WO2016182253A1 - Air circulating apparatus - Google Patents

Air circulating apparatus Download PDF

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Publication number
WO2016182253A1
WO2016182253A1 PCT/KR2016/004660 KR2016004660W WO2016182253A1 WO 2016182253 A1 WO2016182253 A1 WO 2016182253A1 KR 2016004660 W KR2016004660 W KR 2016004660W WO 2016182253 A1 WO2016182253 A1 WO 2016182253A1
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WO
WIPO (PCT)
Prior art keywords
purified water
circulation
air
air circulation
main body
Prior art date
Application number
PCT/KR2016/004660
Other languages
French (fr)
Korean (ko)
Inventor
정진규
Original Assignee
정진규
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 정진규 filed Critical 정진규
Priority to CN201680027999.6A priority Critical patent/CN107635643A/en
Publication of WO2016182253A1 publication Critical patent/WO2016182253A1/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D47/00Separating dispersed particles from gases, air or vapours by liquid as separating agent
    • B01D47/06Spray cleaning
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/34Chemical or biological purification of waste gases
    • B01D53/74General processes for purification of waste gases; Apparatus or devices specially adapted therefor
    • B01D53/77Liquid phase processes
    • B01D53/78Liquid phase processes with gas-liquid contact

Definitions

  • the present invention relates to an air circulation device without a separate filter, and more particularly, to an air circulation device capable of removing contaminants by circulating contaminated external air using water without using a separate purification filter. to be.
  • An example is an air purifier.
  • air purifiers are devices that decompose odors and collect dust and the like to remove substances harmful to humans from air or water.
  • Korean Patent Application Publication No. 10-2011-0066668 of the conventionally developed air purifying apparatus on the circulation path of the air circulated by the blowing means and the blowing means for forcibly circulating the air intake and discharge again It includes a purification filter provided.
  • the purification filter for collecting, sterilizing and deodorizing the indoor air contaminated at the inlet of the air cleaner is installed.
  • the purification filter is provided on the circulation path, only the air that is cleaned by filtering contaminants, fine dust, and the like in the air sucked into the inlet is discharged to the outlet in the process of forcibly circulating external air by the blower.
  • the air cleaner circulates the outside air and purifies the air by the purification filter.
  • the purifying filter should be replaced when the filter is clogged after a certain period of use. In order for the air cleaner to be effective, the filter should be replaced properly.
  • the air purifier developed in the prior art circulates by sucking the outside air and purifies the air by providing a separate purification filter on the air circulation path, but there is a problem in that the expensive purification filter needs to be continuously replaced. .
  • the present invention is to solve the conventional problems, the external air circulated to be sucked from the bottom and discharged to the upper crosses the water falling from the top to the bottom to remove the contaminants to continuously air without having a separate purification filter To provide an air circulation system that can purify the air.
  • the present invention is formed along the vertical direction and has a receiving space therein, the inlet in communication with the receiving space is formed on the side, plate shape and at least one hole is formed
  • a filter module which includes a disk, wherein the plurality of disks are spaced apart in a stacked form from the accommodation space in a stacked form, and is provided at an upper portion of the main body to selectively drive and flow into the accommodation space through the inlet.
  • An air circulation module for circulating air to be discharged to the upper portion through the filter module and a water chamber provided at a lower portion of the filter module in the main body and receiving the purified water and the purified water contained in the water chamber to filter the filter
  • the purified water includes a water circulation module including a circulation unit to flow to the lower direction, the external air is characterized in that by moving the upper portion of the purified water falls upon crossing with the purified water, and remove contaminants.
  • the circulation unit is formed long and the one side is disposed in the upper portion of the receiving space and the other side is connected to the water chamber and the circulation pipe for injecting the purified water contained in the water chamber from the upper receiving space and the longitudinal direction of the circulation pipe It may be provided in a portion according to the selectively drive and include a circulation pump for circulating the purified water.
  • the circulation unit may be spaced apart from the upper portion of the disk, the bottom surface is formed in a hemispherical shape may further comprise a diffusion member for diffusing the purified water sprayed from one side of the circulation pipe to the bottom.
  • the diffusion member may be configured to be slidable along the vertical direction by the pressure of the purified water injected from the circulation pipe in the receiving space.
  • the diffusion member may further include a separate detection sensor for detecting whether the sliding, and when the diffusion member slides in the upper direction may be characterized in that the air circulation module is driven in conjunction with this.
  • the circulation unit may further include a separate injection member provided at one end of the circulation pipe and spraying the purified water circulated by the circulation pump in a lateral direction.
  • the injection member may be configured to be rotatable by the water pressure of the purified water circulating around the circulation pipe.
  • the circulation pipe may be characterized in that at least a portion along the longitudinal direction is arranged long in the vertical direction in the receiving space and arranged to continuously penetrate the plurality of disks.
  • the plurality of disks may be arranged so that the holes formed in each of the plurality are stacked to cross.
  • the disk may be characterized in that the flow path is formed along the surface on the upper or lower surface.
  • At least some of the disks may be formed to have different sizes or numbers of the holes.
  • the disk may be arranged with an inclination in the receiving space.
  • At least some of the plurality of disks may be arranged to have different inclinations.
  • the air circulation module is provided in the upper portion of the receiving space on the main body, the cover is provided with a discharge port communicating with the outside and is provided inside the cover to rotate the air inside the receiving space to the outside through the discharge port It may be characterized by including a circulating fan to discharge.
  • the outlet may be characterized in that a plurality of radially spaced apart.
  • the cover may further include a rotating portion coupled to rotate at least a portion about the rotation axis of the circulation fan, characterized in that the discharge port is provided on the rotating portion.
  • the main body further comprises a collecting member for having a downward inclination in the lower portion of the filter module and the lower end is in communication with the water chamber and collects the purified water passing through the disk to the lower portion to deliver to the water chamber. It can be characterized.
  • the inlet may be disposed adjacent to the disk located at the bottom of the plurality of the plurality may be formed along the outer surface of the main body is spaced apart.
  • the water chamber is provided on the lower portion on the main body, it may be characterized in that configured to be selectively detachable from the main body.
  • the air circulation device according to the present invention has the following effects.
  • a filter module in which a plurality of disks are stacked inside the main body, injecting purified water from the upper part of the filter module, and conversely, by discharging the external air flowing from the lower part of the filter module to the upper direction and discharging the inside of the filter module.
  • the purified water and the outside air crosses the pollutants contained in the outside air to remove the purified water has the advantage that can be purified air without a separate purification filter.
  • the disk is provided with a plurality of holes are arranged in the direction crossing each other, the external air and the purified water is moved through the hole to increase the residence time of the external air and purified water inside the filter module There is this.
  • FIG. 1 is a view schematically showing the configuration of an air circulation device according to the present invention
  • Figure 2 is an exploded perspective view showing the configuration of the air circulation device of Figure 1;
  • FIG. 3 is a view illustrating a state in which external air and purified water circulate inside the air circulation system of FIG. 1;
  • FIG. 4 is a view showing the configuration of a filter module in the air circulation of Figure 1;
  • FIG. 5 is a view showing a state in which purified water is injected by the diffusion member in the air circulation of FIG.
  • FIG. 6 is a view showing the configuration of an air circulation module in the air circulation of Figure 1;
  • FIG. 7 is a view showing a modified form of the circulation unit in the air circulation of FIG.
  • the air circulation device does not have a separate purification filter unlike a general air purifier, and is an air circulation device for removing contaminants by purified water by crossing the circulating air and the purified water.
  • FIGS. 1 to 4 the schematic configuration of the air circulation system according to the present invention will be described.
  • FIG. 1 is a view schematically showing the configuration of an air circulation device according to the present invention
  • Figure 2 is an exploded perspective view showing the configuration of the air circulation device of FIG.
  • FIG. 3 is a view illustrating a state in which external air and purified water circulate inside the air circulation device of FIG. 1
  • FIG. 4 is a view illustrating a configuration of a filter module in the air circulation device of FIG. 1.
  • Air circulation device is formed long in the vertical direction, it is configured in the form of the outside air is introduced from the side is discharged to the top.
  • the air circulation device includes a main body 100, an air circulation module 200, a filter module 300, a water circulation module 400, the outside air is introduced into the main body 100 to filter module 300 It is supplied to outside again through).
  • the main body 100 is configured to accommodate the whole, the filter module 300, the air circulation module 200 and the water circulation module 400 is accommodated therein.
  • the main body 100 is formed long in the vertical direction and has an accommodation space 110 therein, and an inlet 120 communicating with the accommodation space 110 is formed on a side surface thereof.
  • the inlet 120 is the inlet of the external air circulated by the air circulation module 200 to be described later.
  • the main body 100 includes a separate door 102 to selectively open the lower portion in the longitudinal direction, and the water chamber 410 described later through the door 102 is accommodated therein.
  • the filter module 300 is provided above the water chamber 410, and the air circulation module 200 is provided above the filter module 300.
  • the main body 100 is formed in a cylindrical shape and a plurality of the inlets 120 are formed to communicate with the outside on the side of the center in the longitudinal direction so that air is introduced.
  • the inlet 120 is disposed adjacent to the lowest end of the filter module 300, spaced apart along the outer surface of the main body 100.
  • the main body 100 further includes a collecting member 130 having a downward inclination in the accommodation space 110 and having a lower end communicating with the water chamber 410.
  • the collecting member 130 is formed in a general funnel form and collects purified water (W) injected from the upper portion of the receiving space 110 to the lower by the water circulation module 400 to be described later to the water chamber 410 To pass.
  • W purified water
  • the collection member 130 is disposed between the filter module 300 and the water chamber 410 in the central portion in the vertical direction of the receiving space 110.
  • the air circulation module 200 is provided at the top end of the main body 100 to drive selectively, so that the outside air is introduced through the inlet 120 and discharged upwards.
  • the air circulation module 200 includes a cover 210 and a circulation fan 220 largely, the cover 210 is provided on the upper portion of the receiving space 110 on the main body 100 and the outside and A communication port 212 is provided.
  • the outlet 212 may be provided on the upper surface or the side of the cover 210, a plurality of spaced apart.
  • the circulation fan 220 is provided inside the cover 210 and is selectively driven by a user to circulate air.
  • the air received in the accommodation space 110 in accordance with the driving of the circulation fan 220 is moved upwards and is discharged through the outlet 212.
  • external air is introduced into the accommodation space 110 through the inlet 120.
  • the air circulation module 200 is provided in the upper portion of the main body 100 and communicated with the accommodation space 110, the air accommodated in the accommodation space 110 by the drive of the circulation fan 220 By discharging the upper portion to contaminate the outside air contaminated via the receiving space 110 inside.
  • the air circulation module 200 has a shape corresponding to the shape of the main body 100 is provided in the upper portion of the main body 100 as shown, the cover 210 is formed in a hemispherical shape The interior communicates with the accommodation space 110.
  • a plurality of outlets 212 are radially spaced apart from each other on the cover 210.
  • a separate support member 230 is provided below the circulation fan 220 to be disposed between the upper portion of the main body 100 and the cover 210 to stably support the circulation fan 220. It is configured to be.
  • the filter module 300 is provided in the accommodation space 110 is provided in the accommodation space 110, through the air introduced through the inlet 120 through the outlet 212 It is placed on the moving path.
  • the filter module 300 has a plate shape and includes a plurality of disks 310 having at least one or more holes 312, and the plurality of disks 310 are upward and downward in the accommodation space 110. Along the stack is spaced apart.
  • the plurality of disks 310 are disposed such that the holes 312 formed in each of the plurality of disks 310 intersect when stacked in the accommodation space 110. Accordingly, the external air introduced through the inlet 120 moves through the hole 312 formed in the disk 310, and continuously passes through the plurality of disks 310.
  • the disk 310 may have a channel 314 recessed along the surface of the disk 310.
  • the disk 310 is not in the form of a flat plate, and the flow path 314 is formed to have various movement paths when the air introduced through the inlet 120 moves upward.
  • the path of the external air passing through the filter module 300 by the flow path 314 and the hole 312 increases in the filter module 300, thereby increasing the residence time. Will increase.
  • the contact time between the purified water (W) and the external air is increased to remove contaminants contained in the external air. Can be reliably removed.
  • the filter module 300 includes a plurality of the disks 310, and external air introduced through the inlet 120 by the disks 310 intersects with the purified water W and contaminants are present. Move to the top with it removed.
  • the filter module 300 surrounds the plurality of disks 310 from the side, and a separate inner case having a plurality of communication ports 322 formed at a position corresponding to the inlet 120 ( 320 may be further included.
  • the inner case 320 is configured to surround the disk 310 from the side, and the collection member 130 described above is coupled to the bottom.
  • the external air introduced through the inlet 120 is moved from the lower side to the upper side of the plurality of disks 310 stacked with each other, and the purified water W flowing from the upper side is unintentionally introduced into the disk 310. It can be collected by the collecting member 130 without departing from.
  • the size or number of the holes 312 formed in the plurality of disks 310 may be formed differently, and thus the plurality of disks stacked in the accommodation space 110. By selectively replacing some of the 310, the internal pressure of the accommodation space 110 may be adjusted.
  • the discharge of the external air discharged to the outlet 212 can be adjusted.
  • the plurality of disks 310 are all formed to have the same shape and the holes 312 are arranged to cross, in contrast, some of the plurality of disks 310 has a different shape It may be formed.
  • the disk 310 is horizontally arranged in a stacking form in the accommodation space 110, but alternatively, the disk 310 is stacked to have an inclination or a plurality of disks.
  • the inclination may also be configured to be arranged in opposite directions to each other.
  • the filter module 300 configured as described above stays in the purified water (W) circulated by the water circulation module 400 and external air introduced by the air circulation module 200 in the accommodation space 110. It can be configured to increase the time.
  • the water circulation module 400 is provided on the main body 100, the configuration to inject the purified water (W) in the lower direction from the top of the filter module 300 is largely accommodated water (W) And a circulation unit 420 for circulating the purified water W accommodated in the chamber 410 and the water chamber 410 and spraying the upper portion of the filter module 300.
  • the water chamber 410 is provided below the filter module 300 and accommodates the purified water (W) therein.
  • the water chamber 410 is composed of a general chamber, and communicates with the receiving space 110 by the collecting member 130 in the body 100.
  • the water chamber 410 is configured to be selectively removable with the collection member 130 to allow the user to adjust the amount of the purified water (W).
  • the purified water (W) is a liquid for removing contaminants contained in the external air in contact with the external air circulated by the air circulation module 200, general water may be used.
  • the water chamber 410 is provided in the lower portion of the collecting member 130 in the receiving space 110, it is configured to be separated from the main body 100 through the open portion.
  • the circulation unit 420 pumping the purified water (W) accommodated in the water chamber 410 again to spray the filter module 300 from the top, the purified water (W) is lowered by gravity In the direction of flow.
  • the circulation unit 420 is formed long and the circulation pipe 422 for moving the purified water (W) accommodated in the water chamber 410 to the upper portion, the circulation pump 424 provided on the circulation pipe 422 ).
  • the circulation pipe 422 is formed long so that one side is disposed above the receiving space 110 and the other side is connected to the water chamber 410 to lower the purified water W received in the water chamber 410 to the bottom. Spray.
  • one end of the circulation pipe 422 is disposed above the filter module 300 in the accommodation space 110 to discharge the purified water (W), the discharged purified water (W) is gravity By moving to the lower side to the filter module 300.
  • the circulation pipe 422 is formed of a general pipe, and as shown, the other side passes through the collecting member 130 and is disposed in the water chamber 410.
  • the circulation pipe 422 is disposed in the vertical direction in the center along the transverse direction of the receiving space 110 in the longitudinal direction, the plurality of disks 310 are disposed so as to continuously pass through.
  • the circulation pipe 422 penetrates through the central portion of the disk 310, and one end thereof is disposed above the filter module 300, and the purified water W is supplied through the other side. It may be injected from the top of the filter module 300.
  • the circulation pump 424 is provided in a portion along the longitudinal direction of the circulation pipe 422 in the form of a general pump, selectively driven by the user to the purified water (W) accommodated in the water chamber 410 Circulate
  • the circulation pump 424 may be configured to control the pumping speed and the pumping flow rate of the purified water (W) by the user's operation.
  • the purified water (W) accommodated in the water chamber 410 by the circulation pump 424 is moved along the circulation pipe 422 is injected from the filter module 300.
  • a separate diffusion means (not shown) is provided at one end of the circulation pipe 422 to diffuse and purify the purified water (W).
  • the purified water W injected as described above is moved downward through the filter module 300 and collected by the collecting member 130 and collected again by the water chamber 410.
  • the circulation unit 420 may further include an additional diffusion member 426 together with the circulation pipe 422 and the circulation pump 424.
  • the diffusion member 426 is spaced apart from the upper portion of the filter module 300, and the bottom surface is formed in a hemispherical shape may be configured to diffuse the purified water (W) injected from one side of the circulation pipe 422. have.
  • the diffusion member 426 is connected to the support member 230 as shown, is disposed in the vertical upper portion at one end of the circulation pipe 422, facing the direction in which the purified water (W) is discharged The bottom surface is placed to see.
  • the purified water (W) injected from the circulation pipe 422 is evenly delivered to the upper portion of the filter module 300 in a state diffused by the diffusion member 426.
  • the purified water W accommodated in the water chamber 410 moves to the upper portion of the receiving space 110 and is injected, and is injected from the upper portion of the receiving space 110.
  • the purified water (W) is moved downward through the filter module (300).
  • the external air introduced into the accommodation space 110 by the air circulation module 200 moves upward through the filter module 300.
  • the purified water (W) and the external air passing through the filter module 300 cross each other and move in the opposite direction, the pollutants contained in the external air are removed by the purified water (W).
  • the air circulation device is configured, the purified water (W) is circulated in the main body 100, the outside air moves through the purified water (W) to move the outlet 212 The air is purged by venting through.
  • the external air can be purified by simply purifying water (W) without providing a separate purification filter.
  • the external air circulated by the air circulation module 200 intersects with the purified water (W), moisture may be added to the external air to have a humidifier effect.
  • the pressure in the accommodation space 110 may be adjusted, and accordingly, the discharge of the external air discharged through the outlet 212 may be adjusted.
  • FIG. 5 is a view showing a state in which the purified water (W) is injected by the diffusion member 426 in the air circulation of FIG.
  • the bottom surface thereof is recessed in a hemispherical shape, and is located at one end of the circulation pipe 422, and the purified water (W) injected from one side of the circulation pipe 422. Is arranged to hit.
  • the purified water (W) is injected to the lower surface of the diffusion member 426 is spread widely and moves to the bottom. Accordingly, the purified water (W) is sprayed from the upper portion of the filter module 300 is moved to the lower portion is evenly sprayed on the disk 310 located at the top.
  • the diffusion member 426 is configured to be slidable up and down in the receiving space 110 as shown.
  • the diffusion member 426 is connected to the support member 230, is configured to be slidable in the vertical direction is sliding in the upper direction when the purified water (W) is injected from one side of the circulation pipe 422 When the purified water W is not injected, the purified water W is slid downward by its own weight.
  • the diffusion member 426 is provided with a separate sensor 426a therein to detect whether the diffusion member 426 is sliding.
  • the detection sensor 426a may be formed in various forms such as a position sensor or a piezoelectric sensor, and may be applied in any form as long as it can detect whether the diffusion member 426 is raised or lowered.
  • the diffusion member 426 may include the detection sensor 426a, and the detection sensor 426a is interlocked with the air circulation module 200 so that the diffusion member 426 slides upward.
  • the air circulation module 200 may be configured to drive.
  • the user may drive the circulation fan 220 together without any manipulation by driving only the circulation pump 424.
  • the detection sensor 426a detects whether the diffusion member 426 is sliding for a preset time.
  • the circulation fan 220 When the detection sensor 426a detects the sliding of the diffusion member 426, the circulation fan 220 is driven, and when the sliding of the diffusion member 426 is not detected, the circulation pump ( 424 may be configured to automatically stop driving.
  • a separate notification means may inform the user that the purified water (W) does not circulate.
  • the water circulation module 400 circulates the purified water W accommodated in the water chamber 410 in the main body 100 through the circulation unit 420 and circulates the purified water.
  • the presence or absence of the circulation of (W) is detected by the monitoring sensor 426a to control the driving of the circulation fan 220.
  • FIG. 6 is a view showing the configuration of the air circulation module 200 in the air circulation of FIG.
  • the air circulation module 200 is provided above the main body 100 and includes the cover 210 and the circulation fan 220 described above.
  • the cover 210 is provided with a plurality of the outlet 212, the air inside the receiving space 110 by the drive of the circulation fan 220 accommodated therein the outside through the outlet 212 Is discharged.
  • the cover 210 may be provided with a rotating portion 214 coupled to rotate at least a portion around the rotation axis of the circulation fan 220, the outlet 212 is on the rotating portion 214 Is provided.
  • the rotating part 214 rotates together.
  • the rotating part 214 is configured to be rotatable in a circular shape on the side or top surface on the cover 210 of the hemispherical shape, the outlet 212 is spaced apart.
  • the outlet 212 formed on the rotating part 214 is tapered to one side and rotates by the air discharged by the circulation fan 220.
  • the rotation unit 214 may rotate by the pressure of the air discharged from the accommodation space 110 to discharge the air in a desired direction.
  • the rotating unit 214 may send air to a specific position by selectively adjusting whether to rotate by the user.
  • the vortex is formed in the upper direction by the rotation of the rotating unit 214 can discharge the air through the discharge port 212, it is possible to quickly purify the contaminated air by the rapid circulation of the air.
  • FIG. 7 is a view showing a modified form of the circulation unit 420 in the air circulation of FIG.
  • the circulation unit 420 includes the circulation pipe 422 and the circulation pump 424 similar to the above, but instead of the diffusion member 426 a separate injection member 428 Include.
  • the injection member 428 is provided at one end of the circulation pipe 422 of the circulation pipe 422 and injects the purified water W circulated by the circulation pump 424 in the horizontal direction.
  • the injection member 428 is formed in the injection flow path is formed to communicate with the circulation pipe 422, the direction in which the purified water (W) in the circulation pipe 422 intersects the direction It is configured to spray the purified water (W).
  • the injection flow path formed inside the injection member 428 is formed in a T-shape is configured to spray the purified water (W) injected from the circulation pipe 422 in the left and right directions.
  • the injection member 428 may be configured to inject the purified water (W) in a plurality of branches having a different flow path formed therein.
  • the purified water W injected to one side of the circulation pipe 422 is diffused in the left and right directions and sprayed on the upper portion of the filter module 300.
  • the injection member 428 may be configured to be rotatable by the water pressure of the purified water (W) circulating about the circulation pipe 422.
  • the injection member 428 is rotatably coupled to the circulation pipe 422, and rotates by the pressure of the purified water (W) injected from the circulation pipe 422.
  • the injection member 428 injects the purified water (W) left and right along the horizontal direction, by the rotation of the injection member 428
  • the purified water (W) may be evenly sprayed on the filter module 300.
  • the circulation unit 420 may be circulated by supplying the purified water W accommodated in the water chamber 410 to the upper portion of the filter module 300.
  • the air circulation device has been described above, and the air can be continuously purified by purifying the contaminants contained in the external air circulating with only purified water (W: water) without a separate purification filter.
  • W purified water

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Environmental & Geological Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Biomedical Technology (AREA)
  • Analytical Chemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
  • Separation Of Particles Using Liquids (AREA)

Abstract

Disclosed is an air circulating apparatus that comprises: a main body extending along the up and down direction to have a receiving space therein and having an inlet formed in a side surface thereof which communicates with the receiving space; a filter module comprising a plurality of discs vertically spaced apart from each other in a stack structure in the receiving space, each of which has a plate shape and has one or more holes formed therein; an air circulating module provided on the upper portion of the main body to selectively operate, wherein the air circulating module circulates external air introduced into the receiving space through the inlet to discharge the external air to the upper side of the main body through the filter module; and a water circulating module provided below the filter module within the main body, the water circulating module comprising a water chamber having purified water received therein and a circulation unit that pumps the purified water received in the water chamber so as to allow the purified water to be sprayed to the upper side of the filter module and to flow downward by the gravitational force, wherein the external air moves upward to cross the purified water, thereby removing contaminants when the purified water drops.

Description

공기순환장치Air circulation system
본 발명은 별도의 필터가 없는 공기순환장치에 관한 것으로, 보다 상세하게는 별도의 정화필터의 사용 없이 물을 이용하여 오염된 외부공기를 순환시키며 오염물질을 제거할 수 있는 공기순환장치에 관한 기술이다.The present invention relates to an air circulation device without a separate filter, and more particularly, to an air circulation device capable of removing contaminants by circulating contaminated external air using water without using a separate purification filter. to be.
사람들의 생활수준이 증가함에 따라 건강에 대한 관심이 증가하고 있어 건강을 유지하기 위한 다양한 장치들이 개발되고 있으며, 대표적인 예로 공기정화장치가 있다.As people's living standards increase, interest in health increases, and various devices for maintaining health are being developed. An example is an air purifier.
특히 공기장화장치의 경우 사람의 호흡과 직접적인 연관이 있으며, 최근 황사나 미세먼지 등으로 인해 공기를 정화에 대한 관심이 증가하고 있어 다양한 공기정화장치가 개발되고 있다.In particular, in the case of the air boot is directly related to the human breathing, the recent interest in purifying the air due to the yellow dust or fine dust, etc. Various air purifiers have been developed.
일반적으로 공기정화장치는 냄새를 분해하고, 먼지 등을 포집하여 인간에게 해로운 물질을 공기 또는 물로부터 제거하는 장치이다.In general, air purifiers are devices that decompose odors and collect dust and the like to remove substances harmful to humans from air or water.
구체적으로 종래에 개발된 공기정화장치 중에서 국내공개특허 제10-2011-0066668호를 살펴보면, 실내의 공기를 흡입하고 다시 배출하여 강제 순환시키는 송풍수단 및 송풍수단에 의해 순환하는 공기의 순환경로상에 구비된 정화필터를 포함한다. Specifically, Korean Patent Application Publication No. 10-2011-0066668 of the conventionally developed air purifying apparatus, on the circulation path of the air circulated by the blowing means and the blowing means for forcibly circulating the air intake and discharge again It includes a purification filter provided.
여기서 공기청정기의 흡입구에 오염된 실내공기를 집진, 살균 및 탈취하기 위한 정화필터가 설치된다.Here, the purification filter for collecting, sterilizing and deodorizing the indoor air contaminated at the inlet of the air cleaner is installed.
그리고 정화필터가 순환경로상에 구비됨에 따라 송풍수단에 의해 외부공기를 강제 순환시키는 과정에서 흡입구로 흡입된 공기 내에 있는 오염물질, 미세분진 등을 걸러내어 청결해진 공기만을 토출구로 배출된다.In addition, as the purification filter is provided on the circulation path, only the air that is cleaned by filtering contaminants, fine dust, and the like in the air sucked into the inlet is discharged to the outlet in the process of forcibly circulating external air by the blower.
이에 따라 공기청정기는 외부공기를 순환시키며 정화필터에 의해 공기를 정화한다.Accordingly, the air cleaner circulates the outside air and purifies the air by the purification filter.
그러나 정화필터는 소정기간 사용 후 필터가 막히면 교환하여야 하며, 공기청정기가 유효성능을 발휘하기 위해서는 필터의 교환시기를 적정하게 하여야 한다.However, the purifying filter should be replaced when the filter is clogged after a certain period of use. In order for the air cleaner to be effective, the filter should be replaced properly.
이와 같이 종래에 개발된 공기정화장치는 외부의 공기를 흡입하여 순환시키며, 공기의 순환경로상에 별도의 정화필터를 구비하여 공기를 정화하였으나, 고가의 정화필터를 지속적으로 교체해야 하는 문제점이 있었다.As described above, the air purifier developed in the prior art circulates by sucking the outside air and purifies the air by providing a separate purification filter on the air circulation path, but there is a problem in that the expensive purification filter needs to be continuously replaced. .
본 발명은 종래의 문제점을 해결하기 위한 것으로서, 하부에서 흡입되어 상부로 배출되도록 순환하는 외부공기가 상부에서 하부로 낙하하는 물과 교차하여 오염물질이 제거됨으로써 별도의 정화필터를 가지지 않고 지속적으로 공기를 정화할 수 있는 공기순환장치를 제공하기 위함이다 .The present invention is to solve the conventional problems, the external air circulated to be sucked from the bottom and discharged to the upper crosses the water falling from the top to the bottom to remove the contaminants to continuously air without having a separate purification filter To provide an air circulation system that can purify the air.
상기와 같은 과제를 해결하기 위하여 본 발명은, 상하방향을 따라 길게 형성되어 내부에 수용공간을 가지며, 측면에 상기 수용공간과 연통된 유입구가 형성되는 본체, 플레이트형태를 가지며 적어도 하나 이상의 홀이 형성된 디스크를 포함하며, 복수 개의 상기 디스크가 상기 수용공간에서 상하방향을 따라 적층형태로 이격 배치되는 필터모듈, 상기 본체의 상부에 구비되어 선택적으로 구동하며 상기 유입구를 통해 상기 수용공간 내부로 유입되는 외부공기가 상기 필터모듈을 경유하여 상부로 배출되도록 순환시키는 공기순환모듈 및 상기 본체 내부에서 상기 필터모듈의 하부에 구비되며 정화수가 수용되는 워터챔버 및 상기 워터챔버 내부에 수용된 상기 정화수를 펌핑하여 상기 필터모듈의 상부에서 다시 분사함으로써 상기 정화수가 중력에 의해 하부방향으로 흐르도록 하는 순환유닛을 포함하는 워터순환모듈을 포함하며, 상기 외부공기는 상기 정화수의 낙하 시 상부로 이동하여 상기 정화수와 교차하며 오염물질이 제거되는 것을 특징으로 한다.In order to solve the above problems, the present invention is formed along the vertical direction and has a receiving space therein, the inlet in communication with the receiving space is formed on the side, plate shape and at least one hole is formed A filter module which includes a disk, wherein the plurality of disks are spaced apart in a stacked form from the accommodation space in a stacked form, and is provided at an upper portion of the main body to selectively drive and flow into the accommodation space through the inlet. An air circulation module for circulating air to be discharged to the upper portion through the filter module and a water chamber provided at a lower portion of the filter module in the main body and receiving the purified water and the purified water contained in the water chamber to filter the filter By re-injecting from the top of the module, the purified water Includes a water circulation module including a circulation unit to flow to the lower direction, the external air is characterized in that by moving the upper portion of the purified water falls upon crossing with the purified water, and remove contaminants.
또한, 상기 순환유닛은 길게 형성되어 일측이 상기 수용공간의 상부에 배치되고 타측이 상기 워터챔버와 연결되어 상기 워터챔버에 수용된 정화수를 상기 수용공간 상부에서 분사하는 순환배관 및 상기 순환배관의 길이방향에 따른 일부에 구비되어 선택적으로 구동하며 상기 정화수를 순환시키는 순환펌프를 포함할 수 있다.In addition, the circulation unit is formed long and the one side is disposed in the upper portion of the receiving space and the other side is connected to the water chamber and the circulation pipe for injecting the purified water contained in the water chamber from the upper receiving space and the longitudinal direction of the circulation pipe It may be provided in a portion according to the selectively drive and include a circulation pump for circulating the purified water.
또한, 상기 순환유닛은 상기 디스크의 상부에 이격되어 배치되며, 하면이 반구형으로 함몰 형성되어 상기 순환배관의 일측에서 분사되는 정화수를 하부로 확산시키는 확산부재를 더 포함하는 것을 특징으로 할 수 있다.In addition, the circulation unit may be spaced apart from the upper portion of the disk, the bottom surface is formed in a hemispherical shape may further comprise a diffusion member for diffusing the purified water sprayed from one side of the circulation pipe to the bottom.
또한, 상기 확산부재는 상기 수용공간 내부에서 상기 순환배관에서 분사되는 상기 정화수의 압력에 의해 상하방향을 따라 슬라이딩 가능하도록 구성되는 것을 특징으로 할 수 있다.In addition, the diffusion member may be configured to be slidable along the vertical direction by the pressure of the purified water injected from the circulation pipe in the receiving space.
또한, 상기 확산부재는 슬라이딩여부를 감지하는 별도의 감지센서를 더 포함하며, 상기 확산부재가 상부방향으로 슬라이딩하는 경우 이와 연동하여 상기 공기순환모듈이 구동하는 것을 특징으로 할 수 있다.In addition, the diffusion member may further include a separate detection sensor for detecting whether the sliding, and when the diffusion member slides in the upper direction may be characterized in that the air circulation module is driven in conjunction with this.
또한, 상기 순환유닛은 상기 순환배관의 일측 끝단부에 구비되며, 상기 순환펌프에 의해 순환하는 상기 정화수를 횡 방향으로 분사하는 별도의 분사부재를 더 포함하는 것을 특징으로 할 수 있다.The circulation unit may further include a separate injection member provided at one end of the circulation pipe and spraying the purified water circulated by the circulation pump in a lateral direction.
또한, 상기 분사부재는 상기 순환배관을 중심으로 하여 순환하는 상기 정화수의 수압에 의해 회전 가능하도록 구성되는 것을 특징으로 할 수 있다.In addition, the injection member may be configured to be rotatable by the water pressure of the purified water circulating around the circulation pipe.
또한, 상기 순환배관은 길이방향에 따른 적어도 일부가 상기 수용공간에서 상하방향으로 길게 배치되며 복수 개의 상기 디스크를 연속하여 관통하도록 배치되는 것을 특징으로 할 수 있다.In addition, the circulation pipe may be characterized in that at least a portion along the longitudinal direction is arranged long in the vertical direction in the receiving space and arranged to continuously penetrate the plurality of disks.
또한, 상기 디스크는 복수 개가 적층 시 각각에 형성된 홀이 교차되도록 배치되는 것을 특징으로 할 수 있다.In addition, the plurality of disks may be arranged so that the holes formed in each of the plurality are stacked to cross.
또한, 상기 디스크는 상면 또는 하면에 표면을 따라 함몰된 유로가 형성되는 것을 특징으로 할 수 있다.In addition, the disk may be characterized in that the flow path is formed along the surface on the upper or lower surface.
또한, 상기 디스크는 복수 개 중 적어도 일부가 상기 홀의 크기 또는 개수가 서로 다르게 형성되는 것을 특징으로 할 수 있다.In addition, at least some of the disks may be formed to have different sizes or numbers of the holes.
또한, 상기 디스크는 상기 수용공간 내부에서 경사를 가지며 배치되는 것을 특징으로 할 수 있다.In addition, the disk may be arranged with an inclination in the receiving space.
또한, 상기 디스크는 복수 개 중 적어도 일부가 서로 다른 경사를 가지며 배치되는 것을 특징으로 할 수 있다.In addition, at least some of the plurality of disks may be arranged to have different inclinations.
또한, 상기 공기순환모듈은 상기 본체상에서 상기 수용공간의 상부에 구비되며, 외부와 연통되는 배출구가 구비된 커버 및 상기 커버 내부에 구비되어 회전하며 상기 수용공간 내부의 공기를 상기 배출구를 통해 외부로 배출시키는 순환팬을 포함하는 것을 특징으로 할 수 있다.In addition, the air circulation module is provided in the upper portion of the receiving space on the main body, the cover is provided with a discharge port communicating with the outside and is provided inside the cover to rotate the air inside the receiving space to the outside through the discharge port It may be characterized by including a circulating fan to discharge.
또한, 상기 배출구는 방사형으로 복수 개가 이격되어 배치되는 것을 특징으로 할 수 있다.In addition, the outlet may be characterized in that a plurality of radially spaced apart.
또한, 상기 커버는 상기 순환팬의 회전축을 중심으로 하여 적어도 일부가 회전 가능하도록 결합된 회전부를 더 포함하며, 상기 배출구가 상기 회전부상에 구비되는 것을 특징으로 할 수 있다.In addition, the cover may further include a rotating portion coupled to rotate at least a portion about the rotation axis of the circulation fan, characterized in that the discharge port is provided on the rotating portion.
또한, 상기 본체는 상기 필터모듈의 하부에서 하향 경사를 가지며 최하단부가 상기 워터챔버와 연통되고 상기 디스크를 통과해 하부로 전달되는 상기 정화수를 수집해 상기 워터챔버로 전달하는 수집부재를 더 포함하는 것을 특징으로 할 수 있다.In addition, the main body further comprises a collecting member for having a downward inclination in the lower portion of the filter module and the lower end is in communication with the water chamber and collects the purified water passing through the disk to the lower portion to deliver to the water chamber. It can be characterized.
또한, 상기 유입구는 복수 개 중 최하부에 위치한 상기 디스크와 인접하게 배치되며 상기 본체의 외측면을 따라 복수 개가 이격되어 형성되는 것을 특징으로 할 수 있다.In addition, the inlet may be disposed adjacent to the disk located at the bottom of the plurality of the plurality may be formed along the outer surface of the main body is spaced apart.
또한, 상기 워터챔버는 상기 본체상에서 하부에 구비되며, 상기 본체에서 선택적으로 착탈 가능하도록 구성되는 것을 특징으로 할 수 있다.In addition, the water chamber is provided on the lower portion on the main body, it may be characterized in that configured to be selectively detachable from the main body.
본 발명에 따른 공기순환장치는 다음과 같은 효과가 있다.The air circulation device according to the present invention has the following effects.
첫째, 본체 내부에서 복수 개의 디스크를 적층시킨 필터모듈이 구비되며, 필터모듈의 상부에서 정화수를 분사하고, 이와 반대로 필터모듈의 하부에서 유입되는 외부공기를 상부방향으로 이동시켜 배출함으로써, 필터모듈 내부에서 정화수와 외부공기가 교차하며 외부공기에 포함된 오염물질을 정화수가 제거하여 별도의 정화필터 없이 공기를 정화시킬 수 있는 이점이 있다.First, there is provided a filter module in which a plurality of disks are stacked inside the main body, injecting purified water from the upper part of the filter module, and conversely, by discharging the external air flowing from the lower part of the filter module to the upper direction and discharging the inside of the filter module. In the purified water and the outside air crosses the pollutants contained in the outside air to remove the purified water has the advantage that can be purified air without a separate purification filter.
둘째, 상기 디스크에 복수 개의 홀이 구비되어 서로 교차되는 방향으로 배치되며, 상기 홀을 통해 외부공기와 정화수가 교차되어 이동함에 따라 필터모듈 내부에서 외부공기와 정화수의 체류시간을 증가시킬 수 있는 이점이 있다.Second, the disk is provided with a plurality of holes are arranged in the direction crossing each other, the external air and the purified water is moved through the hole to increase the residence time of the external air and purified water inside the filter module There is this.
본 발명의 효과들은 상기 언급한 효과에 제한되지 않으며, 언급되지 않은 또 다른 효과들은 청구범위의 기재로부터 당업자에게 명확하게 이해될 수 있을 것이다.The effects of the present invention are not limited to the above-mentioned effects, and other effects not mentioned will be clearly understood by those skilled in the art from the description of the claims.
도 1은 본 발명에 따른 공기순환장치의 구성을 개략적으로 나타낸 도면;1 is a view schematically showing the configuration of an air circulation device according to the present invention;
도 2는 도 1의 공기순환장치의 구성을 나타낸 분해사시도;Figure 2 is an exploded perspective view showing the configuration of the air circulation device of Figure 1;
도 3은 도 1의 공기순환장치의 내부에서 외부공기와 정화수가 순환하는 상태를 나타낸 도면;3 is a view illustrating a state in which external air and purified water circulate inside the air circulation system of FIG. 1;
도 4는 도 1의 공기순환장치에서 필터모듈의 구성을 나타낸 도면;4 is a view showing the configuration of a filter module in the air circulation of Figure 1;
도 5는 도 1의 공기순환장치에서 확산부재에 의해 정화수가 분사되는 상태를 나타낸 도면; 5 is a view showing a state in which purified water is injected by the diffusion member in the air circulation of FIG.
도 6은 도 1의 공기순환장치에서 공기순환모듈의 구성을 나타낸 도면; 및6 is a view showing the configuration of an air circulation module in the air circulation of Figure 1; And
도 7은 도 1의 공기순환장치에서 순환유닛의 변형된 형태에 대해서 나타낸 도면이다. 7 is a view showing a modified form of the circulation unit in the air circulation of FIG.
이하 본 발명의 목적이 구체적으로 실현될 수 있는 본 발명의 바람직한 실시예를 첨부된 도면을 참조하여 설명한다. 본 실시예를 설명함에 있어서, 동일 구성에 대해서는 동일 명칭 및 동일 부호가 사용되며 이에 따른 부가적인 설명은 생략하기로 한다.DETAILED DESCRIPTION Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings. In the description of this embodiment, the same name and the same reference numerals are used for the same configuration and additional description thereof will be omitted.
본 발명에 따른 공기순환장치는 일반적인 공기정화기와 달리 별도의 정화필터를 구비하지 않고, 순환하는 공기와 정화수가 교차됨으로써 정화수에 의해 오염물질이 제거되도록 하는 공기 순환장치이다.The air circulation device according to the present invention does not have a separate purification filter unlike a general air purifier, and is an air circulation device for removing contaminants by purified water by crossing the circulating air and the purified water.
먼저, 도 1 내지 도 4를 참조하여 본 발명에 따른 공기순환장치의 개략적인 구성에 대해서 살펴보면 다음과 같다.First, referring to FIGS. 1 to 4, the schematic configuration of the air circulation system according to the present invention will be described.
도 1은 본 발명에 따른 공기순환장치의 구성을 개략적으로 나타낸 도면이고, 도 2는 도 1의 공기순환장치의 구성을 나타낸 분해사시도이다.1 is a view schematically showing the configuration of an air circulation device according to the present invention, Figure 2 is an exploded perspective view showing the configuration of the air circulation device of FIG.
그리고 도 3은 도 1의 공기순환장치의 내부에서 외부공기와 정화수가 순환하는 상태를 나타낸 도면이며, 도 4는 도 1의 공기순환장치에서 필터모듈의 구성을 나타낸 도면이다.3 is a view illustrating a state in which external air and purified water circulate inside the air circulation device of FIG. 1, and FIG. 4 is a view illustrating a configuration of a filter module in the air circulation device of FIG. 1.
본 발명에 따른 공기순환장치는 상하방향으로 길게 형성되며, 외부공기가 측면에서 유입되어 상부로 배출되는 형태로 구성된다.Air circulation device according to the present invention is formed long in the vertical direction, it is configured in the form of the outside air is introduced from the side is discharged to the top.
상기 공기순환장치는 크게 본체(100), 공기순환모듈(200), 필터모듈(300), 워터순환모듈(400)을 포함하며, 외부공기가 상기 본체(100) 내부로 유입되어 필터모듈(300)을 거쳐 다시 외부로 공급된다.The air circulation device includes a main body 100, an air circulation module 200, a filter module 300, a water circulation module 400, the outside air is introduced into the main body 100 to filter module 300 It is supplied to outside again through).
상기 본체(100)는 전체를 내부에 수용하는 구성으로써, 내부에 상기 필터모듈(300), 상기 공기순환모듈(200) 및 상기 워터순환모듈(400)이 수용된다.The main body 100 is configured to accommodate the whole, the filter module 300, the air circulation module 200 and the water circulation module 400 is accommodated therein.
구체적으로, 상기 본체(100)는 상하방향을 따라 길게 형성되어 내부에 수용공간(110)을 가지며, 측면에 상기 수용공간(110)과 연통된 유입구(120)가 형성된다.Specifically, the main body 100 is formed long in the vertical direction and has an accommodation space 110 therein, and an inlet 120 communicating with the accommodation space 110 is formed on a side surface thereof.
그리고 상기 유입구(120)는 후술하는 상기 공기순환모듈(200)에 의해 순환하는 상기 외부공기가 유입된다.And the inlet 120 is the inlet of the external air circulated by the air circulation module 200 to be described later.
본 실시예에서 상기 본체(100)는 길이방향에 따른 하부가 선택적으로 개구되도록 별도의 도어(102)를 포함하며 상기 도어(102)를 통해 후술하는 워터챔버(410)가 내부에 수용된다.In the present embodiment, the main body 100 includes a separate door 102 to selectively open the lower portion in the longitudinal direction, and the water chamber 410 described later through the door 102 is accommodated therein.
그리고 상기 워터챔버(410)의 상부에는 상기 필터모듈(300)이 구비되며, 상기 필터모듈(300)의 상부에는 상기 공기순환모듈(200)이 구비된다.The filter module 300 is provided above the water chamber 410, and the air circulation module 200 is provided above the filter module 300.
도시된 도면을 살펴보면 상기 본체(100)는 원통 형상으로 형성되며 길이방향에 따른 중앙의 측면에 외부와 연통되어 공기가 유입되도록 복수 개의 상기 유입구(120)가 형성된다.Looking at the illustrated figure, the main body 100 is formed in a cylindrical shape and a plurality of the inlets 120 are formed to communicate with the outside on the side of the center in the longitudinal direction so that air is introduced.
여기서, 상기 유입구(120)는 상기 필터모듈(300)의 최하단부에 인접하게 배치되며, 상기 본체(100)의 외측면을 따라 이격되어 배치된다.Here, the inlet 120 is disposed adjacent to the lowest end of the filter module 300, spaced apart along the outer surface of the main body 100.
또한, 상기 본체(100)는 상기 수용공간(110) 내부에서 하향경사를 가지며 최하단부가 상기 워터챔버(410)와 연통되는 수집부재(130)를 더 포함한다.In addition, the main body 100 further includes a collecting member 130 having a downward inclination in the accommodation space 110 and having a lower end communicating with the water chamber 410.
상기 수집부재(130)는 일반적인 깔때기 형태로 형성되며 후술하는 상기 워터순환모듈(400)에 의해 상기 수용공간(110) 상부에서 하부로 분사되는 정화수(W)를 수집하여 상기 워터챔버(410)로 전달한다.The collecting member 130 is formed in a general funnel form and collects purified water (W) injected from the upper portion of the receiving space 110 to the lower by the water circulation module 400 to be described later to the water chamber 410 To pass.
이에 따라 상기 수집부재(130)는 상기 수용공간(110)의 상하방향에 따른 중앙부에서 상기 필터모듈(300)과 상기 워터챔버(410) 사이에 배치된다.Accordingly, the collection member 130 is disposed between the filter module 300 and the water chamber 410 in the central portion in the vertical direction of the receiving space 110.
한편, 상기 공기순환모듈(200)은 상기 본체(100)의 최상단부에 구비되어 선택적으로 구동하며, 외부공기가 상기 유입구(120)를 통해 유입된 후 상부방향으로 배출되도록 한다.On the other hand, the air circulation module 200 is provided at the top end of the main body 100 to drive selectively, so that the outside air is introduced through the inlet 120 and discharged upwards.
구체적으로 상기 공기순환모듈(200)은 크게 커버(210) 및 순환팬(220)을 포함하며, 상기 커버(210)는 상기 본체(100)상에서 상기 수용공간(110)의 상부에 구비되며 외부와 연통되는 배출구(212)가 구비된다. Specifically, the air circulation module 200 includes a cover 210 and a circulation fan 220 largely, the cover 210 is provided on the upper portion of the receiving space 110 on the main body 100 and the outside and A communication port 212 is provided.
이때, 상기 배출구(212)는 상기 커버(210)의 상면 또는 측면에 구비될 수 있으며, 복수 개가 이격되어 배치된다.At this time, the outlet 212 may be provided on the upper surface or the side of the cover 210, a plurality of spaced apart.
그리고 상기 순환팬(220)은 상기 커버(210) 내부에 구비되며 사용자에 의해 선택적으로 구동하여 공기를 순환시킨다.In addition, the circulation fan 220 is provided inside the cover 210 and is selectively driven by a user to circulate air.
여기서, 상기 순환팬(220)의 구동에 따라 상기 수용공간(110) 내부에 수용된 공기는 상부방향으로 이동하여 상기 배출구(212)를 통해 배출된다. 그리고 이와 연동되어 상기 유입구(120)를 통해 외부공기가 상기 수용공간(110) 내부로 유입된다.Here, the air received in the accommodation space 110 in accordance with the driving of the circulation fan 220 is moved upwards and is discharged through the outlet 212. In addition, in conjunction with this, external air is introduced into the accommodation space 110 through the inlet 120.
즉, 상기 공기순환모듈(200)은 상기 본체(100)의 상부에 구비되며 상기 수용공간(110)과 연통되고, 상기 순환팬(220)의 구동에 의해 상기 수용공간(110) 내부에 수용된 공기를 상부로 배출시킴으로써 오염된 외부공기가 상기 수용공간(110) 내부를 경유하여 순환하도록 한다.That is, the air circulation module 200 is provided in the upper portion of the main body 100 and communicated with the accommodation space 110, the air accommodated in the accommodation space 110 by the drive of the circulation fan 220 By discharging the upper portion to contaminate the outside air contaminated via the receiving space 110 inside.
본 실시예에서 상기 공기순환모듈(200)은 도시된 바와 같이 상기 본체(100)의 상부에 구비되어 상기 본체(100)의 형상에 대응하는 형상을 가지며, 상기 커버(210)는 반구형으로 형성되어 내부가 상기 수용공간(110)과 연통된다. In this embodiment, the air circulation module 200 has a shape corresponding to the shape of the main body 100 is provided in the upper portion of the main body 100 as shown, the cover 210 is formed in a hemispherical shape The interior communicates with the accommodation space 110.
이때 상기 배출구(212)는 상기 커버(210)상에서 방사형으로 복수 개가 이격되어 배치된다.In this case, a plurality of outlets 212 are radially spaced apart from each other on the cover 210.
그리고, 상기 순환팬(220)의 하부에는 별도의 지지부재(230)가 구비되어 상기 본체(100)의 상부와 상기 커버(210) 사이에 배치되며, 상기 순환팬(220)을 안정적으로 지지할 수 있도록 구성된다.In addition, a separate support member 230 is provided below the circulation fan 220 to be disposed between the upper portion of the main body 100 and the cover 210 to stably support the circulation fan 220. It is configured to be.
상기 공기순환모듈(200)의 구체적인 구성에 대해서는 도 6을 참조하여 후술한다.A detailed configuration of the air circulation module 200 will be described later with reference to FIG. 6.
한편, 상기 필터모듈(300)은 상기 수용공간(110) 내부에 구비되어 상기 수용공간(110) 내부에 구비되어, 상기 유입구(120)를 통해 유입된 공기가 경유하여 상기 배출구(212)를 통해 이동하는 경로상에 배치된다.On the other hand, the filter module 300 is provided in the accommodation space 110 is provided in the accommodation space 110, through the air introduced through the inlet 120 through the outlet 212 It is placed on the moving path.
구체적으로 상기 필터모듈(300)은 플레이트형태를 가지며 적어도 하나 이상의 홀(312)을 가지는 복수 개의 디스크(310)를 포함하며, 복수 개의 상기 디스크(310)는 상기 수용공간(110) 내부에서 상하방향을 따라 적층형태로 이격되어 배치된다.Specifically, the filter module 300 has a plate shape and includes a plurality of disks 310 having at least one or more holes 312, and the plurality of disks 310 are upward and downward in the accommodation space 110. Along the stack is spaced apart.
이때, 상기 복수 개의 디스크(310)는 상기 수용공간(110) 내부에서 적층 시 각각에 형성된 홀(312)이 교차되도록 배치된다. 이에 따라 상기 유입구(120)를 통해 유입된 외부공기가 상기 디스크(310)에 형성된 홀(312)을 통해 이동하며, 복수 개의 상기 디스크(310)를 연속적으로 경유하게 된다.In this case, the plurality of disks 310 are disposed such that the holes 312 formed in each of the plurality of disks 310 intersect when stacked in the accommodation space 110. Accordingly, the external air introduced through the inlet 120 moves through the hole 312 formed in the disk 310, and continuously passes through the plurality of disks 310.
여기서, 상기 디스크(310)는 상면 또는 하면에 표면을 따라 함몰된 유로(314)가 형성될 수도 있다.In this case, the disk 310 may have a channel 314 recessed along the surface of the disk 310.
구체적으로 도 4에 도시된 바와 같이 상기 디스크(310)는 평판형태가 아니라 상기 유로(314)가 형성되어 상기 유입구(120)를 통해 유입된 공기가 상부로 이동 시 다양한 이동경로를 가지도록 한다.In detail, as shown in FIG. 4, the disk 310 is not in the form of a flat plate, and the flow path 314 is formed to have various movement paths when the air introduced through the inlet 120 moves upward.
이에 따라, 상기 유로(314)와 상기 홀(312)에 의해 상기 필터모듈(300)을 경유하는 상기 외부공기는 상기 필터모듈(300) 내부에서 이동하는 경로가 증가하게 되며, 이에 따라 체류시간이 증가하게 된다.Accordingly, the path of the external air passing through the filter module 300 by the flow path 314 and the hole 312 increases in the filter module 300, thereby increasing the residence time. Will increase.
또한, 후술하는 상기 워터순환모듈(400)에 의해 상부에서 낙하하는 정화수(W)의 체류시간을 증가시켜 상기 외부공기와 교차되도록 한다.In addition, by increasing the residence time of the purified water (W) falling from the upper by the water circulation module 400 to be described later to cross the outside air.
그리고 이와 같이 상기 필터모듈(300) 내부에서 상기 외부공기와 상기 정화수(W)의 체류시간이 증가함으로써 상기 정화수(W)와 상기 외부공기의 접촉시간이 증가하여 상기 외부공기에 포함된 오염물질을 안정적으로 제거할 수 있다.In addition, as the residence time of the external air and the purified water (W) increases in the filter module 300, the contact time between the purified water (W) and the external air is increased to remove contaminants contained in the external air. Can be reliably removed.
이와 같이 상기 필터모듈(300)은 복수 개의 상기 디스크(310)를 포함하며, 상기 디스크(310)에 의해 상기 유입구(120)를 통해 유입된 외부공기가 상기 정화수(W)와 교차되며 오염물질이 제거된 상태로 상부로 이동한다.As described above, the filter module 300 includes a plurality of the disks 310, and external air introduced through the inlet 120 by the disks 310 intersects with the purified water W and contaminants are present. Move to the top with it removed.
여기서, 본 실시예에 따른 상기 필터모듈(300)은 복수 개의 상기 디스크(310)를 측면에서 감싸며, 상기 유입구(120)에 대응하는 위치에 복수 개의 연통구(322)가 형성된 별도의 내부케이스(320)를 더 포함할 수 있다.Here, the filter module 300 according to the present embodiment surrounds the plurality of disks 310 from the side, and a separate inner case having a plurality of communication ports 322 formed at a position corresponding to the inlet 120 ( 320 may be further included.
상기 내부케이스(320)는 상기 디스크(310)를 측면에서 감싸도록 구성되며, 상술한 상기 수집부재(130)가 하부에 결합된다.The inner case 320 is configured to surround the disk 310 from the side, and the collection member 130 described above is coupled to the bottom.
이에 따라 상기 유입구(120)를 통해 유입된 외부공기가 적층된 복수 개의 상기 디스크(310) 중 하부에서부터 상부로 이동하도록 하며, 상부에서부터 흘러내리는 상기 정화수(W)가 의도하지 않게 상기 디스크(310)에서 이탈되지 않고 상기 수집부재(130)에 의해 수집될 수 있도록 한다.Accordingly, the external air introduced through the inlet 120 is moved from the lower side to the upper side of the plurality of disks 310 stacked with each other, and the purified water W flowing from the upper side is unintentionally introduced into the disk 310. It can be collected by the collecting member 130 without departing from.
한편, 도면에 도시되지는 않았지만, 복수 개의 상기 디스크(310)에 형성된 상기 홀(312)의 크기나 개수가 서로 다르게 형성될 수도 있으며, 이에 따라 상기 수용공간(110)에 적층되는 복수 개의 상기 디스크(310) 중 일부를 사용자가 선택적으로 교체함으로써, 상기 수용공간(110)의 내부 압력이 조절될 수도 있다.Although not shown in the drawing, the size or number of the holes 312 formed in the plurality of disks 310 may be formed differently, and thus the plurality of disks stacked in the accommodation space 110. By selectively replacing some of the 310, the internal pressure of the accommodation space 110 may be adjusted.
이와 같이 상기 수용공간(110) 내부의 압력을 조절함으로써, 상기 배출구(212)로 배출되는 외부공기의 배출량을 조절할 수 있다.As such, by adjusting the pressure in the accommodation space 110, the discharge of the external air discharged to the outlet 212 can be adjusted.
한편, 본 실시예에서 상기 디스크(310)는 복수 개가 모두 동일한 형상을 가지도록 형성되며 상기 홀(312)이 교차되도록 배치되지만, 이와 달리 복수 개의 상기 디스크(310) 중 일부는 다른 형상을 가지도록 형성될 수도 있다.On the other hand, in the present embodiment, the plurality of disks 310 are all formed to have the same shape and the holes 312 are arranged to cross, in contrast, some of the plurality of disks 310 has a different shape It may be formed.
또한, 본 실시예에서는 상기 디스크(310)가 수평을 이루며 상기 수용공간(110) 내부에서 적층 형태로 배치되어 있지만, 이와 달리 상기 디스크(310)가 경사를 가지도록 적층되거나, 복수 개 중 일부의 경사가 서로 반대방향으로 배치되도록 구성될 수도 있다.In addition, in the present embodiment, the disk 310 is horizontally arranged in a stacking form in the accommodation space 110, but alternatively, the disk 310 is stacked to have an inclination or a plurality of disks. The inclination may also be configured to be arranged in opposite directions to each other.
이와 같이 구성된 상기 필터모듈(300)은 상기 수용공간(110) 내부에서 상기 공기순환모듈(200)에 의해 유입되는 외부공기와 상기 워터순환모듈(400)에 의해 순환하는 상기 정화수(W)의 체류시간을 증가시키도록 구성될 수 있다.The filter module 300 configured as described above stays in the purified water (W) circulated by the water circulation module 400 and external air introduced by the air circulation module 200 in the accommodation space 110. It can be configured to increase the time.
한편, 상기 워터순환모듈(400)은 상기 본체(100)상에 구비되며, 상기 필터모듈(300)의 상부에서 하부방향으로 정화수(W)를 분사시켜주는 구성으로써 크게 정화수(W)가 수용된 워터챔버(410) 및 상기 워터챔버(410)에 수용된 상기 정화수(W)를 순환시켜 상기 필터모듈(300)의 상부에서 분사시키는 순환유닛(420)을 포함한다.On the other hand, the water circulation module 400 is provided on the main body 100, the configuration to inject the purified water (W) in the lower direction from the top of the filter module 300 is largely accommodated water (W) And a circulation unit 420 for circulating the purified water W accommodated in the chamber 410 and the water chamber 410 and spraying the upper portion of the filter module 300.
상기 워터챔버(410)는 상기 필터모듈(300)의 하부에 구비되며, 내부에 상기 정화수(W)를 수용한다. 여기서, 상기 워터챔버(410)는 일반적인 챔버로 구성되며, 상기 본체(100)의 내부에서 상기 수집부재(130)에 의해 상기 수용공간(110)과 연통된다.The water chamber 410 is provided below the filter module 300 and accommodates the purified water (W) therein. Here, the water chamber 410 is composed of a general chamber, and communicates with the receiving space 110 by the collecting member 130 in the body 100.
그리고 상기 워터챔버(410)는 상기 수집부재(130)와 선택적으로 착탈 가능하도록 구성되어 사용자가 상기 정화수(W)의 양을 조절할 수 있도록 한다.In addition, the water chamber 410 is configured to be selectively removable with the collection member 130 to allow the user to adjust the amount of the purified water (W).
이때, 상기 정화수(W)라 함은 상기 공기순환모듈(200)에 의해 순환하는 상기 외부공기와 접촉하여 상기 외부공기에 포함된 오염물질을 제거하기 위한 액체로서, 일반적인 물이 사용될 수 있다.In this case, the purified water (W) is a liquid for removing contaminants contained in the external air in contact with the external air circulated by the air circulation module 200, general water may be used.
본 실시예에서 상기 워터챔버(410)는 상기 수용공간(110) 내부에서 상기 수집부재(130)의 하부에 구비되며, 개구된 부분을 통해 상기 본체(100)에서 분리 가능하도록 구성된다.In this embodiment, the water chamber 410 is provided in the lower portion of the collecting member 130 in the receiving space 110, it is configured to be separated from the main body 100 through the open portion.
한편, 상기 순환유닛(420)은, 상기 워터챔버(410) 내부에 수용된 상기 정화수(W)를 펌핑하여 상기 필터모듈(300)을 상부에서 다시 분사하며, 상기 정화수(W)가 중력에 의해 하부방향으로 흐르도록 한다.On the other hand, the circulation unit 420, pumping the purified water (W) accommodated in the water chamber 410 again to spray the filter module 300 from the top, the purified water (W) is lowered by gravity In the direction of flow.
구체적으로 상기 순환유닛(420)은 길게 형성되어 상기 워터챔버(410)에 수용된 상기 정화수(W)를 상부로 이동시키는 순환배관(422), 상기 순환배관(422)상에 구비된 순환펌프(424)를 포함한다.Specifically, the circulation unit 420 is formed long and the circulation pipe 422 for moving the purified water (W) accommodated in the water chamber 410 to the upper portion, the circulation pump 424 provided on the circulation pipe 422 ).
상기 순환배관(422)은 길게 형성되어 일측이 상기 수용공간(110)의 상부에 배치되고 타측이 상기 워터챔버(410)와 연결되어 상기 워터챔버(410)에 수용된 상기 정화수(W)를 하부로 분사한다.The circulation pipe 422 is formed long so that one side is disposed above the receiving space 110 and the other side is connected to the water chamber 410 to lower the purified water W received in the water chamber 410 to the bottom. Spray.
여기서, 상기 순환배관(422)의 일측 끝단부는 상기 수용공간(110) 내부에서 상기 필터모듈(300)의 상부에 배치되어 상기 정화수(W)가 배출되며, 배출된 상기 정화수(W)는 중력에 의해 하부로 이동하여 상기 필터모듈(300)으로 이동한다.Here, one end of the circulation pipe 422 is disposed above the filter module 300 in the accommodation space 110 to discharge the purified water (W), the discharged purified water (W) is gravity By moving to the lower side to the filter module 300.
본 실시예에서 상기 순환배관(422)은 일반적인 파이프로 형성되며, 도시된 바와 같이 타측이 상기 수집부재(130)를 관통하여 상기 워터챔버(410) 내부에 배치된다.In this embodiment, the circulation pipe 422 is formed of a general pipe, and as shown, the other side passes through the collecting member 130 and is disposed in the water chamber 410.
그리고 상기 순환배관(422)은 길이방향에 따른 적어도 일부가 상기 수용공간(110)의 횡 방향에 따른 중앙에서 상하방향으로 배치되며, 복수 개의 상기 디스크(310)를 연속하여 관통하도록 배치된다.In addition, the circulation pipe 422 is disposed in the vertical direction in the center along the transverse direction of the receiving space 110 in the longitudinal direction, the plurality of disks 310 are disposed so as to continuously pass through.
즉, 상기 순환배관(422)은 도시된 바와 같이 상기 디스크(310)의 중앙부를 관통하여 일측 끝단부가 상기 필터모듈(300)의 상부에 배치되며, 타측을 통해 공급되는 상기 정화수(W)를 상기 필터모듈(300)의 상부에서 분사할 수 있다.That is, the circulation pipe 422 penetrates through the central portion of the disk 310, and one end thereof is disposed above the filter module 300, and the purified water W is supplied through the other side. It may be injected from the top of the filter module 300.
한편, 상기 순환펌프(424)는 일반적인 펌프 형태로 상기 순환배관(422)의 길이방향에 따른 일부에 구비되며, 사용자에 의해 선택적으로 구동하여 상기 워터챔버(410)에 수용된 상기 정화수(W)를 순환시킨다.On the other hand, the circulation pump 424 is provided in a portion along the longitudinal direction of the circulation pipe 422 in the form of a general pump, selectively driven by the user to the purified water (W) accommodated in the water chamber 410 Circulate
이때, 상기 순환펌프(424)는 사용자의 조작에 의해 상기 정화수(W)의 펌핑속도 및 펌핑유량이 조절되도록 구성될 수 있다.At this time, the circulation pump 424 may be configured to control the pumping speed and the pumping flow rate of the purified water (W) by the user's operation.
이와 같이 상기 순환펌프(424)에 의해 상기 워터챔버(410)에 수용된 상기 정화수(W)는 상기 순환배관(422)을 따라 이동하여 상기 필터모듈(300) 상부에서 분사된다.In this way, the purified water (W) accommodated in the water chamber 410 by the circulation pump 424 is moved along the circulation pipe 422 is injected from the filter module 300.
여기서, 도면에 도시되지는 않았지만 상기 순환배관(422)을 일측 끝단부에 별도의 확산수단(미도시)이 구비되어 상기 정화수(W)를 확산시켜 분사할 수도 있다.Here, although not shown in the drawing, a separate diffusion means (not shown) is provided at one end of the circulation pipe 422 to diffuse and purify the purified water (W).
그리고 이와 같이 분사된 상기 정화수(W)는 상기 필터모듈(300)을 경유하며 하부로 이동한 후 상기 수집부재(130)에 의해 모아져 상기 워터챔버(410)로 다시 수집된다.The purified water W injected as described above is moved downward through the filter module 300 and collected by the collecting member 130 and collected again by the water chamber 410.
한편, 본 발명에 따른 상기 순환유닛(420)은 상기 순환배관(422) 및 상기 순환펌프(424)와 함께 추가적인 확산부재(426)를 더 포함할 수 있다.Meanwhile, the circulation unit 420 according to the present invention may further include an additional diffusion member 426 together with the circulation pipe 422 and the circulation pump 424.
상기 확산부재(426)는 상기 필터모듈(300)의 상부에 이격되어 배치되며 하면이 반구형으로 함몰 형성되어 상기 순환배관(422)의 일측에서 분사되는 상기 정화수(W)를 확산시키도록 구성될 수도 있다.The diffusion member 426 is spaced apart from the upper portion of the filter module 300, and the bottom surface is formed in a hemispherical shape may be configured to diffuse the purified water (W) injected from one side of the circulation pipe 422. have.
구체적으로 상기 확산부재(426)는 도시된 바와 같이 상기 지지부재(230)와 연결되며 상기 순환배관(422)의 일측 끝단부에서 연직 상부에 배치되며, 상기 정화수(W)가 배출되는 방향과 마주보도록 하면이 배치된다.Specifically, the diffusion member 426 is connected to the support member 230 as shown, is disposed in the vertical upper portion at one end of the circulation pipe 422, facing the direction in which the purified water (W) is discharged The bottom surface is placed to see.
이에 따라 상기 순환배관(422)에서 분사되는 상기 정화수(W)는 상기 확산부재(426)에 의해 확산된 상태로 상기 필터모듈(300)의 상부에 고르게 전달된다.Accordingly, the purified water (W) injected from the circulation pipe 422 is evenly delivered to the upper portion of the filter module 300 in a state diffused by the diffusion member 426.
이와 같이 상기 순환유닛(420)이 구성됨에 따라 상기 워터챔버(410)에 수용된 상기 정화수(W)는 상기 수용공간(110) 상부로 이동하여 분사되고, 상기 수용공간(110)의 상부에서 분사된 상기 정화수(W)는 상기 필터모듈(300)을 경유하며 하부로 이동하게 된다.As the circulation unit 420 is configured as described above, the purified water W accommodated in the water chamber 410 moves to the upper portion of the receiving space 110 and is injected, and is injected from the upper portion of the receiving space 110. The purified water (W) is moved downward through the filter module (300).
그리고 상기 공기순환모듈(200)에 의해 상기 수용공간(110)으로 유입된 상기 외부공기는 상기 필터모듈(300)을 통과해 상부로 이동하게 된다.The external air introduced into the accommodation space 110 by the air circulation module 200 moves upward through the filter module 300.
여기서, 상기 필터모듈(300)을 통과하는 상기 정화수(W)와 상기 외부공기는 서로 교차되며 반대방향으로 이동하기 때문에 상기 정화수(W)에 의해 상기 외부공기에 포함된 오염물질이 제거된다.Here, since the purified water (W) and the external air passing through the filter module 300 cross each other and move in the opposite direction, the pollutants contained in the external air are removed by the purified water (W).
이와 같이 본 발명에 따른 상기 공기순환장치가 구성되며, 상기 정화수(W)가 상기 본체(100) 내부에서 순환하고, 상기 외부공기가 상기 정화수(W)를 통과해 이동하며 상기 배출구(212)를 통해 배출됨으로써 공기가 정화된다.Thus, the air circulation device according to the present invention is configured, the purified water (W) is circulated in the main body 100, the outside air moves through the purified water (W) to move the outlet 212 The air is purged by venting through.
이에 따라 별도의 정화필터를 구비하지 않고 단순히 정화수(W)만으로 상기 외부공기를 정화할 수 있다.Accordingly, the external air can be purified by simply purifying water (W) without providing a separate purification filter.
뿐만 아니라 상기 공기순환모듈(200)에 의해 순환하는 상기 외부공기가 상기 정화수(W)와 교차됨으로써 상기 외부공기에 수분이 추가되어 가습기의 효과를 가질 수도 있다.In addition, since the external air circulated by the air circulation module 200 intersects with the purified water (W), moisture may be added to the external air to have a humidifier effect.
또한, 상술한 바와 같이 복수 개의 상기 디스크(310) 중 일부를 교체함으로써 상기 수용공간(110) 내부의 압력을 조절하고 이에 따라 상기 배출구(212)를 통해 배출되는 상기 외부공기의 배출량을 조절할 수도 있다.In addition, as described above, by replacing some of the plurality of disks 310, the pressure in the accommodation space 110 may be adjusted, and accordingly, the discharge of the external air discharged through the outlet 212 may be adjusted. .
이어서, 도 5를 참조하여 상기 확산부재(426)의 구체적인 구성에 대해서 살펴보면 다음과 같다.Subsequently, a detailed configuration of the diffusion member 426 will be described with reference to FIG. 5.
도 5는 도 1의 공기순환장치에서 확산부재(426)에 의해 정화수(W)가 분사되는 상태를 나타낸 도면이다.5 is a view showing a state in which the purified water (W) is injected by the diffusion member 426 in the air circulation of FIG.
상기 확산부재(426)는 도시된 바와 같이 하면이 반구형으로 함몰 형성되며, 상기 순환배관(422)의 일측 끝단부 상부에 위치하여, 상기 순환배관(422)의 일측에서 분사되는 상기 정화수(W)가 부딪히도록 배치된다.As shown in the diffusion member 426, the bottom surface thereof is recessed in a hemispherical shape, and is located at one end of the circulation pipe 422, and the purified water (W) injected from one side of the circulation pipe 422. Is arranged to hit.
그리고 분사되는 상기 정화수(W)는 상기 확산부재(426)의 하면에 부딪혀 넓게 퍼지며 하부로 이동하게 된다. 이에 따라 상기 정화수(W)는 상기 필터모듈(300)의 상부에서 분사되어 하부로 이동하여 최상부에 위치한 상기 디스크(310)에 고르게 뿌려지게 된다.In addition, the purified water (W) is injected to the lower surface of the diffusion member 426 is spread widely and moves to the bottom. Accordingly, the purified water (W) is sprayed from the upper portion of the filter module 300 is moved to the lower portion is evenly sprayed on the disk 310 located at the top.
한편, 상기 확산부재(426)는 도시된 바와 같이 상기 수용공간(110) 내부에서 상하방향으로 슬라이딩 가능하도록 구성된다.On the other hand, the diffusion member 426 is configured to be slidable up and down in the receiving space 110 as shown.
구체적으로 상기 확산부재(426)는 상기 지지부재(230)와 연결되며, 상하방향으로 슬라이딩 가능하도록 구성되어 상기 순환배관(422)의 일측에서 상기 정화수(W)가 분사되는 경우 상부방향으로 슬라이딩되며, 상기 정화수(W)가 분사되지 않을 때는 자중에 의해 하부로 슬라이딩된다.Specifically, the diffusion member 426 is connected to the support member 230, is configured to be slidable in the vertical direction is sliding in the upper direction when the purified water (W) is injected from one side of the circulation pipe 422 When the purified water W is not injected, the purified water W is slid downward by its own weight.
여기서, 상기 확산부재(426)는 내부에 별도의 감지센서(426a)를 구비하여 상기 확산부재(426)의 슬라이딩여부를 감지할 수 있도록 한다.Here, the diffusion member 426 is provided with a separate sensor 426a therein to detect whether the diffusion member 426 is sliding.
이때, 상기 감지센서(426a)는 위치센서나 압전센서 등 다양한 형태로 형성될 수 있으며, 상기 확산부재(426)의 승하강 여부를 감지할 수 있다면 어떠한 형태로든 적용이 가능하다.In this case, the detection sensor 426a may be formed in various forms such as a position sensor or a piezoelectric sensor, and may be applied in any form as long as it can detect whether the diffusion member 426 is raised or lowered.
이와 같이 상기 확산부재(426)는 상기 감지센서(426a)를 포함할 수 있으며, 상기 감지센서(426a)는 상기 공기순환모듈(200)과 연동되어 상기 확산부재(426)가 상부방향으로 슬라이딩하는 경우 상기 공기순환모듈(200)을 구동시키도록 구성될 수 있다.As described above, the diffusion member 426 may include the detection sensor 426a, and the detection sensor 426a is interlocked with the air circulation module 200 so that the diffusion member 426 slides upward. In this case, the air circulation module 200 may be configured to drive.
이에 따라, 사용자는 상기 순환펌프(424)만을 구동시킴으로써 별도의 조작 없이 상기 순환팬(220)도 함께 구동시킬 수 있다.Accordingly, the user may drive the circulation fan 220 together without any manipulation by driving only the circulation pump 424.
예를 들어, 사용자의 조작에 의해 상기 순환펌프(424)의 구동 시 상기 감지센서(426a)는 기 설정된 시간 동안 상기 확산부재(426)의 슬라이딩 여부를 감지하게 된다.For example, when the circulation pump 424 is driven by a user's manipulation, the detection sensor 426a detects whether the diffusion member 426 is sliding for a preset time.
그리고 이와 같이 상기 감지센서(426a)에서 상기 확산부재(426)의 슬라이딩을 감지한 경우 상기 순환팬(220)이 구동하며, 상기 확산부재(426)의 슬라이딩을 감지하지 못하는 경우, 상기 순환펌프(424)의 구동이 자동으로 멈추도록 구성할 수 있다.When the detection sensor 426a detects the sliding of the diffusion member 426, the circulation fan 220 is driven, and when the sliding of the diffusion member 426 is not detected, the circulation pump ( 424 may be configured to automatically stop driving.
뿐만 아니라 상기 감지센서(426a)에서 상기 확산부재(426)의 슬라이딩을 감지하지 못하는 경우 별도의 알림수단(미도시)을 통해 사용자에게 상기 정화수(W)가 순환하지 않는 것을 알려줄 수 있다.In addition, when the detection sensor 426a does not detect the sliding of the diffusion member 426, a separate notification means (not shown) may inform the user that the purified water (W) does not circulate.
이와 같이 본 발명에 따른 상기 워터순환모듈(400)은 상기 워터챔버(410) 내에 수용된 상기 정화수(W)를 상기 순환유닛(420)을 통해 상기 본체(100) 내부에서 순환시키며, 순환하는 상기 정화수(W)의 순환 유무를 감시 감지센서(426a)에서 감지하여 상기 순환팬(220)의 구동 여부가 조절된다.As described above, the water circulation module 400 circulates the purified water W accommodated in the water chamber 410 in the main body 100 through the circulation unit 420 and circulates the purified water. The presence or absence of the circulation of (W) is detected by the monitoring sensor 426a to control the driving of the circulation fan 220.
이어서 도 6을 참조하여 본 발명에 따른 상기 공기순환모듈(200)의 구체적인 구성에 대해서 살펴보면 다음과 같다.Next, referring to FIG. 6, a detailed configuration of the air circulation module 200 according to the present invention will be described.
도 6은 도 1의 공기순환장치에서 공기순환모듈(200)의 구성을 나타낸 도면이다.6 is a view showing the configuration of the air circulation module 200 in the air circulation of FIG.
도시된 바와 같이 상기 공기순환모듈(200)은 상기 본체(100)의 상부에 구비되며, 상술한 상기 커버(210) 및 상기 순환팬(220)을 포함한다. 여기서, 상기 커버(210)는 복수 개의 상기 배출구(212)가 구비되며, 내부에 수용된 상기 순환팬(220)의 구동에 의해 상기 수용공간(110) 내부의 공기가 상기 배출구(212)를 통해 외부로 배출된다.As shown, the air circulation module 200 is provided above the main body 100 and includes the cover 210 and the circulation fan 220 described above. Here, the cover 210 is provided with a plurality of the outlet 212, the air inside the receiving space 110 by the drive of the circulation fan 220 accommodated therein the outside through the outlet 212 Is discharged.
이때, 상기 커버(210)에는 상기 순환팬(220)의 회전축을 중심으로 하여 적어도 일부가 회전 가능하도록 결합된 회전부(214)가 구비될 수 있으며, 상기 배출구(212)는 상기 회전부(214)상에 구비된다.At this time, the cover 210 may be provided with a rotating portion 214 coupled to rotate at least a portion around the rotation axis of the circulation fan 220, the outlet 212 is on the rotating portion 214 Is provided.
그리고 상기 순환팬(220)의 구동에 의해 상기 수용공간(110) 내부에 수용된 공기가 상기 배출구(212)를 통해 배출됨에 따라 상기 회전부(214)가 함께 회전한다.In addition, as the air accommodated in the accommodation space 110 is discharged through the discharge port 212 by the driving of the circulation fan 220, the rotating part 214 rotates together.
본 실시예에서 상기 회전부(214)는 반구형태의 상기 커버(210)상에서 측면 또는 상면에 원형으로 회전 가능하도록 구성되며, 상기 배출구(212)가 이격되어 배치된다.In this embodiment, the rotating part 214 is configured to be rotatable in a circular shape on the side or top surface on the cover 210 of the hemispherical shape, the outlet 212 is spaced apart.
여기서, 상기 회전부(214)상에 형성된 상기 배출구(212)는 일측으로 테이퍼지게 형성되어 상기 순환팬(220)에 의해 배출되는 공기에 의해 회전한다.Here, the outlet 212 formed on the rotating part 214 is tapered to one side and rotates by the air discharged by the circulation fan 220.
이에 따라, 상기 순환팬(220)의 구동 시 상기 회전부(214)는 상기 수용공간(110) 내부에서 배출되는 공기의 압력에 의해서 회전을 하여 원하는 방향으로 공기를 배출시킬 수 있다.Accordingly, when the circulation fan 220 is driven, the rotation unit 214 may rotate by the pressure of the air discharged from the accommodation space 110 to discharge the air in a desired direction.
뿐만 아니라 본 실시예에서 상기 회전부(214)는 사용자에 의해 선택적으로 회전 여부를 조절함으로써 특정위치로 공기를 보낼 수도 있다.In addition, in the present embodiment, the rotating unit 214 may send air to a specific position by selectively adjusting whether to rotate by the user.
또한, 상기 배출구(212)를 통해 공기를 배출 수 상기 회전부(214)의 회전에 의해 상부방향으로 와류가 형성되고, 이에 따라 공기의 순환을 빠르게 하여 오염된 공기를 빠르게 정화할 수 있다.In addition, the vortex is formed in the upper direction by the rotation of the rotating unit 214 can discharge the air through the discharge port 212, it is possible to quickly purify the contaminated air by the rapid circulation of the air.
다음으로, 도 7을 참조하여 본 발명에 따른 순환유닛(420)의 변형된 형태에 대해서 살펴보면 다음과 같다.Next, referring to FIG. 7, the modified form of the circulation unit 420 according to the present invention will be described.
도 7은 도 1의 공기순환장치에서 순환유닛(420)의 변형된 형태에 대해서 나타낸 도면이다.7 is a view showing a modified form of the circulation unit 420 in the air circulation of FIG.
도시된 도면을 살펴보면, 상기 순환유닛(420)은 상술한 바와 유사하게 상기 순환배관(422) 및 상기 순환펌프(424)를 포함하지만, 상기 확산부재(426) 대신 별도의 분사부재(428)를 포함한다.Referring to the drawing, the circulation unit 420 includes the circulation pipe 422 and the circulation pump 424 similar to the above, but instead of the diffusion member 426 a separate injection member 428 Include.
상기 분사부재(428)는 상기 순환배관(422)의 상기 순환배관(422)의 일측 끝단부에 구비되며, 상기 순환펌프(424)에 의해 순환하는 상기 정화수(W)를 횡 방향으로 분사한다.The injection member 428 is provided at one end of the circulation pipe 422 of the circulation pipe 422 and injects the purified water W circulated by the circulation pump 424 in the horizontal direction.
이때, 상기 분사부재(428)는 내부에 분사유로가 형성되어 상기 순환배관(422)과 연통되도록 구성되며, 상기 순환배관(422)에서 상기 정화수(W)가 분사되는 방향과 교차되는 방향으로 상기 정화수(W)를 분사하도록 구성된다.At this time, the injection member 428 is formed in the injection flow path is formed to communicate with the circulation pipe 422, the direction in which the purified water (W) in the circulation pipe 422 intersects the direction It is configured to spray the purified water (W).
본 실시예에서 상기 분사부재(428) 내부에 형성된 분사유로는 T자 형태로 형성되어 상기 순환배관(422)에서 분사되는 상기 정화수(W)를 좌우방향으로 분사하도록 구성된다.In this embodiment, the injection flow path formed inside the injection member 428 is formed in a T-shape is configured to spray the purified water (W) injected from the circulation pipe 422 in the left and right directions.
여기서 도시되지는 않았지만, 상기 분사부재(428)는 내부에 형성된 분사유로가 서로 다른 각도를 가지며 복수 개의 갈래로 상기 정화수(W)를 분사하도록 구성될 수도 있다.Although not shown here, the injection member 428 may be configured to inject the purified water (W) in a plurality of branches having a different flow path formed therein.
이와 같이 상기 분사부재(428)가 구성됨에 따라 상기 순환배관(422)의 일측으로 분사되는 상기 정화수(W)는 좌우방향으로 확산되어 상기 필터모듈(300)의 상부에 분사된다.As the injection member 428 is configured as described above, the purified water W injected to one side of the circulation pipe 422 is diffused in the left and right directions and sprayed on the upper portion of the filter module 300.
한편, 상기 분사부재(428)는 상기 순환배관(422)을 중심으로 하여 순환하는 상기 정화수(W)의 수압에 의해 회전 가능하도록 구성될 수도 있다.On the other hand, the injection member 428 may be configured to be rotatable by the water pressure of the purified water (W) circulating about the circulation pipe 422.
구체적으로 상기 분사부재(428)는 상기 순환배관(422)상에서 회전 가능하도록 결합되며, 상기 순환배관(422)에서 분사되는 상기 정화수(W)의 압력에 의해 회전한다.Specifically, the injection member 428 is rotatably coupled to the circulation pipe 422, and rotates by the pressure of the purified water (W) injected from the circulation pipe 422.
이에 따라 상기 분사부재(428)로 상기 정화수(W)가 공급되는 경우 상기 분사부재(428)는 횡 방향을 따라 좌 우로 상기 정화수(W)를 분사하며, 상기 분사부재(428)의 회전에 의해 상기 필터모듈(300)의 상부에 상기 정화수(W)를 고르게 분사할 수 있다.Accordingly, when the purified water (W) is supplied to the injection member 428, the injection member 428 injects the purified water (W) left and right along the horizontal direction, by the rotation of the injection member 428 The purified water (W) may be evenly sprayed on the filter module 300.
이와 같이 본 발명에 따른 상기 순환유닛(420) 구성됨으로써 상기 워터챔버(410)에 수용된 상기 정화수(W)를 상기 필터모듈(300)상부에 공급하여 순환시킬 수 있다.As such, the circulation unit 420 according to the present invention may be circulated by supplying the purified water W accommodated in the water chamber 410 to the upper portion of the filter module 300.
이상으로 본 발명에 따른 공기순환장치에 대해서 살펴보았으며, 별도의 정화필터 없이 단순히 정화수(W: 물)만으로 순환하는 외부공기에 포함된 오염물질을 정화하여 지속적으로 공기를 정화할 수 있다.The air circulation device according to the present invention has been described above, and the air can be continuously purified by purifying the contaminants contained in the external air circulating with only purified water (W: water) without a separate purification filter.
이상과 같이 본 발명에 따른 바람직한 실시예를 살펴보았으며, 앞서 설명된 실시예 이외에도 본 발명이 그 취지나 범주에서 벗어남이 없이 다른 특정 형태로 구체화 될 수 있다는 사실은 해당 기술에 통상의 지식을 가진 이들에게는 자명한 것이다. 그러므로, 상술된 실시예들은 제한적인 것이 아니라 예시적인 것으로 여겨져야 하고, 이에 따라 본 발명은 상술한 설명에 한정되지 않고 첨부된 청구항의 범주 및 그 동등 범위 내에서 변경될 수도 있다.As described above, the preferred embodiments of the present invention have been described, and the fact that the present invention can be embodied in other specific forms in addition to the above-described embodiments without departing from the spirit or scope thereof has ordinary skill in the art. It is obvious to them. Therefore, the above-described embodiments are to be considered as illustrative and not restrictive, and thus, the invention is not limited to the above description and may be modified within the scope of the appended claims and their equivalents.
(부호의 설명)(Explanation of the sign)
100: 본체100: main body
110: 수용공간110: accommodation space
120: 유입구120: inlet
200: 공기순환모듈200: air circulation module
210: 커버210: cover
220: 순환팬220: circulation fan
230: 지지부재230: support member
300: 필터모듈300: filter module
310: 디스크310: disk
320: 내부케이스320: inner case
400: 워터순환모듈400: water circulation module
410: 워터챔버410: water chamber
420: 순환유닛420: circulation unit
W: 정화수W: Purified Water

Claims (19)

  1. 상하방향을 따라 길게 형성되어 내부에 수용공간을 가지며, 측면에 상기 수용공간과 연통된 유입구가 형성되는 본체;A main body formed along the vertical direction and having an accommodation space therein and having an inlet formed in communication with the accommodation space at a side thereof;
    플레이트형태를 가지며 적어도 하나 이상의 홀이 형성된 디스크를 포함하며, 복수 개의 상기 디스크가 상기 수용공간에서 상하방향을 따라 적층형태로 이격 배치되는 필터모듈;A filter module having a plate shape and having at least one hole formed therein, wherein the plurality of disks are spaced apart from each other in a stacked form along the vertical direction in the accommodation space;
    상기 본체의 상부에 구비되어 선택적으로 구동하며 상기 유입구를 통해 상기 수용공간 내부로 유입되는 외부공기가 상기 필터모듈을 경유하여 상부로 배출되도록 순환시키는 공기순환모듈; 및An air circulation module provided at an upper portion of the main body to selectively drive and circulate external air introduced into the accommodation space through the inlet to be discharged to the upper portion through the filter module; And
    상기 본체 내부에서 상기 필터모듈의 하부에 구비되며 정화수가 수용되는 워터챔버 및 상기 워터챔버 내부에 수용된 상기 정화수를 펌핑하여 상기 필터모듈의 상부에서 다시 분사함으로써 상기 정화수가 중력에 의해 하부방향으로 흐르도록 하는 순환유닛을 포함하는 워터순환모듈; 을 포함하며,The purified water is provided in the lower portion of the filter module in the main body and the purified water is accommodated in the water chamber and the purified water contained in the water chamber and sprayed again from the upper portion of the filter module so that the purified water flows downward by gravity. A water circulation module including a circulation unit; Including;
    상기 외부공기는 상기 정화수의 낙하 시 상부로 이동하여 상기 정화수와 교차하며 오염물질이 제거되는 것을 특징으로 하는 공기순환장치.The external air is moved to the upper portion when the purified water falls to intersect the purified water and the air circulation device, characterized in that to remove contaminants.
  2. 제1항에 있어서,The method of claim 1,
    상기 순환유닛은,The circulation unit,
    길게 형성되어 일측이 상기 수용공간의 상부에 배치되고 타측이 상기 워터챔버와 연결되어 상기 워터챔버에 수용된 정화수를 상기 수용공간 상부에서 분사하는 순환배관; 및A circulating pipe formed to be long and having one side disposed above the accommodation space and the other side connected to the water chamber to inject purified water contained in the water chamber from the upper portion of the accommodation space; And
    상기 순환배관의 길이방향에 따른 일부에 구비되어 선택적으로 구동하며 상기 정화수를 순환시키는 순환펌프;A circulation pump provided in a portion along the longitudinal direction of the circulation pipe to selectively drive and circulate the purified water;
    를 포함하는 공기순환장치.Air circulation device comprising a.
  3. 제2항에 있어서,The method of claim 2,
    상기 순환유닛은,The circulation unit,
    상기 디스크의 상부에 이격되어 배치되며, 하면이 반구형으로 함몰 형성되어 상기 순환배관의 일측에서 분사되는 정화수를 하부로 확산시키는 확산부재를 더 포함하는 것을 특징으로 하는 공기순환장치.It is disposed spaced apart on the upper portion of the disk, the lower surface is formed in a hemispherical shape further comprises a diffusion member for diffusing the purified water injected from one side of the circulation pipe to the lower portion.
  4. 제3항에 있어서,The method of claim 3,
    상기 확산부재는,The diffusion member,
    상기 수용공간 내부에서 상기 순환배관에서 분사되는 상기 정화수의 압력에 의해 상하방향을 따라 슬라이딩 가능하도록 구성되는 것을 특징으로 하는 공기순환장치.And an air circulation device configured to be slidable in an up and down direction by the pressure of the purified water injected from the circulation pipe in the accommodation space.
  5. 제4항에 있어서,The method of claim 4, wherein
    상기 확산부재는,The diffusion member,
    슬라이딩여부를 감지하는 별도의 감지센서를 더 포함하며, 상기 확산부재가 상부방향으로 슬라이딩하는 경우 이와 연동하여 상기 공기순환모듈이 구동하는 것을 특징으로 하는 공기순환장치.It further comprises a separate detection sensor for detecting whether the sliding, the air circulation device characterized in that the air circulation module is driven in conjunction with this if the diffusion member sliding in the upper direction.
  6. 제2항에 있어서,The method of claim 2,
    상기 순환유닛은,The circulation unit,
    상기 순환배관의 일측 끝단부에 구비되며, 상기 순환펌프에 의해 순환하는 상기 정화수를 횡 방향으로 분사하는 별도의 분사부재를 더 포함하는 것을 특징으로 하는 공기순환장치.It is provided on one end of the circulation pipe, the air circulation device further comprises a separate injection member for injecting the purified water circulated by the circulation pump in the transverse direction.
  7. 제6항에 있어서,The method of claim 6,
    상기 분사부재는,The injection member,
    상기 순환배관을 중심으로 하여 순환하는 상기 정화수의 수압에 의해 회전 가능하도록 구성되는 것을 특징으로 하는 공기순환장치.Air circulation device, characterized in that configured to be rotatable by the water pressure of the purified water circulating around the circulation pipe.
  8. 제2항에 있어서,The method of claim 2,
    상기 순환배관은,The circulation pipe,
    길이방향에 따른 적어도 일부가 상기 수용공간에서 상하방향으로 길게 배치되며 복수 개의 상기 디스크를 연속하여 관통하도록 배치되는 것을 특징으로 하는 공기순환장치.At least a portion along the longitudinal direction is disposed long in the vertical direction in the receiving space and is arranged to pass through a plurality of the disk continuously.
  9. 제1항에 있어서,The method of claim 1,
    상기 디스크는,The disk,
    복수 개가 적층 시 각각에 형성된 홀이 교차되도록 배치되는 것을 특징으로 하는 공기순환장치.Air circulation device, characterized in that arranged in such a way that the holes formed in each of the plurality when stacked.
  10. 제1항에 있어서,The method of claim 1,
    상기 디스크는,The disk,
    상면 또는 하면에 표면을 따라 함몰된 유로가 형성되는 것을 특징으로 하는 공기순환장치.An air circulation apparatus, characterized in that the flow path is formed on the upper surface or lower surface recessed along the surface.
  11. 제1항에 있어서,The method of claim 1,
    상기 디스크는,The disk,
    복수 개 중 적어도 일부가 상기 홀의 크기 또는 개수가 서로 다르게 형성되는 것을 특징으로 하는 공기순환장치.At least some of the plurality of air circulation apparatus characterized in that the size or number of the holes are formed different from each other.
  12. 제1항에 있어서,The method of claim 1,
    상기 디스크는, The disk,
    상기 수용공간 내부에서 경사를 가지며 배치되는 것을 특징으로 하는 공기순환장치.Air circulation device characterized in that it is disposed with an inclination in the receiving space.
  13. 제12항에 있어서,The method of claim 12,
    상기 디스크는,The disk,
    복수 개 중 적어도 일부가 서로 다른 경사를 가지며 배치되는 것을 특징으로 하는 공기순환장치.At least some of the plurality of air circulation apparatus characterized in that disposed with different inclination.
  14. 제1항에 있어서,The method of claim 1,
    상기 공기순환모듈은,The air circulation module,
    상기 본체상에서 상기 수용공간의 상부에 구비되며, 외부와 연통되는 배출구가 구비된 커버; 및A cover provided at an upper portion of the accommodation space on the main body and having a discharge hole communicating with the outside; And
    상기 커버 내부에 구비되어 회전하며 상기 수용공간 내부의 공기를 상기 배출구를 통해 외부로 배출시키는 순환팬;A circulation fan provided inside the cover and rotating to discharge air in the accommodation space to the outside through the outlet;
    을 포함하는 공기순환장치.Air circulation device comprising a.
  15. 제14항에 있어서,The method of claim 14,
    상기 배출구는,The outlet,
    방사형으로 복수 개가 이격되어 배치되는 것을 특징으로 하는 공기순환장치.Air circulation device, characterized in that arranged in a plurality of radially spaced apart.
  16. 제15항에 있어서,The method of claim 15,
    상기 커버는,The cover,
    상기 순환팬의 회전축을 중심으로 하여 적어도 일부가 회전 가능하도록 결합된 회전부를 더 포함하며, 상기 배출구가 상기 회전부상에 구비되는 것을 특징으로 하는 공기 순환장치.And a rotating part coupled to be rotatable about at least a part of a rotation shaft of the circulation fan, wherein the discharge port is provided on the rotating part.
  17. 제1항에 있어서,The method of claim 1,
    상기 본체는,The main body,
    상기 필터모듈의 하부에서 하향 경사를 가지며 최하단부가 상기 워터챔버와 연통되고 상기 디스크를 통과해 하부로 전달되는 상기 정화수를 수집해 상기 워터챔버로 전달하는 수집부재를 더 포함하는 것을 특징으로 하는 공기순환장치.And a collecting member having a downward slope at the bottom of the filter module and collecting the purified water passing through the disk and passing through the disk to the lower portion and collecting the purified water to the water chamber. Device.
  18. 제1항에 있어서,The method of claim 1,
    상기 유입구는,The inlet is,
    복수 개 중 최하부에 위치한 상기 디스크와 인접하게 배치되며 상기 본체의 외측면을 따라 복수 개가 이격되어 형성되는 것을 특징으로 하는 공기순환장치.The air circulation apparatus, characterized in that disposed adjacent to the disk located at the bottom of the plurality of spaced apart plurality along the outer surface of the main body.
  19. 제1항에 있어서,The method of claim 1,
    상기 워터챔버는,The water chamber,
    상기 본체상에서 하부에 구비되며, 상기 본체에서 선택적으로 착탈 가능하도록 구성되는 것을 특징으로 하는 공기순환장치.Is provided on the lower portion on the main body, the air circulation device, characterized in that configured to be selectively detachable from the main body.
PCT/KR2016/004660 2015-05-14 2016-05-03 Air circulating apparatus WO2016182253A1 (en)

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KR10-2015-0067387 2015-05-14
KR1020150067387A KR101580458B1 (en) 2015-05-14 2015-05-14 Air Circulation Apparatus

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