism and humidification components. The filtration mechanism removes particulate matter and odors from the water through a filter cartridge and filter screen. The water spray component and wet film improve humidification efficiency. The exhaust fan enhances airflow atomization. The control component enables intelligent control.

Benefits of technology

It effectively removes impurities and odors from the water, improves humidification efficiency and equipment stability, ensures clean water mist, extends equipment life, and meets the humidity control requirements of the computer room.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223726512U_ABST
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Abstract

The utility model relates to the technical field of humidifier equipment, in particular to a machine room air conditioner matched humidification device which comprises a humidifier body and a filtering mechanism, the humidifier body comprises a shell, a water conveying pipe and a humidification assembly, an inner cavity of the shell is connected with a partition plate, the partition plate divides the shell into an atomization cavity and a water storage cavity, and one end of the water conveying pipe is connected with an external water source; a water conveying hole communicated with the water storage cavity is formed in the side wall of the shell, the humidifying assembly comprises a wet film and a water spraying piece, the wet film is located in the atomization cavity and divides the atomization cavity into a water spraying part and an atomization part, one end of the water spraying piece stretches into the water storage cavity, the other end of the water spraying piece penetrates through the partition plate to stretch into the water spraying part, and the water spraying piece is used for spraying water to the wet film; the atomizing opening is close to the atomizing part; the filter mechanism comprises a filter cartridge and a filter part, the filter cartridge is connected to one end, close to the shell, of the water delivery pipe, one end of the filter cartridge communicates with the water delivery hole, and the filter part comprises a filter screen connected into the filter cartridge; the water treatment device has the effect of treating water.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of humidifier equipment, in particular to a humidifying device matched with a computer room air conditioner. BACKGROUND

[0002] The computer room often faces the problem of excessively low air humidity in winter. In the case of excessively low air humidity, static electricity may occur during the operation of the machine, causing damage to the equipment. In the existing computer room, an air conditioner is often used for humidification to reduce the generation of static electricity.

[0003] In the related art, the application file with the publication number CN217131396U discloses a humidifying device for heating, ventilation and air conditioning engineering. The lower end of the humidifying box is fixedly connected with a water tank. The side wall of the water tank is fixedly connected with a water pump. The output end of the water pump is fixedly connected with a water guide pipe. The end of the water guide pipe away from the water pump penetrates through the upper side wall of the humidifying box and is fixedly connected with two water spraying pipes. The lower side wall of the water spraying pipe is provided with a water spraying opening. The humidifying box is provided with a wet membrane one and a wet membrane two. The wet membrane one and the wet membrane two are provided with a spraying cavity. The wet membrane one and the wet membrane two are provided with a spraying cavity. The spraying cavity is provided with a spraying pipe. The spraying pipe is provided with a spraying opening on the side wall. Thus, a water mist environment is formed between the wet membrane one and the wet membrane two.

[0004] In the related art, a water mist environment is formed between the wet membrane one and the wet membrane two. After the air passes through the wet membrane one and enters the spraying cavity, it is fully contacted with the water mist, the flow rate of the air is slowed down, and the air can be humidified. However, when the water in the water tank is sprayed to the wet membrane, the water in the water tank cannot be treated, which may cause impurities in the water. Utility model content

[0005] In order to overcome the above problems, the present application provides a humidifying device matched with a computer room air conditioner.

[0006] The humidifying device matched with a computer room air conditioner provided by the present application adopts the following technical scheme:

[0007] A humidifying device matched with a computer room air conditioner, comprising a humidifier body and a filtering mechanism, the humidifier body comprising a shell, a water conveying pipe and a humidifying assembly, the shell inner cavity being connected with a partition plate, the partition plate dividing the shell into an atomizing cavity and a water storage cavity, one end of the water conveying pipe being connected with an external water source, a water conveying hole being formed in the side wall of the shell and being in communication with the water storage cavity, the humidifying assembly comprising a wet membrane and a water spraying element, the wet membrane being located in the atomizing cavity, the wet membrane being connected to the shell, the wet membrane dividing the atomizing cavity into a water spraying part and an atomizing part, one end of the water spraying element extending into the water storage cavity, the other end of the water spraying element extending through the partition plate and extending into the water spraying part, the water spraying element being used for spraying water to the wet membrane, a atomizing opening being formed in the top wall of the shell and being close to the atomizing part.

[0008] The filter mechanism comprises a filter cylinder and a filter element, the filter cylinder is connected to the water delivery pipe near one end of the shell, the filter cylinder is hollow, one end of the filter cylinder is in communication with the water delivery hole, and the filter element comprises a filter screen, the filter screen is connected in the filter cylinder, and the filter screen is used for filtering water.

[0009] By adopting the above technical scheme, the machine room air conditioner matching humidifying device can effectively solve the water quality problem caused by untreated water in the water tank in the prior art. Specifically, the filter cylinder and the filter screen in the filter mechanism can effectively remove particulate matter, precipitate and other impurities in the water, ensure the cleanliness of the water entering the water storage cavity, and prevent impurities from entering the air with water mist to cause pollution. At the same time, the design of the filter screen makes the whole system more reliable, avoids damage of impurities to the humidifying assembly, and prolongs the service life of the equipment; in addition, the wet membrane divides the atomizing cavity into a water spraying part and an atomizing part, cooperates with the work of the water spraying element, can fully contact with the air when the air passes through the wet membrane, and improves the humidifying efficiency and effect; the design of the atomizing port at the top is beneficial to uniform diffusion of the water mist into the machine room environment, and further improves the humidifying performance.

[0010] In one specific implementable scheme, the filter element further comprises an adsorption plate, the adsorption plate is connected to the filter cylinder, the adsorption plate is located on the side of the filter screen close to the shell, and the adsorption plate is used for adsorbing odor in water.

[0011] By adopting the above technical scheme, the odor in the water can be effectively removed, the water mist entering the air is more clean, the humidifying quality is improved, and the influence of the odor on the machine room environment is avoided.

[0012] In one specific implementable scheme, the filter element further comprises a filter ring, the filter cylinder is provided with a placing groove for placing the filter ring at an end away from the shell, the filter ring is coaxially arranged with the filter cylinder, the filter screen and the adsorption plate are detachably connected to the inner wall of the filter ring, and the filter cylinder and the water delivery pipe are detachably connected.

[0013] The filtering mechanism further comprises two mounting members, both of which are located in the placement groove and are symmetrically arranged along the axis of the filter cylinder, and each of the mounting members comprises an abutting plate and a spring, the filter cylinder is provided with a receiving groove for accommodating the abutting plate in the placement groove, the abutting plate is slidably connected to the filter cylinder and can move towards or away from the side of the filter cylinder, and both of the abutting plates can abut against the filter ring, the side of the abutting plate close to the shell is obliquely arranged away from the axis of the filter cylinder, the spring is located in the receiving groove and is arranged in the same direction as the sliding direction of the abutting plate, one end of the spring is fixed to the abutting plate, and the other end is fixed to the filter cylinder, and when both of the abutting plates abut against the filter ring, the side wall of the abutting plate away from the spring is flush with the groove wall of the placement groove.

[0014] By adopting the above technical scheme, the filter screen and the adsorption plate in the filtering member can be detachably connected to the inner wall of the filter ring, which facilitates regular replacement and ensures clean water quality; the filter cylinder and the water delivery pipe are detachably connected, which facilitates maintenance and cleaning; the two mounting members are located in the placement groove and are symmetrically arranged along the axis of the filter cylinder, the abutting plate can slide in the filter cylinder and firmly fix the filter ring in the placement groove under the action of the spring, thereby preventing the filter ring from loosening and falling off; this design not only improves the filtering effect but also enhances the stability and reliability of the equipment and prolongs the service life; it simplifies the replacement process, reduces the maintenance cost and ensures continuous and efficient filtering performance; it facilitates cleaning and inspection, reduces the risk of blockage and ensures smooth water flow; the design of the abutting plate and the spring provides stable mechanical support to ensure that the filter ring is stable and does not shift, thereby further improving the filtering effect and safety.

[0015] In one specific implementation scheme, the water spraying member comprises a main pipe, a plurality of branch pipes, a plurality of spray heads and a water pump, one end of the main pipe extends into the water storage cavity, the other end extends into the water spraying part through the partition plate, the plurality of branch pipes are located in the water spraying part, the branch pipes are close to the wet membrane, the plurality of branch pipes are distributed at intervals along the arrangement direction of the wet membrane, the branch pipes are connected to the shell, one end of the main pipe located in the water spraying part is in communication with the plurality of branch pipes, each branch pipe is provided with a plurality of spray heads, the plurality of spray heads located on the same branch pipe are distributed at intervals along the arrangement direction of the branch pipe, the spray heads have nozzles facing the wet membrane, and the water pump is connected to the main pipe.

[0016] By adopting the technical scheme, the design of the water spraying part enables water to be uniformly and efficiently sprayed on the wet film, improving the humidifying effect. Specifically, the plurality of branch pipes and the plurality of nozzles are distributed in the water spraying part and are distributed at intervals along the setting direction of the wet film, so that water can uniformly cover the entire surface of the wet film, increasing the contact area between water and air and improving the humidifying efficiency; the nozzles are oriented toward the wet film, further enhancing the formation of water mist and promoting the effective mixing of water molecules and air; these designs work together to improve the overall performance of the humidifying device.

[0017] In a specific implementable scheme, the humidifying assembly further comprises an air suction part, the air suction part comprises two air suction machines, one of the air suction machines is embedded in the side wall of the shell, the air suction machine is close to the water spraying part, the other air suction machine is located at the atomization port, the air suction machine is connected to the shell, and the air suction machine located at the atomization port can suck and send the atomized airflow out of the shell.

[0018] By adopting the technical scheme, the working efficiency and stability of the humidifying device can be effectively improved, the air suction machine embedded in the side wall of the shell can suck and send the indoor air to the water spraying part, so that the airflow passes through the wet film and is atomized, increasing the contact area between the air and the wet film and improving the humidifying effect; the air suction machine located at the atomization port can quickly suck and send the atomized airflow out of the shell, ensuring that the atomized water vapor quickly spreads to the environment, accelerating the air humidifying process; the design of the air suction machine makes the entire humidifying system more efficient, and the required humidity level can be reached in a short time, meeting the requirements of the computer room for humidity control.

[0019] In a specific implementable scheme, the humidifier body further comprises a control assembly, the control assembly is a control panel, the control panel is fixed to the outside of the shell, the control panel sets the required air humidity parameters, and the control panel is electrically connected with the air suction machine and the water pump.

[0020] By adopting the technical scheme, intelligent control of the computer room air conditioner supporting humidifying device is realized. Specifically, the operator can conveniently set the required air humidity parameters and can monitor and adjust the humidifying process in real time, the control panel is electrically connected with the air suction machine and the water pump, the air suction machine and the water pump can be automatically started or stopped according to the preset humidity value, the humidity in the computer room is maintained within the predetermined range, the precision and efficiency of humidifying are improved, and the need for manual intervention is reduced.

[0021] In a specific implementable scheme, the humidifying assembly further comprises a control part, the control part comprises a humidity sensor, the humidity sensor is fixed to the outer wall of the shell, and the humidity sensor is electrically connected with the control panel.

[0022] By adopting the technical scheme, the humidity sensor can detect the air humidity in the computer room in real time and feed back data to the control panel, when the air humidity is lower than the preset value, the control panel will automatically start the humidifying assembly to humidify, when the air humidity reaches or exceeds the preset value, the control panel will stop the humidifying operation, the design realizes accurate control of the air humidity in the computer room, avoids the static problem and equipment damage caused by insufficient humidity, and also prevents adverse effects caused by excessive humidification.

[0023] In a specific implementation, the atomizing port is fixedly provided with an atomizing pipe, and a top cover is fixedly arranged at one end of the atomizing pipe away from the atomizing port, a plurality of atomizing holes are arranged between the top cover and the atomizing pipe, and the plurality of atomizing holes are uniformly distributed along the circumferential direction of the lower edge of the top cover.

[0024] By adopting the technical scheme, the design of the top cover and the atomizing pipe can effectively prevent dust and other impurities from entering the inside of the atomizing pipe, avoid blocking the atomizing holes, ensure smooth discharge of the water mist, and improve the humidifying efficiency. The plurality of atomizing holes are uniformly distributed along the circumferential direction of the lower edge of the top cover, so that the water mist can be uniformly diffused in the space, and the uniformity and effect of air humidification are improved.

[0025] In summary, the present application has at least one of the following beneficial technical effects:

[0026] 1. The designed computer room air conditioner matching humidifying device can effectively solve the water quality problem caused by untreated water in the water tank in the prior art. Specifically, the filter cartridge and filter screen in the filtering mechanism can effectively remove particulate matter, sediment and other impurities in the water, ensure the cleanliness of the water entering the water storage cavity, and prevent impurities from entering the air with the water mist to cause pollution.

[0027] 2. The designed computer room air conditioner matching humidifying device can effectively remove odors in the water, ensure that the water mist entering the air is cleaner, improve the humidifying quality, and avoid the influence of odors on the computer room environment.

[0028] 3. The designed computer room air conditioner matching humidifying device can effectively improve the working efficiency and stability of the humidifying device, the exhaust fan embedded in the side wall of the shell can send indoor air to the water spraying part, so that the airflow is atomized after passing through the wet membrane, the contact area of the air and the wet membrane is increased, and the humidifying effect is improved; the design of the exhaust fan makes the whole humidifying system more efficient, and the required humidity level can be reached in a short time to meet the requirements of the computer room for humidity control. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 is a schematic diagram of the overall structure in the embodiment of the present application.

[0030] Figure 2is a sectional view of the shell in the embodiment.

[0031] Figure 3 is a sectional view of the filter cartridge in the embodiment.

[0032] BRIEF DESCRIPTION OF THE DRAWINGS: 1, humidifier body; 11, shell; 111, partition; 1111, through slot; 112, atomization cavity; 113, water storage cavity; 114, water delivery hole; 115, atomization port; 116, mist outlet pipe; 1161, top cover; 12, water delivery pipe; 13, control assembly; 14, humidifying assembly; 141, wet membrane; 142, water spraying element; 1421, main pipe; 1422, branch pipe; 1423, spray head; 1424, water pump; 143, air suction element; 1431, air suction fan; 144, control element; 1441, regulating valve; 1442, humidity sensor; 1443, liquid level sensor; 2, filter mechanism; 21, filter cartridge; 211, placement groove; 212, containing groove; 22, filter element; 221, filter ring; 222, filter screen; 223, adsorption plate; 23, mounting element; 231, abutment plate; 232, spring. DETAILED DESCRIPTION

[0033] The following description will be made in conjunction with the accompanying drawings. Figures 1-3 The application is described in further detail.

[0034] Embodiments of the application disclose a humidifying device matched with a computer room air conditioner.

[0035] Referring to Figure 1 and Figure 2 , the humidifying device matched with the computer room air conditioner comprises a humidifier body 1 and a filter mechanism 2. The humidifier body 1 comprises a shell 11, a water delivery pipe 12, a control assembly 13 and a humidifying assembly 14. The shell 11 is internally provided with a partition 111. The partition 111 is horizontally arranged and each side of the partition 111 is fixedly connected to the inner wall of the shell 11 by welding. The partition 111 divides the shell 11 into an atomization cavity 112 and a water storage cavity 113 in the vertical direction. The atomization cavity 112 is above the partition 111, and the water storage cavity 113 is below the partition 111. The water delivery pipe 12 is close to one side of the shell 11. One end of the water delivery pipe 12 is connected to an external water source, and the other end is arranged through the shell 11 and communicates with the water storage cavity 113. The water delivery pipe 12 is fixedly connected to the shell 11. The side wall of the shell 11 is provided with a water delivery hole 114 through which the water delivery pipe 12 passes. The water of the external water source enters the water storage cavity 113 through the water delivery pipe 12.

[0036] Referring to Figure 1 and Figure 2 , the control assembly 13 is a control panel. The control panel is fixedly arranged on the outer side wall of the shell 11. The required air humidity parameters are set on the control panel to control the humidifying assembly 14 to perform the humidifying operation, so that the humidifying device matched with the computer room air conditioner can be adjusted.

[0037] With reference to Figure 2 The humidifying assembly 14 comprises a wet film 141, a water spraying part 142, an air suction part 143 and a control part 144. The wet film 141 is located in the atomizing cavity 112 and is arranged perpendicularly to the partition plate 111. The wet film 141 is fixedly connected to the side wall of the shell 11 by screws. The partition plate 111 is provided with a through slot 1111 near the wet film 141 for water flow, so as to facilitate the flow of excess water into the water storage cavity 113 for water recycling. The wet film 141 divides the atomizing cavity 112 into a water spraying part and an atomizing part. The water spraying part 142 comprises a main pipe 1421, a plurality of branch pipes 1422, a plurality of spray heads 1423 and a water pump 1424. The main pipe 1421 is located in the shell 11 and extends into the water storage cavity 113 at one end and extends into the water spraying part through the partition plate 111 at the other end. The main pipe 1421 is welded to the partition plate 111. The plurality of branch pipes 1422 are located in the water spraying part. In this embodiment, the branch pipes 1422 are arranged parallel to the partition plate 111 and the wet film 141 and are located close to the wet film 141. The plurality of branch pipes 1422 are distributed along the arrangement direction of the wet film 141. The two ends of each branch pipe 1422 are fixedly connected to the side wall of the shell 11. The one end of the main pipe 1421 located in the water spraying part is in communication with the plurality of branch pipes 1422. Each branch pipe 1422 is provided with a plurality of spray heads 1423. The plurality of spray heads 1423 located on the same branch pipe 1422 are distributed along the arrangement direction of the branch pipe 1422. The spray heads 1423 are in communication with the branch pipes 1422. The spray heads 1423 have their spray nozzles facing the wet film 141. The water pump 1424 is located in the water storage cavity 113 and is fixedly connected to the main pipe 1421 by a flange. The water pump 1424 can pump the water in the water storage cavity 113 to the branch pipes 1422 through the main pipe 1421. The control panel is electrically connected to the water pump 1424 by a controller. Subsequently, the water is sprayed to the wet film 141 by the spray heads 1423.

[0038] With reference to Figure 1 and Figure 2, the water pumping member comprises two air extractors 1431, one of which is embedded in the side wall of the shell 11 and is close to the water spraying part, and the air extractor 1431 sends the indoor air to the water spraying part, and the flowing air is atomized after passing through the wet film 141; the top wall of the shell 11 is provided with an atomizing port 115, the atomizing port 115 is close to the atomizing part, and the other air extractor 1431 is located at the atomizing port 115 and is fixedly connected to the shell 11 by screws, the air extractor 1431 located at the atomizing port 115 can send the atomized air to the outside of the shell 11, so as to humidify the indoor air, the control panel is electrically connected with the air extractor 1431 through the controller, the shell 11 is fixedly provided with a mist outlet pipe 116 at the atomizing port 115, one end of the mist outlet pipe 116 away from the atomizing port 115 is fixedly provided with a top cover 1161, a plurality of mist outlet holes are arranged between the lower edge of the top cover 1161 and the mist outlet pipe 116, and the plurality of mist outlet holes are uniformly distributed along the circumferential direction of the lower edge of the top cover 1161. The water mist produced enters the mist outlet pipe 116 through the atomizing port 115 and is discharged to the external environment through the mist outlet holes, and the top cover 1161 protects the mist outlet pipe 116 to prevent dust and sundries from entering the mist outlet pipe 116, causing the mist outlet pipe 116 to be blocked and affecting the efficiency of air humidification.

[0039] With reference to Figure 2 , the control member 144 comprises an adjusting valve 1441, a humidity sensor 1442 and a liquid level sensor 1443; the adjusting valve 1441 is fixedly arranged on the water conveying pipe 12, the humidity sensor 1442 is fixedly installed on the outer side wall of the shell 11, and the liquid level sensor 1443 is fixedly arranged on the inner side wall of the shell 11 and located in the water storage cavity 113; the adjusting valve 1441, the humidity sensor 1442 and the liquid level sensor 1443 are electrically connected with the control panel through the controller; when humidification is needed, the personnel control the control panel to start the water pump 1424, the water pump 1424 sends the water in the water storage cavity 113 to the nozzle 1423 through the main pipe 1421, and then sprays the water to the wet film 141, and starts the two air extractors 1431 to discharge the water mist to the external environment through the atomizing port 115, thereby performing the humidification operation; when water needs to be added, the personnel control the control panel to control the adjusting valve 1441 to open, so that the external water source supplies water to the water conveying pipe 12, and the water flows from the water conveying pipe 12 into the water storage cavity 113; the liquid level sensor 1443 can monitor the water level of the water storage cavity 113 in real time and transmit the water level information to the controller, and the controller controls the opening and closing degree of the adjusting valve 1441 to ensure that the water amount in the water storage cavity 113 is appropriate, thereby avoiding manual water adding operation; the humidity sensor 1442 can detect the humidity of the air in real time, and when the air humidity does not reach the preset humidity range, the humidity sensor 1442 sends a signal to the controller, and the controller controls the humidification assembly 14 to perform humidification, thereby facilitating accurate control according to the real-time humidity of the machine room and avoiding over-high or over-low air humidity.

[0040] With reference to Figure 2 and Figure 3 , the filtering mechanism 2 comprises a filter cylinder 21, a filter piece 22 and two mounting pieces 23, the filter cylinder 21 is located at one end of the water delivery pipe 12 close to the shell 11, the filter cylinder 21 is hollow, one end of the filter cylinder 21 is communicated with the water delivery hole 114, the filter cylinder 21 is welded to the shell 11, the other end of the filter cylinder 21 is detachably connected with one end of the water delivery pipe 12 through a flange, the filter piece 22 comprises a filter ring 221, a filter screen 222 and an adsorption plate 223, the end of the filter cylinder 21 away from the shell 11 is provided with a placing groove 211 for placing the filter ring 221, the filter ring 221 is coaxially arranged with the filter cylinder 21, the inner wall of the filter ring 221 is flush with the inner wall of the filter cylinder 21, the filter ring 221 is detachably connected with the filter cylinder 21 through the mounting piece 23, the filter ring 221 and the filter cylinder 21 are sealed by a sealing strip, the filter screen 222 and the adsorption plate 223 are both located in the filter ring 221, the filter screen 222 and the adsorption plate 223 are both perpendicular to the axial direction of the filter cylinder 21, the filter screen 222 and the adsorption plate 223 are both detachably connected to the filter ring 221 through screws, so that the filter screen 222 and the adsorption plate 223 can be replaced, the adsorption plate 223 is located at the side of the filter screen 222 close to the shell 11, a filtering gap is left between the adsorption plate 223 and the filter screen 222, in the embodiment, the adsorption plate 223 is an activated carbon adsorption plate 223, when the air is humidified, the controller controls the regulating valve 1441 to draw water from an external water source and transport the water to the water storage cavity 113 through the water delivery pipe 12, when the water flow flows through the filter cylinder 21 in the water delivery pipe 12, the impurities such as particulate matters and precipitates in the water are filtered, so that the impurities are prevented from entering the water storage part and damaging the humidifying assembly 14, so that the humidifying assembly 14 can be suitable for different water quality; meanwhile, the impurities can also be prevented from entering the air with the water mist when the water is converted into the water mist, so that the water mist entering the air is cleaner, and the activated carbon adsorption plate 223 can adsorb the odor in the water, so that the water mist entering the air is cleaner.

[0041] With reference to Figure 2 and Figure 3The two mounting pieces 23 are located in the placing groove 211 and are symmetrically arranged along the axis of the filter cartridge 21. The mounting piece 23 comprises an abutting plate 231 and a spring 232. The filter cartridge 21 is provided with a containing groove 212 in the placing groove 211 for containing the abutting plate 231. The abutting plate 231 is slidingly connected to the filter cartridge 21 and can move towards or away from the side of the filter cartridge 21. The two abutting plates 231 can abut against the filter ring 221. The side of the abutting plate 231 close to the shell 11 is obliquely arranged away from the axis of the filter cartridge 21, facilitating the insertion of the filter ring 221. The spring 232 is located in the containing groove 212 and is arranged in the same direction as the sliding direction of the abutting plate 231. One end of the spring 232 is welded to the abutting plate 231 and the other end is welded to the filter cartridge 21. When the two abutting plates 231 abut against the filter ring 221, the spring 232 is in a compressed state. The side wall of the abutting plate 231 away from the spring 232 is flush with the groove wall of the placing groove 211.

[0042] The implementation principle of the machine room air conditioner matching humidifying device is as follows: when humidification is needed, personnel control the control panel to start the water pump 1424. The water pump 1424 pumps the water in the water storage cavity 113 to the spray head 1423 through the main pipe 1421, sprays it to the wet film 141 through the spray head 1423, starts the two air extractors 1431, and can discharge the water mist to the outside environment through the atomizing port 115, thereby performing the humidification operation.

[0043] When water needs to be added, personnel control the control panel to control the adjusting valve 1441 to open, so that the external water source supplies water to the water supply pipe 12. The water flows from the water supply pipe 12 into the water storage cavity 113. In this process, when the water flows through the filter cartridge 21 in the water supply pipe 12, the particulate matter, sediment and other impurities in the water are filtered by the filter screen 222, and the adsorption plate 223 can adsorb the odor in the water. When the adsorption plate 223 and the filter screen 222 need to be replaced, the personnel separate the output pipe and the filter cartridge 21, then remove the filter ring 221, and replace the adsorption plate 223 and the filter screen 222.

[0044] When the humidifying assembly 14 is working, the humidity and the liquid level of the water storage part that need to be maintained can be pre-set on the control panel. When the air humidity does not reach the pre-set humidity range, the humidity sensor 1442 sends a signal to the controller, and the controller automatically controls the humidifying assembly 14 to humidify. When the humidity exceeds the humidity range, the humidification is stopped, thereby accurately controlling the real-time humidity of the machine room. At the same time, the current humidity and liquid level information can also be displayed on the control panel, which is convenient for the operator to maintain the equipment.

[0045] In particular, the operator can also set relevant parameters on the control panel, so that the machine room air conditioner matching humidifying device can work intermittently or continuously.

[0046] The above are all preferred embodiments of the present application, and do not limit the protection scope of the present application, so that: all equivalent changes made according to the structure, shape, principle of the present application should be covered in the protection scope of the present application.

Claims

1. A humidification device for computer room air conditioning, characterized in that: The utility model provides a humidifier, including humidifier body (1) and filter mechanism (2), humidifier body (1) includes casing (11), water delivery pipe (12) and humidification assembly (14), the inner chamber of casing (11) is connected with baffle (111), baffle (111) divides casing (11) into atomization chamber (112) and water storage chamber (113), water delivery pipe (12) one end connects external water source, the lateral wall of casing (11) is provided with water delivery hole (114) with water storage chamber (113) intercommunication, humidification assembly (14) includes wet membrane (141) and water spraying part (142), wet membrane (141) is located in atomization chamber (112), wet membrane (141) is connected to casing (11), wet membrane (141) divides the atomization chamber (112) into water spraying part and atomization part, water spraying part (142) one end extends into water storage chamber (113), the other end passes through baffle (111) and extends into water spraying part, water spraying part (142) is used to spray water to wet membrane (141), the top wall of casing (11) is provided with atomization mouth (115), and atomization mouth (115) is close to atomization part; Filter mechanism (2) includes filter cartridge (21) and filter piece (22), filter cartridge (21) is connected to water delivery pipe (12) close to casing (11) one end, filter cartridge (21) is hollowly arranged, one end of filter cartridge (21) is communicated with water delivery hole (114), filter piece (22) includes filter screen (222), filter screen (222) is connected in filter cartridge (21), and filter screen (222) is used to filter water.

2. The humidifying device for a computer room air conditioner according to claim 1, characterized in that: Filter piece (22) further includes adsorption plate (223), adsorption plate (223) is connected to filter cartridge (21), adsorption plate (223) is located on the side of filter screen (222) close to casing (11), and adsorption plate (223) is used to adsorb peculiar smell in water.

3. The device according to claim 2, characterized in that: Filter piece (22) further includes filter ring (221), one end of filter cartridge (21) away from casing (11) is provided with placement slot (211) for placing filter ring (221), filter ring (221) is coaxially arranged with filter cartridge (21), filter screen (222) and adsorption plate (223) are detachably connected to the inner wall of filter ring (221), and filter cartridge (21) is detachably connected with water delivery pipe (12). The filter mechanism (2) further comprises two mounting pieces (23), both of which are located in the placing groove (211), and are symmetrically arranged along the axis of the filter cylinder (21); the mounting piece (23) comprises an abutting plate (231) and a spring (232); the filter cylinder (21) is provided with a containing groove (212) for containing the abutting plate (231) in the placing groove (211); the abutting plate (231) is slidingly connected to the filter cylinder (21) and can move towards or away from one side of the filter cylinder (21); both of the abutting plates (231) can abut against the filter ring (221); the side of the abutting plate (231) close to the shell (11) is obliquely arranged away from the axis of the filter cylinder (21); the spring (232) is located in the containing groove (212) and is arranged in the same direction as the sliding direction of the abutting plate (231); one end of the spring (232) is fixed to the abutting plate (231) and the other end is fixed to the filter cylinder (21); when both of the abutting plates (231) abut against the filter ring (221), the side wall of the abutting plate (231) away from the spring (232) is flush with the groove wall of the placing groove (211).

4. The device according to claim 3, characterized in that: The water spraying part (142) comprises a main pipe (1421), a plurality of branch pipes (1422), a plurality of spray heads (1423) and a water pump (1424); one end of the main pipe (1421) extends into the water storage cavity (113) and the other end extends into the water spraying part through the partition plate (111); the plurality of branch pipes (1422) are located in the water spraying part and close to the wet membrane (141); the plurality of branch pipes (1422) are distributed along the arrangement direction of the wet membrane (141) at intervals; the branch pipe (1422) is connected to the shell (11); the end of the main pipe (1421) located in the water spraying part is in communication with the plurality of branch pipes (1422); each branch pipe (1422) is provided with a plurality of spray heads (1423); the plurality of spray heads (1423) located on the same branch pipe (1422) are distributed along the arrangement direction of the branch pipe (1422) at intervals; the spray head (1423) has a nozzle facing the wet membrane (141); and the water pump (1424) is connected to the main pipe (1421).

5. The device according to claim 4, characterized in that: The humidifying assembly (14) further comprises an air suction part (143) comprising two air suction machines (1431); one of the air suction machines (1431) is embedded in the side wall of the shell (11) and close to the water spraying part; the other air suction machine (1431) is located at the atomizing opening (115); the air suction machine (1431) is connected to the shell (11); and the air suction machine (1431) located at the atomizing opening (115) can suck the atomized airflow to the outside of the shell (11).

6. The device according to claim 5, characterized in that: The humidifier body (1) further comprises a control assembly (13), which is a control panel fixed to the outside of the shell (11), sets the required air humidity parameters, and is electrically connected with the air extractor (1431) and the water pump (1424).

7. The device according to claim 6, characterized in that: The humidifying assembly (14) further comprises a control member (144), which comprises a humidity sensor (1442) fixed to the outer wall of the shell (11) and electrically connected with the control panel.

8. The device according to claim 5, characterized in that: A mist outlet pipe (116) is fixedly arranged on the atomizing port (115), one end of the mist outlet pipe (116) away from the atomizing port (115) is fixedly provided with a top cover (1161), a plurality of mist outlet holes are arranged between the lower edge of the top cover (1161) and the mist outlet pipe (116), and the plurality of mist outlet holes are uniformly distributed along the circumference of the lower edge of the top cover (1161).

Citation Information

Patent Citations

  • Humidifying device for heat supply ventilation and air conditioning engineering

    CN217131396U