WO2022052568A1 - Integrated air conditioner - Google Patents
Integrated air conditioner Download PDFInfo
- Publication number
- WO2022052568A1 WO2022052568A1 PCT/CN2021/102164 CN2021102164W WO2022052568A1 WO 2022052568 A1 WO2022052568 A1 WO 2022052568A1 CN 2021102164 W CN2021102164 W CN 2021102164W WO 2022052568 A1 WO2022052568 A1 WO 2022052568A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- heat exchanger
- air
- volute
- air duct
- duct assembly
- 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.)
- Ceased
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Classifications
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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
- F24F1/00—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
- F24F1/02—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
- F24F1/028—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by air supply means, e.g. fan casings, internal dampers or ducts
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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
- F24F1/00—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
- F24F1/02—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
- F24F1/032—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by heat exchangers
- F24F1/0323—Self-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
Definitions
- the present application relates to the field of air treatment equipment, and in particular, to an integrated air conditioner.
- a mobile air conditioner or a portable air conditioner is usually used.
- This type of air conditioner has a relatively small volume and is more convenient to move.
- the air inlets and air outlets of the mobile air conditioners in the related art are set unreasonably, resulting in low working efficiency of the whole machine.
- an object of the present application is to provide an integrated air conditioner, which has large air intake, sufficient heat exchange, high work efficiency, and is convenient to move and carry during operation.
- An integrated air conditioner includes: a casing, a first air inlet, a first air outlet, a second air inlet and a second air outlet are formed on a circumferential side wall of the casing, the There are two first air inlets and are located on opposite sides of the casing in a first direction, the first direction is parallel to the horizontal direction, and in the circumferential direction of the casing, the first air outlets are Located between the two first air inlets; a first air duct assembly, the first air duct assembly is arranged in the casing, and the first air duct assembly includes a first fan component and a first heat exchange
- the first fan member includes a first fan wheel, the first fan wheel is a centrifugal fan wheel, and the first fan member is used to drive airflow from the first air inlet into the first air duct After exchanging heat with the first heat exchanger component in the assembly, it is discharged from the first air outlet; the second air duct assembly, the second air duct assembly is arranged in the casing,
- the second air inlet enters the second air duct assembly and exchanges heat with the second heat exchanger part and then is discharged from the second air outlet; when the air conditioner is working, the first heat exchanger part and One of the second heat exchanger components is an evaporator and the other is a condenser.
- the integrated air conditioner of the embodiment of the present application by arranging the two first air inlets opposite to each other on the casing, the air intake area can be increased, thereby increasing the air intake volume, so that the first heat exchanger component and more The airflow is fully heat-exchanged and the working efficiency of the whole machine is improved.
- the first air outlet located between the two first air inlets in the circumferential direction of the casing By making the first air outlet located between the two first air inlets in the circumferential direction of the casing, the air inlet from both sides and the air outlet from one side can be realized, and the flow of airflow can be realized. It is more reasonable, and the mutual influence between the first air inlet and the first air outlet is small, which further improves the working efficiency of the whole machine, and the integrated air conditioner is convenient to move and carry.
- the first air outlet and the second air outlet are respectively formed on two opposite side walls of the casing in a second direction, the second direction being parallel to the horizontal direction and perpendicular to the first direction.
- the second fan component includes a second fan wheel
- the second fan wheel is an axial flow fan wheel, a diagonal flow fan wheel, a centrifugal fan wheel or a counter-cyclone fan wheel.
- the first air duct assembly is located above the second air duct assembly, the second heat exchanger components are two opposite and spaced apart, and the second fan component Both the compressor and the compressor are located between the two second heat exchanger components; or, the compressor is located between the two second heat exchanger components, and the second fan component is provided on the Above the second heat exchanger part and between the first air duct assembly and the second heat exchanger part.
- the number of the first heat exchanger components is two, the two first heat exchanger components are arranged opposite and spaced apart in the first direction, and the first fan component is provided with Between the two first heat exchanger components, the two first air inlets and the two first heat exchanger components are respectively arranged correspondingly.
- the first air duct assembly includes a volute assembly, and the volute assembly defines a first air duct that communicates with the first air inlet and the first air outlet,
- the first fan component and the two first heat exchanger components are both disposed in the first air duct.
- the volute assembly includes a first volute and a second volute opposite and connected in the first direction, one of the two first heat exchanger components being connected to The first volute is connected, and the other of the two first heat exchanger components is connected to the second volute.
- the first volute and the second volute are both independently formed parts, and the first volute and the second volute are detachably connected.
- the first volute includes a first volute portion and a first mounting portion
- the second volute includes a second volute portion and a second mounting portion
- the first volute includes a second volute portion and a second mounting portion
- a volute part is adjacent to and connected to the second volute part
- the first installation part is located on the side of the first volute part away from the second volute
- the second installation part is located at the side of the first volute part away from the second volute a side of the second volute part away from the first volute
- the first fan component is located in the fan cavity jointly defined by the first volute part and the second volute part
- the The first installation part defines a first heat exchange cavity
- the second installation part defines a second heat exchange cavity
- one of the two first heat exchanger components is located in the first heat exchange cavity
- the two The other one of the first heat exchanger components is located in the second heat exchange cavity
- the fan cavity, the first heat exchange cavity and the second heat exchange cavity all constitute the first air duct. part.
- the first installation part is formed with a first installation gap that communicates with the first heat exchange cavity, and one of the two first heat exchanger components is adapted to pass through the first installation gap is mounted on the first heat exchange chamber, the second mounting portion is formed with a second mounting notch communicating with the second heat exchange chamber, and the other of the two first heat exchanger components is adapted to It is mounted to the second heat exchange cavity through the second mounting notch.
- both the first installation notch and the second installation notch are adjacent to the first air outlet
- the first air duct assembly further includes a cover plate, the cover plate is provided on the volute assembly and covers The first installation notch and the second installation notch define an outlet of the first air duct in the cover plate.
- the first heat exchanger component includes a first heat exchanger and first connecting plates disposed on opposite sides of the first heat exchanger, and two of the first heat exchanger components One of the first connecting plates is connected to the first mounting portion or the second mounting portion, and the other of the two first connecting plates of the first heat exchanger component is connected to the cover plate connected.
- the integrated air conditioner includes: a bracket partition plate, the bracket partition plate is arranged in the cabinet to partition the inner cavity of the cabinet into first and lower arranged first
- the first accommodating cavity is located above the second accommodating cavity
- the first air duct assembly is provided in the first accommodating cavity
- the second air duct assembly is provided in the first accommodating cavity.
- the second accommodating cavity, the first air inlet and the first air outlet are formed on the side wall of the first accommodating cavity, and the second air inlet and the second air outlet are formed in the On the side walls of the two accommodating chambers, both the first air duct assembly and the second air duct assembly are connected to the bracket partition, and the bracket partition is formed with a first connection hole and a positioning hole.
- the first air duct assembly is formed with a second connection hole and a positioning column matched with the positioning hole, and a fastener is suitable for passing through the first connection hole and the second connection hole to connect the first connection hole and the second connection hole.
- the integrated air conditioner includes: a bracket partition plate, the bracket partition plate is arranged in the cabinet to partition the inner cavity of the cabinet into first and lower arranged first
- the first accommodating cavity is located above the second accommodating cavity
- the first air duct assembly is provided in the first accommodating cavity
- the second air duct assembly is provided in the first accommodating cavity.
- the second accommodating cavity, the first air inlet and the first air outlet are formed on the side wall of the first accommodating cavity, and the second air inlet and the second air outlet are formed in the On the side walls of the two accommodating chambers, the first air duct assembly and the second air duct assembly are both connected to the bracket partition, and the upper end of the second fan component is connected to the bracket partition.
- the lower end of the second fan component is connected to the base of the casing.
- the second heat exchanger component comprises a second heat exchanger and first and second connection lugs provided on the second heat exchanger, the first connection The lugs are connected with the first air duct assembly, and the second connection lugs are connected with the base of the casing.
- the casing is in the shape of a cuboid
- the height of the casing is in the range of 350-500 mm
- the length of the casing is in the range of 180-250 mm
- the width of the casing is in the range of 180-500 mm. 250mm.
- FIG. 1 is a perspective view of an integrated air conditioner according to some embodiments of the present application.
- FIG. 2 is a perspective view of the integrated air conditioner of FIG. 1 from another angle;
- FIG. 3 is a perspective view of the internal structure of the integrated air conditioner in FIG. 1;
- FIG. 4 is a perspective view of the internal structure of the integrated air conditioner in FIG. 3 from another angle;
- FIG. 5 is a front view of the integrated air conditioner in FIG. 1;
- Fig. 6 is a sectional view along line A-A in Fig. 5;
- FIG. 7 is a rear view of the integrated air conditioner in FIG. 1;
- Fig. 8 is a sectional view along line B-B in Fig. 7;
- Figure 9 is an exploded view of the integrated air conditioner in Figure 1;
- Fig. 10 is a perspective view of the box body of the integrated air conditioner in Fig. 1;
- Figure 11 is a perspective view of the box in Figure 10 from another angle;
- Figure 12 is a perspective view of the first scroll casing of the integrated air conditioner in Figure 1;
- Figure 13 is a perspective view of the second scroll casing of the integrated air conditioner in Figure 1;
- Figure 14 is a perspective view of the second volute of Figure 13 from another angle;
- FIG. 15 is a perspective view of a motor bracket of the integrated air conditioner in FIG. 1;
- FIG. 16 is a perspective view of the first motor of the integrated air conditioner in FIG. 1;
- Figure 17 is a perspective view of the first motor of Figure 16 from another angle;
- Figure 18 is a perspective view of the first heat exchanger component of the integrated air conditioner of Figure 1;
- Fig. 19 is a perspective view of a cover plate of the integrated air conditioner in Fig. 1;
- Figure 20 is a perspective view of a bracket partition of the integrated air conditioner in Figure 1;
- Figure 21 is a perspective view of the second fan component of the integrated air conditioner in Figure 1;
- Figure 22 is a perspective view of the second heat exchanger component of the integrated air conditioner of Figure 1;
- Figure 23 is a perspective view of the base of the integrated air conditioner in Figure 1;
- Fig. 24 is a perspective view of the compressor of the integrated air conditioner in Fig. 1;
- 25 is a perspective view of a partial structure of an integrated air conditioner according to other embodiments of the present application.
- Fig. 26 is a partial structural perspective view of the integrated air conditioner in Fig. 25 from another angle;
- FIG. 27 is an exploded view of a partial structure of the integrated air conditioner in FIG. 26 .
- the first fan component 2 the first wind wheel 21; the first motor 22; the motor shaft 221; the eighth fixing hole 222;
- bracket 44 bracket main body 441; seventh fixing hole 4411; connecting arm 442; sixth fixing hole 4421;
- cover plate 45 outlet 451; fourth fastening hole 452;
- second heat exchanger part 6 second heat exchanger 61; first connecting lug 62; second connecting lug 63;
- bracket partition 7 first connecting hole 71; positioning hole 72; fourth connecting hole 73;
- Compressor 8 compressor body 81; accumulator 82.
- the integrated air conditioner 100 according to the embodiment of the present application will be described below with reference to the accompanying drawings (the direction of the arrow in FIGS. 6 and 8 is the direction of airflow).
- the all-in-one air conditioner 100 can be placed on the indoor floor, countertop, etc., to achieve rapid cooling or heating of the entire indoor space or part; the all-in-one air conditioner 100 can also be carried outdoors to achieve local rapid Cool down or warm up.
- the integrated air conditioner 100 includes: a cabinet 10 , a first air duct assembly 20 and a second air duct assembly 50 .
- a first air inlet 111 , a first air outlet 113 , a second air inlet 112 and a second air outlet 114 are formed on the circumferential side wall of the casing 10 , and the external air flow can pass through the first air inlet 111 and the second air inlet 112 Entering into the casing 10 , the air after heat exchange can be discharged out of the casing 10 through the first air outlet 113 and the second air outlet 114 .
- the first air duct assembly 20 and the second air duct assembly 50 are arranged in the casing 10, and the first air duct assembly 20 and the second air duct assembly 50 are arranged in the up-down direction. Above the second air duct assembly 50 , the second air duct assembly 50 may also be located above the first air duct assembly 20 .
- the first air duct assembly 20 includes a first fan part 2 and a first heat exchanger part 3, and the first heat exchanger part 5 can be a straight row heat exchanger.
- the first fan part 2 can include a first fan wheel 21 and a first heat exchanger.
- a motor 22, the motor shaft 221 of the first motor 22 is connected with the first wind wheel 21 to drive the first wind wheel 21 to rotate.
- the first wind wheel 21 may be a centrifugal wind wheel, so that the noise generated when the first wind wheel 21 is rotated can be reduced.
- the first fan part 2 is used to drive the air flow from the first air inlet 111 into the first air duct assembly 20, and the air entering the first air duct assembly 20 can be discharged from the first outlet after heat exchange with the first heat exchanger part 3.
- the tuyere 113 is discharged.
- the second air duct assembly 50 includes a second fan part 5 and a second heat exchanger part 6 , and the second heat exchanger part 6 may be a straight row heat exchanger.
- the second fan component 5 may include a second fan wheel 51 and a second motor, and the motor shaft of the second motor is connected with the second fan wheel 51 to drive the second fan wheel 51 to rotate.
- the second fan part 5 is used to drive the air flow from the second air inlet 112 into the second air duct assembly 50 , and the air entering the second air duct assembly 50 can pass through the second air outlet after heat exchange with the second heat exchanger part 6 .
- the tuyere 114 is discharged.
- the casing 10 includes a box body 11 and a base 12 disposed at the bottom of the box body 11
- the first air inlet 111 , the first air outlet 113 , the second air inlet 112 and the second air outlet 114 are formed in the On the box body 11
- the first air inlet 111 , the first air outlet 113 , the second air inlet 112 and the second air outlet 114 can all be formed into a grid-like structure
- the compressor 8 of the integrated air conditioner 100 can be arranged on the base On top of 12 and within the casing 10
- the compressor 8 may include a compressor body 81 and an accumulator 82 .
- the bottom of the box body 11 is open, the base 12 is arranged at the bottom of the box body 11 and covers the open end of the box body 11 , the base 12 is connected with the box body 11 , for example, the base 12 and the box body 11 can be connected by fasteners.
- the box body 11 is provided with a first fixing hole 115
- the base 12 is provided with a second fixing hole 121 , through which the fasteners can pass through.
- the first fixing hole 115 and the second fixing hole 121 are used to connect the box body 11 to the base 12 .
- one of the first heat exchanger part 3 and the second heat exchanger part 6 is an evaporator and the other is a condenser.
- the second heat exchanger part 6 is used as a condenser; when the first heat exchanger part 3 is used as a condenser, the second heat exchanger part 6 is used as an evaporator.
- the first heat exchanger part 3 can be used as an evaporator
- the second heat exchanger part 6 can be used as a condenser
- the external air flows on the first wind wheel 21 of the first air duct assembly 20
- the temperature of the airflow will decrease, and the cooled airflow can be discharged from the first air outlet 113, so that the first air outlet 113 can blow cold air
- the second wind wheel 51 of the second air duct assembly 50 after the heat exchange by the second heat exchanger part 6, the temperature of the airflow will increase, and the heated airflow can be discharged from the second air outlet 114, so that the Hot air is blown out from the second air outlet 114 .
- the first air outlet 113 can blow air toward the user or indoors, which can achieve partial cooling or cooling of the entire indoor space, and the second air outlet 114 can be directed toward Indoors, local cooling can be achieved at this time, and the second air outlet 114 can also be led to the outdoors through an exhaust pipe, and at this time, cooling of the entire indoor space can be achieved.
- the first heat exchanger part 3 can be used as a condenser
- the second heat exchanger part 6 can be used as an evaporator
- the external air flows through the first wind wheel 21 of the first air duct assembly 20
- the temperature of the air flow will increase, and the increased air flow can be discharged from the first air outlet 113, so that the first air outlet 113 can blow hot air
- the second wind wheel 51 of the second air duct assembly 50 the temperature of the airflow will decrease after heat exchange through the second heat exchanger part 6, and the cooled airflow can be discharged from the second air outlet 114, thereby Cold air can be blown out from the second air outlet 114 .
- the first air outlet 113 can blow air toward the user or indoors, which can achieve local heating or heating of the entire indoor space, and the second air outlet 114 It can be directed indoors, and local heating can be achieved at this time, and the second air outlet 114 can also be led to the outdoors through an exhaust pipe, and at this time, heating of the entire indoor space can be achieved.
- first air inlets 111 There may be two first air inlets 111, and the two first air inlets 111 may be located on opposite sides of the casing 10 in the first direction (refer to the e1 direction in the drawings, for example, the first direction may be the left-right direction), The first direction is parallel to the horizontal direction.
- the air intake area can be increased, thereby increasing the air intake volume, so that more airflow can fully exchange heat with the first heat exchanger component 3, and the working efficiency of the integrated air conditioner 100 can be improved.
- the cooling efficiency can be improved, and when the first heat exchanger part 3 is a condenser, the heating efficiency can be improved.
- the first direction may be the left-right direction
- the two first air inlets 111 may be formed on the left and right side walls of the casing 10 respectively.
- the outer contour of the first air inlet 111 on the left side wall may be disposed adjacent to the outer periphery of the left side wall of the casing 10
- the outer contour of the first air inlet 111 on the right side wall of the casing 10 may be adjacent to the right side of the casing 10
- the outer periphery of the wall is arranged, so that the air intake area can be further increased, and the working efficiency of the integrated air conditioner 100 can be further improved.
- the first air outlet 113 is located between the two first air inlets 111, which can realize air intake from both sides and air outlet from one side, and the flow of air is more reasonable.
- the mutual influence between the air inlet and the first air outlet is small, which further improves the working efficiency of the whole machine.
- the casing 10 can be in the shape of a rectangular parallelepiped, so that the structure of the casing 10 is simple, and the appearance of the whole machine is also simple.
- the overall volume of the integrated air conditioner 100 is relatively small.
- the height of the casing 10 may be 350-500 mm
- the length of the casing 10 may be 180-250 mm
- the width of the casing 10 may be 180-250 mm.
- the height refers to the size in the vertical direction
- the width and length refer to the size in the horizontal direction.
- the integrated air conditioner 100 of the embodiment of the present application by arranging the two first air inlets 111 opposite to each other on the casing 10, the air intake area can be increased, thereby increasing the air intake volume, so that the first heat exchanger component 3 It can fully exchange heat with more airflow and improve the working efficiency of the whole machine.
- the first air outlet 113 located between the two first air inlets 111 in the circumferential direction of the casing 10, it is possible to achieve both sides air intake and single air intake. With side air outlet, the flow of air flow is more reasonable, and the mutual influence between the first air inlet 111 and the first air outlet 113 is small, which further improves the working efficiency of the whole machine; in addition, the integrated air conditioner 100 is convenient to move and carry .
- the first air outlet 113 and the second air outlet 114 are respectively formed on the casing 10 in the second direction (refer to the e2 direction in the drawings).
- the second direction may be the front and rear direction
- the second direction is parallel to the horizontal direction and perpendicular to the first direction.
- the first air outlet 113 and the second air outlet 114 are farther apart, which can reduce the influence of the air out between the first air outlet 113 and the second air outlet 114, for example, the first air outlet 113 blows out cold air and When the second air outlet 114 blows out the hot air, the user faces the first air outlet 113 to achieve a local cooling effect. The influence of the cold air blown out from the air outlet 113 .
- the second fan component 5 includes a second fan wheel 51 , and the second fan wheel 51 is an axial flow fan wheel, Diagonal flow fan, centrifugal fan or counter-cyclone.
- the second wind wheel 51 is one wind wheel
- the second wind wheel 51 can be an axial flow wind wheel, a diagonal flow wind wheel or a centrifugal wind wheel;
- the second wind wheel 51 is two wind wheels, the two wind wheels Constructing a pair of cyclone wind wheels, the two wind wheels are both axial flow wind wheels or diagonal flow wind wheels. Therefore, different types of the second wind wheel 51 can be used as required, so that the structure of the whole machine can be set more flexibly and compactly.
- the arrangement of the first wind wheel 21 and the second wind wheel 51 may include the following situations: (1) the first wind wheel 21 is a centrifugal wind wheel, and the second wind wheel 51 is a centrifugal wind wheel; (2) the first wind wheel 21 is a centrifugal wind wheel, and the second wind wheel 51 is an axial flow wind wheel; (3) the first wind wheel 21 is a centrifugal wind wheel, and the second wind wheel 51 is a diagonal flow wind wheel; (4) the first wind wheel 21 is a centrifugal wind wheel Wind wheel, the second wind wheel 51 is a counter-cyclone wheel.
- the first air duct assembly 20 is located above the second air duct assembly 50 , and the second heat exchanger component 6 is opposite and Two spaced apart, by setting the second air duct assembly 50 to include two second heat exchanger components 6, the airflow entering the second air duct assembly 50 from the second air inlet 112 can be simultaneously mixed with the two air duct assemblies 50.
- the second heat exchanger component 6 performs heat exchange, which increases the heat exchange area and improves the working efficiency of the integrated air conditioner 100 .
- the second fan component 5 and the compressor 8 may both be located between the two second heat exchanger components 6 .
- the integrated air conditioner 100 has a compact overall structure, a smaller volume, and is easier to move and carry.
- the two second heat exchanger parts 6 may be arranged in the first direction
- the second fan part 5 and the compressor 8 may both be located between the two second heat exchanger parts 6 and spaced in the second direction
- the open arrangement can reduce the resistance of the airflow in the flow process of the second fan assembly, reduce the working noise and improve the working efficiency.
- the first fan member 2 may include a first fan wheel 21, which is a centrifugal fan wheel
- the second fan member 5 may include a second fan wheel 51, which is an axial flow fan wheel Or oblique flow fan. This arrangement makes the whole structure more compact and reasonable.
- the compressor 8 is located between the two second heat exchanger parts 6
- the second fan part 5 is provided above the second heat exchanger part 6 and is located between the first air duct assembly 20 and between the second heat exchanger components 6 . Therefore, the structure setting of the whole machine is more flexible.
- the first fan member 2 may include a first fan rotor 21
- the second fan member 5 includes a second fan rotor 51 . Both the first fan rotor 21 and the second fan rotor 51 are centrifugal fan rotors. This arrangement makes the structure of the whole machine more flexible, and since the first wind wheel 21 and the second wind wheel 51 are both centrifugal wind wheels, the overall working noise is low.
- the first heat exchanger parts 3 may be in-line heat exchangers, and the two first heat exchanger parts 3 are opposite to each other in the first direction and Spaced apart, the first fan part 2 is disposed between the two first heat exchanger parts 3 , and the two first air inlets 111 are respectively disposed corresponding to the two first heat exchanger parts 3 .
- the first fan part 2 is used to drive the air flow into the first air duct assembly 20 from the two first air inlets 111 , and the air entering the first air duct assembly 20 can exchange heat with the two first heat exchanger parts 3 . It is discharged from the first air outlet 113 .
- the airflow entering the first air duct assembly 20 from the first air inlet 111 can be simultaneously mixed with the two first heat exchanger parts 3. Heat exchange is performed, the heat exchange area is increased, and the working efficiency of the integrated air conditioner 100 is improved, for example, the cooling or heating efficiency can be improved.
- the two first heat exchanger parts 3 are arranged to be opposite and spaced apart, compared with arranging the two first heat exchanger parts 3 side by side and adjacent to each other, by arranging the two first heat exchanger parts 3 to be opposite and spaced apart Open setting can significantly reduce wind resistance, increase air output, reduce energy consumption, and improve heat exchange efficiency.
- the first fan part 2 is arranged between the two first heat exchanger parts 3, so that the integrated air conditioner 100 has a compact structure and a small volume, which is convenient to move and carry, for example, it is convenient to move from one room to another A room, or easy to carry outdoors.
- the first air outlet 113 can pass through the To adjust the indoor temperature or local temperature, since the first air duct assembly 20 is set to include two first heat exchanger parts 3, the cooling efficiency can be improved, and the second air duct assembly 50 is set to include two second heat exchangers The component 6 can improve the cooling efficiency of the condenser, thereby further improving the overall performance of the integrated air conditioner 100 .
- the two first air inlets 111 and the two first heat exchanger parts 3 may be respectively corresponding to and opposite to each other, so that the two first air inlets 111 are respectively disposed adjacent to the corresponding first heat exchanger parts 3, so that the Reduce airflow path, reduce flow loss, improve heat exchange effect and air output.
- the first direction may be the left-right direction
- the two first heat exchanger components 3 are opposite and spaced apart in the left-right direction
- the two first air inlets 111 may be formed on the left and right side walls of the casing 10 respectively.
- the outer contour of the first air inlet 111 can be rectangular, and the outer contour of the first air inlet 111 located on the left side wall of the casing 10 can be disposed adjacent to the outer periphery of the left side wall of the casing 10, located on the right side of the casing 10
- the outer contour of the first air inlet 111 of the wall can be disposed adjacent to the outer periphery of the right side wall of the cabinet 10 , thereby further increasing the air inlet area and further improving the working efficiency of the integrated air conditioner 100 .
- the integrated air conditioner 100 includes the above-mentioned cabinet 10 , the first air duct assembly 20 , the first air duct assembly 20 , the The second air duct assembly 50 and the bracket partition 7.
- the bracket partition 7 is arranged in the casing 10.
- the bracket partition 7 can be arranged in the middle of the casing 10, so that the inner cavity of the casing 10 can be divided into upper and lower parts.
- the first accommodating cavity and the second accommodating cavity are arranged so that the first accommodating cavity and the second accommodating cavity can be separated, wherein the first accommodating cavity can be located above the second accommodating cavity, and the first air duct assembly 20 can be Set in the first accommodating cavity, the second air duct assembly 50 may be set in the second accommodating cavity.
- the first air duct assembly 20 includes two first heat exchanger parts 3 opposite and spaced apart in the first direction, and the first fan part 2 is located between the two first heat exchanger parts 3; the second air duct The assembly 50 includes two second heat exchanger parts 6 opposite and spaced apart in the first direction, the compressor 8 and the second fan are located between the two second heat exchanger parts 6, or the compressor 8 is located between the two second heat exchanger parts 6. Between the second heat exchanger components 6 and the second fan component 5 is located between the second heat exchange component and the first air duct assembly 20 .
- first air inlets 111 There are two first air inlets 111 , two second air inlets 112 , and one first air outlet 113 and one second air outlet 114 .
- the two first air inlets 111 are formed on the side walls of the first accommodating cavity in the first direction, for example, the two first air inlets 111 are formed on the left and right side walls of the first accommodating cavity, and the first outlet
- the air outlet 113 is formed on the side wall of the first accommodating cavity in the second direction.
- the first air outlet 113 is formed on the front side wall of the first accommodating cavity.
- the outer contour of the tuyere 113 may be rectangular.
- Two second air inlets 112 are formed on the side wall of the second accommodating cavity in the first direction, for example, two second air inlets 112 are formed on the left and right side walls of the second accommodating cavity, and the second outlet
- the air outlet 114 is formed on the side wall of the second accommodating cavity in the second direction.
- the second air outlet 114 is formed on the rear side wall of the second accommodating cavity.
- the outer contour of the tuyere 114 may be circular.
- the first air duct assembly 20 includes a volute assembly, for example, the first wind wheel 21 may It is a centrifugal wind wheel, and a first air duct 43 is defined in the volute assembly.
- the first air duct 43 communicates with the first air inlet 111 and the first air outlet 113, the first fan part 2 and the two first heat exchanger parts 3. Both are located in the first air duct 43 .
- the air flow entering from the first air inlet 111 can flow into the first air duct 43, and after the air entering the first air duct 43 exchanges heat with the two first heat exchanger parts 3, The air is discharged from the first air outlet 113, thereby making the structure of the first air duct assembly 20 simple and the number of parts and components smaller, so that the structure and weight of the whole machine can be set smaller.
- the volute assembly may include a first volute 41 and a second volute 42 that are opposite and connected in the first direction, and one of the two first heat exchanger components 3 is connected to the first volute 41, for example, two One of the first heat exchanger parts 3 may be connected to the end of the first volute 41 away from the second volute 42, and the other of the two first heat exchanger parts 3 is connected to the second volute 42, For example the other of the two first heat exchanger parts 3 may be connected at the end of the second volute 42 remote from the first volute 41 . Therefore, the overall structure of the first air duct assembly 20 is compact and the layout is reasonable.
- the first volute 41 and the second volute 42 may be independent molded parts, and the first volute 41 and the second volute 42 are detachably connected, for example, the first volute 41 and the second volute 42 They can be connected by fasteners, which facilitates the assembly and maintenance of the first air duct assembly 20 .
- the first volute 41 may be provided with a plurality of third fixing holes 4111
- the plurality of third fixing holes 4111 may be arranged at intervals along the circumferential direction of the first volute 41
- the second volute 42 may be provided with a plurality of third fixing holes 4111 .
- a plurality of fourth fixing holes 4211, a plurality of fourth fixing holes 4211 can be arranged at intervals along the circumference of the second volute 42, the number of the third fixing holes 4111 and the fourth fixing holes 4211 are the same and correspond one-to-one, the fasteners Pass through each pair of the third fixing holes 4111 and the fourth fixing holes 4211 to connect the first volute 41 and the second volute 42 .
- the first volute 41 includes a first volute portion 411 and a first mounting portion 412 that are arranged and connected in a first direction, and the first volute 41 may be an integral part
- the second volute 42 includes a second volute part 421 and a second mounting part 422 that are arranged in the first direction and are connected
- the second volute 42 can be an integral molded part.
- the first volute portion 411 and the second volute portion 421 are adjacent and connected, for example, the first volute portion 411 is provided with the above-mentioned third fixing hole 4111 , and the second volute portion 421 is provided with the above-mentioned fourth fixing hole Hole 4211.
- the first installation part 412 is located on the side of the first volute part 411 away from the second volute 42
- the second installation part 422 is located on the side of the second volute part 421 away from the first volute 41
- the first volute The portion 411 and the second volute portion 421 together define a fan cavity 431 in which the first fan component 2 is located.
- the first installation portion 412 defines a first heat exchange cavity 432 that communicates with the fan cavity 431, and the second installation portion 422 defines a second heat exchange cavity 433 that communicates with the fan cavity 431.
- the fan cavity 431, the first heat exchange cavity Both the cavity 432 and the second heat exchange cavity 433 constitute a part of the first air duct 43.
- first heat exchange cavity 432, the fan cavity 431 and the second heat exchange cavity 433 may be arranged in sequence in the first direction.
- One of the two first heat exchanger components 3 is located in the first heat exchange cavity 432
- the other of the two first heat exchanger components 3 is located in the second heat exchange cavity 433 .
- the installation and fixation of the first heat exchanger part 3 and the second heat exchanger part 6 are conveniently realized, and the structure of the first air duct 43 is simple.
- the first air duct assembly 20 includes the above-mentioned volute assembly
- the volute assembly includes the above-mentioned first volute 41 and second volute 42 for driving the first volute 41 and the second volute 42
- a first motor 22 rotated by a wind wheel 21 is fixed on the second volute 42 through a motor bracket 44 .
- the first volute 41 includes the aforementioned first volute portion 411 and the first mounting portion 412
- the second volute 42 includes the aforementioned second volute portion 421 and the second mounting portion 422
- the motor bracket 44 includes the bracket main body 441 and the second mounting portion 422 .
- a plurality of connecting arms 442, the plurality of connecting arms 442 are arranged at intervals in the circumferential direction of the bracket body 441, one end of each connecting arm 442 is connected to the bracket body 441, and the other end of each connecting arm 442 faces away from the bracket body 441
- the number of connecting arms 442 may be three, for example.
- a plurality of fifth fixing holes 4222 are provided on the side wall of the second mounting portion 422 adjacent to the second volute portion 421 .
- a sixth fixing hole 4421 corresponding to the fifth fixing hole 4222 is formed thereon, a plurality of seventh fixing holes 4411 are formed on the bracket body 441 , and a plurality of seventh fixing holes 4411 are formed on the first motor 22 .
- Eight fixing holes 222 .
- the motor bracket 44 can be connected to the second mounting portion 422, for example, through the fifth fixing hole 4222 and the sixth fixing hole 4421 through fasteners, so as to The motor bracket 44 can be installed and fixed to the second volute 42, and then the first motor 22 can be connected to the motor bracket 44.
- fasteners can be passed through the seventh fixing hole 4411 and the eighth fixing hole 222, Therefore, the first motor 22 can be installed and fixed on the motor bracket 44 , so that the first motor 22 can be installed and fixed on the second volute 42 .
- a first installation notch 4121 is formed on the first installation portion 412 , and the first installation notch 4121 communicates with the first heat exchange cavity 432 .
- One of the heat exchanger components 3 is adapted to be installed to the first heat exchange cavity 432 through the first installation notch 4121 , so that the first heat exchange cavity 4121 provided on the first installation portion 412 is convenient for the first heat exchange
- the heat exchanger component 3 is mounted to the first heat exchange chamber 432 .
- a second installation notch 4221 is formed on the second installation portion 422 , the second installation notch 4221 communicates with the second heat exchange chamber 433 , and the other of the two first heat exchanger parts 3 is suitable for being installed through the second installation notch 4221 to the second heat exchange cavity 433 , so that the second heat exchanger part 6 can be easily installed to the second heat exchange cavity 433 through the second installation notch 4221 provided on the second installation part 422 .
- the first air duct assembly 20 may further include a cover plate 45 , and the cover plate 45 may Set on the volute assembly, the cover plate 45 covers the first installation notch 4121 and the second installation notch 4221, which can reduce the air leakage of the first heat exchange chamber 432 and the second heat exchange chamber 433.
- the cover plate 45 defines a first The outlet 451 of the air duct 43 facilitates the airflow in the first air duct 43 to flow to the first air outlet 113 through the outlet 451 to be discharged.
- the first heat exchanger part 3 includes a first heat exchanger 31 and a first connecting plate 32
- the first connecting plate 32 is two and is respectively provided on On opposite sides of the first heat exchanger 31, the first connecting plates 32 may extend in the up-down direction.
- One of the two first connection plates 32 of the first heat exchanger part 3 is connected to the first installation part 412 or the second installation part 422
- the other of the two first connection plates 32 of the first heat exchanger part 3 is connected to the first installation part 412 or the second installation part 422 .
- One is connected to the cover plate 45 .
- one of the two first connecting plates 32 of the first heat exchanger component 3 located in the first heat exchange cavity 432 is connected to the first mounting portion 412 , and the first exchange plate located in the first heat exchange cavity 432
- the other one of the two first connecting plates 32 of the heat exchanger part 3 is connected to the cover plate 45 ;
- one of the two first connecting plates 32 of the first heat exchanger part 3 located in the second heat exchange cavity 433 is The second mounting parts 422 are connected, and the other one of the two first connecting plates 32 of the first heat exchanger component 3 located in the second heat exchange cavity 433 is connected to the cover plate 45 .
- one of the two first connecting plates 32 of the first heat exchanger part 3 is provided with a first fastening hole 321
- both the first mounting part 412 and the second mounting part 422 are provided with a first fastening hole 321 .
- a second fastening hole 4224 corresponding to the hole 321, a third fastening hole 322 is formed on the other of the two first connecting plates 32 of the first heat exchanger part 3, and a fourth fastening hole 322 is formed on the cover plate 45 hole 452.
- the integrated air conditioner 100 includes: a bracket partition 7 , and the bracket partition 7 is provided in the cabinet 10 , for example, a bracket partition
- the plate 7 can be arranged in the middle of the casing 10, so that the inner cavity of the casing 10 can be divided into a first accommodating cavity and a second accommodating cavity arranged up and down, so that the first accommodating cavity and the second accommodating cavity can be separated. separated.
- the first accommodating cavity may be located above the second accommodating cavity, the first air duct assembly 20 may be disposed in the first accommodating cavity, the second air duct assembly 50 may be disposed in the second accommodating cavity, the first air inlet 111 and the An air outlet 113 is formed on the side wall of the first accommodating cavity, the second air inlet 112 and the second air outlet 114 are formed on the side wall of the second accommodating cavity, the first air duct assembly 20 and the second air duct assembly 50 Both are connected with the bracket partition 7, so that the first air duct 43 and the second air duct of the casing 10 are connected as a whole, so that the structure of the air conditioner is stable and reliable.
- a first connection hole 71 may be formed on the bracket partition 7
- a positioning hole 72 may be formed on the bracket partition 7
- the positioning hole 72 may be located in the middle of the bracket partition 7
- the first air duct assembly 20 may be formed on the
- the fastener is suitable for passing through the first connection hole 71 and the second connection hole 4212 to connect The first air duct assembly 20 and the bracket partition 7 .
- the first air duct assembly 20 includes the above-mentioned volute assembly
- the volute assembly includes the above-mentioned first volute 41 and the second volute 42
- the bracket partition 7 may be formed with two positioning holes 72, four fourth A connection hole 71, two positioning holes 72 can be located in the middle of the bracket partition 7, the four first connection holes 71 are divided into two groups and each group includes two first connection holes 71, and the two groups of first connection holes 71 are located in two groups.
- the two positioning holes 72 are on opposite sides in the first direction, the first volute 41 is provided with the above-mentioned two second connection holes 4212 and a positioning post 4213 , and the second volute 42 is provided with the above-mentioned two second connections A hole 4212 and a positioning post 4213, wherein one set of the first connecting holes 71 corresponds to the second connecting hole 4212 of the first volute 41, one of the positioning holes 72 corresponds to the positioning post 4213 of the first volute 41, and the other set The first connecting hole 71 corresponds to the second connecting hole 4212 of the second volute 42 , and the other positioning hole 72 corresponds to the positioning post 4213 of the second volute 42 .
- the integrated air conditioner 100 includes: a bracket partition 7 , and the bracket partition 7 is provided in the cabinet 10 , for example, a bracket partition
- the plate 7 can be arranged in the middle of the casing 10, so that the inner cavity of the casing 10 can be divided into a first accommodating cavity and a second accommodating cavity arranged up and down, so that the first accommodating cavity and the second accommodating cavity can be separated. separated.
- the first accommodating cavity may be located above the second accommodating cavity, the first air duct assembly 20 may be disposed in the first accommodating cavity, the second air duct assembly 50 may be disposed in the second accommodating cavity, the first air inlet 111 and the An air outlet 113 is formed on the side wall of the first accommodating cavity, the second air inlet 112 and the second air outlet 114 are formed on the side wall of the second accommodating cavity, the first air duct assembly 20 and the second air duct assembly 50 Both are connected with the bracket partition 7, so that the first air duct 43 and the second air duct of the casing 10 are connected as a whole, so that the structure of the air conditioner is stable and reliable.
- the upper end of the second fan member 5 is connected with the bracket partition 7
- the lower end of the second fan member 5 is connected with the base 12 of the casing 10 .
- the installation and fixation of the second fan component 5 is facilitated.
- the upper end of the second fan member 5 may be provided with a third connection hole 52
- the bracket partition 7 may be provided with a fourth connection hole 73 corresponding to the third connection hole 52
- the lower end of the second fan member 5 may be provided with a third connection hole 73 .
- connection holes 53, the base 12 of the casing 10 may be provided with a sixth connection hole 122, which is penetrated through the third connection hole 52 and the fourth connection hole 73 by fasteners, and is penetrated through the fifth connection hole 73 by fasteners.
- the connecting hole 53 and the sixth connecting hole 122 can reliably fix the second fan component 5 on the base 12 and the bracket partition 7 , and realize the connection of the second air duct assembly 50 and the bracket partition 7 .
- the second heat exchanger component 6 includes a second heat exchanger 61 , a first connecting lug 62 and a second heat exchanger 61 .
- Two connecting lugs 63, the first connecting lug 62 and the second connecting lug 63 are both arranged on the second heat exchanger 61, the first connecting lug 62 can be arranged on the upper end of the second heat exchanger 61, the first connecting lug 62
- the connecting lugs 62 can be connected with the first air duct assembly 20
- the second connecting lugs 63 can be provided on the lower end of the second heat exchanger 61
- the second connecting lugs 63 can be connected with the base 12 of the casing 10 .
- the second heat exchanger part 6 by arranging the second heat exchanger part 6 to include the first connection lugs 62 and the second connection lugs 63 , the installation and fixation of the second heat exchanger part 6 is facilitated, and the first air duct assembly 20 can be , the second air duct assembly 50 and the base 12 are connected into a whole, so that the structure of the whole machine is stable and reliable.
- each second heat exchanger part 6 includes a second heat exchanger 61 , a first connection lug 62 and The second connecting lug 63
- the first air duct assembly 20 includes the above-mentioned first volute 41 and the second volute 42
- both the first volute 41 and the second volute 42 are provided with a third connecting lug 4223
- the base 12 is provided with a fourth connection lug 123 .
- One of the second heat exchanger components 6 is connected to the first volute 41 and the base 12 , and specifically, through the first connecting lug 62 and the third connecting lug 4223 and through the fasteners the second connecting lug 63 and the fourth connecting lug 123; the other second heat exchanger part 6 is connected with the second volute 42 and the base 12, specifically, through the first connecting lug through fasteners 62 and the third connecting lugs 4223 and pass through the second connecting lugs 63 and the fourth connecting lugs 123 through fasteners.
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Abstract
Description
相关申请的交叉引用CROSS-REFERENCE TO RELATED APPLICATIONS
本申请基于申请号为202010946456.2、202021974906.0,申请日均为2020年09月10日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。This application is based on the Chinese patent applications with application numbers of 202010946456.2 and 202021974906.0, and the application dates are on September 10, 2020, and claims the priority of the Chinese patent application. The entire content of the Chinese patent application is incorporated herein by reference .
本申请涉及空气处理设备领域,尤其是涉及一种一体式空调器。The present application relates to the field of air treatment equipment, and in particular, to an integrated air conditioner.
相关技术中,需要调节较小的室内空间的温度或是仅需实现局部温度调节时,通常使用移动式空调或便携式空调,该类型空调的体积相对较小,移动较为方便。然而,相关技术中的移动式空调的进风口及出风口设置的不合理,导致整机的工作效率低。In the related art, when the temperature of a small indoor space needs to be adjusted or only local temperature adjustment is required, a mobile air conditioner or a portable air conditioner is usually used. This type of air conditioner has a relatively small volume and is more convenient to move. However, the air inlets and air outlets of the mobile air conditioners in the related art are set unreasonably, resulting in low working efficiency of the whole machine.
发明内容SUMMARY OF THE INVENTION
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请的一个目的在于提出一种一体式空调器,该一体式空调器工作时进风量大、换热充分、工作效率较高,并且方便移动和携带。The present application aims to solve at least one of the technical problems existing in the prior art. Therefore, an object of the present application is to provide an integrated air conditioner, which has large air intake, sufficient heat exchange, high work efficiency, and is convenient to move and carry during operation.
根据本申请实施例的一体式空调器,包括:机壳,所述机壳的周向侧壁上形成有第一进风口、第一出风口、第二进风口和第二出风口,所述第一进风口为两个且位于所述机壳在第一方向上的相对两侧,所述第一方向平行于水平方向,在所述机壳的周向方向上,所述第一出风口位于两个所述第一进风口之间;第一风道组件,所述第一风道组件设于所述机壳内,所述第一风道组件包括第一风机部件和第一换热器部件,所述第一风机部件包括第一风轮,所述第一风轮为离心风轮,所述第一风机部件用于驱动气流从所述第一进风口进入所述第一风道组件内与所述第一换热器部件换热后从所述第一出风口排出;第二风道组件,所述第二风道组件设于所述机壳内,所述第二风道组件和所述第一风道组件在上下方向上排布,所述第二风道组件包括第二风机部件和第二换热器部件,所述第二风机部件用于驱动气流从所述第二进风口进入所述第二风道组件内与所述第二换热器部件换热后从所述第二出风口排出;在所述空调器工作时,所述第一换热器部件和所述第二换热器部件中的一个为蒸发器且另一个为冷凝器。An integrated air conditioner according to an embodiment of the present application includes: a casing, a first air inlet, a first air outlet, a second air inlet and a second air outlet are formed on a circumferential side wall of the casing, the There are two first air inlets and are located on opposite sides of the casing in a first direction, the first direction is parallel to the horizontal direction, and in the circumferential direction of the casing, the first air outlets are Located between the two first air inlets; a first air duct assembly, the first air duct assembly is arranged in the casing, and the first air duct assembly includes a first fan component and a first heat exchange The first fan member includes a first fan wheel, the first fan wheel is a centrifugal fan wheel, and the first fan member is used to drive airflow from the first air inlet into the first air duct After exchanging heat with the first heat exchanger component in the assembly, it is discharged from the first air outlet; the second air duct assembly, the second air duct assembly is arranged in the casing, the second air duct The assembly and the first air duct assembly are arranged in an up-down direction, the second air duct assembly includes a second fan part and a second heat exchanger part, and the second fan part is used to drive airflow from the first air duct assembly. The second air inlet enters the second air duct assembly and exchanges heat with the second heat exchanger part and then is discharged from the second air outlet; when the air conditioner is working, the first heat exchanger part and One of the second heat exchanger components is an evaporator and the other is a condenser.
根据本申请实施例的一体式空调器,通过在机壳上设置相对设置的两个第一进风口, 可以增大进风面积,从而提高进风量,使得第一换热器部件与更多的气流充分换热,提高整机工作效率,通过使得第一出风口在机壳的周向方向上位于两个第一进风口之间,可以实现两侧进风和单侧出风,气流的流动更为合理,第一进风口和第一出风口之间的相互影响较小,进一步地提升整机工作效率,并且该一体式空调器方便移动和携带。According to the integrated air conditioner of the embodiment of the present application, by arranging the two first air inlets opposite to each other on the casing, the air intake area can be increased, thereby increasing the air intake volume, so that the first heat exchanger component and more The airflow is fully heat-exchanged and the working efficiency of the whole machine is improved. By making the first air outlet located between the two first air inlets in the circumferential direction of the casing, the air inlet from both sides and the air outlet from one side can be realized, and the flow of airflow can be realized. It is more reasonable, and the mutual influence between the first air inlet and the first air outlet is small, which further improves the working efficiency of the whole machine, and the integrated air conditioner is convenient to move and carry.
根据本申请的一些实施例,所述第一出风口和所述第二出风口分别形成在所述机壳在第二方向上的两相对侧壁上,所述第二方向平行于水平方向且垂直于所述第一方向。According to some embodiments of the present application, the first air outlet and the second air outlet are respectively formed on two opposite side walls of the casing in a second direction, the second direction being parallel to the horizontal direction and perpendicular to the first direction.
根据本申请的一些实施例,所述第二风机部件包括第二风轮,所述第二风轮为轴流风轮、斜流风轮、离心风轮或对旋风轮。According to some embodiments of the present application, the second fan component includes a second fan wheel, and the second fan wheel is an axial flow fan wheel, a diagonal flow fan wheel, a centrifugal fan wheel or a counter-cyclone fan wheel.
根据本申请的一些实施例,所述第一风道组件位于所述第二风道组件的上方,所述第二换热器部件为相对且间隔开设置的两个,所述第二风机部件和所述压缩机均位于两个所述第二换热器部件之间;或者,所述压缩机位于两个所述第二换热器部件之间,所述第二风机部件设在所述第二换热器部件的上方且位于所述第一风道组件和所述第二换热器部件之间。According to some embodiments of the present application, the first air duct assembly is located above the second air duct assembly, the second heat exchanger components are two opposite and spaced apart, and the second fan component Both the compressor and the compressor are located between the two second heat exchanger components; or, the compressor is located between the two second heat exchanger components, and the second fan component is provided on the Above the second heat exchanger part and between the first air duct assembly and the second heat exchanger part.
根据本申请的一些实施例,所述第一换热器部件为两个,两个所述第一换热器部件在所述第一方向上相对且间隔开设置,所述第一风机部件设在两个所述第一换热器部件之间,两个所述第一进风口与两个所述第一换热器部件分别对应设置。According to some embodiments of the present application, the number of the first heat exchanger components is two, the two first heat exchanger components are arranged opposite and spaced apart in the first direction, and the first fan component is provided with Between the two first heat exchanger components, the two first air inlets and the two first heat exchanger components are respectively arranged correspondingly.
根据本申请的一些可选实施例,所述第一风道组件包括蜗壳组件,所述蜗壳组件内限定出连通所述第一进风口和所述第一出风口的第一风道,所述第一风机部件和两个所述第一换热器部件均设于所述第一风道。According to some optional embodiments of the present application, the first air duct assembly includes a volute assembly, and the volute assembly defines a first air duct that communicates with the first air inlet and the first air outlet, The first fan component and the two first heat exchanger components are both disposed in the first air duct.
在本申请的一些实施例中,所述蜗壳组件包括在所述第一方向上相对且相连的第一蜗壳和第二蜗壳,两个所述第一换热器部件中的一个与所述第一蜗壳相连,两个所述第一换热器部件中的另一个与所述第二蜗壳相连。In some embodiments of the present application, the volute assembly includes a first volute and a second volute opposite and connected in the first direction, one of the two first heat exchanger components being connected to The first volute is connected, and the other of the two first heat exchanger components is connected to the second volute.
在本申请的一些可选实施例中,所述第一蜗壳和所述第二蜗壳均为独立成型件,所述第一蜗壳和所述第二蜗壳可拆卸地相连。In some optional embodiments of the present application, the first volute and the second volute are both independently formed parts, and the first volute and the second volute are detachably connected.
在本申请的一些可选实施例中,所述第一蜗壳包括第一蜗壳部和第一安装部,所述第二蜗壳包括第二蜗壳部和第二安装部,所述第一蜗壳部和所述第二蜗壳部相邻且相连,所述第一安装部位于所述第一蜗壳部的远离所述第二蜗壳的一侧,所述第二安装部位于所述第二蜗壳部的远离所述第一蜗壳的一侧,所述第一风机部件位于所述第一蜗壳部和所述第二蜗壳部共同限定的风机腔内,所述第一安装部内限定出第一换热腔,所述第二安装部内限定出第二换热腔,两个所述第一换热器部件中的一个位于所述第一换热腔,两个所述第一换热器部件中的另一个位于所述第二换热腔,所述风机腔、所述第一换热腔和所述第二换热腔均构成所述第一风道的一部分。In some optional embodiments of the present application, the first volute includes a first volute portion and a first mounting portion, the second volute includes a second volute portion and a second mounting portion, and the first volute includes a second volute portion and a second mounting portion. A volute part is adjacent to and connected to the second volute part, the first installation part is located on the side of the first volute part away from the second volute, and the second installation part is located at the side of the first volute part away from the second volute a side of the second volute part away from the first volute, the first fan component is located in the fan cavity jointly defined by the first volute part and the second volute part, the The first installation part defines a first heat exchange cavity, the second installation part defines a second heat exchange cavity, one of the two first heat exchanger components is located in the first heat exchange cavity, and the two The other one of the first heat exchanger components is located in the second heat exchange cavity, and the fan cavity, the first heat exchange cavity and the second heat exchange cavity all constitute the first air duct. part.
可选地,所述第一安装部上形成有与所述第一换热腔连通的第一安装缺口,两个所述第一换热器部件中的一个适于通过所述第一安装缺口安装至所述第一换热腔,所述第二安装部上形成有与所述第二换热腔连通的第二安装缺口,两个所述第一换热器部件中的另一个适于通过所述第二安装缺口安装至所述第二换热腔。Optionally, the first installation part is formed with a first installation gap that communicates with the first heat exchange cavity, and one of the two first heat exchanger components is adapted to pass through the first installation gap is mounted on the first heat exchange chamber, the second mounting portion is formed with a second mounting notch communicating with the second heat exchange chamber, and the other of the two first heat exchanger components is adapted to It is mounted to the second heat exchange cavity through the second mounting notch.
进一步地,所述第一安装缺口和所述第二安装缺口均邻近第一出风口,所述第一风道组件还包括盖板,所述盖板设在所述蜗壳组件上且封盖所述第一安装缺口和所述第二安装缺口,所述盖板内限定出所述第一风道的出口。Further, both the first installation notch and the second installation notch are adjacent to the first air outlet, and the first air duct assembly further includes a cover plate, the cover plate is provided on the volute assembly and covers The first installation notch and the second installation notch define an outlet of the first air duct in the cover plate.
可选地,所述第一换热器部件包括第一换热器和设在所述第一换热器的相对两侧的第一连接板,所述第一换热器部件的两个所述第一连接板中的一个与所述第一安装部或所述第二安装部相连,所述第一换热器部件的两个所述第一连接板中的另一个与所述盖板相连。Optionally, the first heat exchanger component includes a first heat exchanger and first connecting plates disposed on opposite sides of the first heat exchanger, and two of the first heat exchanger components One of the first connecting plates is connected to the first mounting portion or the second mounting portion, and the other of the two first connecting plates of the first heat exchanger component is connected to the cover plate connected.
根据本申请的一些实施例,所述一体式空调器包括:支架隔板,所述支架隔板设在所述机壳内,以将所述机壳的内腔分隔成上下排布的第一容纳腔和第二容纳腔,所述第一容纳腔位于所述第二容纳腔的上方,所述第一风道组件设在所述第一容纳腔,所述第二风道组件设在所述第二容纳腔,所述第一进风口和所述第一出风口形成在所述第一容纳腔的侧壁上,所述第二进风口和所述第二出风口形成在所述第二容纳腔的侧壁上,所述第一风道组件和所述第二风道组件均与所述支架隔板相连,所述支架隔板上形成有第一连接孔和定位孔,所述第一风道组件上形成有第二连接孔以及与所述定位孔配合的定位柱,紧固件适于穿设于所述第一连接孔和所述第二连接孔,以连接所述第一风道组件和所述支架隔板。According to some embodiments of the present application, the integrated air conditioner includes: a bracket partition plate, the bracket partition plate is arranged in the cabinet to partition the inner cavity of the cabinet into first and lower arranged first The first accommodating cavity is located above the second accommodating cavity, the first air duct assembly is provided in the first accommodating cavity, and the second air duct assembly is provided in the first accommodating cavity. the second accommodating cavity, the first air inlet and the first air outlet are formed on the side wall of the first accommodating cavity, and the second air inlet and the second air outlet are formed in the On the side walls of the two accommodating chambers, both the first air duct assembly and the second air duct assembly are connected to the bracket partition, and the bracket partition is formed with a first connection hole and a positioning hole. The first air duct assembly is formed with a second connection hole and a positioning column matched with the positioning hole, and a fastener is suitable for passing through the first connection hole and the second connection hole to connect the first connection hole and the second connection hole. an air duct assembly and the bracket partition.
根据本申请的一些实施例,所述一体式空调器包括:支架隔板,所述支架隔板设在所述机壳内,以将所述机壳的内腔分隔成上下排布的第一容纳腔和第二容纳腔,所述第一容纳腔位于所述第二容纳腔的上方,所述第一风道组件设在所述第一容纳腔,所述第二风道组件设在所述第二容纳腔,所述第一进风口和所述第一出风口形成在所述第一容纳腔的侧壁上,所述第二进风口和所述第二出风口形成在所述第二容纳腔的侧壁上,所述第一风道组件和所述第二风道组件均与所述支架隔板相连,所述第二风机部件的上端与所述支架隔板相连,所述第二风机部件的下端与所述机壳的底座相连。According to some embodiments of the present application, the integrated air conditioner includes: a bracket partition plate, the bracket partition plate is arranged in the cabinet to partition the inner cavity of the cabinet into first and lower arranged first The first accommodating cavity is located above the second accommodating cavity, the first air duct assembly is provided in the first accommodating cavity, and the second air duct assembly is provided in the first accommodating cavity. the second accommodating cavity, the first air inlet and the first air outlet are formed on the side wall of the first accommodating cavity, and the second air inlet and the second air outlet are formed in the On the side walls of the two accommodating chambers, the first air duct assembly and the second air duct assembly are both connected to the bracket partition, and the upper end of the second fan component is connected to the bracket partition. The lower end of the second fan component is connected to the base of the casing.
在本申请的一些可选实施例中,第二换热器部件包括第二换热器和设在第二换热器上的第一连接凸耳和第二连接凸耳,所述第一连接凸耳与所述第一风道组件相连,所述第二连接凸耳与所述述机壳的底座相连。In some optional embodiments of the present application, the second heat exchanger component comprises a second heat exchanger and first and second connection lugs provided on the second heat exchanger, the first connection The lugs are connected with the first air duct assembly, and the second connection lugs are connected with the base of the casing.
根据本申请的一些实施例,所述机壳呈长方体形,所述机壳的高度范围为350-500mm,所述机壳的长度范围为180-250mm,所述机壳的宽度范围为180-250mm。According to some embodiments of the present application, the casing is in the shape of a cuboid, the height of the casing is in the range of 350-500 mm, the length of the casing is in the range of 180-250 mm, and the width of the casing is in the range of 180-500 mm. 250mm.
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。Additional aspects and advantages of the present application will be set forth, in part, from the following description, and in part will become apparent from the following description, or may be learned by practice of the present application.
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:The above and/or additional aspects and advantages of the present application will become apparent and readily understood from the following description of embodiments in conjunction with the accompanying drawings, wherein:
图1是根据本申请一些实施例的一体式空调器的立体图;1 is a perspective view of an integrated air conditioner according to some embodiments of the present application;
图2是图1中的一体式空调器的另一个角度的立体图;FIG. 2 is a perspective view of the integrated air conditioner of FIG. 1 from another angle;
图3是图1中的一体式空调器的内部结构的立体图;3 is a perspective view of the internal structure of the integrated air conditioner in FIG. 1;
图4是图3中的一体式空调器的内部结构另一个角度的立体图;FIG. 4 is a perspective view of the internal structure of the integrated air conditioner in FIG. 3 from another angle;
图5是图1中的一体式空调器的主视图;FIG. 5 is a front view of the integrated air conditioner in FIG. 1;
图6是沿图5中A-A线的剖面图;Fig. 6 is a sectional view along line A-A in Fig. 5;
图7是图1中的一体式空调器的后视图;FIG. 7 is a rear view of the integrated air conditioner in FIG. 1;
图8是沿图7中B-B线的剖面图;Fig. 8 is a sectional view along line B-B in Fig. 7;
图9是图1中的一体式空调器的爆炸图;Figure 9 is an exploded view of the integrated air conditioner in Figure 1;
图10是图1中的一体式空调器的箱体的立体图;Fig. 10 is a perspective view of the box body of the integrated air conditioner in Fig. 1;
图11是图10中的箱体的另一个角度的立体图;Figure 11 is a perspective view of the box in Figure 10 from another angle;
图12是图1中的一体式空调器的第一蜗壳的立体图;Figure 12 is a perspective view of the first scroll casing of the integrated air conditioner in Figure 1;
图13是图1中的一体式空调器的第二蜗壳的立体图;Figure 13 is a perspective view of the second scroll casing of the integrated air conditioner in Figure 1;
图14是图13中的第二蜗壳的另一个角度的立体图;Figure 14 is a perspective view of the second volute of Figure 13 from another angle;
图15是图1中的一体式空调器的电机支架的立体图;15 is a perspective view of a motor bracket of the integrated air conditioner in FIG. 1;
图16是图1中的一体式空调器的第一电机的立体图;FIG. 16 is a perspective view of the first motor of the integrated air conditioner in FIG. 1;
图17是图16中的第一电机的另一个角度的立体图;Figure 17 is a perspective view of the first motor of Figure 16 from another angle;
图18是图1中的一体式空调器的第一换热器部件的立体图;Figure 18 is a perspective view of the first heat exchanger component of the integrated air conditioner of Figure 1;
图19是图1中的一体式空调器的盖板的立体图;Fig. 19 is a perspective view of a cover plate of the integrated air conditioner in Fig. 1;
图20是图1中的一体式空调器的支架隔板的立体图;Figure 20 is a perspective view of a bracket partition of the integrated air conditioner in Figure 1;
图21是图1中的一体式空调器的第二风机部件的立体图;Figure 21 is a perspective view of the second fan component of the integrated air conditioner in Figure 1;
图22是图1中的一体式空调器的第二换热器部件的立体图;Figure 22 is a perspective view of the second heat exchanger component of the integrated air conditioner of Figure 1;
图23是图1中的一体式空调器的底座的立体图;Figure 23 is a perspective view of the base of the integrated air conditioner in Figure 1;
图24是图1中的一体式空调器的压缩机的立体图;Fig. 24 is a perspective view of the compressor of the integrated air conditioner in Fig. 1;
图25是根据本申请另一些实施例的一体式空调器的部分结构立体图;25 is a perspective view of a partial structure of an integrated air conditioner according to other embodiments of the present application;
图26是图25中的一体式空调器的另一个角度的部分结构立体图;Fig. 26 is a partial structural perspective view of the integrated air conditioner in Fig. 25 from another angle;
图27是图26中的一体式空调器的部分结构的分解图。FIG. 27 is an exploded view of a partial structure of the integrated air conditioner in FIG. 26 .
附图标记:Reference number:
一体式空调器100;
机壳10;
箱体11;第一进风口111;第二进风口112;第一出风口113;第二出风口114;第一固定孔115;
底座12;第二固定孔121;第六连接孔122;第四连接凸耳123;
第一风道组件20;the first
第一风机部件2;第一风轮21;第一电机22;电机轴221;第八固定孔222;the
第一换热器部件3;第一换热器31;第一连接板32;第一紧固孔321;第三紧固孔322;the first
第一蜗壳41;第一蜗壳部411;第三固定孔4111;第一安装部412;第一安装缺口4121;the
第二蜗壳42;第二蜗壳部421;第四固定孔4211;第二连接孔4212;定位柱4213;第二安装部422;第二安装缺口4221;第五固定孔4222;第三连接凸耳4223;第二紧固孔4224;The
第一风道43;风机腔431;第一换热腔432;第二换热腔433;The first air duct 43; the fan cavity 431; the first
电机支架44;支架主体441;第七固定孔4411;连接臂442;第六固定孔4421;
盖板45;出口451;第四紧固孔452;cover
第二风道组件50;the second
第二风机部件5;第二风轮51;第三连接孔52;第五连接孔53;The
第二换热器部件6;第二换热器61;第一连接凸耳62;第二连接凸耳63;second
支架隔板7;第一连接孔71;定位孔72;第四连接孔73;
压缩机8;压缩机本体81;储液器82。
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。The following describes in detail the embodiments of the present application, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals refer to the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present application, but should not be construed as a limitation on the present application.
下面参考附图(图6和图8中的箭头方向为气流流动方向)描述根据本申请实施例的一体式空调器100。可选地,该一体式空调器100可以放置在室内的地面上、台面上等使用,实现整个室内空间或局部快速降温或升温;该一体式空调器100也可以携带至室外使用,实现局部快速降温或升温。The
根据本申请实施例的一体式空调器100,包括:机壳10、第一风道组件20和第二风道组件50。机壳10的周向侧壁上形成有第一进风口111、第一出风口113、第二进风口112和第二出风口114,外部气流可以经第一进风口111、第二进风口112进入机壳10内,换 热后的气流可以经第一出风口113、第二出风口114排出机壳10外。The
第一风道组件20和第二风道组件50设于机壳10内,第一风道组件20和第二风道组件50在上下方向上排布,例如可以是第一风道组件20位于第二风道组件50的上方,也可以是第二风道组件50位于第一风道组件20的上方。The first
第一风道组件20包括第一风机部件2和第一换热器部件3,第一换热器部件5可以为直排换热器.第一风机部件2可以包括第一风轮21和第一电机22,第一电机22的电机轴221与第一风轮21相连以驱动第一风轮21转动。第一风轮21可以为离心风轮,由此可以降低第一风轮21转动时产生的噪音。第一风机部件2用于驱动气流从第一进风口111进入第一风道组件20内,进入第一风道组件20内的气流与第一换热器部件3换热后可以从第一出风口113排出。The first
第二风道组件50包括第二风机部件5和第二换热器部件6,第二换热器部件6可以为直排换热器。第二风机部件5可以包括第二风轮51和第二电机,第二电机的电机轴与第二风轮51相连以驱动第二风轮51转动。第二风机部件5用于驱动气流从第二进风口112进入第二风道组件50内,进入第二风道组件50内的气流与第二换热器部件6换热后可以从第二出风口114排出。The second
可选地,其中机壳10包括箱体11和设在箱体11的底部的底座12,第一进风口111、第一出风口113、第二进风口112和第二出风口114均形成在箱体11上,第一进风口111、第一出风口113、第二进风口112和第二出风口114均可以形成为格栅状结构,一体式空调器100的压缩机8可以设在底座12上且位于机壳10内,压缩机8可以包括压缩机本体81和储液器82。箱体11的底部敞开,底座12设在箱体11的底部且封盖箱体11的敞开端,底座12与箱体11相连,例如底座12与箱体11之间可以通过紧固件相连。例如,在图1、图2、图10、图11和图23的示例中,箱体11上设有第一固定孔115,底座12上设有第二固定孔121,紧固件可以穿设于第一固定孔115和第二固定孔121以将箱体11与底座12相连。Optionally, wherein the
其中,在空调器工作时,第一换热器部件3和第二换热器部件6中的一个为蒸发器且另一个为冷凝器。例如,在第一换热器部件3作为蒸发器时,第二换热器部件6作为冷凝器;在第一换热器部件3作为冷凝器时,第二换热器部件6作为蒸发器。Wherein, when the air conditioner is working, one of the first
例如,在一体式空调器100工作时,第一换热器部件3可以作为蒸发器,第二换热器部件6可以作为冷凝器,外部气流在第一风道组件20的第一风轮21的驱动下,经过第一换热器部件3换热后,气流的温度会降低,降温后的气流可以从第一出风口113排出,从而可以使第一出风口113吹出冷风;同时外部气流在第二风道组件50的第二风轮51的驱动下,经过第二换热器部件6换热后,气流的温度会升高,升温后的气流可以从第二出风 口114排出,从而可以使第二出风口114吹出热风。其中,在第一风道组件20位于第二风道组件50的上方时,第一出风口113可以朝向用户或者室内吹风,可以实现局部制冷或对整个室内空间制冷,第二出风口114可以朝向室内,此时可以实现局部制冷,第二出风口114也可以通过排风管引导至室外,此时可以实现整个室内空间制冷。For example, when the all-in-one
例如,在一体式空调器100工作时,第一换热器部件3可以作为冷凝器,第二换热器部件6可以作为蒸发器,外部气流在第一风道组件20的第一风轮21的驱动下,经过第一换热器部件3换热后,气流的温度会升高,升高后的气流可以从第一出风口113排出,从而可以使第一出风口113吹出热风;同时外部气流在第二风道组件50的第二风轮51的驱动下,经过第二换热器部件6换热后,气流的温度会降低,降温后的气流可以从第二出风口114排出,从而可以使第二出风口114吹出冷风。其中,在第一风道组件20位于第二风道组件50的上方时,第一出风口113可以朝向用户或者室内吹风,可以实现局部制热或对整个室内空间制热,第二出风口114可以朝向室内,此时可以实现局部制热,第二出风口114也可以通过排风管引导至室外,此时可以实现整个室内空间制热。For example, when the
第一进风口111可以为两个,两个第一进风口111可以位于机壳10在第一方向(参考附图中的e1方向,例如第一方向可以为左右方向)上的相对两侧,第一方向平行于水平方向。由此,可以增大进风面积,从而增大进风量,使得更多的气流与第一换热器部件3充分换热,提升一体式空调器100的工作效率,例如在第一风道组件20位于第二风道组件50的上方时,在第一换热器部件3为蒸发器时,可以提高制冷效率,在第一换热器部件3为冷凝器时,可以提高制热效率。There may be two
例如,第一方向可以为左右方向,两个第一进风口111可以分别形成在机壳10的左侧壁及右侧壁上,第一进风口111的外轮廓可以呈矩形,位于机壳10左侧壁的第一进风口111的外轮廓可以邻近机壳10的左侧壁的外周沿设置,位于机壳10右侧壁的第一进风口111的外轮廓可以邻近机壳10的右侧壁的外周沿设置,由此可以进一步地增加进风面积,进一步地提升一体式空调器100的工作效率。For example, the first direction may be the left-right direction, and the two
进一步地,在机壳10的周向方向上,第一出风口113位于两个第一进风口111之间,可以实现两侧进风和单侧出风,气流的流动更为合理,第一进风口和第一出风口之间的相互影响较小,进一步地提升整机工作效率。Further, in the circumferential direction of the
可选地,机壳10可以呈长方体形,使得机壳10的结构简单,也使得整机的外形简单。该一体式空调器100的整体体积较小,例如机壳10的高度范围可以为350-500mm,机壳10的长度范围可以为180-250mm,机壳10的宽度范围可以为180-250mm。其中,高度是指在上下方向上的尺寸,宽度和长度是指在水平方向上的尺寸。Optionally, the
根据本申请实施例的一体式空调器100,通过在机壳10上设置相对设置的两个第一进 风口111,可以增大进风面积,从而提高进风量,使得第一换热器部件3与更多的气流充分换热,提高整机工作效率,通过使得第一出风口113在机壳10的周向方向上位于两个第一进风口111之间,可以实现两侧进风和单侧出风,气流的流动更为合理,第一进风口111和第一出风口113之间的相互影响较小,进一步地提升整机工作效率;并且,该一体式空调器100方便移动和携带。According to the
根据本申请的一些实施例,参照图1、图2、图10和图11,第一出风口113和第二出风口114分别形成在机壳10在第二方向(参考附图中的e2方向,例如第二方向可以为前后方向)上的两相对侧壁上,第二方向平行于水平方向且垂直于第一方向。由此,使得第一出风口113和第二出风口114相离较远,可以减少第一出风口113和第二出风口114之间的出风影响,例如在第一出风口113吹出冷风且第二出风口114吹出热风时,用户朝向第一出风口113以实现局部降温效果,通过将第一出风口113和第二出风口114相对设置,可以减少第二出风口114吹出的热风对第一出风口113吹出的冷风的影响。According to some embodiments of the present application, referring to FIGS. 1 , 2 , 10 and 11 , the
根据本申请的一些实施例,参照图6、图8、图9、图21、图25-图27,第二风机部件5包括第二风轮51,第二风轮51为轴流风轮、斜流风轮、离心风轮或对旋风轮。在第二风轮51为一个风轮时,第二风轮51可以为轴流风轮、斜流风轮或离心风轮;在第二风轮51为两个风轮时,该两个风轮构成对旋风轮,该两个风轮均为轴流风轮或斜流风轮。由此,可以根据需要将第二风轮51采用不同类型的风轮,使得整机的结构设置更加灵活、紧凑。According to some embodiments of the present application, referring to FIGS. 6 , 8 , 9 , 21 , and 25-27 , the
例如,第一风轮21和第二风轮51的设置可以包括如下情况:(1)第一风轮21为离心风轮,第二风轮51为离心风轮;(2)第一风轮21为离心风轮,第二风轮51为轴流风轮;(3)第一风轮21为离心风轮,第二风轮51为斜流风轮;(4)第一风轮21为离心风轮,第二风轮51为对旋风轮。For example, the arrangement of the
根据本申请的一些实施例,参照图3、图4、图8和图25-图27,第一风道组件20位于第二风道组件50的上方,第二换热器部件6为相对且间隔开设置的两个,通过将第二风道组件50设置为包括两个第二换热器部件6,使得从第二进风口112进入第二风道组件50内的气流,可以同时与两个第二换热器部件6进行换热,增大了换热面积,提高了一体式空调器100的工作效率。并且,使得两个第二换热器部件6相对且间隔开设置,与将两个第二换热器部件6并排相邻设置相比,通过将两个第二换热器部件6相对且间隔开设置,可以显著地降低风阻,提高出风量,降低能耗,也可以提高换热效率。According to some embodiments of the present application, referring to FIGS. 3 , 4 , 8 and 25-27 , the first
其中,参照图3和图4,第二风机部件5和压缩机8可以均位于两个第二换热器部件6之间。结合上述的将第一风机部件2设置在两个第一换热器部件3之间,进一步地使得一体式空调器100的整体结构紧凑、体积更小,更易方便移动和携带。其中,两个第二换热器部件6可以在第一方向上排布,第二风机部件5和压缩机8可以均位于两个第二换热器 部件6之间且在第二方向上间隔开排布,由此可以减少气流在第二风机组件内的流动过程中阻力,降低工作噪音,提高工作效率。可选地,第一风机部件2可以包括第一风轮21,第一风轮21为离心风轮,第二风机部件5可以包括第二风轮51,第二风轮51为轴流风轮或斜流风轮。这样设置使得整个结构更加紧凑、合理。3 and 4 , the
或者,参照图25-图27,压缩机8位于两个第二换热器部件6之间,第二风机部件5设在第二换热器部件6的上方且位于第一风道组件20和第二换热器部件6之间。由此,使得整机的结构设置更加灵活。可选地,第一风机部件2可以包括第一风轮21,第二风机部件5包括第二风轮51,第一风轮21和第二风轮51均为离心风轮。这样设置使得整机的结构设置更加灵活,并且由于第一风轮21和第二风轮51均为离心风轮,使得整体的工作噪音较低。Alternatively, referring to FIGS. 25-27 , the
根据本申请的一些实施例,第一换热器部件3为两个,第一换热器部件3可以为直排换热器,两个第一换热器部件3在第一方向上相对且间隔开设置,第一风机部件2设在两个第一换热器部件3之间,两个第一进风口111与两个第一换热器部件3分别对应设置。第一风机部件2用于驱动气流从两个第一进风口111进入第一风道组件20内,进入第一风道组件20内的气流与两个第一换热器部件3换热后可以从第一出风口113排出。通过将第一风道组件20设置为包括两个第一换热器部件3,使得从第一进风口111进入第一风道组件20内的气流,可以同时与两个第一换热器部件3进行换热,增大了换热面积,提高了一体式空调器100的工作效率,例如可以提高制冷或制热效率。According to some embodiments of the present application, there are two first
并且,使得两个第一换热器部件3相对且间隔开设置,与将两个第一换热器部件3并排相邻设置相比,通过将两个第一换热器部件3相对且间隔开设置,可以显著地降低风阻,提高出风量,降低能耗,也可以提高换热效率。同时,将第一风机部件2设置在两个第一换热器部件3之间,使得一体式空调器100的结构紧凑、体积较小,方便移动和携带,例如方便从其中一个房间移动至另一个房间,或是方便携带至户外。In addition, by arranging the two first
例如,在第一风道组件20设在第二风道组件50的上方,第一换热器部件3作为蒸发器且第二换热器部件6作为冷凝器时,可以通过第一出风口113调节室内温度或局部温度,由于将第一风道组件20设置为包括两个第一换热器部件3,可以提高制冷效率,将第二风道组件50设置为包括两个第二换热器部件6,可以提高冷凝器的冷却效率,从而可以进一步地提该一体式空调器100的整体性能。For example, when the first
并且,两个第一进风口111与两个第一换热器部件3可以分别对应且相对设置,这样使得两个第一进风口111分别邻近相应的第一换热器部件3设置,这样可以减少气流流动路径,减少流动损失,提高换热效果和出风量。例如,第一方向可以为左右方向,两个第一换热器部件3在左右方向上相对且间隔设置,两个第一进风口111可以分别形成在机壳 10的左侧壁及右侧壁上,第一进风口111的外轮廓可以呈矩形,位于机壳10左侧壁的第一进风口111的外轮廓可以邻近机壳10的左侧壁的外周沿设置,位于机壳10右侧壁的第一进风口111的外轮廓可以邻近机壳10的右侧壁的外周沿设置,由此可以进一步地增加进风面积,进一步地提升一体式空调器100的工作效率。In addition, the two
例如,在图1、图2、图3、图4、图10、图11、图25-图27的示例中,一体式空调器100包括上述的机壳10、第一风道组件20、第二风道组件50和支架隔板7,支架隔板7设在机壳10内,例如支架隔板7可以设在机壳10内的中部位置,从而可以将机壳10的内腔分隔成上下排布的第一容纳腔和第二容纳腔,从而可以将第一容纳腔和第二容纳腔相隔开,其中第一容纳腔可以位于第二容纳腔的上方,第一风道组件20可以设在第一容纳腔内,第二风道组件50可以设在第二容纳腔内。For example, in the examples of FIGS. 1 , 2 , 3 , 4 , 10 , 11 , and 25 to 27 , the
第一风道组件20包括两个在第一方向上相对且间隔开设置的第一换热器部件3,第一风机部件2位于两个第一换热器部件3之间;第二风道组件50包括两个在第一方向上相对且间隔开设置的第二换热器部件6,压缩机8和第二风机位于两个第二换热器部件6之间,或者压缩机8位于两个第二换热器部件6之间且第二风机部件5位于第二换热部件和第一风道组件20之间。The first
第一进风口111为两个,第二进风口112为两个,第一出风口113和第二出风口114均为一个。两个第一进风口111形成在第一容纳腔在第一方向上的侧壁上,例如两个第一进风口111形成在第一容纳腔的左侧壁和右侧壁上,第一出风口113形成在第一容纳腔的第二方向上的侧壁上,例如第一出风口113形成在第一容纳腔的前侧壁上,第一出风口113可以呈格栅状,第一出风口113的外轮廓可以呈矩形。两个第二进风口112形成在第二容纳腔在第一方向上的侧壁上,例如两个第二进风口112形成在第二容纳腔的左侧壁和右侧壁上,第二出风口114形成在第二容纳腔的第二方向上的侧壁上,例如第二出风口114形成在第二容纳腔的后侧壁上,第二出风口114可以呈格栅状,第二出风口114的外轮廓可以呈圆形。There are two
根据本申请的一些可选实施例,参照图3、图4、图9、图12-图14以及图25-图27,第一风道组件20包括蜗壳组件,例如第一风轮21可以为离心风轮,蜗壳组件内限定出第一风道43,第一风道43连通第一进风口111和第一出风口113,第一风机部件2和两个第一换热器部件3均设于第一风道43。在第一风机部件2工作时,从第一进风口111进入的气流可以流入第一风道43内,进入第一风道43内的气流与两个第一换热器部件3换热之后,从第一出风口113排出,由此使得第一风道组件20的结构简单、零部件数量较少,可以使得整机的结构和重量设置的较小。According to some optional embodiments of the present application, referring to FIGS. 3 , 4 , 9 , 12-14 and 25-27 , the first
其中,蜗壳组件可以包括在第一方向上相对且相连的第一蜗壳41和第二蜗壳42,两个 第一换热器部件3中的一个与第一蜗壳41相连,例如两个第一换热器部件3中的一个可以连接在第一蜗壳41的远离第二蜗壳42的一端,两个第一换热器部件3中的另一个与第二蜗壳42相连,例如两个第一换热器部件3中的另一个可以连接在第二蜗壳42的远离第一蜗壳41的一端。由此,使得第一风道组件20的整体结构紧凑、布局合理。The volute assembly may include a
可选地,第一蜗壳41和第二蜗壳42可以均为独立成型件,第一蜗壳41和第二蜗壳42可拆卸地相连,例如第一蜗壳41和第二蜗壳42可以通过紧固件相连,方便第一风道组件20的装配和维护。例如,第一蜗壳41上可以设有多个第三固定孔4111,多个第三固定孔4111可以沿第一蜗壳41的周向间隔排布,第二蜗壳42上可以设有多个第四固定孔4211,多个第四固定孔4211可以沿第二蜗壳42的周向间隔排布,第三固定孔4111和第四固定孔4211的数量相同且一一对应,紧固件穿设于每对第三固定孔4111和第四固定孔4211,以将第一蜗壳41和第二蜗壳42相连。Optionally, the
在本申请的一些可选实施例中,第一蜗壳41包括在第一方向上排布且相连的第一蜗壳部411和第一安装部412,第一蜗壳41可以为一体成型件,第二蜗壳42包括在第一方向上排布且相连的第二蜗壳部421和第二安装部422,第二蜗壳42可以为一体成型件。其中,第一蜗壳部411和第二蜗壳部421相邻且相连,例如第一蜗壳部411上设有上述第三固定孔4111,第二蜗壳部421上设有上述第四固定孔4211。第一安装部412位于第一蜗壳部411的远离第二蜗壳42的一侧,第二安装部422位于第二蜗壳部421的远离第一蜗壳41的一侧,第一蜗壳部411和第二蜗壳部421共同限定出风机腔431,第一风机部件2位于该风机腔431内。第一安装部412内限定出与风机腔431连通的第一换热腔432,第二安装部422内限定出与风机腔431连通的第二换热腔433,风机腔431、第一换热腔432和第二换热腔433均构成第一风道43的一部分,例如第一换热腔432、风机腔431和第二换热腔433可以在第一方向上依次排布。两个第一换热器部件3中的一个位于第一换热腔432,两个第一换热器部件3中的另一个位于第二换热腔433。由此,方便地实现第一换热器部件3和第二换热器部件6的安装固定,且使得第一风道43结构简单。In some optional embodiments of the present application, the
例如,在图9、图12-图16的示例中,第一风道组件20包括上述的蜗壳组件,蜗壳组件包括上述的第一蜗壳41和第二蜗壳42,用于驱动第一风轮21转动的第一电机22通过电机支架44固定在第二蜗壳42上。第一蜗壳41包括上述的第一蜗壳部411和第一安装部412,第二蜗壳42包括上述的第二蜗壳部421和第二安装部422,电机支架44包括支架主体441和多个连接臂442,多个连接臂442在支架主体441的周向方向上间隔排布,每个连接臂442的一端与支架主体441相连,每个连接臂442的另一端朝向远离支架主体441的方向延伸,例如连接臂442可以为三个。For example, in the examples of FIGS. 9 and 12 to 16 , the first
其中,第二安装部422的邻近第二蜗壳部421的侧壁上设有多个第五固定孔4222,例 如第五固定孔4222可以为三个且呈三角形排布,每个连接臂442上形成有与第五固定孔4222对应设置的第六固定孔4421,支架主体441上设有多个第七固定孔4411,第一电机22上设有多个与第七固定孔4411对应的第八固定孔222。在将第一电机22固定在第二蜗壳42上时,可以将电机支架44与第二安装部422相连,例如通过紧固件穿设于第五固定孔4222和第六固定孔4421,从而可以将电机支架44安装固定至第二蜗壳42上,而后可以将第一电机22连接至电机支架44上,例如可以通过紧固件穿设于第七固定孔4411和第八固定孔222,从而可以将第一电机22安装固定至电机支架44上,从而可以将第一电机22安装固定至第二蜗壳42。A plurality of fifth fixing
在本申请的进一步实施例中,参照图9、图12-图14,第一安装部412上形成有第一安装缺口4121,第一安装缺口4121与第一换热腔432连通,两个第一换热器部件3中的一个适于通过第一安装缺口4121安装至第一换热腔432,由此通过在第一安装部412上设置的第一安装缺口4121,方便将第一换热器部件3安装至第一换热腔432。第二安装部422上形成有第二安装缺口4221,第二安装缺口4221与第二换热腔433连通,两个第一换热器部件3中的另一个适于通过第二安装缺口4221安装至第二换热腔433,由此通过在第二安装部422上设置的第二安装缺口4221,方便将第二换热器部件6安装至第二换热腔433。In a further embodiment of the present application, referring to FIGS. 9 , 12 to 14 , a
进一步地,参照图3、图9、和图19,第一安装缺口4121和第二安装缺口4221均邻近第一出风口113,第一风道组件20还可以包括盖板45,盖板45可以设在蜗壳组件上,盖板45封盖第一安装缺口4121和第二安装缺口4221,可以减少第一换热腔432及第二换热腔433的漏风,盖板45内限定出第一风道43的出口451,方便第一风道43内的气流通过该出口451流向第一出风口113排出。Further, referring to FIG. 3 , FIG. 9 , and FIG. 19 , both the
可选地,参照图3、图9、图18和图9,第一换热器部件3包括第一换热器31和第一连接板32,第一连接板32为两个且分别设在第一换热器31的相对两侧,第一连接板32可以沿上下方向延伸。第一换热器部件3的两个第一连接板32中的一个与第一安装部412或第二安装部422相连,第一换热器部件3的两个第一连接板32中的另一个与盖板45相连。具体地,位于第一换热腔432内的第一换热器部件3的两个第一连接板32中的一个与第一安装部412相连,位于第一换热腔432内的第一换热器部件3的两个第一连接板32中的另一个与盖板45相连;位于第二换热腔433内的第一换热器部件3的两个第一连接板32中的一个与第二安装部422相连,位于第二换热腔433内的第一换热器部件3的两个第一连接板32中的另一个与盖板45相连。例如,第一换热器部件3的两个第一连接板32中的一个上设有第一紧固孔321,第一安装部412和第二安装部422上均设有与第一紧固孔321对应的第二紧固孔4224,第一换热器部件3的两个第一连接板32中的另一个上设有第三紧固孔322,盖板45上设有第四紧固孔452。在将两个第一换热器部件3分别安装至第 一换热腔432及第二换热腔433时,紧固件穿设于第一紧固孔321和第二紧固孔4224以连接第一换热器部件3与蜗壳组件,紧固件穿设于第三固定孔4111和第四固定孔4211以连接第一换热器部件3和盖板45,从而可以方便地将两个第一换热器部件3以及盖板45连接固定至蜗壳组件上。Optionally, referring to FIG. 3 , FIG. 9 , FIG. 18 and FIG. 9 , the first
根据本申请的一些实施例,参照图1-图4、图9、图13和图14,一体式空调器100包括:支架隔板7,支架隔板7设在机壳10内,例如支架隔板7可以设在机壳10内的中部位置,从而可以将机壳10的内腔分隔成上下排布的第一容纳腔和第二容纳腔,从而可以将第一容纳腔和第二容纳腔相隔开。第一容纳腔可以位于第二容纳腔的上方,第一风道组件20可以设在第一容纳腔内,第二风道组件50可以设在第二容纳腔内,第一进风口111和第一出风口113形成在第一容纳腔的侧壁上,第二进风口112和第二出风口114形成在第二容纳腔的侧壁上,第一风道组件20和第二风道组件50均与支架隔板7相连,由此使得机壳10的第一风道43部件和第二风道部件连接成一个整体,使得空调器的结构稳定、可靠。According to some embodiments of the present application, referring to FIGS. 1-4 , 9 , 13 and 14 , the
其中,支架隔板7上可以形成有第一连接孔71,支架隔板7上还可以形成有定位孔72,定位孔72可以位于支架隔板7的中部,第一风道组件20上可以形成有第二连接孔4212,第一风道组件20上还可以形成有与定位孔72配合的定位柱4213,紧固件适于穿设于第一连接孔71和第二连接孔4212,以连接第一风道组件20和支架隔板7。由此,通过定位柱4213与定位孔72的配合,方便将支架隔板7与第一风道组件20进行初步定位,再通过紧固件适于穿设于第一连接孔71和第二连接孔4212,从而可以将第一风道组件20和支架隔板7相连。例如,第一风道组件20包括上述的蜗壳组件,蜗壳组件包括上述的第一蜗壳41和第二蜗壳42,支架隔板7上可以形成有两个定位孔72、四个第一连接孔71,两个定位孔72可以位于支架隔板7的中部,四个第一连接孔71分成两组且每组包括两个第一连接孔71,两组第一连接孔71位于两个定位孔72在第一方向上的相对两侧,第一蜗壳41上设有上述两个第二连接孔4212和一个定位柱4213,第二蜗壳42上设有上述两个第二连接孔4212和一个定位柱4213,其中一组第一连接孔71与第一蜗壳41的第二连接孔4212对应,其中一个定位孔72与第一蜗壳41的定位柱4213对应,另一组第一连接孔71与第二蜗壳42的第二连接孔4212对应,另一个定位孔72与第二蜗壳42的定位柱4213对应。A
根据本申请的一些实施例,参照图1-图4、图9、图20-图23,一体式空调器100包括:支架隔板7,支架隔板7设在机壳10内,例如支架隔板7可以设在机壳10内的中部位置,从而可以将机壳10的内腔分隔成上下排布的第一容纳腔和第二容纳腔,从而可以将第一容纳腔和第二容纳腔相隔开。第一容纳腔可以位于第二容纳腔的上方,第一风道组件20可以设在第一容纳腔内,第二风道组件50可以设在第二容纳腔内,第一进风口111和第一出风 口113形成在第一容纳腔的侧壁上,第二进风口112和第二出风口114形成在第二容纳腔的侧壁上,第一风道组件20和第二风道组件50均与支架隔板7相连,由此使得机壳10的第一风道43部件和第二风道部件连接成一个整体,使得空调器的结构稳定、可靠。According to some embodiments of the present application, referring to FIGS. 1-4 , 9 , and 20-23 , the
进一步地,第二风机部件5的上端与支架隔板7相连,第二风机部件5的下端与机壳10的底座12相连。由此,方便第二风机部件5的安装固定。例如,第二风机部件5的上端可以设有第三连接孔52,支架隔板7上设有与第三连接孔52对应的第四连接孔73,第二风机部件5的下端可以设有第五连接孔53,机壳10的底座12上可以设有第六连接孔122,通过紧固件穿设于第三连接孔52和第四连接孔73,且通过紧固件穿设于第五连接孔53和第六连接孔122,从而可以将第二风机部件5可靠地固定在底座12和支架隔板7上,且实现了第二风道组件50与支架隔板7的相连。Further, the upper end of the
在本申请的一些可选实施例中,参照图1-图4、图9、图20-图23,第二换热器部件6包括第二换热器61、第一连接凸耳62和第二连接凸耳63,第一连接凸耳62和第二连接凸耳63均设在第二换热器61上,第一连接凸耳62可以设在第二换热器61的上端,第一连接凸耳62可以与第一风道组件20相连,第二连接凸耳63可以设在第二换热器61的下端,第二连接凸耳63可以与机壳10的底座12相连。由此,通过将第二换热器部件6设置为包括第一连接凸耳62和第二连接凸耳63,方便第二换热器部件6的安装固定,且可以使得第一风道组件20、第二风道组件50以及底座12连接成一个整体,使得整机结构稳定、可靠。In some optional embodiments of the present application, referring to FIGS. 1-4 , 9 , 20-23 , the second
例如,在图20、图22和图23的示例中,第二换热器部件6为两个,每个第二换热器部件6包括第二换热器61、第一连接凸耳62和第二连接凸耳63,第一风道组件20包括上述的第一蜗壳41和第二蜗壳42,第一蜗壳41和第二蜗壳42上均设有第三连接凸耳4223,底座12上设有第四连接凸耳123。其中一个第二换热器部件6与第一蜗壳41及底座12相连,具体地,通过紧固件穿设于第一连接凸耳62和第三连接凸耳4223以及通过紧固件穿设于第二连接凸耳63和第四连接凸耳123;另一个第二换热器部件6与第二蜗壳42及底座12相连,具体地,通过紧固件穿设于第一连接凸耳62和第三连接凸耳4223以及通过紧固件穿设于第二连接凸耳63和第四连接凸耳123。For example, in the example of FIGS. 20 , 22 and 23 , there are two second
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。In the description of this specification, reference to the terms "one embodiment," "some embodiments," "exemplary embodiment," "example," "specific example," or "some examples", etc., is meant to incorporate the embodiments A particular feature, structure, material, or characteristic described by an example or example is included in at least one embodiment or example of the present application. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
尽管已经示出和描述了本申请的实施例,本领域的普通技术人员可以理解:在不脱离 本申请的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。Although the embodiments of the present application have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the present application, The scope of the application is defined by the claims and their equivalents.
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| CN202021974906.0U CN212618816U (en) | 2020-09-10 | 2020-09-10 | Integrated air conditioner |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116951729A (en) * | 2022-04-19 | 2023-10-27 | 青岛海尔空调电子有限公司 | Air duct machine |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3805541A (en) * | 1972-02-18 | 1974-04-23 | Hitachi Ltd | Window-mounted air conditioning apparatus |
| US5271242A (en) * | 1993-01-21 | 1993-12-21 | Consolidated Technology Corporation | Heat pump with heat exchanger air inlet/exhaust duct |
| CN205279277U (en) * | 2015-06-29 | 2016-06-01 | 江苏百科电器有限公司 | Novel integral wind formula air conditioner of sending back to |
| CN205481386U (en) * | 2016-01-22 | 2016-08-17 | 杭州中电天恒电力科技有限公司 | Cabinet air conditioning based on miniature little channel evaporator and condenser |
| CN209181125U (en) * | 2018-12-20 | 2019-07-30 | 温耀东 | A kind of moveable air conditioner |
| CN111442412A (en) * | 2019-01-17 | 2020-07-24 | 青岛海尔空调器有限总公司 | Integrated air conditioner |
| CN212618816U (en) * | 2020-09-10 | 2021-02-26 | 广东美的制冷设备有限公司 | Integrated air conditioner |
-
2021
- 2021-06-24 WO PCT/CN2021/102164 patent/WO2022052568A1/en not_active Ceased
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3805541A (en) * | 1972-02-18 | 1974-04-23 | Hitachi Ltd | Window-mounted air conditioning apparatus |
| US5271242A (en) * | 1993-01-21 | 1993-12-21 | Consolidated Technology Corporation | Heat pump with heat exchanger air inlet/exhaust duct |
| CN205279277U (en) * | 2015-06-29 | 2016-06-01 | 江苏百科电器有限公司 | Novel integral wind formula air conditioner of sending back to |
| CN205481386U (en) * | 2016-01-22 | 2016-08-17 | 杭州中电天恒电力科技有限公司 | Cabinet air conditioning based on miniature little channel evaporator and condenser |
| CN209181125U (en) * | 2018-12-20 | 2019-07-30 | 温耀东 | A kind of moveable air conditioner |
| CN111442412A (en) * | 2019-01-17 | 2020-07-24 | 青岛海尔空调器有限总公司 | Integrated air conditioner |
| CN212618816U (en) * | 2020-09-10 | 2021-02-26 | 广东美的制冷设备有限公司 | Integrated air conditioner |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116951729A (en) * | 2022-04-19 | 2023-10-27 | 青岛海尔空调电子有限公司 | Air duct machine |
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