CN216132043U - Natural ventilation air conditioner energy-saving system for factory building - Google Patents

Natural ventilation air conditioner energy-saving system for factory building Download PDF

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Publication number
CN216132043U
CN216132043U CN202122719075.3U CN202122719075U CN216132043U CN 216132043 U CN216132043 U CN 216132043U CN 202122719075 U CN202122719075 U CN 202122719075U CN 216132043 U CN216132043 U CN 216132043U
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China
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air
factory building
mounting box
box
saving system
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CN202122719075.3U
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Chinese (zh)
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史厚丽
徐恒驰
陆明刚
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Wuxi Industrial Architecture Design And Research Institute Co ltd
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Wuxi Industrial Architecture Design And Research Institute Co ltd
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Abstract

The utility model belongs to the technical field of building ventilation and specifically relates to a natural draft air conditioner economizer system for factory building is related to, and it is including being used for connecting the ventilation mechanism on the factory building, ventilation mechanism includes the mounting box, connects the lid of mounting box one side, connect filter element in the mounting box, the lid is located the factory building outside, it has the air intake to open on the lid, it has the air outlet that is used for with the air-supply line intercommunication of ventilation air conditioner to open on the mounting box, filter element is located the air intake with between the air outlet. This application has the effect that improves the inside air quality of insufflating the factory building.

Description

Natural ventilation air conditioner energy-saving system for factory building
Technical Field
The application relates to the field of building ventilation, in particular to a natural ventilation air-conditioning energy-saving system for a factory building.
Background
The natural ventilation is a ventilation mode which introduces outdoor fresh air to achieve ventilation and air exchange by utilizing hot pressing caused by density difference of air inside and outside a building or wind pressure caused by outdoor atmospheric motion. It does not consume mechanical power, and at the same time, it can obtain large ventilation volume under the proper condition, so that it is an economic ventilation mode. The natural ventilation is widely applied to common residential buildings, common office buildings and industrial plants (particularly high-temperature workshops), and can economically and effectively meet the air quality requirements of indoor personnel and the general requirements of production processes.
Along with the rapid improvement of national economic level, more and more people pay more attention to the improvement of quality of life, and simultaneously, the people also put forward higher and higher requirements on environmental standards and advocate breathing fresh, green and pollution-free air. However, natural ventilation depends on natural force and is limited by the quality of outdoor air. In the factory building environment, ventilation air conditioner blows in the inside back of factory building with the outside air of factory building, because of the air impurity of factory building outside is too much, leads to blowing in the inside air quality of factory building not good.
SUMMERY OF THE UTILITY MODEL
In order to improve the quality of the air blown into the inside of the plant, the application provides a natural ventilation air-conditioning energy-saving system for the plant.
The application provides a natural draft air conditioner economizer system for factory building adopts following technical scheme:
the utility model provides a natural draft air conditioner economizer system for factory building, is including being used for connecting the ventilation mechanism on the factory building, ventilation mechanism includes the mounting box, connects the lid of mounting box one side, connects filter assembly in the mounting box, the lid is located the factory building outside, it has the air intake to open on the lid, it has the air outlet that is used for with the air-conditioning's air-supply line intercommunication to open on the mounting box, filter assembly is located the air intake with between the air outlet.
Through adopting above-mentioned technical scheme, ventilation air conditioner is at the during operation, can be with the outside air suction of factory building in the factory building through ventilation mechanism, and the outer air of factory building gets into the mounting box through the air intake, through filtering component's filtration, and a large amount of impurity in the air is got rid of, and in the filtered air got into ventilation air conditioner from the air outlet and then discharged the factory building, filtering component had improved the quality of the inside air of entering factory building.
Optionally, the filtering assembly comprises a mounting frame connected in the mounting box, a bamboo charcoal fiber layer connected on the inner side wall of the mounting frame, an activated carbon filter screen and a cotton yarn layer, and the bamboo charcoal fiber layer, the activated carbon filter screen and the cotton yarn layer are arranged along the direction from the air inlet to the air outlet.
By adopting the technical scheme, the outside air enters the mounting box, the bamboo charcoal fiber layer, the activated carbon filter screen and the cotton yarn layer filter the passing air layer by layer, and the air purifying effect is achieved.
Optionally, a connecting table is arranged on the side wall of the mounting box, a limiting groove is formed in one side, close to the air inlet, of the connecting table, and one end of the mounting frame is embedded in the limiting groove.
Through adopting above-mentioned technical scheme, the one end of installing frame inlays in the spacing inslot, has improved the stability that the installing frame was placed, and the lid lock is on the mounting box, when needing to clear up or change filtering component, only needs to take off the lid from the mounting box, again with the installing frame follow spacing inslot extract can.
Optionally, the box cover is connected to the mounting box through bolts.
Through adopting above-mentioned technical scheme, the bolt has reduced the lid and has come off by oneself from the mounting box, leads to the possibility that the installing frame dropped.
Optionally, a guide table is arranged on the inner side of the box cover, the guide table is embedded in the mounting box, and the mounting frame is abutted to the connecting table by the guide table.
Through adopting above-mentioned technical scheme, the guide table supports the installing frame tightly at the connection bench, has improved the stability of installing frame installation, and the guide table inlays in the installing box, for the direction that the lock of lid and installation lid provided.
Optionally, an elastic sealing gasket is arranged at the bottom of the limiting groove.
By adopting the technical scheme, the mounting frame is tightly abutted by the connecting platform, the mounting frame compresses the elastic sealing gasket, the elastic sealing gasket deforms, and a gap between the mounting frame and the connecting platform is filled, so that the sealing property is improved, and the possibility that air enters a workshop without being filtered is reduced; when the box cover is opened and the mounting frame is taken out, the elastic sealing gasket recovers the shape, releases elastic potential energy, provides a popping force for the mounting frame, and is convenient to take out the mounting frame.
Optionally, an antistatic agent is coated on the bamboo charcoal fiber layer.
By adopting the technical scheme, the antistatic agent enables the bamboo charcoal fiber layer to have a good dust-avoiding effect and not to stick ash.
Optionally, a humidifying box is arranged in the mounting box, the humidifying box is located between the connecting platform and the air outlet, a water pipe is connected to the mounting box, and a water outlet of the water pipe is located above the humidifying box.
Through adopting above-mentioned technical scheme, put into water in the humidification box, the air that gets into the factory building inside from the factory building outside has improved the humidity that gets into the air in the factory building through the humidification box.
In summary, the present application includes at least one of the following beneficial technical effects:
1. air outside the plant enters the mounting box through the air inlet, a large amount of impurities in the air are removed through filtering of the filtering component, the filtered air enters the ventilation air conditioner from the air outlet and then is discharged into the plant, and the quality of the air entering the plant is improved through the filtering component;
2. the guide table is embedded in the mounting box and provides guidance for buckling the box cover and the mounting cover;
3. the antistatic agent enables the bamboo charcoal fiber layer to have good dust-proof effect and not to stick ash.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an embodiment of the present application;
FIG. 2 is a front view of the vent mechanism in an embodiment of the present application;
fig. 3 is a sectional view taken along line a-a of fig. 2.
Description of reference numerals: 1. a ventilation mechanism; 2. mounting a box; 21. an air outlet; 22. a connecting table; 221. a limiting groove; 222. an elastic sealing gasket; 23. a water pipe; 3. a box cover; 31. an air inlet; 32. a bolt; 33. a guide table; 4. a filter assembly; 41. installing a frame; 42. a bamboo charcoal fiber layer; 43. an active carbon filter screen; 44. a cotton yarn layer; 5. and (5) a humidifying box.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses natural draft air conditioner economizer system for factory building.
Referring to fig. 1, 2 and 3, the natural ventilation air-conditioning energy-saving system for the factory building comprises a ventilation air conditioner (not shown in the figure) arranged in the factory building and a ventilation mechanism 1 connected to the side wall of the factory building. The ventilation mechanism 1 comprises a mounting box 2 fixedly connected to the side wall of the plant, a filter component 4 connected to the inside of the mounting box 2, and a box cover 3 buckled on the mounting box 2. The box cover 3 is positioned outside the factory building, and an air inlet 31 is formed in the box cover 3. One side of the mounting box 2 departing from the box cover 3 is provided with an air outlet 21, the air outlet 21 is positioned in a factory building, and the air outlet 21 is communicated with an air inlet pipe of a ventilation air conditioner. The filter assembly 4 is located between the intake vent 31 and the outtake vent 21.
Referring to fig. 1 and 3, when the ventilation air conditioner is in operation, air outside the plant can be sucked into the plant through the ventilation mechanism 1. Air outside the factory building enters the mounting box 2 through the air inlet 31, a large amount of impurities in the air are removed through the filtration of the filter component 4, and the filtered air enters the ventilation air conditioner from the air outlet 21 and then is discharged into the factory building. The filter assembly 4 improves the quality of the air entering the interior of the plant.
Referring to fig. 1 and 3, the filter assembly 4 includes a mounting frame 41, and an axis of the mounting frame 41 is horizontal. The inner side wall of the mounting frame 41 is fixedly connected with a vertical bamboo charcoal fiber layer 42, an active carbon filter screen 43 and a cotton yarn layer 44, and the bamboo charcoal fiber layer 42, the active carbon filter screen 43 and the cotton yarn layer 44 are arranged along the direction from the air inlet 31 to the air outlet 21.
Referring to fig. 3, the external air enters the installation box 2, the bamboo charcoal fiber layer 42, the activated carbon filter screen 43 and the cotton yarn layer 44 filter the passing air layer by layer, and the nano photocatalyst coating is coated on the cotton yarn layer 44, so that toxic and harmful gases such as carbon monoxide and benzene in the air can be degraded, various bacteria can be effectively killed, the toxin released by the bacteria or fungi can be decomposed and harmlessly treated, formaldehyde, deodorization, pollution resistance and the like can be removed, and the air is purified. The bamboo charcoal fiber layer 42 is coated with an antistatic agent, so that the bamboo charcoal fiber layer has a good dust-proof effect and does not stick ash.
Referring to fig. 1 and 3, a square ring-shaped connecting platform 22 is formed on the side wall of the mounting box 2, the connecting platform 22 is arranged between the mounting frame 41 and the air outlet 21, and a square ring-shaped limiting groove 221 is formed on one side of the connecting platform 22 away from the air outlet 21. One end of the mounting frame 41 is embedded in the limiting groove 221, so that the placing stability of the mounting frame 41 is improved. The box cover 3 is buckled on the mounting box 2, and when the filter assembly 4 needs to be cleaned or replaced, the box cover 3 only needs to be taken down from the mounting box 2, and then the mounting frame 41 is pulled out from the limiting groove 221.
Referring to fig. 1 and 3, bolts 32 are screwed at four corners of the box cover 3, and the bolts 32 are screwed on the end surface of the mounting box 2. The bolts 32 reduce the possibility that the box cover 3 falls off from the mounting box 2 by itself, which causes the mounting frame 41 to fall off.
Referring to fig. 3, a square ring-shaped guide table 33 is formed on one side of the box cover 3 close to the mounting frame 41, and one side of the guide table 33 away from the box cover 3 abuts against the end face of the mounting frame 41. The guide table 33 tightly supports the mounting frame 41 on the connecting table 22, and the mounting stability of the mounting frame 41 is improved. The guide table 33 is embedded in the mounting box 2 to provide a guide for buckling the box cover 3 and the mounting cover.
Referring to fig. 3, an elastic gasket 222 is laid on the bottom of the limiting groove 221, and the elastic gasket 222 is made of rubber. Connect the platform 22 and support the installing frame 41 tightly, installing frame 41 compression elastic sealing pad 222, elastic sealing pad 222 takes place deformation, fills the installing frame 41 and connects the space between the platform 22, has improved the leakproofness, has reduced the air and has just got into the possibility of factory building through not filtering. When the lid 3 is opened and the mounting frame 41 is taken out, the elastic sealing gasket 222 recovers the shape, releases the elastic potential energy, and provides a pop-up force for the mounting frame 41, thereby facilitating the taking-out of the mounting frame 41.
Referring to fig. 3, a humidification case 5 is fixedly connected to the inside of the mounting case 2, and the humidification case 5 is located between the connection table 22 and the outlet port 21. Water is put into the humidification box 5, and the air entering the workshop from the outside of the workshop passes through the humidification box 5, and the humidification box 5 improves the humidity of the air entering the workshop. Fixedly connected with water pipe 23 on the lateral wall of mounting box 2, water pipe 23 and mounting box 2 in-connection, the one end that water pipe 23 is located mounting box 2 is located the top of humidification box 5. When the water in the humidification case 5 is used up, the humidification case 5 can be supplied with water through the water pipe 23.
The implementation principle of the natural ventilation air-conditioning energy-saving system for the plant in the embodiment of the application is as follows: when the ventilation air conditioner works, air outside the plant can be sucked into the plant through the ventilation mechanism 1. In the outside air got into mounting box 2, bamboo charcoal fiber layer 42, active carbon filter screen 43 and cotton yarn layer 44 carried out the successive layer and filtered the air of process, and the nanometer photocatalyst coating of coating on the cotton yarn layer 44 can degrade poisonous, harmful gases such as carbon monoxide, benzene in the air, effectively exterminates multiple bacterium, air-purifying. The filtered air enters the ventilating air conditioner from the outlet 21 and is then discharged into the factory.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a natural draft air conditioner economizer system for factory building which characterized in that: including being used for connecting ventilation mechanism (1) on the factory building, ventilation mechanism (1) includes mounting box (2), connects lid (3), the connection of mounting box (2) one side are in filtering component (4) in mounting box (2), lid (3) are located the factory building outside, it has air intake (31) to open on lid (3), it has air outlet (21) that are used for with ventilation air conditioner's air-supply line intercommunication to open on mounting box (2), filtering component (4) are located air intake (31) with between air outlet (21).
2. The natural ventilation air-conditioning energy-saving system for the factory building according to claim 1, characterized in that: the filter assembly (4) comprises a mounting frame (41) connected in the mounting box (2), and a bamboo charcoal fiber layer (42), an activated carbon filter screen (43) and a cotton yarn layer (44) connected on the inner side wall of the mounting frame (41), wherein the bamboo charcoal fiber layer (42), the activated carbon filter screen (43) and the cotton yarn layer (44) are arranged along the direction from the air inlet (31) to the air outlet (21).
3. The natural ventilation air-conditioning energy-saving system for the factory building according to claim 2, characterized in that: be equipped with on the lateral wall of mounting box (2) and connect platform (22), it is close to connect platform (22) one side of air intake (31) is opened has spacing groove (221), the one end of installing frame (41) inlay in spacing groove (221).
4. The natural ventilation air-conditioning energy-saving system for the factory building according to claim 3, wherein: the box cover (3) is connected to the mounting box (2) through bolts (32).
5. The natural ventilation air-conditioning energy-saving system for the factory building according to claim 4, wherein: the inboard of lid (3) is equipped with guide table (33), guide table (33) inlay in mounting box (2), guide table (33) will installing frame (41) support tightly on connecting platform (22).
6. The natural ventilation air-conditioning energy-saving system for the factory building according to claim 3, wherein: and an elastic sealing gasket (222) is arranged at the bottom of the limiting groove (221).
7. The natural ventilation air-conditioning energy-saving system for the factory building according to claim 2, characterized in that: an antistatic agent is coated on the bamboo charcoal fiber layer (42).
8. The natural ventilation air-conditioning energy-saving system for the factory building according to claim 3, wherein: be provided with humidification box (5) in mounting box (2), humidification box (5) are located connect platform (22) with between air outlet (21), be connected with water pipe (23) on mounting box (2), the delivery port of water pipe (23) is located the top of humidification box (5).
CN202122719075.3U 2021-11-08 2021-11-08 Natural ventilation air conditioner energy-saving system for factory building Active CN216132043U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122719075.3U CN216132043U (en) 2021-11-08 2021-11-08 Natural ventilation air conditioner energy-saving system for factory building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122719075.3U CN216132043U (en) 2021-11-08 2021-11-08 Natural ventilation air conditioner energy-saving system for factory building

Publications (1)

Publication Number Publication Date
CN216132043U true CN216132043U (en) 2022-03-25

Family

ID=80774023

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122719075.3U Active CN216132043U (en) 2021-11-08 2021-11-08 Natural ventilation air conditioner energy-saving system for factory building

Country Status (1)

Country Link
CN (1) CN216132043U (en)

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