CN203100095U - Air-conditioner air supply device and air-conditioner - Google Patents

Air-conditioner air supply device and air-conditioner Download PDF

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Publication number
CN203100095U
CN203100095U CN 201320124691 CN201320124691U CN203100095U CN 203100095 U CN203100095 U CN 203100095U CN 201320124691 CN201320124691 CN 201320124691 CN 201320124691 U CN201320124691 U CN 201320124691U CN 203100095 U CN203100095 U CN 203100095U
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China
Prior art keywords
air
conditioner
annular
supply device
cover body
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CN 201320124691
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Chinese (zh)
Inventor
王永涛
付裕
雷永锋
矫立涛
王晶晶
于世鹏
张明杰
刘伟杰
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Qingdao Haier Air Conditioner Gen Corp Ltd
Haier Group Corp
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Qingdao Haier Air Conditioner Gen Corp Ltd
Haier Group Corp
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Abstract

The utility model discloses an air-conditioner air supply device and an air-conditioner. The air supply device comprises a circular-ring-shaped cover body, wherein a through air channel is formed in the middle of the circular-ring-shaped cover body; a circular-ring-shaped opening is formed in the wall of the circular-ring-shaped cover body; a plurality of circular-ring-shaped guide vanes are arranged on the circular-ring-shaped opening; the circular-ring-shaped guide vanes divide the circular-ring-shaped opening into a plurality of circular-ring-shaped air outlets for communicating an air-conditioner internal air channel with the through air channel; the air supply device further comprises a circular-ring-shaped casing located on the periphery of the circular-ring-shaped cover body; the front ends and the rear ends of the circular-ring-shaped cover body and the circular-ring-shaped casing are in sealed connection, and a steady flow channel is formed inside; a heat-exchange air inlet is formed in the wall of the circular-ring-shaped casing; the steady flow channel is communicated with the air-conditioner internal air channel through the heat-exchange air inlet; and the circular-ring-shaped air outlets are communicated with the steady flow air channel. After the air supply device disclosed by the utility model is used in the air-conditioner, the supply air rate of the air-conditioner can be increased, the flow of indoor air can be accelerated, the softness of air-conditioner air-out can be improved, and the comfort experience effect of a user is improved.

Description

Air-conditioner air supply device and air-conditioning
Technical field
The utility model belongs to the air-conditioning technique field, specifically, relates to a kind of air-conditioner air supply device and has the air-conditioning of this air-supply arrangement.
Background technology
Vertical air conditioner air channel structure on the existing market generally all is made up of air inlet, centrifugal blower, evaporimeter and air outlet.Room air enters air-conditioning inside from air inlet, and after the centrifugal blower centrifugation accelerates, air carries out heat exchange through evaporimeter, and heat-exchanged air is blowed to indoor again by air outlet.
At present, air outlet is designed to rectangular-shaped mostly, constitutes the air-supply arrangement of air-conditioning after the air outlet place adds grid or flabellum with air outlet, utilizes the air-out air quantity and the control air-out wind direction at grid or flabellum balance air outlet place.Such air-supply arrangement only can be sent out the evaporimeter heat-exchanged air, and the wind of sending is soft inadequately, and especially under refrigeration mode, the cool breeze that is blown out directly blows on one's body the user, and it is uncomfortable that the user feels.And the wind-force size of producing by boasting from air outlet depends on the size of air-conditioning air inlet intake and the watt level of centrifugal blower fully, and itself can not increase the air intake air quantity, thereby room air mobile do not had tangible enhancing effect.
Summary of the invention
The problems referred to above that the utility model exists at prior art and a kind of air-conditioner air supply device is provided and has had the air-conditioning of this device, use this device not only can increase intake, the acceleration indoor air flows of air-conditioning, and can improve the soft property of air-conditioning air-out, improve user's comfortableness experience effect.
For realizing above-mentioned utility model purpose, the air-conditioner air supply device that the utility model provides adopts following technical proposals to be achieved:
A kind of air-conditioner air supply device, described air-supply arrangement comprises the annular cover body, be formed with the perforation air channel of running through the annular cover body in the middle of the described annular cover body, the front end of described annular cover body forms the mixing air outlet, on described annular cover body wall, be formed with the annular opening that is communicated with inner air channel of air-conditioning and described perforation air channel, be provided with a plurality of annular flow deflectors on described annular opening, described annular flow deflector is divided into described annular opening the annular air outlet in inner air channel of the described air-conditioning of a plurality of connections and described perforation air channel; Described air-supply arrangement also comprises the annular shell that is positioned at described annular cover body periphery, described annular cover body is connected with the sealing of described annular shell rear and front end, the inner current stabilization air channel that forms, on described annular shell wall, be formed with the heat exchange air import, described current stabilization air channel is connected by the inner air channel of described heat exchange air import and described air-conditioning, and described annular air outlet is connected with described current stabilization air channel.
Aforesaid air-conditioner air supply device, for improving the air-supply comfort level, the width of described annular opening accounts for the 1/8-3/4 of whole described annular cover body width.
Preferably, the width of described annular opening accounts for the 1/3-2/3 of whole described annular cover body width.
Aforesaid air-conditioner air supply device, for guaranteeing the air-out uniformity, the width of a plurality of described annular air outlets equates, is 5-35mm.
Preferably, the width of each described annular air outlet is 10-25mm.
Aforesaid air-conditioner air supply device is further to improve the air-out uniformity, and a plurality of described annular flow deflectors are arranged in order with the tapering type structure of girth from front to back.
Aforesaid air-conditioner air supply device, for obtaining suitable air-out direction, each described annular flow deflector is so that the direction from the drainage of described annular air outlet to described mixing air outlet is obliquely installed with the heat exchange air in the inner air channel of described air-conditioning, and the angle number of degrees between the axis of described annular flow deflector and described annular cover body are not more than 45 ° greater than 0 °.
Preferably, the angle number of degrees between the axis of described annular flow deflector and described annular cover body are 15-25 °.
Aforesaid air-conditioner air supply device, the annular flow deflector that is positioned at forward and backward two ends in a plurality of described annular flow deflectors is corresponding fixedly connected with forward and backward two edges of described annular opening respectively, and adjacent two described annular flow deflectors are connected and fixed successively by the dowel that is arranged in the corresponding annular air outlet.
Preferably, all described dowels are independently of one another, and the dowel in all described annular air outlets is provided with identical circumferential distributing position.
Aforesaid air-conditioner air supply device, described heat exchange air import are preferably formed on the described annular shell wall and the corresponding position of described annular opening.
Preferred, described heat exchange air import is a plurality of, intermittently is distributed on the described shell wall.
Further, described heat exchange air import is shaped as circle or ellipse or runway shape.
Aforesaid air-conditioner air supply device, for increasing the smoothness that air flows, the front end of described annular cover body be from after the inclination diversion division of flaring forward, the front end of described inclination diversion division has expansion mouth, the front end of described annular shell is connected with the sealing of the front end of described expansion mouth.
Aforesaid air-conditioner air supply device, the angle number of degrees between the axis of described inclination diversion division and described annular cover body are 0-45 °.
Preferably, the angle number of degrees between the axis of described inclination diversion division and described annular cover body are 5-10 °.
For realizing aforementioned utility model purpose, air-conditioning provided by the utility model adopts following technical proposals to realize:
A kind of air-conditioning, comprise the air-conditioning body, described air-conditioning body has front panel, postnotum, left and right sides panel, described front panel, rear board and left and right sides panel limit the air channel, inside of described air-conditioning body, on described front panel, offer circular mixing air outlet, on described postnotum, export corresponding position with described mixing air at least and offer circular non-heat exchange air import, be provided with above-mentioned described air-conditioner air supply device in described air-conditioning body interior, the front-end and back-end of the annular cover body in the described air-conditioner air supply device respectively with described front panel on the outlet of circular mixing air be connected with the corresponding sealing of circular non-heat exchange air import on the described postnotum.
Aforesaid air-conditioning is provided with centrifugal blower in the bottom in described inner air channel, forms heat exchange chamber between described centrifugal blower and the described air-conditioner air supply device, is tiltedly installed with evaporimeter in described heat exchange chamber.
Aforesaid air-conditioning, annular air outlet in the described air-conditioner air supply device is formed on the rear end of annular cover body wall, described evaporimeter preferably with its upper end near or against described front panel, its lower end near or be obliquely installed against the direction that leans forward of described postnotum.
Aforesaid vertical air conditioner, for guaranteeing heat exchange performance, described evaporimeter includes at least three row U type pipes.
Compared with prior art, advantage of the present utility model and good effect are: use in air-conditioning after the air-conditioner air supply device of the present utility model, when air-supply arrangement blows out the heat exchange air in the inner air channel of air-conditioning by its annular opening through connecting the air channel front end, connect and form negative pressure in the air channel, the air-conditioning air outside enters to connect the air channel and form mixing air with heat exchange air under the effect of negative pressure and blows out from connecting the air channel front end, such mixing air is comparatively soft, blow to the user and can feel more comfortable on one's body, improved user's comfortableness experience effect.Simultaneously, utilize suction function that air-supply arrangement produces suck portion of external not the air of heat exchange participate in the last air-out of air-conditioning, increase the whole intake of air-conditioning, accelerated flowing of room air, further improved the whole uniformity of room air.
After reading the specific embodiment of the present utility model in conjunction with the accompanying drawings, other characteristics of the present utility model and advantage will become clearer.
Description of drawings
Fig. 1 is the structural representation of an embodiment of the utility model air-conditioning;
Fig. 2 and Fig. 3 are respectively the perspective view of two different directions of air-conditioner air supply device among Fig. 1;
Fig. 4 is the vertical profile structural representation of air-conditioner air supply device among Fig. 1.
The specific embodiment
Below in conjunction with the drawings and specific embodiments the technical solution of the utility model is described in further detail.
At first, a brief description made in the technical term that relates in this specific embodiment: following when the front end of mentioning each structural member or rear end, be to define with the position with respect to the user under the structural member normal operating condition; During description before or after carrying out for the arrangement position of a plurality of structural members, also be the definition of under normal operating condition, being done with the device that a plurality of structural members constitute with respect to user's position.Following heat exchange air is meant that air-conditioning inside is through the evaporimeter heat-exchanged air; Non-heat exchange air is meant the air from air-conditioning environment space of living in, is for heat exchange air, is not the part air that directly comes from evaporimeter.
Please refer to the structural representation of an embodiment of the utility model air-conditioning shown in Figure 1.
As shown in Figure 1, the air-conditioning of this embodiment includes air-conditioning body 1, air-conditioning body 1 comprises front panel 11, postnotum 12, Left-Hand Panel, right panel and top board and the base plate (not marking among the figure) of the housing that constitutes air-conditioning body 1, and housing defines the air channel, inside 15 of air-conditioning body 1.In inner air channel 15, be provided with centrifugal blower 17, evaporimeter 16 and air-conditioner air supply device 10 from bottom to top.Wherein, form heat exchange chamber between the air-conditioner air supply device 10 on centrifugal blower 17 and top, evaporimeter 16 is obliquely installed in this heat exchange chamber.
In conjunction with Fig. 2, shown in Figure 3ly illustrate about the perspective view of air-conditioner air supply device 10 and the vertical profile structural representation of Fig. 4, simultaneously in conjunction with illustrated in Figure 1, the air-conditioning of this embodiment offers circular mixing air outlet 111 on the top of front faceplate of air-conditioner 11, on air-conditioning postnotum 12 tops, export 111 corresponding positions and offer circular non-heat exchange air import 121 with mixing air on the front panel 11.Air-conditioner air supply device 10 includes annular cover body 101, is formed with the perforation air channel (not marking among the figure) that connects full annular cover body 101 in the middle of the annular cover body 101.The front end of annular cover body 101 forms mixing air outlet 1016, and its rear end forms non-heat exchange air import 1017.Wherein, the non-heat exchange air import 1017 of the mixing air of annular cover body 101 front ends outlet 1016 and rear end respectively with front panel 11 on mixing air outlet 111 and the 121 corresponding sealings connections of the non-heat exchange air import on the postnotum 12.
On the wall of annular cover body 101, be to offer continuous annular opening 1011 specifically in the rear end of annular cover body 101 walls, for flowing, be convenient to guide simultaneously air, stable air flows along assigned direction, be provided with a plurality of continuous annular flow deflectors 1012 on annular opening 1011, a plurality of annular flow deflectors 1012 are divided into the inner air channel 15 of a plurality of connections with annular opening 1011 and connect the continuous type annular air outlet 1013 in air channel.Air-conditioner air supply device 10 also includes the annular shell 103 that is positioned at annular cover body 101 peripheries, and annular cover body 101 is connected the inner current stabilization air channel 104 that forms with the sealing of annular shell 103 rear and front ends.On annular shell 103 walls, be formed with heat exchange air import 1031, current stabilization air channel 104 is connected by heat exchange air import 1031 and the inner air channel 15 of air-conditioning, and is connected with perforation air channel 102 by the annular air outlet 1013 on the annular cover body 101.By this annular shell 103 is set, when being assembled to air-conditioner air supply device 10 on the air-conditioning body 1, can be directly that annular shell 103 is fixing with the front panel 11 and the postnotum 12 of air-conditioning body 1, it is extremely convenient to assemble.And, by this annular shell 103 is set, is convenient to air-conditioner air supply device 10 and realizes sealed the connection with the air channel, inside 15 of air-conditioning body 1, the heat exchange air that is beneficial in the inner air channel 15 blows out from air-conditioner air supply device 10 with enough speed.
In air-conditioning, adopt after the air-conditioner air supply device 10 of said structure, during operation of air conditioner, room air from air-conditioning postnotum 12 belows or the air inlet offered of Left-Hand Panel and right panel below (be existing structure, not shown) enter air-conditioner housing inside, under the effect of centrifugal blower 17, acceleration blows to evaporimeter 16 and carries out heat exchange, heat-exchanged air air channel 15 internally blows to each annular air outlet 1013, and then final mixing air outlet 111 from front panel 11 blows out after connecting the air channel.Meanwhile, connect and form negative pressure in the air channel, the room air of air-conditioning outside will enter from the non-heat exchange air import 121 on the postnotum 12 and connect the air channel, and pass out to indoor after the heat exchange air that annular air outlet 1013 blows out forms mixing air under the effect of negative pressure.Such mixing air is comparatively soft, blows to the user and can feel more comfortable on one's body, has improved user's comfortableness experience effect.Simultaneously, utilize suction function that air air-supply arrangement 10 produced suck portion of external not the air of heat exchange participate in the last air-out of air-conditioning, increase the whole intake of air-conditioning, accelerated flowing of room air, further improved the whole uniformity of room air.
The main purpose of considering the air-conditioning air-supply of this embodiment is to send the air of suitable temperature to improve user's comfortableness, and the width W 2 of annular opening 1011 should not be too little, and preferred W2 accounts for the 1/8-3/4 of full annular cover body 101 width W 1.Preferred, select its width W 2 to be the 1/3-2/3 of annular cover body 101 width W 1.The width of the width of said here annular cover body 101 and annular opening 1011 all is meant along the width of annular cover body 101 wall directions.
In addition, consider the fluency of air-out, take into account the overall aesthetics of air-conditioner air supply device 10 simultaneously, the quantity outbalance of annular flow deflector 1012, and the setting of quantity can be determined according to the relation of the width between annular air outlet 1013 and the whole annular opening 1011.As optimal way, the width W 3 of each annular air outlet 1013 is 5-35mm, and wherein 10-25mm is its preferred width range.After the width of annular opening 1011 and annular air outlet 1013 is determined, just can determine what annular flow deflectors 1012 need be set on annular opening 1011.Wherein, the width of annular air outlet 1013 also is meant along the width of annular cover body 101 wall directions.
And a plurality of annular flow deflector 1012 spaced sets make the width W 3 of each annular air outlet 1013 equate, to guarantee the uniformity of air-out.(also i.e. direction along annular cover body 101 front ends to the rear end) tapering type structure of girth is arranged in order a plurality of annular flow deflectors 1012 with from front to back, with the air-out uniformity of further each annular air outlet of assurance.
And each annular flow deflector 1012 all is obliquely installed with the direction of the outlet of the mixing air from 1013 drainages of annular air outlet to annular cover body 101 front ends 1016 with the heat exchange air in the inner air channel 15.Also promptly, in structure shown in Figure 4, annular flow deflector 1012 is provided with the cumulative incline direction of girth from front to back.After such direction setting, heat exchange air will blow out from mixing air outlet 1016 under the water conservancy diversion of annular flow deflector 1012 smoothly.And all annular flow deflectors all are provided with identical incline direction and angle of inclination, to guarantee the air-out uniformity.With one of them annular flow deflector 1012 is example, and the setting of its concrete incline direction can be adopted the angle between the axis of annular flow deflector 1012 and annular cover body 101
Figure 2013201246917100002DEST_PATH_IMAGE002
The number of degrees limit.This angle number should not be too big, flows in order to avoid air can not export 1016 directions towards mixing air smoothly.This angle number can and be preferably more than 0 ° and be not more than 45 °, and the preferred number of degrees are 15-25 °.
Need to prove the angle between the axis of definition annular flow deflector 1012 and annular cover body 101 The time,
Figure 521675DEST_PATH_IMAGE002
An axis that the limit is an annular cover body 101, another limit is the axis of the strip main part of annular flow deflector 1012.
Tilting by the annular opening 1011 at annular cover body 101 is provided with annular flow deflector 1012, can effectively stablize and guide air to flow along assigned direction.And, by annular flow deflector 1012 is provided with special angle, make the user need not to operate and can obtain suitable air-out direction, improved user's comfortableness experience effect.
In this embodiment, be provided with six annular flow deflectors 1012 on the annular opening 1011 altogether, wherein, the annular flow deflector 1012 that is positioned at forward and backward two ends respectively with corresponding being fixed together in forward and backward two edges of annular opening 1011, and be connected and fixed successively by the dowel 106 that is arranged in the formed annular air outlet 1013 of these two annular flow deflectors between adjacent two annular flow deflectors 1012.And as Fig. 2 and intention shown in Figure 4, all dowels 106 all are independently each other.The implication that independently comprises two aspects here: one, all dowels that connect adjacent two annular flow deflectors 1012 are independently of one another; Its two, the dowel in the different annular shape air outlet 1013 is independently of one another.So conveniently respectively annular flow deflector 1012 is fixed, unaffected each other.And in this embodiment, as preferred implementation, the dowel in all annular air outlets 1013 is provided with identical circumferential distributing position.That is to say that the quantity and the position of the dowel in all circular air outlets 1013 are all identical, like this, from longitudinal direction, dowel becomes the dowel of an interrupted type.The benefit of She Zhiing is the air-out uniformity more that can guarantee each annular air outlet 1013 like this.
For reducing air flow through path and heat transfer losses, the heat exchange air import 1031 of being offered on annular shell 103 walls is preferably formed on annular shell 103 walls circular ring-shaped opening 1011 corresponding positions with annular cover body 101.For example, if annular opening 1011 is positioned at the rear end of annular cover body 101 walls, then heat exchange air import 1031 also is positioned at the rear end of annular shell 103 walls.Heat exchange air import 1031 can be the continuous opening of being offered on annular shell 103 walls of annular together, but preferably intermittently is distributed in a plurality of openings on annular shell 103 walls, and is extremely shown in Figure 4 as Fig. 2.In this embodiment, heat exchange air import 1031 is eight, is evenly distributed on annular shell 103 walls.Heat exchange air import 1031 can be adopted the run-track shaped of this embodiment, certainly, also can adopt circle or ellipse to realize.
As more excellent embodiment, be to increase the smoothness that air flows, in this embodiment, annular cover body 101 front ends from after flaring forward, form the inclination diversion division 1014 of horn mouth shape.Front end at inclination diversion division 1014 also has expansion mouth 1015, this expansion mouth 1015 is as the front end of whole annular cover body 101, form the mixing air outlet 1016 of air-conditioner air supply device 10 foremost at it, thereby improved the aesthetic property of full annular cover body 101.At this moment, the front end of annular shell 103 is connected with the front end sealing of expansion mouth 1015.Take all factors into consideration wind pushing performance and aesthetic property, the angle between the axis of inclination diversion division 1014 and annular cover body 101
Figure 2013201246917100002DEST_PATH_IMAGE004
The number of degrees be preferably 0-45 °, preferred angle number is 5-10 °; The width W 4 of inclination diversion division 1014 accounts for the 1/3-3/4 of whole annular cover body 101 width W 1.And the angle between the axis of expansion mouth 1015 and annular cover body 101 Greater than the angle between the axis of inclination diversion division 1014 and annular cover body 101, and differ 20-35 ° with two angles and be advisable.
In addition, in the air-conditioning of this embodiment, limit by the heat exchange chamber space, evaporimeter 16 length shorten.For guaranteeing heat exchange performance, evaporimeter 16 adopts the version that includes three row U type pipes at least, preferably can adopt three row's evaporimeters with three row U type pipes.And the incline direction of evaporimeter 16 will be determined according to the position of annular opening 1011.As shown in this embodiment, if annular opening 1011 is formed on the rear end of annular cover body 101 walls, also promptly near air-conditioning postnotum 12 positions, then evaporimeter 16 with its upper end near or against front panel 11, lower end near or be provided with against the leaning forward direction of postnotum 12, so that evaporimeter 16 heat-exchanged air are at utmost directly blown in the air-conditioner air supply device 10.
Above embodiment only in order to the explanation the technical solution of the utility model, but not limits it; Although the utility model is had been described in detail with reference to previous embodiment, for the person of ordinary skill of the art, still can make amendment to the technical scheme that previous embodiment is put down in writing, perhaps part technical characterictic wherein is equal to replacement; And these modifications or replacement do not make the essence of appropriate technical solution break away from the spirit and scope of the utility model technical scheme required for protection.

Claims (20)

1. air-conditioner air supply device, it is characterized in that, described air-supply arrangement comprises the annular cover body, be formed with the perforation air channel of running through the annular cover body in the middle of the described annular cover body, the front end of described annular cover body forms the mixing air outlet, on described annular cover body wall, be formed with the annular opening that is communicated with inner air channel of air-conditioning and described perforation air channel, be provided with a plurality of annular flow deflectors on described annular opening, described annular flow deflector is divided into described annular opening the annular air outlet in inner air channel of the described air-conditioning of a plurality of connections and described perforation air channel; Described air-supply arrangement also comprises the annular shell that is positioned at described annular cover body periphery, described annular cover body is connected with the sealing of described annular shell rear and front end, the inner current stabilization air channel that forms, on described annular shell wall, be formed with the heat exchange air import, described current stabilization air channel is connected by the inner air channel of described heat exchange air import and described air-conditioning, and described annular air outlet is connected with described current stabilization air channel.
2. air-conditioner air supply device according to claim 1 is characterized in that, the width of described annular opening accounts for the 1/8-3/4 of whole described annular cover body width.
3. air-conditioner air supply device according to claim 2 is characterized in that, the width of described annular opening accounts for the 1/3-2/3 of whole described annular cover body width.
4. air-conditioner air supply device according to claim 1 is characterized in that, the width of a plurality of described annular air outlets equates, is 5-35mm.
5. air-conditioner air supply device according to claim 4 is characterized in that, the width of each described annular air outlet is 10-25mm.
6. according to claim 4 or 5 described air-conditioner air supply devices, it is characterized in that a plurality of described annular flow deflectors are arranged in order with the tapering type structure of girth from front to back.
7. air-conditioner air supply device according to claim 6, it is characterized in that, each described annular flow deflector is so that the direction from the drainage of described annular air outlet to described mixing air outlet is obliquely installed with the heat exchange air in the inner air channel of described air-conditioning, and the angle number of degrees between the axis of described annular flow deflector and described annular cover body are not more than 45 ° greater than 0 °.
8. air-conditioner air supply device according to claim 7 is characterized in that, the angle number of degrees between the axis of described annular flow deflector and described annular cover body are 15-25 °.
9. air-conditioner air supply device according to claim 1, it is characterized in that, the annular flow deflector that is positioned at forward and backward two ends in a plurality of described annular flow deflectors is corresponding fixedly connected with forward and backward two edges of described annular opening respectively, and adjacent two described annular flow deflectors are connected and fixed successively by the dowel that is arranged in the corresponding annular air outlet.
10. air-conditioner air supply device according to claim 9 is characterized in that, all described dowels are independently of one another, and the dowel in all described annular air outlets is provided with identical circumferential distributing position.
11. air-conditioner air supply device according to claim 1 is characterized in that, described heat exchange air import is formed on the described annular shell wall and the corresponding position of described annular opening.
12. air-conditioner air supply device according to claim 11 is characterized in that, described heat exchange air import is a plurality of, intermittently is distributed on the described shell wall.
13. air-conditioner air supply device according to claim 12 is characterized in that, described heat exchange air import be shaped as circle or ellipse or runway shape.
14. air-conditioner air supply device according to claim 1, it is characterized in that, the front end of described annular cover body be from after the inclination diversion division of flaring forward, the front end of described inclination diversion division has expansion mouth, the front end of described annular shell is connected with the sealing of the front end of described expansion mouth.
15. air-conditioner air supply device according to claim 14 is characterized in that, the angle number of degrees between the axis of described inclination diversion division and described annular cover body are 0-45 °.
16. air-conditioner air supply device according to claim 15 is characterized in that, the angle number of degrees between the axis of described inclination diversion division and described annular cover body are 5-10 °.
17. air-conditioning, comprise the air-conditioning body, described air-conditioning body has front panel, postnotum, left and right sides panel, described front panel, rear board and left and right sides panel limit the air channel, inside of described air-conditioning body, it is characterized in that, on described front panel, offer circular mixing air outlet, on described postnotum, export corresponding position with described mixing air at least and offer circular non-heat exchange air import, be provided with each described air-conditioner air supply device in the aforesaid right requirement 1 to 16 in described air-conditioning body interior, the front-end and back-end of the annular cover body in the described air-conditioner air supply device respectively with described front panel on the outlet of circular mixing air be connected with the corresponding sealing of circular non-heat exchange air import on the described postnotum.
18. air-conditioning according to claim 17 is characterized in that, is provided with centrifugal blower in the bottom in described inner air channel, forms heat exchange chamber between described centrifugal blower and the described air-conditioner air supply device, is tiltedly installed with evaporimeter in described heat exchange chamber.
19. air-conditioning according to claim 18, it is characterized in that, annular air outlet in the described air-conditioner air supply device is formed on the rear end of annular cover body wall, described evaporimeter with its upper end near or against described front panel, its lower end near or be obliquely installed against the direction that leans forward of described postnotum.
20. air-conditioning according to claim 18 is characterized in that, described evaporimeter includes at least three row U type pipes.
CN 201320124691 2012-09-19 2013-03-19 Air-conditioner air supply device and air-conditioner Withdrawn - After Issue CN203100095U (en)

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CN201210348460 2012-09-19
CN201210348671.8 2012-09-19
CN201210348460.4 2012-09-19
CN201210348671 2012-09-19
CN201210348669 2012-09-19
CN201210348669.0 2012-09-19
CN201210353977.2 2012-09-21
CN201210354130 2012-09-21
CN201210354130.6 2012-09-21
CN201210354128 2012-09-21
CN201210354128.9 2012-09-21
CN201210353977 2012-09-21
CN 201320124691 CN203100095U (en) 2012-09-19 2013-03-19 Air-conditioner air supply device and air-conditioner

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CN201310087670.7A Active CN103307661B (en) 2012-09-19 2013-03-19 Vertical air conditioner
CN 201320124862 Withdrawn - After Issue CN203100092U (en) 2012-09-19 2013-03-19 Air conditioner air supply device
CN201310087710.8A Active CN103453635B (en) 2012-09-19 2013-03-19 Vertical air conditioner air supply method
CN201310087615.8A Active CN103307723B (en) 2012-09-19 2013-03-19 Air conditioner air supply device and air conditioner
CN 201320124691 Withdrawn - After Issue CN203100095U (en) 2012-09-19 2013-03-19 Air-conditioner air supply device and air-conditioner
CN 201320124961 Withdrawn - After Issue CN203116174U (en) 2012-09-19 2013-03-19 Vertical type air conditioner
CN201310087580.8A Active CN103307720B (en) 2012-09-19 2013-03-19 A kind of air-conditioner air supply device
CN 201320124925 Withdrawn - After Issue CN203100002U (en) 2012-09-19 2013-03-19 Vertical air conditioner
CN 201320124849 Withdrawn - After Issue CN203100097U (en) 2012-09-19 2013-03-19 Air-conditioner air supply device
CN201310087607.3A Active CN103322660B (en) 2012-09-19 2013-03-19 Air supply device of air conditioner
CN201310087305.6A Active CN103453634B (en) 2012-09-19 2013-03-19 Air-conditioning method
CN 201320125051 Expired - Lifetime CN203100093U (en) 2012-09-19 2013-03-19 Air supply device of vertical air conditioner
CN201310087692.3A Active CN103307721B (en) 2012-09-19 2013-03-19 A kind of vertical air conditioner air-supply arrangement
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CN 201320124925 Withdrawn - After Issue CN203100002U (en) 2012-09-19 2013-03-19 Vertical air conditioner
CN 201320124849 Withdrawn - After Issue CN203100097U (en) 2012-09-19 2013-03-19 Air-conditioner air supply device
CN201310087607.3A Active CN103322660B (en) 2012-09-19 2013-03-19 Air supply device of air conditioner
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CN 201320125051 Expired - Lifetime CN203100093U (en) 2012-09-19 2013-03-19 Air supply device of vertical air conditioner
CN201310087692.3A Active CN103307721B (en) 2012-09-19 2013-03-19 A kind of vertical air conditioner air-supply arrangement
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CN103453634A (en) 2013-12-18
CN103453635B (en) 2015-09-02
CN103307721B (en) 2015-09-02
CN103453634B (en) 2015-09-02
CN103307723B (en) 2015-07-08
CN103307661A (en) 2013-09-18
CN103322618B (en) 2015-09-02
CN103307723A (en) 2013-09-18
CN203100092U (en) 2013-07-31
CN203116174U (en) 2013-08-07
CN103453635A (en) 2013-12-18
CN103322618A (en) 2013-09-25
CN103307720B (en) 2015-11-25
CN103307720A (en) 2013-09-18
CN103322660A (en) 2013-09-25
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CN203100002U (en) 2013-07-31
CN203100097U (en) 2013-07-31

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