CN201561503U - Air conditioner in improved air intake mode - Google Patents
Air conditioner in improved air intake mode Download PDFInfo
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- CN201561503U CN201561503U CN2009202929197U CN200920292919U CN201561503U CN 201561503 U CN201561503 U CN 201561503U CN 2009202929197 U CN2009202929197 U CN 2009202929197U CN 200920292919 U CN200920292919 U CN 200920292919U CN 201561503 U CN201561503 U CN 201561503U
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Abstract
The utility model discloses an air conditioner in an improved air intake mode, which comprises a housing for the air conditioner. The upper portion of the air conditioner housing comprises an air intake cavity, an air valve board in rotatable connection with the lateral board is provided in the air intake cavity, an air returning port in communication with the indoor air and the novel air port in communication with the outdoor air are respectively provided on two opposed sides of the air intake cavity, an air pump is provided on the bottom of the air intake cavity for pumping the air in the air intake cavity to the refrigerating/heating unit of the air conditioner. According to the utility model, the air conditioner in the improved air intake mode has advantages of compact structure, beautiful appearance, and strong capability of air exchanging.
Description
Technical field
The utility model relates to field of air conditioning, particularly a kind of air-conditioning that has return air and new wind air intake pattern simultaneously.
Background technology
At present, it is all not ideal enough that air-conditioning equipment has the product structure design of new wind function (being about to outdoor pure and fresh air-flow is introduced into indoor) on the market, mostly be on original air conditioner structure interim increase reluctantly advance new wind structure function.The new wind intake of ubiquity is little, renews the wind ability, can not effectively reach the purpose of pure and fresh room air; And, cause the complete machine structure complexity owing to be on original air conditioner structure, to set up into new wind structure.Particularly when some in particular cases need return air intake and new wind intake equally greatly, produce this series products and just run into many difficulties, often exist product design to be advanced the influence of new wind structure, and problem attractive in appearance inadequately.And, because the restriction of prior art can't realize that air-conditioning blows out new wind fully, that is to say, even can realize blowing out the purpose of new wind, but in this process, also can exist a large amount of return air to blow out together, therefore, the room air pure and fresh cleaning that is difficult to become.
In addition, in the existing refrigeration air-conditioner, particularly vertical air conditioner, usually air inlet is arranged at air-conditioning cabinet bottom, and air outlet 4 is arranged at air-conditioning cabinet top.And the defective that this design exists is: because the principle that hot-air rises and cold air descends, generally cooled air can be positioned at indoor position near ground, and the air inlet setting is arranged on too near on the position on ground, can make that colder air constantly is sucked into air-conditioning inside, constantly cooling, and the hot-air that is positioned at indoor top tends to rest on sheaf space always, can't be freezed fully, such design also exists cooling efficient low outside not only causing carrying out fully effectively freezing to room air, waste electric energy problem of resource.
The utility model content
The utility model is in order to overcome defective in the above-mentioned prior art, a kind of compact conformation, good looking appearance to be provided, to renew the strong improved air-conditioning of air intake pattern of wind energy power.
The utility model provides a kind of air intake pattern improved air-conditioning, has an air-conditioner housing, described air-conditioner housing top has an air intake chamber, described air-inlet cavity is indoor to have an air-valve plate that is rotationally connected with its side plate, the relative both sides of described air intake chamber are respectively equipped with return air inlet that is communicated with room air and the fresh wind port that is communicated with outdoor air, and described air intake cavity bottom is provided with air blast so that the gas in the described air intake chamber is evacuated to air conditioner refrigerating/heating unit.
In the technique scheme, described air regulating board is divided into a return air compartment that is communicated with return air inlet and a new wind chamber that is communicated with fresh wind port by rotating its angle of inclination with described air intake chamber, and described air-conditioning has return air pattern and new wind pattern, under the return air pattern, described return air compartment links to each other with described air blast; Under the new wind pattern, described new wind chamber links to each other with described air blast.
In the technique scheme, described return air inlet and fresh wind port lay respectively at both sides, described air intake chamber front and back, described air-valve plate is rotationally connected along its turning cylinder axially extended dual-side center and plate center, the described air intake chamber left and right sides, and described air blast is arranged at described air intake chamber lower shoe center.
In the technique scheme, in described return air pattern or new wind pattern following time,, described air-valve plate closely contacts with lower shoe with the upper plate of described air intake chamber respectively along the dual-side on vertical its rotating shaft direction, so that described return air compartment and new wind chamber are separated fully.
In the technique scheme, described air intake chamber left and right sides plate is provided with air-valve plate actuator, to control described air-valve plate rotational angle.
In the technique scheme, described air-conditioning comprises a control module, and it is electrically connected and controls the two running with described air conditioner refrigerating/heating unit and air blast.
In the technique scheme, described air-conditioner housing outside is provided with control panel, and it is electrically connected with described control module.
In the technique scheme, at least one sidewall in air-conditioner housing bottom is provided with air outlet 4, and the gas after described air conditioner refrigerating/heating unit is handled is blown out by described air outlet 4.
In the technique scheme, described air conditioner refrigerating/heating unit is positioned at described air-conditioner housing bottom, so that the gas by described air blast suction is carried out refrigerating/heating.
In the technique scheme, the described air-conditioner housing left and right sides is respectively integral panel.
The utlity model has following beneficial effect:
(1) in the utility model the improved air-conditioning of air intake pattern by rationally, arrange air inlet and air outlet 4 cleverly, make described air-conditioning possess return air air intake pattern and new wind air intake pattern simultaneously, and make air-conditioning equipment realize that the intake of the intake of new wind and return air can reach the purpose of identical draft capacity, in terms of existing technologies, new wind resistance reduces greatly, has improved the ability that air-conditioning equipment renews wind accordingly greatly.Simultaneously, in the utility model the improved air-conditioning of air intake pattern also possess simple in structure, the advantage of good looking appearance.
(2) simultaneously in a preferred implementation, because the iris action of air-valve plate can be realized that described air-conditioning blows out the purpose of new wind fully, thereby make the more pure and fresh cleaning of room air.
(3) preferably return air inlet is arranged at air-conditioning top in the utility model, air outlet 4 is arranged at the air-conditioning bottom, when air-conditioning is used to freeze, guarantee that hot-air and cold air circulate, the hot-air that is arranged in indoor upper strata easier is pulled into air-conditioning and cools off, make the room air cooling more fully, evenly on the one hand, on the other hand, effectively avoid air-conditioning equipment only the cold air that is positioned at indoor lower layer space to be circulated cooling and causes waste of energy, thereby realize the purpose of energy-conserving and environment-protective.
Aircondition is specially adapted to as communication base station air-conditioner or air-cooled unitary air conditioner in the utility model.
Description of drawings
Fig. 1 is the improved air-conditioning front elevational view of the utility model air intake pattern;
Fig. 2 is the internal structure three-dimensional view after air-conditioning described in Fig. 1 removes the air-conditioner housing exterior panel;
Fig. 3 is that air-conditioning described in Fig. 1 is in the front elevational view under the return air pattern;
Fig. 4 is that air-conditioning described in Fig. 1 is in the front elevational view under the new wind pattern.
Mark the following drawings mark thereon in conjunction with the accompanying drawings:
The lower shoe of 11-air intake chamber, the upper plate of 12-air intake chamber, the left plate of 13-air intake chamber, the right plate of 14-air intake chamber, the 21-return air inlet, 22-fresh wind port, 3-air-valve plate, 31-air-valve plate actuator, 4-air outlet 4,5-air conditioner refrigerating/heating unit, 6-air blast, the 7-control panel, the 8-sidewall panel.
The specific embodiment
Below in conjunction with accompanying drawing, a specific embodiment of the present utility model is described in detail, but is to be understood that protection domain of the present utility model is not subjected to the restriction of the specific embodiment.
The improved air-conditioning of air intake pattern as shown in Figure 1, 2, has an air-conditioner housing, this air-conditioner housing top has an air intake chamber, the bottom is provided with air conditioner refrigerating/heating unit 5, and be provided with an air outlet 4 on the adjacent air-conditioner housing lower sides of described air conditioner refrigerating/heating unit 5, this air outlet 4 is towards the indoor direction that needs cooling or heating.Described air intake chamber surrounds an opposed square chamber by upper plate 12, lower shoe 11, left side plate 13,14 and front and back air inlet.Wherein, described preceding air inlet is the return air inlet 21 that room air is communicated with, and described rear air inlet is the return air inlet 21 that is communicated with outdoor air.Described air intake chamber lower shoe 11 centers fixedly install an air blast 6, by described air blast 6, the gas in the air intake chamber is pumped into air conditioner refrigerating/heating unit 5, thereby the gas of suction is carried out refrigerating/heating.
In the present embodiment, as shown in Figure 2, at the indoor air-valve plate 3 that is rotationally connected with its left side plate 13,14 that is provided with of described air-inlet cavity, specifically, described air-valve plate 3 is rotationally connected by a rotating shaft connector and plate 13,14 centers, the described air intake chamber left and right sides along the axially extended dual-side of its turning cylinder center, and plate 13,14 outside centers, the described air intake chamber left and right sides are respectively equipped with air-valve plate actuator 31, to control described air-valve plate 3 rotational angles.Shown in Fig. 3,4, described air regulating board is divided into a return air compartment that is communicated with return air inlet 21 and a new wind chamber that is communicated with return air inlet 21 by rotating its angle of inclination with described air intake chamber, and described air-conditioning has return air pattern and new wind pattern, when described air-conditioning is under the return air pattern, described return air compartment links to each other with described air blast 6; When described air-conditioning is under the new wind pattern, described new wind chamber links to each other with described air blast 6.Wherein, described air-conditioning is in return air pattern or new wind pattern following time, described air-valve plate 3 closely contacts with lower shoe 11 with the upper plate 12 of described air intake chamber respectively along the dual-side on vertical its rotating shaft direction, so that described return air compartment and new wind chamber are separated fully, thereby realize that described air-conditioning has complete suction return air (by indoor inhaled air) state and the complete new wind of suction (by outdoor inhaled air) state, and because return air inlet 21 is designed to identical size with return air inlet 21, therefore, the new wind of suction equates with the ability of return air, with respect to prior art, new wind air intake ability improves greatly.
Control the aircondition in the present embodiment for convenience, it further comprises a control module (among the figure indication), and it is electrically connected and controls the two running with described air conditioner refrigerating/heating unit 5 and air blast 6.In addition, in described air-conditioner housing outside, the position that makes things convenient for staff to touch is provided with a control panel 7, and it is electrically connected with described control module, thereby realizes that the user controls by 7 pairs of operation of air conditioner of control panel.
Next two kinds of air intake patterns to the improved air-conditioning of air intake pattern in the present embodiment describe respectively.
As shown in Figure 3, described air-conditioning is under the return air pattern, and air-valve plate 3 turns to its bottom surface towards return air inlet 21 places, makes return air inlet 21 be communicated with the air blast 6 at air intake chamber lower shoe 11 places, and because the iris action of air-valve plate 3, the gas and the air blast 6 at return air inlet 21 places cut off fully.At this moment, when air blast 6 runnings, room air suction that can return air inlet 21 is outer is to air-conditioning inside (shown in the direction of arrow of Fig. 3 middle and upper part), and handles (refrigerating/heating) back through air conditioner refrigerating/heating unit 5 and blow out (shown in the direction of arrow of Fig. 3 middle and lower part) by air outlet 4.
As shown in Figure 4, described air-conditioning is under the new wind pattern, described air-conditioning is under the new wind pattern, air-valve plate 3 turns to its bottom surface towards return air inlet 21 places, make return air inlet 21 be communicated with the air blast 6 at air intake chamber lower shoe 11 places, and because the iris action of air-valve plate 3, the gas and the air blast 6 at return air inlet 21 places cut off fully.At this moment, when air blast 6 runnings, can be with the outdoor fresh air suction outside the return air inlet 21 to air-conditioning inside (shown in the direction of arrow of Fig. 4 middle and upper part), and blow out (shown in the direction of arrow of Fig. 4 middle and lower part) by air outlet 4 after 5 processing (refrigerating/heating) of process air conditioner refrigerating/heating unit, thereby realize being blown into fully the purpose of new wind.
In addition, in the utility model in the improved air-conditioning of air intake pattern, one-piece side Wall board 8 is all preferably adopted in the air-conditioner housing left and right sides, to be positioned at the described air intake chamber on its top and the chamber integral coating that is used to hold the refrigerating/heating unit of bottom, thereby reach return air inlet 21, return air inlet 21 and the air outlet 4 that only can see air-conditioning from the air-conditioning outside, other positions are level and smooth panel attractive in appearance, therefore can improve the aesthetic measure of air conditioner greatly.
More than disclosed only be a specific embodiment of the present utility model, still, the utility model is not limited thereto, any those skilled in the art can think variation all should fall into protection domain of the present utility model.
Claims (10)
1. improved air-conditioning of air intake pattern, has an air-conditioner housing, it is characterized in that: described air-conditioner housing top has an air intake chamber, described air-inlet cavity is indoor to have an air-valve plate that is rotationally connected with its side plate, the relative both sides of described air intake chamber are respectively equipped with return air inlet that is communicated with room air and the fresh wind port that is communicated with outdoor air, and described air intake cavity bottom is provided with air blast so that the gas in the described air intake chamber is evacuated to air conditioner refrigerating/heating unit.
2. air-conditioning according to claim 1, it is characterized in that: described air regulating board is divided into a return air compartment that is communicated with return air inlet and a new wind chamber that is communicated with fresh wind port by rotating its angle of inclination with described air intake chamber, and described air-conditioning has return air pattern and new wind pattern, under the return air pattern, described return air compartment links to each other with described air blast; Under the new wind pattern, described new wind chamber links to each other with described air blast.
3. air-conditioning according to claim 2, it is characterized in that: described return air inlet and fresh wind port lay respectively at both sides, described air intake chamber front and back, described air-valve plate is rotationally connected by connecting axle and plate center, the described air intake chamber left and right sides along the axially extended dual-side of its turning cylinder center, and described air blast is arranged at described air intake chamber lower shoe center.
4. air-conditioning according to claim 3, it is characterized in that: described return air pattern or new wind pattern following time, described air-valve plate closely contacts with lower shoe with the upper plate of described air intake chamber respectively along the dual-side on vertical its rotating shaft direction, so that described return air compartment and new wind chamber are separated fully.
5. air-conditioning according to claim 4 is characterized in that: described air intake chamber left and right sides plate is provided with air-valve plate actuator, to control described air-valve plate rotational angle.
6. air-conditioning according to claim 5 is characterized in that: described air-conditioning comprises a control module, and it is electrically connected and controls the two running with described air conditioner refrigerating/heating unit and air blast.
7. air-conditioning according to claim 6 is characterized in that: described air-conditioner housing outside is provided with control panel, and it is electrically connected with described control module.
8. according to any described air-conditioning of claim 1 to 7, it is characterized in that: at least one sidewall in air-conditioner housing bottom is provided with air outlet 4, and the gas after described air conditioner refrigerating/heating unit is handled is blown out by described air outlet 4.
9. according to any described air-conditioning of claim 1 to 7, it is characterized in that: described air conditioner refrigerating/heating unit is positioned at described air-conditioner housing bottom, so that the gas by described air blast suction is carried out refrigerating/heating.
10. according to any described air-conditioning of claim 1 to 7, it is characterized in that: the described air-conditioner housing left and right sides is respectively the integrated side Wall board.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2009202929197U CN201561503U (en) | 2009-12-14 | 2009-12-14 | Air conditioner in improved air intake mode |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2009202929197U CN201561503U (en) | 2009-12-14 | 2009-12-14 | Air conditioner in improved air intake mode |
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CN201561503U true CN201561503U (en) | 2010-08-25 |
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CN2009202929197U Expired - Fee Related CN201561503U (en) | 2009-12-14 | 2009-12-14 | Air conditioner in improved air intake mode |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105588183A (en) * | 2014-11-28 | 2016-05-18 | 海信(山东)空调有限公司 | Double-cold-source air conditioning unit |
CN107300213A (en) * | 2017-07-20 | 2017-10-27 | 海信(山东)空调有限公司 | A kind of cabinet air conditioner |
WO2023179005A1 (en) * | 2022-03-23 | 2023-09-28 | 青岛海尔空调器有限总公司 | Fresh air conditioner and control method therefor |
-
2009
- 2009-12-14 CN CN2009202929197U patent/CN201561503U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105588183A (en) * | 2014-11-28 | 2016-05-18 | 海信(山东)空调有限公司 | Double-cold-source air conditioning unit |
CN107300213A (en) * | 2017-07-20 | 2017-10-27 | 海信(山东)空调有限公司 | A kind of cabinet air conditioner |
WO2023179005A1 (en) * | 2022-03-23 | 2023-09-28 | 青岛海尔空调器有限总公司 | Fresh air conditioner and control method therefor |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20100825 Termination date: 20181214 |