CN107084427A - Air-conditioner indoor wall on-hook - Google Patents
Air-conditioner indoor wall on-hook Download PDFInfo
- Publication number
- CN107084427A CN107084427A CN201710240999.0A CN201710240999A CN107084427A CN 107084427 A CN107084427 A CN 107084427A CN 201710240999 A CN201710240999 A CN 201710240999A CN 107084427 A CN107084427 A CN 107084427A
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- Prior art keywords
- air
- vent
- wind deflector
- chamber
- wind
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Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F1/00—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
- F24F1/0007—Indoor units, e.g. fan coil units
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/08—Air-flow control members, e.g. louvres, grilles, flaps or guide plates
- F24F13/10—Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/24—Means for preventing or suppressing noise
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/24—Means for preventing or suppressing noise
- F24F2013/247—Active noise-suppression
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Air-Flow Control Members (AREA)
Abstract
The invention provides a kind of air-conditioner indoor wall on-hook, including:Casing, offers the air outlet of laterally setting thereon;And wind deflector, wind deflector, which is rotatably arranged at air outlet, to be sentenced and opens or closes air outlet, and multiple first air-vents and multiple second air-vents are offered on wind deflector;Wherein, multiple first air-vents tilt extension on the thickness direction of wind deflector, and first air-vent be configured to, its angle of inclination makes at least partly the first air-out wind path of the first air-vent and at least partly the second air-out wind path of the second air-vent be crossed on the outside of wind deflector.The wind deflector of the present invention is blown by tilting its part air-vent, realize the refrigeration blown out from the part air-vent or heat the wind facies interference that wind can be blown out with least another part air-vent, two parts air-out intersects and forms sinuous flow wind, makes air-out not blow-through, strengthens calm sense experience.
Description
Technical field
The present invention relates to air-conditioning technique field, more particularly to a kind of air-conditioner indoor wall on-hook.
Background technology
Guide plate is in the state opened always in the existing general operation process of air-conditioning, and air-conditioning is blown by exhaust vent, such a
State servant, which knows from experience, experiences air-conditioning blowing feeling, and comfortableness is poor.Simultaneously because wind deflector is in the state opened, interior machine fan
Noise, which larger amount of can also be transferred out, to be come, and air-supply noise is big.Though existing big guide plate micropore air-supply scheme realizes micropore air-supply
Wind sense is reduced, but reduces many in air-supply air quantity, wind pushing performance is not enough.
The content of the invention
It is an object of the present invention to provide it is a kind of can realize it is calm sense air-supply air-conditioner indoor wall on-hook.
The present invention one is further objective is that will cause air-conditioner indoor wall on-hook while calm sense air-supply is carried out, to protect
The enough air outputs of card, are used with meeting air-conditioner indoor wall on-hook larger space.
Especially, the invention provides a kind of air-conditioner indoor wall on-hook, including:
Casing, offers the air outlet of laterally setting thereon;And
Wind deflector, the wind deflector, which is rotatably arranged at the air outlet, to be sentenced and opens or closes the air outlet, described
Multiple first air-vents and multiple second air-vents are offered on wind deflector;Wherein,
The multiple first air-vent tilts extension on the thickness direction of the wind deflector, and
First air-vent is configured to, and its angle of inclination makes the first air-out wind path of at least partly described first air-vent
Crossed with the second air-out wind path of at least partly described second air-vent on the outside of the wind deflector.
Further, at least partly the multiple first air-vent is located under at least partly the multiple second air-vent
Side, and it is configured to make the first air-out wind path horizontal forward or tilt upward from the preceding surface of the wind deflector.
Further, the multiple second air-vent tilts extension on the thickness direction of the wind deflector, and is configured to
Make the second air-out wind path from the preceding surface of the wind deflector diagonally downward.
Further, the Part I that the multiple first air-vent is distributed with the wind deflector is no more than the wind-guiding
The 2/3 of plate front surface area;And
The Part II that the multiple second air-vent is distributed with the wind deflector is no more than the preceding surface of the wind deflector
The 2/3 of area.
Further, the multiple first air-vent is divided into multirow first on the longitudinal direction of the wind deflector and breathed freely
Hole group, it is saturating that the first air-permeating hole group of often going includes multiple spaced on the horizontal direction of the wind deflector described first
Stomata;
The multiple second air-vent is divided into multirow the second air-vent group on the longitudinal direction of the wind deflector, often goes
The second air-permeating hole group includes multiple second air-vents spaced on the horizontal direction of the wind deflector;And
Every two row adjacent the first air-vent group is in the ranks provided with the second air-vent group described in a line.
Further, multiple described first in adjacent the first air-vent group and the second air-vent group are breathed freely
Hole and multiple second air-vents are staggered.
Further, the horizontal stroke perpendicular to its axis direction of each first air-vent and each second air-vent
Section is circle, and the scope in aperture is that the scope of minimum range between 2 to 8mm, the adjacent air-vent of each two is 5
To 14mm.
Further, first chamber, second chamber and exhaust air flue are defined in the casing;And
Air inlet is provided with the top of the first chamber, to allow air to flow into first chamber from the air inlet
Room;
The exhaust air flue is arranged at the lower end of the first chamber, and its end is formed with the air outlet, to allow
The air for stating first chamber is flowed out in surrounding environment via the exhaust air flue;
The second chamber is arranged at the front side of the first chamber, and is configured to controllably with the exhaust air flue to connect
It is logical, to allow the air of the first chamber to be flowed to via the exhaust air flue in the second chamber;And
The multiple first air-vent and the multiple second air-vent are provided with the preceding surface of the second chamber, with
The air in the second chamber is allowed to flow out to surrounding via the multiple first air-vent and the multiple second air-vent
In environment.
Further, the wind deflector can controllably turn to the first turned position for closing the air outlet, to allow
The second chamber is connected with the exhaust air flue, so that the air in the first chamber enters via the exhaust air flue
The second chamber, and it is flowed out from the multiple first air-vent and the multiple second air-vent;And
The wind deflector can controllably turn to the second turned position for opening the air outlet, to cut off second chamber
Room and the exhaust air flue, so as to prevent the air in the first chamber from entering second chamber via the exhaust air flue
Room, and it is flowed out from the air outlet.
The wind deflector of the present invention is blown by tilting its part air-vent, realizes the refrigeration from the part air-vent blowout
Or the wind facies interference that wind can be blown out with least another part air-vent is heated, two parts air-out intersects and forms sinuous flow wind, uses
Wind not blow-through, strengthens calm sense experience.
Further, because wind deflector of the present invention can will send out the wind of different directions, and intersect multidirectional wind mixing,
Therefore the air supply areas of air-vent can have the size slightly larger than existing air-supply micropore, so that with bigger air output,
Improve air-conditioning heat exchange efficiency.
According to the accompanying drawings to the detailed description of the specific embodiment of the invention, those skilled in the art will be brighter
Above-mentioned and other purposes, the advantages and features of the present invention.
Brief description of the drawings
Some specific embodiments of the present invention are described in detail by way of example, and not by way of limitation with reference to the accompanying drawings hereinafter.
Identical reference denotes same or similar part or part in accompanying drawing.It should be appreciated by those skilled in the art that these
What accompanying drawing was not necessarily drawn to scale.In accompanying drawing:
Fig. 1 is the schematic diagram of air-conditioner indoor wall on-hook according to an embodiment of the invention;
Fig. 2 is the wind path schematic diagram of wind deflector according to an embodiment of the invention;
Fig. 3 is the schematic elevational view of wind deflector according to an embodiment of the invention;
Fig. 4 is the wind path schematic diagram of wind deflector in accordance with another embodiment of the present invention;
Fig. 5 is the schematic elevational view of the wind deflector according to another embodiment of the invention;
Fig. 6 is the schematic elevational view of air-conditioner indoor wall on-hook according to an embodiment of the invention;
Fig. 7 is the schematic side elevation of air-conditioner indoor wall on-hook according to an embodiment of the invention;
Fig. 8 is the schematic side elevation of air-conditioner indoor wall on-hook according to an embodiment of the invention in the other state.
Embodiment
Fig. 1 is the schematic diagram of air-conditioner indoor wall on-hook 1 according to an embodiment of the invention.Referring to Fig. 1, this hair
It is bright that a kind of air-conditioner indoor wall on-hook 1 is provided.The air-conditioner indoor wall on-hook 1 may include to be used to support blower fan and heat exchange to fill in general manner
The skeleton put, the case being located on skeleton, it is connected to the front side of case to constitute the face that air-conditioner indoor wall on-hook 1 is anterior
Plate 40 and left end cap and right end cap positioned at the case left and right sides etc..Skeleton, case, panel 40 and left and right end cap may make up this
The casing of air-conditioner indoor wall on-hook 1, and cabinet top offers air inlet to allow air to flow into casing and flow through heat-exchanger rig
And blower fan, its bottom offers the air outlet of laterally setting to allow the air for exchanging heat, via blower fan accelerating via heat-exchanger rig
Outflow.Further, air-conditioner indoor wall on-hook 1 includes a wind deflector 10 being transversely arranged at air outlet.
In some embodiments of the invention, wind deflector 10 is configured to be rotatably arranged at air outlet to sentence and opened or closed
Multiple first air-vents 701 and multiple second air-vents 702 are offered on air outlet, and wind deflector 10.Multiple first air-vents
701 tilt extension on the thickness direction of wind deflector 10.First air-vent 701 can be configured to, and its angle of inclination makes at least partly
First air-out wind path of the first air-vent 701 and at least partly the second air-out wind path of the second air-vent 702 are outside wind deflector 10
Top-cross is converged.
Specifically, referring to Fig. 1, when wind deflector 10 closes air outlet, the air in casing can be breathed freely by multiple first
Hole 701 and the scattered outflow of multiple second air-vents 702, blow out at a high speed so as to avoid cold wind or hot blast from unobstructed air outlet
User is set not feel well.Further, multiple first air-vents 701 incline relative to the thickness direction of wind deflector 10 with certain
Rake angle.Multiple second air-vents 702 can be parallel with the thickness direction of wind deflector 10, can also have certain angle of inclination.
Fig. 2 is the schematic diagram of wind deflector 10 according to an embodiment of the invention.Referring to Fig. 2, when wind deflector 10 is closed out
During air port, the wind direction of the wind blown out from the first air-permeating hole is tilted upward, i.e., the incline direction of wind deflector 10 as shown in Figure 2 is
Underlying cluster single lined arrows in present position when it closes air outlet, Fig. 2 show that wind passes through the first air-permeating hole
The wind path blown out afterwards.Cluster single lined arrows above in Fig. 2 show that wind passes through the wind path that is blown out after the second air-permeating hole.
As can be seen here, the air flowed out from the first air-vent 701 and the air flowed out from the second air-vent 702 can be interfered, and be changed
Its original flow direction, so as to realize that sinuous flow is blown, and then can almost entirely avoid wind blow-through to user.Certainly,
First air-vent 701 may also set up in the top of the second air-vent 702 and be configured to tilt down extension.
The wind deflector 10 of the present invention is blown by tilting its part air-vent, realizes the system from the part air-vent blowout
Wind facies that is cold or heating wind and can be blown out with least another part air-vent is disturbed, and two parts air-out intersects and form sinuous flow wind, make
Air-out not blow-through, strengthens calm sense experience.
Further, because wind deflector 10 of the present invention can will send out the wind of different directions, and hand over multidirectional wind mixing
Fork, therefore the air supply areas in ventilative hole can have the size for being slightly larger than existing air-supply micropore, so as to go out with bigger
Air quantity, improves air-conditioning heat exchange efficiency.
Fig. 3 is the schematic elevational view of wind deflector 10 according to an embodiment of the invention.Referring to Fig. 3, the present invention's
In some embodiments, the preceding surface of wind deflector 10 can be divided into two parts, and multiple first air-vents 701 and multiple second are breathed freely
Hole 702 is set respectively.Specifically, multiple first air-vents 701 can be located at the lower section of multiple second air-vents 702, and be configured to
Make the first air-out wind path horizontal forward or tilt upward from the preceding surface of wind deflector 10.
That is to say, multiple first air-vents 701 can integrated distribution in the bottom of wind deflector 10, multiple second air-vents 702
Can integrated distribution on the top of wind deflector 10.In general, the installation site of air-conditioner indoor wall on-hook 1 is higher, and wind deflector 10 exists
Close in the state of air outlet, its plate face is towards inferoanterior.Thus, multiple first air-vents 701 with angle of inclination are set
Put in the bottom of wind deflector 10, can make it that it is smaller compared to the angle of inclination of the thickness direction of wind deflector 10, thereby may be ensured that
Wind deflector 10 has higher structural strength, and the time used is shorter when causing air by air-vent, and then can improve sky
The heat exchange efficiency of tune.
Further, because multiple first air-vents 701 with angle of inclination are located at the bottom of wind deflector 10, second is saturating
Stomata 702 is not required to set angle of inclination both to realize intersection air-supply.It that is to say, the air supply direction and wind-guiding of the second air-vent 702
When the thickness direction of plate 10 is parallel, the wind blown out from the second air-vent 702 just can with blow out from the first air-vent 701
Wind intersects.Thus, air-conditioner indoor wall on-hook 1 of the invention only has part air-vent and needs to set angle of inclination, so that its
Manufacturing process is simplified.
In some embodiments of the invention, multiple second air-vents 702 are tilted on the thickness direction of wind deflector 10 and prolonged
Stretch, and be configured to make the second air-out wind path from the preceding surface of wind deflector 10 diagonally downward.It that is to say, the second air-vent 702 can also have
Have certain angle of inclination so that the wind energy blown out from the second air-vent 702 it is enough apart from the outside of wind deflector 10 closer to
Position is mixed with the wind blown out from the first air-vent 701 to intersect, and then enhances the effect of the intersection air-supply of air-conditioner indoor wall on-hook 1
Really.
In some embodiments of the invention, the Part I of multiple first air-vents 701 is distributed with wind deflector 10 not
More than the 2/3 of the front surface area of wind deflector 10.The Part II that multiple second air-vents 702 are distributed with wind deflector 10 is no more than
The 2/3 of the front surface area of wind deflector 10.For example, the Part I of multiple first air-vents 701 is distributed with wind deflector 10 and leads
The Part II that multiple second air-vents 702 are distributed with aerofoil 10 can be the 1/2 of the front surface area of wind deflector 10.Namely
It is that the quantity and distribution area of the first air-vent 701 and the second air-vent 702 on wind deflector 10 are suitable, so that in many ways aweather
Mixing intersects more uniform.In other embodiments of the present invention, multiple first air-vents 701 are distributed with wind deflector 10
Part I also may be slightly larger than the Part II that multiple second air-vents 702 are distributed with wind deflector 10 so that from wind deflector
10 times part of horizontal or the wind blown out upwards are slightly more than from the wind that part is blown out downwards thereon, so as to further avoid excessively mistake
Strong air-flow is blown out to user downwards, user is not felt well.
Fig. 4 is the wind path schematic diagram of wind deflector 10 in accordance with another embodiment of the present invention.Referring to Fig. 4, the present invention's
In some embodiments, multiple first air-vents 701 are divided into the first air-vent of multirow 701 on the longitudinal direction of wind deflector 10
Group, often the first air-permeating hole of row group include multiple first air-vents 701 spaced on the horizontal direction of wind deflector 10.It is multiple
Second air-vent 702 is divided into 702 groups of the second air-vent of multirow on the longitudinal direction of wind deflector 10, often the second air-permeating hole of row group
Including multiple second air-vents 702 spaced on the horizontal direction of wind deflector 10.Further, every two row it is adjacent
One 701 groups of air-vent is in the ranks provided with 702 groups of the second air-vent of a line.
Fig. 5 is the schematic elevational view of the wind deflector 10 according to another embodiment of the invention.Referring to Fig. 5, in the present invention
Some embodiments in, multiple Hes of first air-vent 701 in 702 groups of 701 groups of the first adjacent air-vent and the second air-vent
Multiple second air-vents 702 are staggered so that have around each air-vent it is multiple blow towards other directions other are saturating
Stomata, so as to further reduce wind sense.
In some embodiments of the invention, each first air-vent 701 and each second air-vent 702 perpendicular to it
The cross section of axis direction is circle, and the scope in aperture is 2 to 8mm, for example can for 2mm, 2.5mm, 3mm, 3.5mm,
The model of minimum range between 4mm, 4.5mm, 5mm, 5.5mm, 6mm, 6.5mm, 7mm, 7.5mm etc., the adjacent air-vent of each two
Enclose for 5 to 14mm such as can be 5mm, 6mm, 7mm, 8mm, 9mm, 10mm, 11mm, 12mm and 13mm, its specific numerical value
Can further it be chosen by the requirement to air output and muting function.Wherein, between the adjacent air-vent of each two most
Small distance refers to one first ventilative and second air-vent, or first air-vent and first air-vent, or one
Minimum range between individual second air-vent and second air-vent.
Fig. 6 is the schematic elevational view of air-conditioner indoor wall on-hook 1 according to an embodiment of the invention.Referring to Fig. 6, at this
In some embodiments of invention, multiple air-vents 301 can be also offered on the panel 40 of air-conditioner indoor wall on-hook 1, and be configured to
Its at least part air-vent has the incline direction of the first air-vent 701.
Fig. 7 is the schematic side sectional view of air-conditioner indoor wall on-hook 1 according to an embodiment of the invention.Fig. 8 is root
According to the schematic side sectional view in the other state of air-conditioner indoor wall on-hook 1 of one embodiment of the invention.Referring to Fig. 7 and figure
8, first chamber 100, second chamber 200 and exhaust air flue 300 can be defined in the casing of air-conditioner indoor wall on-hook 1.Blower fan and
Heat-exchanger rig 60 is arranged inside first chamber 100, and the top of first chamber 100 is provided with air inlet 101, to allow air to flow into
First chamber 100 simultaneously flows through heat-exchanger rig 60 and blower fan is exchanged heat and accelerated.Exhaust air flue 300 is arranged at first chamber 100
Lower end, and its end offer laterally setting air outlet 201, to allow the air of first chamber 100 via exhaust air flue
300 flow out in surrounding environment.Air-conditioner indoor wall on-hook 1 also has wind deflector 10, and is configured to be rotatably arranged in casing
Bottom, at the air outlet 201 of the end of exhaust air flue 300, and can controllably open or close exhaust air flue 300.
Especially, second chamber 200 is located at the front side of first chamber 100, and configures and controllably can connect with exhaust air flue 300
It is logical, to allow the air of first chamber 100 to be flowed to via exhaust air flue 300 in second chamber 200.It that is to say, second chamber
200 controllably can be connected by exhaust air flue 300 with first chamber 100.Specifically, flowed into by air inlet 101 first in casing
The air of chamber 100 can flow downwardly into exhaust air flue 300 via first chamber 100, and further can be drawn by exhaust air flue 300
It is oriented to front lower place and flows out to surrounding environment via air outlet 201, or forward upward continues to run to second chamber 200 and via many
Individual air-vent 301 is flowed out in surrounding environment.
In the present embodiment, because second chamber 200 has the front side surface for being provided with multiple air-vents 301 so that its
Air-out area is much larger than the air outlet 201 of existing indoor apparatus of air conditioner, so that while calm sense air-supply is ensured, in same work
, can be to the indoor offer at least cold equal with traditional air conditioner, so that the air-conditioner indoor wall of the present invention is hung in time
Machine 1 disclosure satisfy that the application in larger space.
In some embodiments of the invention, wind deflector 10 is configured to be rotatably connected to the lower end of skeleton 20.Specifically
Ground, wind deflector 10 can controllably turn to the first turned position, close air outlet 201, and connection second chamber and exhaust air flue
300, so that the air in first chamber 100 enters second chamber 200 via exhaust air flue 300.It that is to say, when 10 turns of wind deflector
When moving to the first turned position, wind deflector 10 is obliquely vertically arranged, and its lower edge is resisted against the lower end of air outlet 201, its
Upper edge is overlapped on the inner side on the preceding surface of second chamber 200, so that the air outlet 201 of the end of exhaust air flue 300 be closed.This
When, barrier is not present between second chamber 200 and exhaust air flue 300 so that the air in first chamber 100 can be from exhaust air flue
300 flow into and full of second chamber 200, so as to further from multiple air-vents for being opened in the preceding surface of second chamber 200
301 scattered outflows.
Further, wind deflector 10 can also controllably turn to the second turned position, open air outlet 201, and cut-out the
Two chambers and exhaust air flue 300, to prevent the air in first chamber 100 from entering second chamber 200 via exhaust air flue 300.
It that is to say, when wind deflector 10 turns to the second turned position, wind deflector 10 is obliquely laterally sets, and edge rotates backward thereon
And the rear side surface of second chamber 200 is resisted against, its lower edge rotates forward and is resisted against the front side surface of second chamber 200, from
And separate exhaust air flue 300 and second chamber 200.Now, the air flowed to from first chamber 100 in exhaust air flue 300
First chamber 100 is cannot be introduced into, but is flowed out to directly from the air outlet 201 of exhaust air flue 300 in surrounding environment.Namely
Say, the air-conditioner indoor wall on-hook 1 of the embodiment of the present invention can not only have a calm sense air supply pattern, can also be according to the demand of user
Common refrigeration and heating mode are switched to, so as to improve the usage experience of user.
In some embodiments of the invention, first chamber 100 can be formed between skeleton 20 and case 30, second chamber
200 can be formed between panel 40 and case 30, and form by least part panel 40 the preceding surface of second chamber 200.Also
It is to say, the preceding surface of second chamber 200 is panel 40.Further, case 30, which has, is arranged at first chamber 100 and second
Lateral partitions 50 between chamber 200, to prevent the air permeable case 30 in first chamber 100 from flowing to second chamber 200
It is interior.Similarly, in second chamber 200 air is also due to the setting of lateral partitions 50 is unable to be directly entered first chamber
100.It that is to say, the part that case 30 is located between first chamber 100 and second chamber 200 is with the detachable of continuous surface
Or non-removable lateral partitions 50, and the lateral partitions 50 cause first chamber 100 and second chamber 200 to carry out directly
The gas exchanges connect.
Further, the width of the lateral partitions 50 size in a lateral direction and casing is roughly equal, its left and right two
End can be extended respectively on the inside of the left end cap of casing and on the inside of right end cap, so that by first chamber 100 and second chamber 200 in horizontal stroke
It is isolated entirely to direction.
In some embodiments of the invention, heat-exchanger rig 60 can bendingly be arranged on first chamber 100 for multisection type
Interior, it has and the roughly equal width of air inlet 101 in a lateral direction, and is configured to from the rear side in first chamber 100
Top position forward upward extends close to the rear side of case 30, then extends still further below, to cover air intake in the longitudinal direction
The downside of mouth 101, so that realizing can exchange heat to the almost all air flowed into from air inlet 101 in first chamber 100.
Lateral partitions 50 then can be configured to, and its upper end may extend to the front end of air inlet 101, and its lower end may extend to heat-exchanger rig 60
Downside.It that is to say, the in the vertical direction of lateral partitions 50 is highly not less than the size of the in the vertical direction of heat-exchanger rig 60, so that
Avoid being located at the air permeable in first chamber 100 by heat exchange or bypassing lateral partitions 50 flowing into second chamber 200.
Further, case 30 can also have the extension board rearward extended from the lower end of lateral partitions 50, and extension
Plate has the length not less than the thickness of heat-exchanger rig 60 on the thickness direction of air-conditioner indoor wall on-hook 1, so as to preferably
Heat-exchanger rig 60 in first chamber 100 and exhaust air flue 300 are separated so that in first chamber 100 air have fill
The space of foot is exchanged heat.
It will be understood by those skilled in the art that in case of no particular description, alleged by the embodiment of the present invention " on ",
" under ", " interior ", " outer " etc. the term that is used to represent orientation or position relationship be with the real use state of air-conditioner indoor wall on-hook
On the basis of for, these terms are for only for ease of description and understand technical scheme, rather than indicate or imply
Signified device or part must have specific orientation, with specific azimuth configuration and operation, therefore it is not intended that to this
The limitation of invention.
So far, although those skilled in the art will appreciate that detailed herein have shown and described multiple showing for the present invention
Example property embodiment, still, still can be direct according to present disclosure without departing from the spirit and scope of the present invention
It is determined that or deriving many other variations or modifications for meeting the principle of the invention.Therefore, the scope of the present invention is understood that and recognized
It is set to and covers other all these variations or modifications.
Claims (9)
1. a kind of air-conditioner indoor wall on-hook, including:
Casing, offers the air outlet of laterally setting thereon;And
Wind deflector, the wind deflector, which is rotatably arranged at the air outlet, to be sentenced and opens or closes the air outlet, the wind-guiding
Multiple first air-vents and multiple second air-vents are offered on plate;Wherein,
The multiple first air-vent tilts extension on the thickness direction of the wind deflector, and
First air-vent is configured to, and its angle of inclination makes at least partly the first air-out wind path of first air-vent and extremely
Second air-out wind path of the second air-vent described in small part crosses on the outside of the wind deflector.
2. air-conditioner indoor wall on-hook according to claim 1, wherein,
At least partly the multiple first air-vent is located at the lower section of at least partly the multiple second air-vent, and is configured to make
The first air-out wind path is horizontal forward or tilt upward from the preceding surface of the wind deflector.
3. air-conditioner indoor wall on-hook according to claim 2, wherein,
The multiple second air-vent tilts extension on the thickness direction of the wind deflector, and is configured to make second air-out
Wind path from the preceding surface of the wind deflector diagonally downward.
4. air-conditioner indoor wall on-hook according to claim 2, wherein,
The Part I that the multiple first air-vent is distributed with the wind deflector is no more than the wind deflector front surface area
2/3;And
The Part II that the multiple second air-vent is distributed with the wind deflector is no more than the wind deflector front surface area
2/3.
5. air-conditioner indoor wall on-hook according to claim 2, wherein,
The multiple first air-vent is divided into multirow the first air-vent group on the longitudinal direction of the wind deflector, and often row is described
First air-permeating hole group includes multiple first air-vents spaced on the horizontal direction of the wind deflector;
The multiple second air-vent is divided into multirow the second air-vent group on the longitudinal direction of the wind deflector, and often row is described
Second air-permeating hole group includes multiple second air-vents spaced on the horizontal direction of the wind deflector;And
Every two row adjacent the first air-vent group is in the ranks provided with the second air-vent group described in a line.
6. air-conditioner indoor wall on-hook according to claim 5, wherein,
Multiple first air-vents in adjacent the first air-vent group and the second air-vent group and multiple described
Second air-vent is staggered.
7. air-conditioner indoor wall on-hook according to claim 1, wherein,
The cross section perpendicular to its axis direction of each first air-vent and each second air-vent is circle,
And the scope in aperture is that the scope of minimum range between 2 to 8mm, the adjacent air-vent of each two is 5 to 14mm.
8. air-conditioner indoor wall on-hook according to claim 1, wherein,
First chamber, second chamber and exhaust air flue are defined in the casing;And
Air inlet is provided with the top of the first chamber, to allow air to flow into the first chamber from the air inlet;
The exhaust air flue is arranged at the lower end of the first chamber, and its end is formed with the air outlet, to allow described
The air of one chamber is flowed out in surrounding environment via the exhaust air flue;
The second chamber is arranged at the front side of the first chamber, and is configured to controllably to connect with the exhaust air flue,
To allow the air of the first chamber to be flowed to via the exhaust air flue in the second chamber;And
The multiple first air-vent and the multiple second air-vent are provided with the preceding surface of the second chamber, to allow
Air in the second chamber flows out to surrounding environment via the multiple first air-vent and the multiple second air-vent
In.
9. air-conditioner indoor wall on-hook according to claim 8, wherein,
The wind deflector can controllably turn to the first turned position for closing the air outlet, with allow the second chamber with
The exhaust air flue connection, so that the air in the first chamber enters the second chamber via the exhaust air flue,
And it is flowed out from the multiple first air-vent and the multiple second air-vent;And
The wind deflector can controllably turn to the second turned position for opening the air outlet, with cut off the second chamber with
The exhaust air flue, so that prevent the air in the first chamber from entering the second chamber via the exhaust air flue, and
It is set to be flowed out from the air outlet.
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