CN110736149A - air conditioner with fresh air changing function - Google Patents

air conditioner with fresh air changing function Download PDF

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Publication number
CN110736149A
CN110736149A CN201810792942.6A CN201810792942A CN110736149A CN 110736149 A CN110736149 A CN 110736149A CN 201810792942 A CN201810792942 A CN 201810792942A CN 110736149 A CN110736149 A CN 110736149A
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CN
China
Prior art keywords
indoor
air
fresh air
air conditioner
flow guide
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201810792942.6A
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Chinese (zh)
Other versions
CN110736149B (en
Inventor
单翠云
王永涛
刘博�
李英舒
闫宝升
张丽
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Haier Air Conditioner Gen Corp Ltd
Haier Smart Home Co Ltd
Original Assignee
Qingdao Haier Air Conditioner Gen Corp Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Qingdao Haier Air Conditioner Gen Corp Ltd filed Critical Qingdao Haier Air Conditioner Gen Corp Ltd
Priority to CN201810792942.6A priority Critical patent/CN110736149B/en
Priority to PCT/CN2019/096420 priority patent/WO2020015688A1/en
Publication of CN110736149A publication Critical patent/CN110736149A/en
Application granted granted Critical
Publication of CN110736149B publication Critical patent/CN110736149B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/022Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing comprising a compressor cycle
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/032Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by heat exchangers
    • F24F1/0323Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by heat exchangers by the mounting or arrangement of the heat exchangers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/0328Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing with means for purifying supplied air
    • F24F1/035Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing with means for purifying supplied air characterised by the mounting or arrangement of filters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/22Means for preventing condensation or evacuating condensate
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/22Means for preventing condensation or evacuating condensate
    • F24F13/222Means for preventing condensation or evacuating condensate for evacuating condensate
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/24Means for preventing or suppressing noise
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/28Arrangement or mounting of filters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/30Arrangement or mounting of heat-exchangers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/24Means for preventing or suppressing noise
    • F24F2013/247Active 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)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Air-Conditioning Room Units, And Self-Contained Units In General (AREA)

Abstract

The invention discloses body type air conditioners with fresh air exchange function, wherein the space in a shell is divided into a chamber and a second chamber by a partition plate, and the chamber is divided into a space and a second space by a partition plate, wherein the space is provided with an indoor temperature adjusting component, and the second space is provided with a fresh air component.

Description

air conditioner with fresh air changing function
Technical Field
The invention belongs to the technical field of air conditioners, and particularly relates to body type air conditioners with fresh air changing function.
Background
air conditioner integrates units of indoor unit connected with indoor for adjusting indoor temperature and outdoor unit connected with outdoor, when in use, the whole unit is placed indoors, the current air conditioner can only adjust indoor space temperature to make it reach the most comfortable state of human body, but because there is no air exchange, it will cause indoor oxygen quantity to decrease after long time use, and make human body feel suffocated.
Disclosure of Invention
The invention aims to provide body type air conditioners with fresh air exchange function.
In order to realize the purpose of the invention, the invention is realized by adopting the following technical scheme:
A body type air conditioner with fresh air changing function comprises a shell and a partition board positioned in the shell, wherein the partition board divides the space in the shell into a th cavity and a second cavity, the th cavity is divided into a th space and a second space through a th partition board, the shell corresponding to the th space is provided with an indoor air inlet and an indoor air outlet, an indoor heat exchanger, a cross flow fan and an indoor air duct assembly are sequentially arranged between the indoor air inlet and the indoor air outlet in the th space, the shell corresponding to the second space is provided with a fresh air inlet and a fresh air outlet, the fresh air inlet is communicated with the outside through a fresh air pipeline, the shell corresponding to the second cavity is provided with an outdoor air inlet and an outdoor air outlet, and an outdoor heat exchanger and a centrifugal fan are sequentially arranged between the outdoor air inlet and the outdoor air outlet.
According to the body air conditioner with the fresh air exchange function, the fresh air centrifugal fan is arranged in the second space, and the direction of the axis of the fresh air centrifugal fan is the same as the direction of the axis of the cross flow fan.
The body type air conditioner with fresh air changing function comprises an air guide assembly arranged between an indoor air inlet and an indoor air duct assembly, wherein the air guide assembly comprises a flow guide block and a second flow guide block which are positioned at two sides of an indoor heat exchanger, the flow guide block and the second flow guide block are both connected with the indoor air inlet and the indoor air duct assembly, the opposite surface of the flow guide block opposite to the second flow guide block is a flow guide surface, and the opposite surface of the second flow guide block opposite to the flow guide block is a second flow guide surface.
In the body air conditioner with fresh air exchanging function, the th flow guide surface and the second flow guide surface are arranged at a fixed angle of .
In the body air conditioner with fresh air changing function, the th flow guide surface and the second flow guide surface are gradually enlarged from the indoor air inlet to the air duct assembly.
The body air conditioner with fresh air changing function as above, the indoor air duct assembly includes a frame and a volute tongue, the th flow guide block connects the indoor air inlet and the volute tongue, and the second flow guide block connects the indoor air inlet and the frame.
In the body air conditioner with fresh air exchange function, the second flow guide block is provided with an arc-shaped flow guide surface at a position close to the framework.
The body air conditioner with fresh air changing function, wherein the flow guide block and the second flow guide block are both provided with slots, the flow guide block is inserted in the volute tongue through the slots, and the second flow guide block is inserted in the framework through the slots.
The body air conditioner with fresh air exchange function comprises a frame having a frame extension, a volute tongue having a volute tongue extension, and a divergent air duct extension formed by the frame extension and the volute tongue extension.
The body air conditioner with fresh air changing function, wherein the end of the volute tongue near the fan is provided with a volute tongue extension block, the volute tongue extension block is provided with a th flow guide surface parallel to the tangent of the fan, and the th flow guide surface is connected with the volute tongue flow guide surface.
The body air conditioner with fresh air changing function as described above, the volute tongue extension block has a second flow guide surface with degree angle with the flow guide surface, the second flow guide surface faces to the indoor heat exchanger above the volute tongue.
The body air conditioner with fresh air exchange function as described above, the second drainage surface faces to the bottom end of the indoor heat exchanger above the volute tongue.
In the body air conditioner with fresh air exchange function, the purification module is installed at the position, close to the indoor air outlet, of the tail end of the air duct extension part.
The body air conditioner with fresh air changing function, the volute tongue is provided with a water receiving part which is positioned at the bottom end of the th indoor heat exchanger, the framework is provided with a second water receiving part which is positioned at the second bottom end of the indoor heat exchanger, the end part of the water receiving part is provided with a water leakage hole, the end part of the framework is provided with a water guide part which is communicated with the second water receiving part, and the water guide part is used for receiving water in the water leakage hole.
In the body air conditioner with fresh air exchange function, the end part of the water receiving part far from the water leakage hole gradually decreases towards the end part of the water leakage hole.
The body type air conditioner with fresh air changing function, the second chamber is located below the chamber, a cleaning device is installed below the partition plate, the cleaning device comprises a flushing groove located above the outdoor heat exchanger, a second flushing groove located above the second outdoor heat exchanger, a water diversion groove and a water receiving groove located between the flushing groove and the second flushing groove, the water diversion groove is communicated with the flushing groove and the second flushing groove, the water receiving groove is communicated with the middle of the water diversion groove, and the water receiving groove is used for receiving water of the second water receiving part.
The body air conditioner with fresh air exchange function is characterized in that a filtering module corresponding to the indoor air inlet is arranged in the shell, and an installation slide way for installing the filtering module is arranged in the shell.
In the body air conditioner with fresh air exchange function, the th chamber and the second chamber are arranged in parallel.
The body air conditioner with fresh air exchange function as above, the top of the shell is detachably provided with a table top.
The body air conditioner with fresh air exchange function has the gap between the tabletop and the top of the shell between 150mm and 200 mm.
Compared with the prior art, the type air conditioner with the fresh air exchange function has the advantages and positive effects that the space in the shell is divided into a th chamber and a second chamber by the partition plate, the th chamber is divided into a th space and a second space by the th partition plate, wherein the th space is set as an indoor temperature adjusting component, and the second space is set as a fresh air component.
Other features and advantages of the present invention will become more apparent from the following detailed description of the invention when taken in conjunction with the accompanying drawings.
Drawings
Fig. 1 is a perspective view of an type air conditioner with a fresh air exchange function according to an embodiment of the present invention.
Fig. 2 is a perspective view of an body air conditioner with a fresh air exchange function according to an embodiment of the present invention.
Fig. 3 is an exploded view of an type air conditioner with fresh air exchange function according to an embodiment of the present invention.
Fig. 4 is a schematic view of space indoor unit assemblies of an type air conditioner with a fresh air exchanging function according to an embodiment of the present invention.
Fig. 5 is a cross-sectional view of an unit type air conditioning indoor unit assembly having a fresh air exchange function according to an embodiment of the present invention.
Fig. 6 is an exploded view of an unit type air conditioner indoor unit assembly with a fresh air exchange function according to an embodiment of the present invention.
Fig. 7 is a schematic view of the body air conditioner with fresh air exchange function generating vortex when no wind guide assembly is arranged.
Fig. 8 is a sectional exploded view of the volute tongue and volute tongue extension block of air conditioner with fresh air exchange function according to an embodiment of the present invention.
Fig. 9 is a schematic view of an style indoor water collector with fresh air exchange function according to an embodiment of the present invention.
Fig. 10 is a schematic view of fig. 9 with the indoor heat exchanger removed.
FIG. 11 is a schematic view of the top cover;
FIG. 12 is a cross-sectional view taken along line A-A of FIG. 11;
FIG. 13 is an exploded view of the top cover and screen;
fig. 14 is a top view of an outdoor unit assembly according to an embodiment of the present invention.
Fig. 15 is a schematic view of a funnel-shaped flow guide ring according to an embodiment of the invention.
FIG. 16 is a schematic view of a flow guide channel according to an embodiment of the present invention.
Fig. 17 is a schematic view of an body air conditioner with fresh air exchange function without a rear shell, a right shell and a top cover according to an embodiment of the present invention.
Fig. 18 is a schematic view of the indoor unit assembly of fig. 17 taken at step .
Fig. 19 is a schematic view of fig. 18 taken at step with the partition removed.
Fig. 20 is an enlarged view of fig. 19B.
FIG. 21 is a top view of a flushing device according to an embodiment of the present invention.
Fig. 22 is a cross-sectional view taken along the line of fig. 21C-C.
FIG. 23 is a perspective view of a flushing device according to an embodiment of the present invention.
Fig. 24 is a schematic view of an base for a body air conditioner with fresh air exchange function according to an embodiment of the present invention.
Fig. 25 is a cross-sectional view at the drain hole of fig. 24.
Fig. 26 and 27 are schematic diagrams of another embodiment of the present invention.
Fig. 28 is a schematic view of fig. 27 with the housing removed.
1. The air conditioner comprises a shell, 11, a partition plate, 111, a through hole, 112, a clamping hole, 12, a front shell, 13, a rear shell, 14, a left shell, 15, a right shell, 16, a top cover, 161, a slide way, 17, a base, 171, a drainage concave ring surface, 172, a drainage hole, 101, cavity, 1011, an indoor air inlet, 10111, an air inlet grille, 1012, an indoor air outlet, 10121, an air outlet grille, 102, a second cavity, 1021, , an outdoor air inlet, 1022, a second outdoor air inlet, 1023, an outdoor air outlet, 1024, a compressor, 1025, a second partition plate, 181, filter screens, 1811, frames, 1812, guide ribs, 1813, buckles, 1814 handles, 182, second filter screens, 109, partition plate;
2. space indoor unit assembly, 21 indoor heat exchanger, 211 tube plate, 22 cross-flow fan, 221 cross-flow fan, 222 bearing, 223 motor, 224 motor gland, 23 skeleton, 231 reinforcing rib, 232 skeleton extending part, 2321 skeleton extending guide surface, 233 skeleton guide surface, 234 second water receiving part, 2341 second water leakage hole, 235 water guide part, 236 boss, 24 volute tongue, 241, arc guide surface, 242, reinforcing rib, 243 volute tongue extending part, 2431 volute tongue extending guide surface, 2441 volute tongue guide surface, 2442 volute tongue guide surface, 2443 clamping surface, 245 volute tongue extending block, 2451, guide surface, 2452 guide surface, second guide surface, 2454, installation part, 2454 clamping groove, part, 2461, water leakage hole, 251, guide block, 2511, guide surface, 2522 guide surface, 2523 guide groove, 2523 guide surface, 2523 guide groove, 2522 guide surface, purifying module, 2512 guide surface, 2521 guide groove, 2512 guide surface, 2523 guide groove, purifying groove, 2512 guide module, 2512 guide surface, and purifying groove.
3. The outdoor unit component 31, the th outdoor heat exchanger, 32, the second outdoor heat exchanger, 312, the tube plate, 33, the bidirectional suction centrifugal fan, 331, the suction inlet, 332, the second suction inlet, 333, the air outlet, 34, the flow guide channel, 341, the grille, 3411, the outer end of the grille, 3412, the inner end of the grille;
4. the device comprises a cleaning device, a washing groove 41 and a washing groove , a washing groove 42 and a washing groove II, a water leakage hole 412, a water retaining rib 413, a wind shield 414, a water diversion groove 43, a water receiving groove 44 and a buckle 45.
51. A fresh air inlet; 52. a fresh air outlet; 53. a fresh air duct; 54. a fresh air centrifugal fan; 541. a volute; 542. a centrifugal fan; 543. a fan.
Detailed Description
The technical solution of the present invention is further explained in detail with reference to the drawings and the detailed description.
First, technical terms involved in the detailed description are briefly described at :
the following references to the front or rear, up or down, left or right of each structure are defined in terms of the position of the structure relative to the user in normal use. Moreover, it should be noted that the use of front or rear, upper or lower, left or right is merely for convenience and simplicity of description and does not indicate or imply that the device or structure being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be considered as limiting the invention.
The body air conditioner with fresh air changing function is particularly suitable for occasions needing frequently dismounting machines, such as a mobile board room, a movable board room and the like, and the body air conditioner with fresh air changing function is more convenient and faster due to body design.
The following describes an implementation of the air conditioner with fresh air exchange function in this embodiment with reference to the accompanying drawings:
as shown in fig. 1-3 and 17, a body type air conditioner with fresh air exchange function includes a casing 1 and a partition 11 located in the casing 1, the partition 11 divides the space in the casing 1 into a th chamber 101 and a second chamber 102, wherein the th chamber 101 is used for placing indoor unit assembly 2 and fresh air assembly, and the second chamber 102 is used for placing outdoor unit assembly 3.
The shell 1 of the embodiment comprises a front shell 12, a rear shell 13, a left shell 14, a right shell 15, a top cover 16 and a base 17, wherein is that the front shell 12 faces indoors and the rear shell 13 is close to a wall, the shell 1 of the embodiment is a cuboid or a cube, rollers and/or feet are arranged on the base 1 to form a floor type air conditioner, and the rollers are arranged to facilitate the overall movement of the type air conditioner with a fresh air exchange function.
The th chamber 101 is divided into a th space and a second space by a baffle 109, the th space is used for placing the indoor unit component 2, and the second space is used for placing the fresh air component.
The shell 1 corresponding to the th space is provided with an indoor air inlet 1011 and an indoor air outlet 1012, and an indoor heat exchanger, a cross-flow fan and an indoor air duct assembly are sequentially arranged between the indoor air inlet 1011 and the indoor air outlet 1012 in the th space.
As shown in FIG. 3, a fresh air inlet 51 and a fresh air outlet 52 are arranged on the shell corresponding to the second space, the fresh air inlet 51 is communicated with the outside through a fresh air pipeline 53, a fresh air centrifugal fan 54 is arranged in the second space, the direction of the axis of the fresh air centrifugal fan 54 is the same as the direction of the axis of the cross flow fan 22, so as to reduce the volume of the type air conditioner, in the embodiment, the fresh air inlet 51 is arranged on the right shell 15, and the fresh air outlet 52 is arranged on the front shell 12, of course, the invention does not limit the positions of the fresh air inlet 51 and the fresh air outlet 52, the fresh air inlet 51 and the fresh air outlet 52 can be adjusted according to the assembling angle of the centrifugal fan, as shown in FIGS. 1-6, an indoor unit assembly 2 is arranged in the space , specifically, an indoor heat exchanger 21, a cross flow fan 22 and an indoor air duct assembly are arranged between an indoor air inlet 1011 and an indoor air outlet 1012 in the space of , the cross flow fan 22 is arranged between the indoor heat exchanger 21 and the indoor air duct assembly, as shown in FIG. 7, the space between the front end of the indoor air inlet 1011 and the rear end of the front shell 12 and the indoor air inlet 1011 and the rear end of the indoor.
Specifically, as shown in fig. 4 to 6, the indoor unit assembly 2 will be specifically described:
the indoor air duct assembly comprises a framework 23 and a volute tongue 24, the volute tongue 24 is fixedly installed on the framework 23, the cross-flow fan 22 is installed on the framework 23, the cross-flow fan 22 comprises a cross-flow fan 221, a bearing 222, a motor 223 and a motor gland 224, the motor 223 is fixedly installed on the framework 23 through the motor gland 224, the end of the cross-flow fan 221 is connected with the motor 223 through the bearing 222, the other end of the cross-flow fan 221 is installed on the framework 23 through the bearing 222, the bearing 222 at the other end of the cross-flow fan 211 is fixedly installed on the framework 23, the extension line of the axis of the cross-flow fan 221 penetrates through the left shell 14 and the right shell 15, preferably, the axis of the cross-flow fan 221 is parallel to the front shell 12 and the rear shell 13, and the axis of the cross-flow.
The indoor heat exchanger 21 includes an indoor heat exchanger body and a tube plate 211, the tube plate 211 is fixedly installed on the frame 23, and the indoor heat exchanger body is installed on the tube plate 211. An electrical heating device may also be added to the tube sheet 211 for increasing the heat in the chamber.
The air guide assembly comprises flow guide blocks 251 and 252 which are positioned on two sides of the indoor heat exchanger 21, wherein the flow guide block 251 and the second flow guide block 252 are connected with an indoor air inlet 1011 and an indoor air duct assembly and are used for guiding air flow of the indoor air inlet 1011 to the indoor air duct assembly, concretely, the flow guide block 251 is connected with a position where a shell where the indoor air inlet 1011 is positioned is connected with the front side of the indoor air inlet 1011 and a volute tongue 24, and the second flow guide block 252 is connected with a position where the shell where the indoor air inlet 1011 is positioned is connected with the rear side of the indoor air inlet 1011 and a framework 23.
The opposite surface of the -th flow guide block 251 opposite to the second flow guide block 252 is a -th flow guide surface 2511, the opposite surface of the second flow guide block 252 opposite to the -th flow guide block 251 is a second flow guide surface 2522, and the -th flow guide surface 2511 and the second flow guide surface 2522 directly guide the airflow at the indoor air inlet 1011 to the indoor heat exchanger 21 and the indoor air duct assembly, so that the airflow at the indoor air inlet 1011 is prevented from flowing to the space between the front side of the indoor air inlet 1011 and the front housing 12, and between the rear side of the indoor air inlet 1011 and the rear housing 13, and therefore, a vortex can be prevented from being formed in the space, noise is avoided, and meanwhile, the influence on.
In order to increase the air volume, the th flow guide surface 2511 and the second flow guide surface 2522 are arranged at a fixed angle of . preferably, the th flow guide surface 2511 and the second flow guide surface 2522 are gradually expanded from the indoor air inlet 1011 to the direction of the air duct assembly, and the two flow guide surfaces form a gradually expanded channel, so that the dynamic pressure is converted into the static pressure, the system resistance is overcome, and the air volume is increased.
The th flow guide surface and the second flow guide surface may be planar surfaces, and the included angle formed by the two flow guide surfaces is between 12 and 15 degrees.
The th flow guide surface and the second flow guide surface can also be cambered surfaces, and the included angle formed by the straight line of the two end points of the th flow guide surface and the straight line of the second flow guide surface is 12-15 degrees.
The th flow guide surface and the second flow guide surface are arc surfaces, the radius of the arc is larger than 800mm, and the included angle formed by the straight line of the two end points of the th flow guide surface and the straight line of the second flow guide surface is 12-15 degrees.
The second guide block 252 is provided with a second arc-shaped guide surface 2523 at a position close to the framework 23, the second arc-shaped guide surface 2523 is an arc surface and is tangent to and smoothly transited with the second guide surface 2522, the radius of the second arc-shaped guide surface 2523 is greater than 15mm, the smoothness of airflow flow can be guaranteed, and the pressure loss of the system is reduced, the position of the volute tongue 24 close to the -th guide block 251 is provided with a -th arc-shaped guide surface 241, the -th arc-shaped guide surface 241 is an arc surface and is tangent to and smoothly transited with a -th guide surface 2511, the radius of the -th arc-shaped guide surface 241 is greater than 15mm, the smoothness of airflow flow can be guaranteed, and the pressure loss of the system is.
The position where the diversion block 251 is connected with the volute tongue 24 is provided with a slot 2512, the volute tongue 24 is provided with a plurality of reinforcing ribs 242, the slot 2512 is inserted on the reinforcing rib 242, the position where the second diversion block 252 is connected with the framework 23 is provided with a slot 2521, the framework 23 is provided with a reinforcing rib 231, the slot 2521 is inserted on the reinforcing rib 231 of the framework 23, the reinforcing rib strengthens the volute tongue and the framework, and is beneficial to the installation of the diversion block, which is beneficial to the rapid assembly of the indoor assembly.
In order to reduce the weight of the air conditioner, ensure the tightness of the combination of the air guide assembly and the air conditioner, avoid noise and avoid generating condensed water, the air guide assembly of the present embodiment uses a foaming material, and the air guide assembly is in contact with the housing (top cover 16) where the indoor air inlet 1011 is located, preferably in interference fit, that is, the th flow guide block 251 and the second flow guide block 252 are both made of a foaming material, the top ends of the th flow guide block 251 and the second flow guide block 252 are both in interference fit with the housing (top cover 16) where the indoor air inlet 1011 is located, and the th flow guide block 251 and the second flow guide block 252 are located on both sides of the indoor air inlet 1011 on the housing (top cover 16) where the.
The back of the first guiding surface 2511 of the guiding block 251 is provided with a plurality of grooves 2513 to save materials, and similarly, the back of the second guiding surface 2522 of the second guiding block 252 is also provided with a plurality of grooves (not shown).
In order to increase the air supply amount and air supply distance and reduce air supply noise, the indoor air duct assembly of the embodiment forms an air duct extension.
As shown in fig. 5, the frame 23 has a frame extension 232, the volute tongue 24 has a volute tongue extension 243, and the frame extension 232 and the volute tongue extension 243 form a divergent duct extension.
The volute tongue 24 is provided with a volute tongue diversion surface 2442 and a volute tongue diversion surface 2441, the volute tongue diversion surface 2442 and the volute tongue diversion surface 2441 are arranged in an fixed angle mode, the volute tongue diversion surface 2442 and the volute tongue diversion surface 2441 are in a smooth V shape, the volute tongue extension portion 243 is provided with a volute tongue extension diversion surface 2431 connected with the volute tongue diversion surface 2441, the volute tongue extension diversion surface 2431 is smoothly connected with the tail end of the volute tongue diversion surface 2441, and the volute tongue extension diversion surface 2431 is an extension surface of the volute tongue diversion surface 2441.
The framework 23 has a framework guide surface 233, the framework extension 232 has a framework extension guide surface 2321 connected to the framework guide surface 233, and the tangent of the framework extension guide surface 2321 to the end of the framework guide surface 233 is at .
Therefore, the volute tongue extension guide surface 2431 and the skeleton extension guide surface 2321 are gradually expanded in the air outlet direction, the outlet air of the air duct can be guided and combed by steps through the air duct extension part, long-distance air supply can be realized, and the noise can be further reduced by steps.
Preferably, the tongue extension 243 is integrally formed with the tongue 24 and the frame extension 232 is integrally formed with the frame 23 .
In order to improve the flow guiding and guiding effect of the volute tongue at step , the end part of the volute tongue 24, which is close to the cross-flow fan 221 of the fan, is provided with a volute tongue extension block 245, the volute tongue extension block 245 is provided with a th flow guiding surface 2451 which is parallel to the tangent of the fan, the th flow guiding surface 2451 is connected with the free end of the volute tongue flow guiding surface 2442, in step , the volute tongue extension block 245 is provided with a second flow guiding surface 2452 which forms an angle with the th flow guiding surface 2451, the second flow guiding surface 2452 faces the indoor heat exchanger 21 above the volute tongue 24, in order to ensure the heat exchange effect of the indoor heat exchanger 21, the second flow guiding surface 2452 faces the bottom end of the indoor heat exchanger 21 above the volute tongue 24, so as to ensure that the air flow exchanging heat through the indoor heat exchanger 21 is guided to the cross-flow.
As shown in fig. 8, the end of the tongue extension block 245 connected to the tongue 24 is provided with a slot 2454, and the free end of the tongue 24 where the tongue drainage surface 2442 is located is provided with a hook 2443, which are engaged with each other. In order to increase the firmness of the combination of the volute tongue extension block 245 and the volute tongue 24, the volute tongue extension block 245 further comprises a mounting part 2453, and the mounting part 2453 is fixed on the volute tongue 24 through screws.
The air flow passing through the indoor heat exchanger 21 flows to the cross-flow fan 221 under the guiding action of the second flow guiding surface 2452 of the volute tongue extension block 245, then sequentially passes through the flow guiding surface 2451, the volute tongue flow guiding surface 2442, the volute tongue flow guiding surface 2441 and the volute tongue extension flow guiding surface 2431 of the volute tongue extension block, and in addition, the air flow sequentially passes through the framework flow guiding surface 233 and the framework extension flow guiding surface 2321 of the framework.
Since the style air conditioner with fresh air exchange function is mainly used in construction sites, the dust particle content in the air is high, and the building materials can release harmful gas, resulting in high concentration of harmful substances in the air, in order to ensure the cleanness of the air, the embodiment adds a purification component to the indoor unit component, wherein the purification component comprises a purification module 261 for filtering the harmful substances in the air.
A purification module 261 is mounted at the end of the duct extension near the indoor air outlet 1012. Specifically, as shown in fig. 4 to 6, air outlet portions are formed at the ends of the frame extension portion 232 and the volute tongue extension portion 243, and the purge module 261 is fitted in the air outlet portions.
In order to ensure the stability of the installation of the purification module 261 to the air outlet portion, the purification assembly includes a purification module mounting bracket 262, and the purification module 261 is installed in the air outlet portion through the purification module mounting bracket 262. Purification module installing support 262 includes inlays dress portion 2621 and installation department 2622, and wherein, inlays dress portion 2621 and inlays the dress in the air-out portion, and installation department 2622 is installed on the outer terminal surface of air-out portion, and installation department 2622 passes through the fix with screw on the outer terminal surface of air-out portion. The purge module 261 is fitted into the fitting portion 2621, and since the purge module 261 is soft, the purge module 261 is pressed into the fitting portion 2621.
Inlay dress portion 2621 and include the free end and the link of being connected with installation department 2622, inlay the outer wall of dress portion 2621 and be the convergent from the link to the free end to do benefit to purification module installing support 262 inlays the dress in air-out portion.
The air outlet part corresponds to an indoor air outlet 1012 of the air conditioner shell, and an air outlet grille 10121 is arranged on the indoor air outlet 1012. Air outlet grill 10121 may prevent purge module 261 from being released from purge module mounting bracket 262.
The setting of purification module has necessarily increased the pressure loss of indoor air outlet 1012 department, must influence the air output, however, this embodiment has set up great indoor air intake 1011 to the matching sets up air guide component, prevents to form the vortex, increases the intake, reduces air inlet side system resistance, and balanced purification module is to the influence of system pressure loss.
In order to primarily filter the air entering the indoor air inlet 1011 and prolong the service life of the purification assembly, the present embodiment includes an indoor air inlet filter screen assembly.
In this embodiment, as shown in fig. 11 to 13, the indoor air inlet 1011 is located on the top cover 16, and on the inner surface of the top cover 16, the front side and the rear side of the indoor air inlet 1011 are both provided with a slide rail 161, and the slide rail 161 is used for installing a filter screen. The filter screen is installed on the slide rail 161 and covers the indoor air inlet 1011. Wherein, the slide has both realized the installation of filter screen, has strengthened the intensity of top cap 16 again.
In the present embodiment, a filter screen mounting position is provided between the top end of the left casing 14 and the top cover 16, in which the -th filter screen 181 is mounted, and a filter screen mounting position is also provided between the right casing 15 and the top cover 16, in which the second filter screen 182 is mounted.
The structure of the th screen 181 and the second screen 182 is the same as the air conditioner, and the following description will be given only by taking the structure of the th screen 181 and the air conditioner as examples:
the filter screen 181 includes a frame 1811, guide ribs 1812 are provided on both sides of the frame 1811, the guide ribs 1812 are assembled with the slide way 161, the guide ribs can slide along the slide way 161. the frame 1811 is provided with a snap 1813 snap-fitted with the left housing 14. after the filter screen 181 is installed in place, the filter screen 181 is snap-fitted with the left housing 14 by a snap 1813, so as to realize stable assembly of the filter screen 181 and the indoor air inlet 1011.
Since the filter net is easily clogged and is frequently cleaned, a handle 1814 is provided at an end of the th frame 1811 to facilitate attachment and detachment of the th filter net 181.
When this embodiment dismouting filter screen, need not to unpack top cap 16 apart, direct 16 both sides pull from the top cap can take out, and it is convenient to wash.
An air inlet grille 10111 is arranged at the indoor air inlet 1011, wherein the air inlet grille 10111 is parallel to the length direction of the top cover 16, namely, parallel to the axis of the cross flow fan 22, so as to facilitate air inlet.
The plane where the air inlet grille 10111 and the top cover 16 are located is fixed-angle arrangement, integrated vision can be formed on the front side of the air conditioner, internal components are prevented from being exposed, and attractiveness is improved.
When the th filter screen 181 is installed, the guide ribs 1812 of the th filter screen 181 are inserted into the slide rails 161 of the top cover 16, the th filter screen 181 is pushed by the handle 1814 until the filter screen is installed in place, and then the filter screen is clamped on the left housing 14 by the th buckle 1813. when the th filter screen 181 is disassembled, the th buckle 1813 of the th filter screen 181 is separated from the left housing 14, and the th filter screen 181 is pulled out of the slide rails 161 of the top cover 16 by pulling the handle 1814.
In order to collect the condensed water of the indoor unit assembly, the indoor unit assembly of this embodiment has a water receiving device.
As shown in fig. 9 and 10, the water receiving device is formed on the framework 23 and the volute tongue 24, wherein the framework 23 is located below the second bottom end of the indoor heat exchanger 21, the volute tongue 24 is located below the th bottom end of the indoor heat exchanger 21, the volute tongue 24 is provided with a th water receiving portion 246 located at the th bottom end of the indoor heat exchanger 21, the th water receiving portion 246 is used for receiving condensed water at the th bottom end of the indoor heat exchanger 21, the th water receiving portion 246 is provided with a water leakage hole 2461 at the end, the condensed water of the th water receiving portion 246 leaks through the water leakage hole 2461 to prevent the th water receiving portion 246 from overflowing with the condensed water, the framework 23 is provided with a second water receiving portion 234 located at the second bottom end of the indoor heat exchanger 21, the second water receiving portion 234 is used for receiving the condensed water of the indoor heat exchanger 21, the end of the framework 23 is provided with a water guiding portion 235 communicated with the second water leakage hole 2461, and guides the leaked water of the water leakage hole 2461 to.
Preferably, the water guide portion 235 is partially located below the water leakage hole 2461, and directly receives the condensed water dropping from the water leakage hole 2461.
In order to ensure the smooth drainage of the th water receiving part 246, the th water receiving part 246 gradually decreases from a position far away from the water leakage hole 2461 to a position close to the water leakage hole 2461, so that the condensed water received by the th water receiving part 246 can smoothly flow into the water leakage hole 2461 and be discharged from the water leakage hole 2461 to the water guide 235.
In order to improve the drainage efficiency of the second water receiving portion, a second water leakage hole 2341 is provided in the middle of the second water receiving portion 234. Because the second water leakage hole 2341 is disposed in the middle of the second water receiving portion 234, the condensed water at the two ends of the second water receiving portion 234 can flow to the second water leakage hole 2341 quickly and be discharged, and overflow of the condensed water of the second water receiving portion 234 is avoided.
In step , in order to speed up the drainage of the second water receiving portion 234, the second water receiving portion 234 gradually decreases from a position far away from the second water leakage hole 2341 to a position close to the second water leakage hole 2341, thereby ensuring the smooth flow of water.
In order to improve the water transfer efficiency of water transfer part 235, water transfer part 235 gradually decreases from a position away from second water receiving part 234 to a position closer to second water receiving part 234.
The water guide part 235 is a groove located at the end of the framework 23, and since the framework 23 is also used for carrying the fan 22, in order to prevent the water in the water guide part 235 from affecting the fan 22, the framework 23 includes a boss 236 for carrying the fan 22, the water guide part 235 is located at the periphery of the boss 236, and the water guide part 235 is lower than the boss 236.
When the condensed water is collected, the condensed water at the bottom end of the th end of the indoor heat exchanger 21 is collected by the th water receiving portion 246, the condensed water at the second bottom end is collected by the second water receiving portion 234, the condensed water collected by the th water receiving portion 246 is discharged to the water guide portion 235 through the water leakage hole 2461, the water guide portion 235 guides the condensed water at the th water receiving portion 246 to the second water receiving portion 234, and the condensed water at the second water receiving portion 234 is discharged from the second water leakage hole 2341.
As shown in fig. 14 to 17, the outdoor unit assembly 3 will be described as follows:
the outdoor unit assembly 3 includes a second chamber 102, a housing corresponding to the second chamber 102 having a third outdoor air intake 1021, a second outdoor air intake 1022, and an outdoor air outlet 1023, a second outdoor heat exchanger 31, a second outdoor heat exchanger 32, and a bidirectional suction centrifugal fan 33 disposed in the second chamber 102, the bidirectional suction centrifugal fan 33 including a 0 suction opening 331 and a second suction opening 332, a 1 outdoor heat exchanger 31 and a second outdoor heat exchanger 32 disposed opposite to the th suction opening 331 and the second suction opening 332, the air outlet 333 of the bidirectional suction centrifugal fan 33 being in communication with the outdoor air outlet 1023, the outdoor heat exchanger 31 being for heat exchange with air drawn in through the third outdoor air intake 1021, the second outdoor heat exchanger 32 being for heat exchange with air drawn in through the second outdoor air intake 1022, i.e., when the bidirectional suction centrifugal fan 33 is operating, outdoor air is drawn in through the third outdoor air intake 1021, enters the bidirectional suction centrifugal fan 33 through the third outdoor air intake after heat exchange with the third outdoor heat exchanger 31, outdoor air is drawn in through the second outdoor air intake , outdoor heat exchanger 13, and after heat exchange with air is discharged from the second outdoor air intake 13, the outdoor heat exchanger 13, the outdoor air intake 33 is disposed between the second outdoor air intake 13, and the outdoor heat exchanger 33 is disposed between the outdoor air intake 35.
Preferably, as shown in fig. 14 and 15, the air outlet 333 is communicated with the outdoor air outlet 1023 through the funnel-shaped flow guide ring 27, so that the air volume can be effectively increased, the smooth flow of the air flow is ensured, and the flow resistance is reduced.
The embodiment sets up outdoor heat exchanger 31 and second outdoor heat exchanger 32, has improved heat exchanger efficiency greatly, and can reduce the fan rotational speed under the same condition of heat exchange efficiency, has reduced the noise, can improve user experience.
The second chamber 102 is further provided with a compressor 1024, an electrical box and other components, wherein the components are separated from other components by a second partition 1025, and the electrical box is preferably hung on the second partition 1025 and spaced from the base 17 to prevent the electrical box from being damaged due to untimely drainage of condensed water on the base 17.
The axis that two-way centrifugal fan 33 that induced drafts the fan pivot is parallel with the axis of crossflow fan 221, because two-way centrifugal fan 33's that induced drafts size leads to the interval between procapsid 12 and the back casing 13 great, therefore, leads to the space of indoor wind channel subassembly and procapsid 12 and back casing 13 great, produces the vortex easily, and the vortex is avoided to this embodiment adoption increase wind guide assembly.
In order to improve the heat exchange effect, the th outdoor heat exchanger 31 is connected with the casing for separating the th outdoor air inlet 1021 from the th air inlet 331, the second outdoor heat exchanger 32 is connected with the casing for separating the second outdoor air inlet 1022 from the second air inlet 332. specifically, the th outdoor heat exchanger 31 and the second outdoor heat exchanger 32 are respectively connected with the front casing 12, the rear casing 13, the partition 11 and the base 17, so that the air entering from the th outdoor air inlet 1021 must pass through the th outdoor heat exchanger 31, and the air entering from the second outdoor air inlet 1022 must pass through the second outdoor heat exchanger 32.
Preferably, the th outdoor heat exchanger 31 and the second outdoor heat exchanger 32 are arranged in parallel.
the outdoor air inlet 1021, the second outdoor air inlet 1022 and the outdoor air outlet 1023 are all connected with the flow guide channel 34, the flow guide channel 34 realizes the suction and discharge of the outdoor air, for the convenience of simplifying the design of the flow guide channel 34, the outdoor air inlet 1021, the second outdoor air inlet 1022 and the outdoor air outlet 1023 are all located on the same panel of the shell, in this embodiment, the outdoor air inlet 1021, the second outdoor air inlet 1022 and the outdoor air outlet 1023 are all located on the rear shell 13, when the type air conditioner with fresh air changing function is installed, the rear shell 13 is close to the wall, and the flow guide channel 34 is embedded in the wall.
Certainly, the outdoor unit assembly is not limited to the above form, the outdoor unit assembly may also only include the single-suction centrifugal fan and outdoor heat exchangers, in this case, outdoor air inlets and outdoor air outlets are arranged on the casing corresponding to the second chamber, the outdoor unit assembly may also include two single-suction centrifugal fans and two outdoor heat exchangers, and the two single-suction centrifugal fans and the two outdoor heat exchangers are respectively separated into two spaces by partition plates, so that mutual suction interference of the two centrifugal fans is avoided, and the heat exchange effect is improved by steps.
As shown in fig. 16, a grill 341 is provided on the guide passage 34. Can prevent that the rainwater from getting into the air conditioner to can reduce the windage, prevent to see the fan from the outside, increase the aesthetic property of air conditioner.
The grille 341 comprises an outer grille end 3411 and an inner grille end 3412, wherein the inner grille end 3412 is closer to the bidirectional induced draft centrifugal fan 33 than the outer grille end 3411, the height of the outer grille end 3411 is lower than the height of the inner grille end 3412, an included angle between the grille and the horizontal direction is α, and 8 degrees is < α < 12 degrees.
The included angle between the connecting line between the outer ends 3411 of the two adjacent grids 341 and the connecting line between the outer ends 3411 and the inner ends 3412 of the two adjacent grids 341 is phi, and phi is more than 10 degrees and less than 20 degrees.
The setting of this embodiment grid can enough prevent that the rainwater from getting into the air conditioner, can furthest reduce the windage again to prevent to see the part in the air conditioner from the outside, whole more pleasing to the eye.
The integral air conditioner with fresh air exchange function is installed indoors, the outdoor heat exchanger exchanges heat with outdoor air, and the outdoor heat exchanger is easy to be dirty and blocked due to poor quality of the outdoor air, so that the working efficiency of the air conditioner is affected.
As shown in fig. 17 to 23, in the present embodiment, the second chamber 102 is located below the -th chamber 101, the cleaning device 4 is installed below the partition 11, the cleaning device 4 includes a -th rinsing tank 41 located above the -th outdoor heat exchanger 31, a second rinsing tank 42 located above the second outdoor heat exchanger 32, a water diversion tank 43 and a water receiving tank 44 located between the -th rinsing tank 41 and the second rinsing tank 42, the water diversion tank 43 is respectively communicated with the -th rinsing tank 41 and the second rinsing tank 42, the water receiving tank 44 is communicated with the middle of the water diversion tank 43, the water receiving tank 44 and the water diversion tank 43 are in a "T" shape, and the water receiving tank 44 is used for receiving the condensed water of the second water receiving portion 234.
Preferably, the water receiving groove 44 is located right below the second water leakage hole 2341 of the second water receiving portion 234, a through hole 111 is formed in a position, opposite to the second water leakage hole 2341 of the second water receiving portion 234, on the partition plate 11, and the condensed water in the second water leakage hole 2341 can directly drip into the water receiving groove 44 through the through hole 111. Alternatively, a pipeline may be disposed at the second water leakage hole 2341, and the pipeline guides the condensed water at the second water leakage hole 2341 to the water receiving tank 44.
The water receiving tank 44 is connected with the middle part of the water diversion tank 43, the middle part of the th flushing tank 41 is connected with the end of the water diversion tank 43, the middle part of the second flushing tank 42 is connected with the other end of the water diversion tank 43, and the water diversion tank 43, the th flushing tank 41 and the second flushing tank 42 are in an I shape.
In order to improve the cleaning effect, the bottom surfaces of the water receiving tank 44 and the water diversion tank 43 are inclined downwards along the water flow direction to ensure that the condensed water flows smoothly, and the flow rate of the water is increased, as shown in fig. 22, the bottom surface of the water diversion tank 43 is an inclined surface, so that the condensed water can flow to two flushing tanks smoothly, and the condensed water can flow to two sides even if the body type air conditioner with the fresh air exchange function is placed slightly obliquely.
A plurality of water leakage holes 412 are formed in the bottom of the washing tank, and condensed water is sprayed onto the outdoor heat exchanger through the water leakage holes 412. The water retaining ribs 413 are arranged at the positions, close to the water diversion grooves 43, of the bottoms of the flushing grooves, so that the condensed water flowing out of the water diversion grooves 43 can uniformly flow to all positions of the flushing grooves. Meanwhile, the bottom surface of the flushing tank slightly inclines from the joint of the water diversion tank to the outer side surface, so that the condensed water can be uniformly distributed on the bottom surface, and all parts of the outdoor heat exchanger can be cleaned.
The cleaning device 4 is located between the partition 11 and the outdoor heat exchanger, specifically, the cleaning device 4 is installed on the partition 11, and preferably, the cleaning device 4 is clamped on the partition 11 through a clamping structure. The cleaning device 4 is provided with a buckle 45, the flushing tank and the water diversion tank 43 are both provided with buckles 45, and the partition plate 11 is provided with a clamping groove or a clamping hole 112. In order to ensure the stability of the assembly of the cleaning device and the partition plate 11, the cleaning device is also fixed on the partition plate 11 through screws. Cleaning device 4 and baffle 11 are removable connected mode, are convenient for cleaning device 4's maintenance. When the cleaning device 4 is installed, the buckle 45 of the cleaning device 4 is clamped on the clamping hole 112 of the partition plate, after the buckle is clamped in place, the buckle is fixed through the screw, when the cleaning device 4 is disassembled, the screw is disassembled, and the cleaning device 4 is pulled out, so that the cleaning device is very convenient and fast.
As shown in FIG. 20, the length of the flushing groove is matched with the length of the outdoor heat exchanger, the outdoor heat exchanger is connected with the shell through the tube plate 312, the tube plate 312 has the thickness of , and the thickness of the tube plate 312 is the distance between the outdoor heat exchanger and the shell, so that the air baffle 414 connected with the tube plate 312 and the partition is arranged at the end part of the flushing groove, the air baffle 414 is connected with the shell, and the thickness of the air baffle 414 is the same as that of the tube plate, so that the outdoor heat exchanger and the flushing groove jointly separate the outdoor air inlet from the air suction inlet of the bidirectional centrifugal fan, and the heat exchange efficiency of the outdoor heat exchanger is improved.
The condensed water generated by the indoor heat exchanger is collected to the second water receiving portion 234, and the condensed water is discharged to the water receiving tank 44 through the second water leakage hole 2341 of the second water receiving portion 234 and the through hole 111 of the partition plate 11, flows to the water diversion groove 43 along the water receiving tank 44, is guided to the -th flushing tank 41 and the second flushing tank 42 on the two sides by the water diversion groove 43, and flows to the fins of the outdoor heat exchanger through the water leakage hole 412 formed in the bottom of the flushing tank to be flushed.
This embodiment can also be when clean air conditioner indoor heat exchanger, with the washing liquid drainage to outdoor heat exchanger that indoor heat exchanger sprayed, wash outdoor heat exchanger simultaneously, therefore, this embodiment only needs clean indoor heat exchanger can wash outdoor heat exchanger simultaneously, need not to wash outdoor heat exchanger alone, makes the cleanness of air conditioner simpler.
In order to receive water from the outdoor heat exchanger, as shown in fig. 24-25, a water receiving structure is disposed on the base 17, the water receiving structure includes a concave drainage ring 171, a drainage hole 172 is disposed on the concave drainage ring 171 for draining water, an inclination angle is formed between an outer edge of the concave drainage ring 171 and the drainage hole 172, so as to prevent water accumulation and enable water drainage to be smoother, the drainage hole 172 can be directly connected to a drainage pipe to drain water to the outdoor, and a water receiving device can be disposed at the bottom of the base 17.
The body type air conditioner with the fresh air changing function has the advantages that the indoor space is limited, the space is saved, and a user can conveniently use the air conditioner, the top of the shell of the body type air conditioner with the fresh air changing function is detachably provided with the desktop, the body type air conditioner with the fresh air changing function can be used as a desk and provides convenience for the user.
In order to not influence the air inlet of the indoor air inlet of the body type air conditioner with the fresh air exchange function, the gap between the tabletop and the top of the shell is 150mm-200 mm.
Certainly, the present invention does not limit the specific positions of the th chamber and the second chamber, for example, in another embodiment of the present invention, as shown in fig. 26 to 28, the th chamber 101 and the second chamber 102 are arranged in parallel, the th chamber 101 is located at the front of the second chamber 102, the arrangement of the indoor unit assembly of the th chamber 101 and the outdoor unit assembly of the second chamber 102 is not changed, and at this time, a water pump and other assemblies need to be added to pump the condensed water of the second water receiving portion 234 into the water receiving tank 44.
The above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions.

Claims (20)

1, A body type air conditioner with fresh air exchange function is characterized by comprising a shell and a partition board positioned in the shell, wherein the partition board divides the space in the shell into a th cavity and a second cavity, the th cavity is divided into a th space and a second space through a th partition board, the shell corresponding to the th space is provided with an indoor air inlet and an indoor air outlet, an indoor heat exchanger, a cross flow fan and an indoor air duct assembly are sequentially arranged between the indoor air inlet and the indoor air outlet in the th space, the shell corresponding to the second space is provided with a fresh air inlet and a fresh air outlet, the fresh air inlet is communicated with the outside through a fresh air pipeline, the shell corresponding to the second cavity is provided with an outdoor air inlet and an outdoor air outlet, and an outdoor heat exchanger and a centrifugal fan are sequentially arranged between the outdoor air inlet and the outdoor air outlet.
2. The body air conditioner with fresh air exchange function as claimed in claim 1, wherein a fresh air centrifugal fan is disposed in the second space, and the axis of the fresh air centrifugal fan is in the same direction as the axis of the cross flow fan.
3. The type air conditioner with fresh air changing function according to claim 1, wherein a wind guide assembly is disposed between the indoor air inlet and the indoor air duct assembly, the wind guide assembly includes a th flow guide block and a second flow guide block located at two sides of the indoor heat exchanger, the th flow guide block and the second flow guide block are both connected to the indoor air inlet and the indoor air duct assembly, an opposite surface of the th flow guide block and the second flow guide block is a th flow guide surface, and an opposite surface of the second flow guide block and the th flow guide block is a second flow guide surface.
4. The type air conditioner with fresh air changing function as claimed in claim 3, wherein the th deflector surface is disposed at an angle of with respect to the second deflector surface.
5. The style air conditioner with fresh air exchange function as claimed in claim 4, wherein the th and second guiding surfaces diverge from the indoor air inlet to the air duct assembly.
6. The style air conditioner with fresh air exchange function of claim 3, wherein the indoor air duct assembly comprises a frame and a volute tongue, the th deflector connects the indoor air inlet and the volute tongue, and the second deflector connects the indoor air inlet and the frame.
7. The body air conditioner with fresh air exchange function of claim 6, wherein the second deflector block is provided with an arc-shaped deflector surface near the framework.
8. An indoor unit of an air conditioner as defined in claim 6 wherein the th deflector and the second deflector are each provided with a slot, the th deflector is inserted into the volute tongue through the slot, and the second deflector is inserted into the frame through the slot.
9. The body air conditioner with fresh air exchange function of claim 6, wherein the frame has a frame extension, the volute tongue has a volute tongue extension, and the frame extension and the volute tongue extension form a divergent duct extension.
10. An indoor air supply assembly of an air conditioner as recited in claim 9, wherein a volute tongue extending block is disposed at an end of the volute tongue close to the fan, the volute tongue extending block has an th flow guide surface parallel to a tangent of the fan, and the th flow guide surface is connected with the volute tongue flow guide surface.
11. An indoor air supply assembly for an air conditioner as defined in claim 10 wherein, said volute extension block has a second flow directing surface degrees from said flow directing surface, said second flow directing surface facing toward the indoor heat exchanger above said volute.
12. An indoor air supply assembly for an air conditioner as set forth in claim 11, wherein said second flow guide surface faces toward a bottom end of the indoor heat exchanger above said volute tongue.
13. The body air conditioner with fresh air exchange function as claimed in claim 9, wherein a purification module is installed at the end of the air duct extension part near the indoor air outlet.
14. The body air conditioner with fresh air exchange function of claim 6, wherein the volute tongue is provided with a water receiving portion at the bottom end of the of the indoor heat exchanger, the skeleton is provided with a second water receiving portion at the second bottom end of the indoor heat exchanger, the end of the water receiving portion is provided with a water leakage hole, the end of the skeleton is provided with a water guiding portion communicated with the second water receiving portion, and the water guiding portion is used for receiving water in the water leakage hole.
15. The body air conditioner with fresh air exchange function of claim 14, wherein the end of the water receiving part far from the water leakage hole is gradually lowered towards the end of the water leakage hole.
16. The style air conditioner with fresh air exchange function of claim 14, wherein the second chamber is located below the th chamber, a cleaning device is installed below the partition plate, the cleaning device comprises a th flushing tank located above the th outdoor heat exchanger, a second flushing tank located above the second outdoor heat exchanger, a diversion tank located between the th flushing tank and the second flushing tank, and a water receiving tank, the diversion tank is communicated with the th flushing tank and the second flushing tank, the water receiving tank is communicated with the middle of the diversion tank, and the water receiving tank is used for receiving water of the second flushing portion.
17. The body air conditioner with fresh air exchange function according to claim 1, wherein a filter module corresponding to the indoor air inlet is disposed in the casing, and a mounting slide for mounting the filter module is disposed in the casing.
18. The type air conditioner with fresh air exchange function as claimed in claim 1, wherein the th and second chambers are arranged in parallel.
19. The body air conditioner with fresh air exchange function as claimed in claim 1, wherein a tabletop is detachably mounted on the top of the casing.
20. The style air conditioner with fresh air exchange function as claimed in claim 19, wherein the gap between the tabletop and the top of the casing is 150-200 mm.
CN201810792942.6A 2018-07-18 2018-07-18 Integrated air conditioner with fresh air exchanging function Active CN110736149B (en)

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PCT/CN2019/096420 WO2020015688A1 (en) 2018-07-18 2019-07-17 Integrated air conditioner having fresh air function

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CN112432245A (en) * 2020-11-16 2021-03-02 苏州三星电子有限公司 Mobile air conditioner with fresh air function
CN114216162A (en) * 2021-12-16 2022-03-22 珠海格力节能环保制冷技术研究中心有限公司 Fresh air conditioner
WO2023124492A1 (en) * 2021-12-31 2023-07-06 海信(广东)空调有限公司 Outdoor unit

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