CN210463290U - Humidifying device for air conditioner - Google Patents

Humidifying device for air conditioner Download PDF

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Publication number
CN210463290U
CN210463290U CN201921509565.7U CN201921509565U CN210463290U CN 210463290 U CN210463290 U CN 210463290U CN 201921509565 U CN201921509565 U CN 201921509565U CN 210463290 U CN210463290 U CN 210463290U
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air
arc
water
atomization
guide channel
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CN201921509565.7U
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Chinese (zh)
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周鹏飞
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Nanjing Jinghua Intelligent Technology Co ltd
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Nanjing Jinghua Intelligent Technology Co ltd
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Abstract

The utility model provides an idle call humidification device, include: the top cover is arranged at the top of the atomization water tank and is matched with the atomization water tank to form a streamline air guide channel, the air blower is arranged on the side of the atomization water tank, and an air inlet end of the air guide channel is opposite to an air outlet of the air blower. The utility model discloses can reduce the probability that the droplet that the atomizing goes out collided each other and becomes big liquid drop and prevent that the water that condenses from blockking up the export of atomizing droplet, can improve humidification efficiency.

Description

Humidifying device for air conditioner
Technical Field
The utility model relates to a humidification device, concretely relates to humidification device for domestic idle call.
Background
The humidification mode of current domestic air conditioner generally adopts the wet film humidification, and the problem that the wet film humidification exists is that the humidification volume is little, can satisfy general humidification requirement, but, after the room introduced the new trend, the humidification load in the room can greatly increased, and the mode of wet film humidification just is difficult to satisfy.
Therefore, there is a high necessity to provide a humidifying device capable of satisfying a large humidifying demand.
SUMMERY OF THE UTILITY MODEL
To the technical problem, the embodiment of the utility model provides an idle call humidification device that can satisfy big humidification demand.
The utility model adopts the technical proposal that:
the embodiment of the utility model provides an idle call humidification device, include: the top cover is arranged at the top of the atomization water pool, a first arc-shaped air deflector and a second arc-shaped air deflector which are inserted into the atomization water pool but are not contacted with the bottom of the atomization water pool are arranged downwards, the top cover forms an arc-shaped cambered surface in the area between the first arc-shaped air deflector and the second arc-shaped air deflector, and the arc-shaped cambered surface, the first arc-shaped air deflector and the second arc-shaped air deflector form an upper air guide channel; a water storage space is formed inside the atomization water pool, an atomizer is arranged in the water storage space, an air inlet channel for installing an air port of the air blower is formed on the left side wall of the atomization water pool, an arc-shaped lower air guide channel formed by extending from the bottom inside the atomization water pool to the top of the front side wall of the atomization water pool is formed inside the atomization water pool, a protruding part protruding towards the outer side of the front side wall is formed on the lower air guide channel, and a connecting port is formed on the protruding part; the upper air guide channel and the lower air guide channel are matched to form a streamline air guide channel, the connecting port and the top cover form an outlet of the air guide channel, and the outlet is connected with the air outlet channel.
Optionally, the wind speed of the wind guide channel is less than 3.5 m/s.
Optionally, the blower has a blowing amount per Kg of humidified water amount of not less than 6m3/h。
Optionally, the atomiser is disposed in the region opposite the arcuate face.
Optionally, the air inlet channel of the atomization water pool is arranged obliquely downwards.
Optionally, the angle of inclination of the air inlet channel is 10 °.
Optionally, a water inlet is arranged on the top cover, and a water outlet is arranged at the bottom of the atomization water tank.
Optionally, a liquid level control plate and a floating type liquid level switch are arranged in the water storage space.
The embodiment of the utility model provides an idle call humidification device, owing to set up two arcs on the top cap, the region of top cap between two arcs is the arch cambered surface, sets up the air outlet position in atomizing pond into the arc domatic for whole wind-guiding passageway is streamlined wind channel, can reduce the probability that the droplet of atomizing out collided each other and become the big liquid droplet and prevent that the export of atomizing droplet is blocked to the water that condenses, thereby improves humidification efficiency.
Drawings
Fig. 1 is a schematic structural view of a humidifying device for an air conditioner according to an embodiment of the present invention;
fig. 2 is an exploded view of a humidifying device for an air conditioner according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a top cover according to an embodiment of the present invention;
fig. 4 and 5 are schematic structural diagrams of an atomizing water tank according to an embodiment of the present invention.
Detailed Description
In order to make the technical problems, technical solutions and advantages to be solved by the present invention clearer, the following detailed description will be given with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1 to 4, the utility model provides an air conditioner humidifying device, including top cap 1, atomizing pond 2 and air-blower 3, top cap 1 sets up the top in atomizing pond 2, top cap 1 is provided with downwards and inserts atomizing pond inside but not with the first arc aviation baffle 10 and the second arc aviation baffle 11 of the bottom contact in atomizing pond, top cap 1 is in the region between first arc aviation baffle and the second arc aviation baffle forms the arch cambered surface, first arc aviation baffle and the second arc aviation baffle form the air duct of leading; a water storage space is formed inside the atomization water pool 2, an atomizer 8 is arranged in the water storage space, an air inlet channel for installing an air port of the air blower is formed on the left side wall of the atomization water pool, an arc-shaped lower air guide channel 16 formed by extending from the bottom inside the atomization water pool to the top of the front side wall of the atomization water pool is formed inside the atomization water pool, a protruding part protruding to the outer side of the front side wall is formed on the lower air guide channel, and a connecting port 17 is formed on the protruding part; the upper air guide channel and the lower air guide channel are matched to form a streamline air guide channel, the connecting port 17 and the top cover form an outlet of the air guide channel, and the outlet is connected with the air outlet channel 13.
The embodiment of the utility model provides an in, the top of atomizing pond 2 is installed to the mode of top cap 1 accessible joint for example the mode of buckle, and first arc aviation baffle 10 and the inside of second arc aviation baffle 11 inserting atomizing pond 2 downwards, and at normal during operation, the lower edge of first arc aviation baffle 10 and second arc aviation baffle 11 can be below the liquid level of the inside in atomizing pond 2, nevertheless with the bottom contactless in atomizing pond 2, leaves the clearance. In one example, the distance of the gap can be about 10mm, the gap is sealed by the water level height of the atomizing water pool 2, and due to the existence of the gap, the air guide channel is communicated with the inside and the outside of the air guide channel in a water flow mode, so that the condition for keeping the liquid level height is provided. First arc aviation baffle 10 can be the major arc that arc length and radian are all big, and second arc aviation baffle 11 can be the minor arc that arc length and radian are less than first arc aviation baffle, and specific arc length and radian can set up as required. The area between the first arc-shaped air deflector 10 and the second arc-shaped air deflector 11 is formed as a divergent area, that is, the distance between the arc lengths of the first arc-shaped air deflector 10 and the second arc-shaped air deflector 11 increases from the front end to the rear end in sequence. The top cover 1 is formed into an arched cambered surface with a high middle part and two low ends in the area between the first arched air deflector 10 and the second arched air deflector 11, so that water splashed on the top cover can smoothly flow down. The specific size of the arched surface of the top cover 1 can be set according to actual needs.
In addition, for introducing water into the atomizing water tank 2, a water inlet is formed in the top cover 1, the water inlet can be connected with a water pipe through a connecting joint 12, the water pipe is connected with one end of a circulating water pump, the other end of the circulating water pump is connected with a water tank, and water is pumped into the atomizing water tank 2 through the circulating water pump.
As shown in fig. 4 and 5, a water storage space is formed inside the atomizing water tank 2, and a left plane and a right plane having a height difference are formed at the bottom of the water storage space, and the right plane is higher than the left plane. The atomizing water tank 2 is provided with an air intake passage on a side wall of a left plane side, and the air intake passage may be inclined downward, and in one example, the inclination angle may be 10 °. A plurality of atomizers 8 are arranged on the left plane, the number of the atomizers 8 can be set according to the humidification quantity, and the atomizers can be arranged in the area opposite to the arched cambered surface of the top cover 1, so that the atomization effect is optimal. Furthermore, a water outlet 4 and a liquid level control plate 19 are arranged in the end region of the left plane, the water outlet 4 being connectable to the water tank via an overflow pipe 5. Liquid level control board 19 is used for controlling the inside liquid level in atomizing pond 2, and this liquid level control board highly is less than inlet air channel's mounting height, and when the liquid level was higher than the liquid level control board, the water that is higher than the liquid level control board can discharge through delivery port 4, flows back to the water tank through overflow pipe 5 in, realizes the hydrologic cycle, can keep the inside liquid level of atomizing pond invariable through liquid level control board 19, can prevent to get into the air-blower because store too much water. In one example, the level control plate is movably disposed within the water storage space, such as removably or rotatably disposed, by manipulating the level control plate if drainage is desired. Because the height of liquid level control board is less than inlet air channel's mounting height to inlet air channel slope sets up downwards, influences electric safety in can avoiding shaking the water that the piece arouses through inlet air channel entering fan of air-blower against the current.
The floating type liquid level switch 9 can be arranged on the right plane, so that the oscillating piece of the atomizer can work normally, if water in the water storage space enables the floater of the floating type liquid level switch 9 to float, namely the liquid level in the water storage space is not lower than the height between the left plane and the right plane, the oscillating piece can work continuously, and if the floater cannot be supported to float, the oscillating piece cannot work, and water needs to be added. Further, a PCB control board 7 is provided on the right plane for controlling the operation of the atomizer. The control board 7 can be in communication connection with an external control device, and controls the operation of the oscillating piece of the atomizer under the control of the external control device. The bottom of the control panel 7 can be connected with an aluminum heat dissipation plate 20, and the heat dissipation of the control panel 7 is realized through the water in the water storage space. In addition, the arc-shaped lower air guide duct 16 is formed by smooth transition from the right plane to the top of the front side wall of the atomizing water pool 2, the bottom of the lower air guide duct 16 is tangent to the right plane, the upper end of the arc-shaped lower air guide duct 16 is provided with a spout-shaped protruding part protruding to the outer side of the front side wall, and a square connecting port 17 with one open end is formed on the protruding part. When the top cover 1 is connected with the atomizing water tank 2, the side wall of the top cover 1 and the connecting port 17 form a square outlet, and the outlet is connected with the air outlet channel 16.
Under the state that top cap 1 is connected with atomizing pond 2, atomizing pond 2's lower wind channel and the last wind channel on top cap 1 can cooperate and form streamlined wind-guiding passageway, and wind-guiding passageway's front end is to the region that faces inlet channel, and the rear end is connected with the air-out passageway, and the atomizing water droplet of process atomizer can flow to the air-out passageway along wind-guiding passageway under the effect of wind force. In one example, the wind speed of the wind-guiding channel may be less than 3.5 m/s. Like this, when the moisture that carries atomizing water droplet to form through wind flows in the streamline formula air guide way, because the arc cambered surface of top cap 1 and the arc air guide way in atomizing pond, can reduce effectively that the droplet of atomizing out collides the probability that becomes big liquid droplet each other and prevents to block up the export of atomizing droplet because the big water droplet that condenses on the top cap of arch cambered surface falls into the aquatic downwards.
As shown in fig. 2, the air outlet channel 13 may be formed in an arc shape extending upward, one side of the air outlet channel 13 may be clamped on the side wall of the top cover, the other three sides may be bolted to the connection port 17, and a gasket may be further disposed between the air outlet channel 13 and the connection port 17 to prevent water leakage. The mist discharged through the air outlet passage 13 may be drawn by a blower of the air conditioner.
As shown in figure 2, because the air inlet channel of the atomizing water pool 2 is arranged obliquely downwards, the blower 3 can be transversely arranged on the side part of the atomizing water pool 2, an oblique installation surface is formed on the side part of the atomizing water pool 2, the blower 3 is transversely arranged on the oblique installation surface, and the air inlet is obliquely downwards arranged in the air inlet channel of the atomizing water pool 2. To meet the large humidification demand, the blowing amount of the blower is not less than 6m per Kg of humidification water3H, can be produced by means of a blower or a plurality of drumsThe fan provides corresponding air-blast volume, in the example of the utility model, for setting up two air-blowers side by side.
The utility model discloses a position department at the sunction inlet of the fan that is close to the air conditioner is fixed to humidification device accessible fixed plate 6. When the humidifier works, air of the air blower is downwards inclined through an air port of the air blower and sent into the atomizing water pool, meanwhile, an atomizer in the atomizing water pool starts to work to atomize water in the atomizing water pool into small water drops or mist, the air entering the atomizing water pool carries the small water drops or mist to flow into the air outlet channel along the air guide channel, and finally the mist exhausted from the air outlet channel is pumped by the fan to achieve the humidifying function.
To sum up, the embodiment of the utility model provides an idle call humidification device owing to set up two arcs on the top cap, the region of top cap between two arcs is the arch cambered surface, sets up the air outlet position in atomizing pond to the arc domatic for whole wind-guiding passageway is streamlined wind channel, can reduce the probability that the droplet that the atomizing goes out collides each other and becomes the big liquid drop and prevent that the water that condenses from blockking up the export of atomizing droplet, thereby improves humidification efficiency. In addition, because the inlet air channel slope of atomizing pond sets up downwards to the high mounting height that is less than inlet air channel of liquid level control board, thereby can prevent to vibrate the water that the piece arouses and spatter influence electric safety in the fan.
The above-mentioned embodiments are only specific embodiments of the present invention, and are not intended to limit the technical solution of the present invention, and the protection scope of the present invention is not limited thereto, although the present invention is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: those skilled in the art can still modify or easily conceive of changes in the technical solutions described in the foregoing embodiments or make equivalent substitutions for some technical features within the technical scope of the present disclosure; such modifications, changes or substitutions do not substantially depart from the spirit and scope of the embodiments of the present invention, and are intended to be included within the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (8)

1. A humidification device for an air conditioner, comprising: the top cover is arranged at the top of the atomization water pool, a first arc-shaped air deflector and a second arc-shaped air deflector which are inserted into the atomization water pool but are not contacted with the bottom of the atomization water pool are arranged downwards, the top cover forms an arc-shaped cambered surface in the area between the first arc-shaped air deflector and the second arc-shaped air deflector, and the arc-shaped cambered surface, the first arc-shaped air deflector and the second arc-shaped air deflector form an upper air guide channel;
a water storage space is formed inside the atomization water pool, an atomizer is arranged in the water storage space, an air inlet channel for installing an air port of the air blower is formed on the left side wall of the atomization water pool, an arc-shaped lower air guide channel formed by extending from the bottom inside the atomization water pool to the top of the front side wall of the atomization water pool is formed inside the atomization water pool, a protruding part protruding towards the outer side of the front side wall is formed on the lower air guide channel, and a connecting port is formed on the protruding part;
the upper air guide channel and the lower air guide channel are matched to form a streamline air guide channel, the connecting port and the top cover form an outlet of the air guide channel, and the outlet is connected with the air outlet channel.
2. The humidification device for air conditioning as claimed in claim 1, wherein the wind speed of the wind guide passage is less than 3.5 m/s.
3. The humidification device for air-conditioning according to claim 1, wherein an amount of air blown by the blower per Kg of humidified water is not less than 6m3/h。
4. The humidification device for air conditioning as claimed in claim 1, wherein the atomizer is provided in a region where the arched curved surface faces.
5. The humidification device for the air conditioner as claimed in claim 1, wherein the air intake channel of the atomization pool is arranged obliquely downward.
6. The humidification device for air conditioners as claimed in claim 5, wherein the angle of inclination of the air intake passage is 10 °.
7. The humidification device for the air conditioner as claimed in claim 1, wherein the top cover is provided with a water inlet, and the bottom of the atomization pool is provided with a water outlet.
8. The humidification device for air conditioner as claimed in claim 1, wherein a liquid level control plate and a floating type liquid level switch are provided in the water storage space.
CN201921509565.7U 2019-09-11 2019-09-11 Humidifying device for air conditioner Active CN210463290U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921509565.7U CN210463290U (en) 2019-09-11 2019-09-11 Humidifying device for air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921509565.7U CN210463290U (en) 2019-09-11 2019-09-11 Humidifying device for air conditioner

Publications (1)

Publication Number Publication Date
CN210463290U true CN210463290U (en) 2020-05-05

Family

ID=70432770

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921509565.7U Active CN210463290U (en) 2019-09-11 2019-09-11 Humidifying device for air conditioner

Country Status (1)

Country Link
CN (1) CN210463290U (en)

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