Wall-mounted air conditioner
By independently setting up and installing the humidification module and the air conditioner body, the problem of interference between the ventilation duct and the wall during installation of the wall-mounted air conditioner is solved, making it easier to install and have a better appearance.
Patent Information
- Application Number
- CN202210202805.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-03
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2042-03-03
AI Technical Summary
When installing an existing wall-mounted air conditioner, the ventilation pipe of the humidification module easily interferes with the wall, causing inconvenience in installation.
The humidification module and the air conditioner body are independently set in the main shell, and the ventilation pipe extends from the opening of the main shell. The air conditioner body and the humidification module are installed separately. The ventilation pipe is first inserted horizontally, and then the humidification module is hung on the wall.
It avoids the interference between the ventilation pipe and the wall, simplifies the installation process, and makes the air conditioner more integrated, structurally stable and beautiful.
Smart Images

Figure CN116734337B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of air conditioning, and in particular to a wall-mounted air conditioner. Background Art
[0002] Existing wall-mounted air conditioners with humidification functions often have the humidification module fixedly connected to the main unit. During installation, the humidification module and the main unit are hung together on the wall. However, under traditional air conditioner installation practices, the humidification module's ventilation duct can easily interfere with the wall surface, or hinder the installer's work on the back of the main unit. This makes installation of wall-mounted air conditioners with humidification functions inconvenient. Summary of the Invention
[0003] The problem to be solved by the present application is how to improve the inconvenience in installation of a wall-mounted air conditioner with a humidification function in the prior art.
[0004] To solve the above problems, the present application provides a wall-mounted air conditioner, including an air-conditioning main body, a humidification module and a main shell. The humidification module is used to humidify the indoor air, and the air-conditioning main body is used to adjust the indoor temperature; the air-conditioning main body and the humidification module are independently arranged in the main shell, and the main shell forms an opening on the back side of the wall-mounted air conditioner. The humidification module includes a ventilation pipe extending from the opening, and the ventilation pipe is used to communicate with the outdoors.
[0005] In the embodiment of the present application, the air-conditioning main body and the humidification module are independently arranged in the main shell, and there is no direct fixed connection between the two. Therefore, during installation, the air-conditioning main body and the humidification module can be hung one after another, and the installation process of the two does not affect each other. Moreover, in traditional installation habits, the upper edge of the air-conditioning main body is often hung on the wall first, and it can be flipped around the upper edge, so that the installer can lift the air-conditioning main body and perform installation and debugging operations on its back side. After the operation is completed, the lower edge of the air-conditioning main body is lowered to make the back side of the air-conditioning main body fit the wall. If the humidification device and the air-conditioning main body are installed as a whole during this process, then when the humidification module rotates downward and approaches the wall, the ventilation pipe on the back side of the humidification module is not easy to smoothly insert into the pipe hole (pre-opened on the wall) of the same diameter as the pipe, because the ventilation pipe has a rotation process from tilted to straight, which is easy to interfere with the wall. However, the wall-mounted air conditioner provided in the embodiment of the present application can be installed separately from the air conditioner main body and the humidification module during installation. The air conditioner main body can be installed in the above-mentioned manner, while the humidification module can be horizontally close to the wall surface, so that the ventilation pipe can be smoothly inserted into the pipe hole, and then the humidification module can be hung on the wall surface. Finally, the main shell is covered on the outside of the air conditioner main body and the humidification module to complete the installation. It can be seen that the wall-mounted air conditioner provided in the embodiment of the present application can avoid the interference problem of the ventilation pipe during installation and is easier to install. In addition, the wall-mounted air conditioner provided in the embodiment of the present application uses a main shell to cover the humidification module and the air conditioner main body, so that the outer surface of the air conditioner has a stronger integrity, a more stable structure and a more beautiful appearance.
[0006] In an optional embodiment, the humidification module includes a humidifying element, and the ventilation duct includes an air inlet duct and an air outlet duct, both of which are used to connect to the outside of the room. A first air path can be formed within the humidification module, the first air path entering the humidification module through the air inlet duct and being delivered out of the humidification module through the air outlet duct. The humidification module can form a second air path delivered to the room, and both the first and second air paths pass through the humidifying element, which is used to absorb moisture from the first air path and provide moisture to the second air path. In this embodiment, the moisture provided by the humidifying element to the second air path comes from the first air path, that is, from the moisture in the outdoor air. This humidification module does not require the user to add water and can achieve the function of "waterless humidification."
[0007] In an optional embodiment, the humidification module further includes a heater configured to heat the airflow in the second air path. The heater heats the airflow in the second air path, and since higher-temperature gas has a higher saturated vapor pressure, the heated second air path can remove more moisture from the humidification element.
[0008] In an optional embodiment, the humidification module includes a first fan and a second fan, wherein the first fan is used to form a first air path, and the second fan is used to form a second air path. In this embodiment, two fans are used to form the first air path and the second air path, respectively, so that the control of the first air path and the second air path is relatively independent, thereby increasing the control flexibility and better meeting the needs of users.
[0009] In an optional embodiment, the humidification module further includes a driving member for driving the humidification member to rotate. The humidification module includes a moisture absorption zone and a dehumidification zone, with a portion of the humidification member located in the moisture absorption zone and another portion located in the dehumidification zone. The first air path passes through the portion of the humidification member located in the moisture absorption zone, and the second air path passes through the portion of the humidification member located in the dehumidification zone. In this embodiment, the humidification member can rotate, and the first air path and the second air path pass through different positions of the humidification member, allowing the first air path and the second air path to operate simultaneously. While the first air path provides moisture to the humidification member, the second air path removes moisture from the humidification member, thereby improving the efficiency of humidification.
[0010] In an optional embodiment, the humidification module has a humidification inlet and a humidification outlet, both of which are connected to the indoor environment. The second air path enters through the humidification inlet and is discharged through the humidification outlet. In this embodiment, the humidification module uses indoor air to remove moisture from the humidification element. Therefore, the majority of the humidified airflow blowing to the user (except for the moisture obtained from the humidification element) comes from the indoor environment. There is no air exchange between the indoor and outdoor environments. This can prevent the introduction of poor quality external air into the indoor environment when the outdoor environment is harsh.
[0011] In an optional embodiment, a main exhaust port and a humidification port are provided on the main shell. The main exhaust port is used for the air conditioner body to supply air to the room, and the humidification port is used for the humidification module to blow humidified air into the room.
[0012] In an optional embodiment, the humidification module and the air conditioner body are arranged side by side in the horizontal direction.
[0013] In an optional embodiment, the wall-mounted air conditioner further includes a hanging plate, to which the air conditioner main body and the humidification module are both hung, and the hanging plate is located on a side of the main housing having the opening. Typically, the hanging plate is first fixed to the wall, and then the air conditioner main body and the humidification module are hung on the hanging plate, which facilitates the fixing of the air conditioner main body and the humidification module.
[0014] In an optional embodiment, a window is provided on the hanging plate, and the window is used for passing the ventilation pipe. By providing the window, the hanging plate can have a larger area, and the stability is enhanced without interfering with the ventilation pipe. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is an installation method for existing wall-mounted air conditioners;
[0016] Figure 2 This is a schematic diagram of a wall-mounted air conditioner installed on a wall in one embodiment of the present application;
[0017] Figure 3 This is a schematic diagram of a wall-mounted air conditioner before the main housing is installed in one embodiment of the present application;
[0018] Figure 4 This is an exploded schematic diagram of an auxiliary wall-mounted air conditioner according to an embodiment of the present application;
[0019] Figure 5 This is a schematic diagram of the principle of a humidification module in one embodiment of the present application;
[0020] Figure 6 This is a schematic diagram of an embodiment of the present application in which the air conditioner body is lifted up and the humidifying device is attached to the wall;
[0021] Figure 7 This is a schematic diagram of a separately installed humidification module in an embodiment of the present application.
[0022] Explanation of the reference numerals: 1'-air conditioner; 2'-wall; 3'-pad; 010-wall-mounted air conditioner; 020-wall; 100-air conditioner body; 200-humidification module; 201-moisture absorption zone; 202-dehumidification zone; 210-humidification element; 220-air inlet pipe; 230-air outlet pipe; 240-heating element; 250-first fan; 260-second fan; 300-main shell; 400-hanging plate; 410-window. DETAILED DESCRIPTION
[0023] Figure 1 This is an installation method for an existing wall-mounted air conditioner 1'. Figure 1 As shown, when installing a wall-mounted air conditioner 1', a common practice is to first hang the upper edge of the air conditioner 1' on the wall 2' (or a hanging plate on the wall), and then use the upper edge as a rotating shaft to lift the air conditioner 1' upwards, so as to install and debug the back side of the air conditioner 1'. Of course, during the operation, a cushion 3' can be used to abut between the back side of the air conditioner 1' and the wall, so that the air conditioner 1' remains in the lifted state. After the installer completes the installation work on the back side of the air conditioner 1', he removes the cushion 3' and puts the air conditioner 1' down so that its back side fits the wall. However, when installing a wall-mounted air conditioner 1' with a humidifying function, if the above-mentioned installation method is used, the following problems will occur:
[0024] The humidification module is often fixedly connected to the air conditioner body, and the back of the humidification module often has a protruding ventilation pipe, which needs to be inserted into a pre-opened pipe hole in the wall 2' to communicate with the outside. The protrusion of the ventilation pipe from the back side may interfere with the installer. Moreover, after the installation work on the back side of the air conditioner 1' is completed, the ventilation pipe is not easy to smoothly insert into the pipe hole when the air conditioner 1' is lowered. Because the ventilation pipe changes from tilted to straight during the process of rotating the humidification module and sticking it to the wall, if the pipe hole is comparable to the diameter of the ventilation pipe, the wall 2' and the ventilation pipe are likely to interfere with each other, resulting in the inability to insert. To solve this problem, some practices will accommodate as much of the ventilation pipe as possible within the humidification module body, that is, the ventilation pipe is not inserted into the pipe hole or is inserted less into the pipe hole. This practice will result in the humidification module needing to accommodate at least a portion of the length of the ventilation pipe, and the thickness of the humidification module after installation on the wall will be significantly increased (it is understood that inserting as much of the ventilation pipe as possible into the wall 2' can reduce the thickness of the humidification module on the indoor side of the wall). There is also a practice of setting the diameter of the ventilation pipe to be significantly smaller than the pipe hole, so that even if the humidification module is rotated downward, the ventilation pipe can be smoothly inserted into the pipe hole. However, this approach either increases the cost of opening the pipe hole (the pipe hole needs to be opened larger) or reduces the diameter of the ventilation pipe, resulting in limited humidification function.
[0025] In order to improve the inconvenience of installing the humidification module in the above-mentioned prior art, the embodiment of the present application provides a wall-mounted air conditioner with a humidification function, wherein the humidification module and the air conditioner body are split-type designs and can be installed independently and successively, so the humidification module can be installed in a different manner. Figure 1 The air conditioner 1' is installed in a horizontal manner close to the wall and the ventilation pipe is inserted into a pipe hole of a corresponding diameter. This ensures that the humidification module is small in size and the humidification performance is not affected.
[0026] In order to make the above-mentioned objects, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application are described in detail below with reference to the accompanying drawings.
[0027] Figure 2 This is a schematic diagram of a wall-mounted air conditioner 010 when installed on a wall 020 in one embodiment of the present application; Figure 3 This is a schematic diagram of a wall-mounted air conditioner 010 before the main housing 300 is installed in one embodiment of the present application; Figure 4 This is a schematic diagram of an exploded view of a wall-mounted air conditioner according to an embodiment of the present application. Figures 2 to 4As shown, the wall-mounted air conditioner 010 provided in the embodiment of the present application includes an air conditioner main body 100, a humidification module 200, and a main housing 300. In this embodiment, the humidification module 200 and the air conditioner main body 100 are arranged side by side in the horizontal direction. To facilitate the installation of the air conditioner main body 100 and the humidification module 200 on the wall 020, the wall-mounted air conditioner 010 may also include a hanging plate 400. The hanging plate 400 is used to be fixed to the wall 020, and the air conditioner main body 100 and the humidification module 200 are hung on the hanging plate 400. In other optional embodiments, the wall-mounted air conditioner 010 may also not include the hanging plate 400, and instead be hung directly on the wall 020.
[0028] In this embodiment, the humidification module 200 is used to humidify the room, and the air conditioner body 100 is used to adjust the indoor temperature. The air conditioner body 100 and the humidification module 200 are independently arranged in the main housing 300. The main housing 300 forms an opening on the back side of the wall-mounted air conditioner 010. The humidification module 200 includes a ventilation duct extending from the opening, which is used to communicate with the outside. In this embodiment, the main housing 300 is an integrated design, that is, the portion covering the outside of the air conditioner body 100 and the portion covering the outside of the humidification module 200 are integrally formed. Of course, in other optional embodiments, these two portions can also be fixedly connected by fasteners or welding, bonding, etc. The front side of the main housing 300 in the embodiment of the present application has a relatively flat surface. There is no obvious boundary in appearance between the portion covering the outside of the air conditioner body 100 and the portion covering the outside of the humidification module 200, so the visual integrity is better and it appears more beautiful. In addition, the integrated main housing 300 has better structural stability.
[0029] In the embodiment of the present application, the humidification module 200 and the air conditioner body 100 are independent of each other, which means that there is no direct fixed connection between the two, and no connection structure is used to keep the relative position relationship unchangeable, such as in Figure 6 In the embodiment, when the humidifying module 200 is fixed, the air conditioner body 100 can be lifted up independently.
[0030] In this embodiment, the opening of the main housing 300 is located on the back side of the wall-mounted air conditioner 010. It should be understood that the back side and the front side of the wall-mounted air conditioner 010 are opposite sides, with the back side facing the wall 020 on which the air conditioner is mounted, and the front side facing away from the wall 020. When installing the main housing 300, the opening of the main housing 300 can be horizontally oriented toward the wall 020, and then the main housing 300 can be positioned close to the wall 020 and fixed to the wall 020 to cover the air conditioner body 100 and the humidification module 200 within the main housing 300.
[0031] In this embodiment, the main housing 300 is provided with a main exhaust vent and a humidification vent (not shown). The main exhaust vent is used to supply air from the air conditioner main body 100 to the room, while the humidification vent is used to supply humidified air from the humidification module 200 to the room. The main exhaust vent and the humidification vent can be closed or opened by a controllable door panel. When the humidification and air conditioning functions are not in use, the door panel seals the main exhaust vent and the humidification vent to prevent debris from entering and maintain the aesthetic appearance of the air conditioner.
[0032] Figure 5 FIG. 2 is a schematic diagram of the principle of the humidification module 200 in one embodiment of the present application. Figure 5 As shown, the humidification module 200 includes a humidification component 210, and the ventilation pipe includes an air inlet pipe 220 and an air outlet pipe 230. The air inlet pipe 220 and the air outlet pipe 230 are both used to connect to the outside of the room. A first air path can be formed in the humidification module 200. The first air path enters the humidification module 200 through the air inlet pipe 220 and is sent out of the humidification module 200 by the air outlet pipe 230. The humidification module 200 can form a second air path sent to the room. Both the first air path and the second air path pass through the humidification component 210. The humidification component 210 is used to absorb moisture in the first air path and provide moisture to the second air path. Figure 5 As shown, the air inlet pipe 220 and the air outlet pipe 230 are both inserted into the pipe holes in the wall 020, thereby communicating with the external environment. In order to guide the flow, it is necessary to maintain a certain length of the air inlet pipe 220 and the exhaust pipe. If the air inlet pipe 220 and the exhaust pipe are not inserted into the wall 020, the humidification module 200 needs to be moved toward the indoor side as a whole, which may increase the thickness of the air conditioner on the indoor side. Of course, in other optional embodiments, the air inlet pipe 220 and the exhaust pipe can also be set as a retractable structure. Figure 5 The path represented by the solid arrow L1 is the path of the first air path, and the path represented by the solid arrow L2 is the path of the second air path. As can be seen, in this embodiment, the first air path is "outdoor-to-outdoor," while the second air path is "indoor-to-indoor." The moisture provided to the second air path by the humidifier 210 comes from the first air path, that is, from the moisture in the outdoor air. This humidification module 200 does not require the user to add water, achieving "waterless humidification" functionality.
[0033] In this embodiment, since the second air path is "indoor-indoor", the humidification module 200 has a humidification air inlet and a humidification air outlet (not shown in the figure), and the humidification air inlet and the humidification air outlet are both used to communicate with the indoor room. The second air path enters through the humidification air inlet and is sent out from the humidification air outlet. The humidification air outlet delivers humidified air to the user, which should be connected to the humidification port on the main shell 300. Another port can be provided on the main shell 300 to correspond to the humidification air inlet, or the humidification port on the main shell 300 is large enough to expose the humidification air inlet and humidification air outlet at the same time. In this embodiment, the humidification module 200 uses indoor gas to take away the moisture on the humidification component 210, so the main body of the humidified air flow blown to the user (except for the moisture obtained from the humidification component 210) comes from the indoor room, and there is no gas exchange between the indoor and outdoor spaces. This can avoid the introduction of poor quality external air into the indoor space when the outdoor environment is harsh.
[0034] Of course, in other optional embodiments, the second air path can also be introduced from the outside, which is equivalent to introducing fresh air from the outside, taking away the moisture on the humidifying element 210 and then sending it to the room. In this case, the back side of the humidifying module 200 may need to be equipped with three ventilation pipes.
[0035] In this embodiment, the humidification module 200 further includes a heating element 240, which is used to heat the airflow in the second air path. The heating element 240 can heat the airflow in the second air path, and the gas with a higher temperature has a higher saturated vapor pressure, so the heated second air path can take away more moisture from the humidification element 210. The heating element 240 can include structures such as a heating wire to achieve electric heating. Of course, in other optional embodiments, the heating element 240 may be omitted. For example, the heat exchanger in the air conditioner main body 100 can be used to heat the airflow in the second air path, or the gas in the second air path is derived from the gas heated by the heat exchanger in the air conditioner main body 100.
[0036] like Figure 5 As shown, the humidification module 200 includes a first fan 250 and a second fan 260. The first fan 250 is used to form a first air path, and the second fan 260 is used to form a second air path. In this embodiment, two fans are used to form the first air path and the second air path respectively, so that the control of the first air path and the second air path is relatively independent, which increases the flexibility of the control and can better meet the needs of users. Figure 5 In the figure, the left side of the wall 020 corresponds to the outdoors, and the right side of the wall 020 corresponds to the indoors.
[0037] Furthermore, the humidification module 200 also includes a drive member (not shown) for driving the humidification member 210 to rotate. The humidification module 200 includes a moisture absorption zone 201 and a dehumidification zone 202. A portion of the humidification member 210 is located in the moisture absorption zone 201, while another portion is located in the dehumidification zone 202. A first air path passes through the portion of the humidification member 210 located in the moisture absorption zone 201, and a second air path passes through the portion of the humidification member 210 located in the dehumidification zone 202. A portion of the humidification member 210 always absorbs moisture from the first air path in the moisture absorption zone 201, and then humidifies the air in the second air path after rotating to the dehumidification zone 202. It should be understood that the ability of the humidification member 210 to rotate means that its rotation axis passes through the humidification member 210 itself. In the present embodiment, the humidifying element 210 can rotate, and the first air path and the second air path pass through different positions of the humidifying element 210, so that the first air path and the second air path can operate simultaneously. While the first air path provides moisture to the humidifying element 210 in the moisture absorption area 201, the second air path takes away moisture from the humidifying element 210 in the dehumidification area 202, thereby improving the efficiency of humidification. The humidifying element 210 can be designed to be disc-shaped, and it is made of a material that can absorb moisture and dehumidify under certain conditions (see the prior art). In other optional embodiments, the humidifying element 210 can also be set to be non-rotatable, and the paths of the first air path and the second air path can overlap, that is, pass through the same area of the humidifying element 210. Under this setting mode, the first air path and the second air path can operate successively, for example, first using the first air path to provide moisture to the humidifying element 210, and then using the second air path to obtain moisture from the humidifying element 210.
[0038] It should be understood that the humidification module 200 may have a shell, and other components of the humidification module 200 except the ventilation pipe are accommodated in the shell. After being installed in place, the shell of the humidification module 200 can be attached to the wall 020 or the hanging board 400.
[0039] In the embodiment of the present application, the air conditioner main body 100 should include basic components that can realize the temperature regulation function, such as an air outlet component, a heat exchanger, etc. The specific structure can refer to the existing air conditioner and will not be repeated here.
[0040] In the embodiment of the present application, the air-conditioning main body 100 and the humidification module 200 are independently arranged in the main shell 300, and there is no direct fixed connection relationship between the two. Therefore, during installation, the air-conditioning main body 100 and the humidification module 200 can be hung one after another, and the installation process of the two does not affect each other. Figure 6 This is a schematic diagram of an embodiment of the present application in which the air conditioner main body 100 is lifted up and the humidifying device is attached to the wall 020. Figure 6As shown in FIG, since the air conditioner main body 100 and the humidification module 200 are independent of each other and have no direct connection, the air conditioner main body 100 can be lifted up and its back side can be debugged. After the debugging is completed, the air conditioner main body 100 can be put down and made to fit against the wall 020. As explained above, the humidification module 200 has the problem of interference between the ventilation pipe (including the air inlet pipe 220 and the air outlet pipe 230) and the wall 020 when it is installed in this way. Therefore, when installing the humidification device, you can follow the installation method. Figure 7 way. Figure 7 This is a schematic diagram of a humidification module 200 installed separately in one embodiment of the present application. Figure 7 As shown, the humidification module 200 can be placed horizontally close to the wall, allowing the ventilation pipe to be smoothly inserted into the pipe hole. The humidification module 200 can then be hung on the wall or on the hanging board 400. This method allows the ventilation pipe to be directly inserted into the pipe hole in the wall 020. The pipe hole does not need to be set to be significantly thicker than the ventilation pipe. The ventilation pipe can be inserted into the wall 020 with a pipe diameter of the same size. After the air conditioner body 100 and the humidification module 200 are installed, the main housing 300 is then placed outside the air conditioner body 100 and the humidification module 200 to complete the installation of the wall-mounted air conditioner 010. As can be seen, the wall-mounted air conditioner 010 provided in the embodiment of the present application can avoid interference with the ventilation pipe during installation, making it easier to install.
[0041] The hanging plate 400 is located on the side of the main housing 300 with an opening and is specifically used to secure it to a wall. Typically, the hanging plate 400 is first secured to the wall, and then the air conditioner main body 100 and humidification module 200 are hung on the hanging plate 400. This facilitates the securement of the air conditioner main body 100 and humidification module 200. In this embodiment, the hanging plate 400 has a window 410 for the ventilation pipe to pass through. The window 410 allows the hanging plate 400 to have a larger surface area, enhancing stability while preventing interference with the ventilation pipe.
[0042] In summary, in the wall-mounted air conditioner 010 of the embodiment of the present application, the air conditioner main body 100 and the humidification module 200 are independently arranged in the main housing 300, and there is no direct fixed connection between the two. Therefore, during installation, the air conditioner main body 100 and the humidification module 200 can be hung one after the other, and the installation process of the two does not affect each other. The humidification module 200 can be horizontally close to the wall surface, allowing the ventilation pipe to be smoothly inserted into the pipe hole, and then the humidification module 200 can be hung on the wall surface. Finally, the main housing 300 is covered outside the air conditioner main body 100 and the humidification module 200 to complete the installation. It can be seen that the wall-mounted air conditioner 010 provided by the embodiment of the present application can avoid the interference problem of the ventilation pipe during installation, making it easier to install. In addition, the wall-mounted air conditioner 010 provided by the embodiment of the present application uses a main housing 300 to cover the humidification module 200 and the air conditioner main body 100, making the outer surface of the air conditioner more integrated, structurally stable and more beautiful.
[0043] Although the present application is disclosed as above, the present application is not limited thereto. Any person skilled in the art may make various changes and modifications without departing from the spirit and scope of the present application. Therefore, the scope of protection of the present application shall be based on the scope defined by the claims.
Claims
1. A wall-mounted air conditioner, characterized in that: The wall-mounted air conditioner (010) comprises an air conditioner main body (100), a humidification module (200), and a main shell (300), wherein the humidification module (200) is used to humidify the room, and the air conditioner main body (100) is used to adjust the indoor temperature; the air conditioner main body (100) and the humidification module (200) are independently arranged in the main shell (300), and the main shell (300) forms an opening on the back side of the wall-mounted air conditioner (010); the humidification module (200) comprises a ventilation pipe, and the ventilation pipe is used to extend from the opening and communicate with the outside of the room; The humidifying module (200) includes a humidifying element (210), and the ventilation pipe includes an air inlet pipe (220) and an air outlet pipe (230), and the air inlet pipe (220) and the air outlet pipe (230) are both used to communicate with the outside of the room. A first air path can be formed in the humidifying module (200), and the first air path enters the humidifying module (200) through the air inlet pipe (220) and is sent out of the humidifying module (200) through the air outlet pipe (230). The humidifying module (200) can form a second air path sent to the room, and the first air path and the second air path both pass through the humidifying element (210). The humidifying element (210) is used to absorb moisture in the first air path and provide moisture to the second air path. The humidification module (200) further comprises a heating element (240), wherein the heating element (240) is used to heat the airflow of the second air path; The humidification module (200) further comprises a driving member, wherein the driving member is used to drive the humidification member (210) to rotate. The humidification module (200) comprises a moisture absorption zone (201) and a dehumidification zone (202). A portion of the humidification member (210) is located in the moisture absorption zone (201), and another portion is located in the dehumidification zone (202). The first air path passes through the portion of the humidification member (210) located in the moisture absorption zone (201), and the second air path passes through the portion of the humidification member (210) located in the dehumidification zone (202).
2. The wall-mounted air conditioner according to claim 1, characterized in that: The humidification module (200) comprises a first fan (250) and a second fan (260), wherein the first fan (250) is used to form the first air path, and the second fan (260) is used to form the second air path.
3. The wall-mounted air conditioner according to claim 1, characterized in that: The humidification module (200) has a humidification air inlet and a humidification air outlet, both of which are used to communicate with the room, and the second air route enters through the humidification air inlet and is sent out from the humidification air outlet.
4. The wall-mounted air conditioner according to any one of claims 1 to 3, characterized in that: The main housing (300) is provided with a main exhaust port and a humidification port. The main exhaust port is used for the air conditioner main body (100) to supply air to the room, and the humidification port is used for the humidification module (200) to blow humidified air into the room.
5. The wall-mounted air conditioner according to any one of claims 1 to 3, characterized in that: The humidification module (200) and the air-conditioning body (100) are arranged side by side in the horizontal direction.
6. The wall-mounted air conditioner according to any one of claims 1 to 3, characterized in that: The wall-mounted air conditioner (010) further comprises a hanging plate (400), the air conditioner main body (100) and the humidification module (200) are both hung on the hanging plate (400), and the hanging plate (400) is located on a side of the main housing (300) having the opening.
7. The wall-mounted air conditioner according to claim 6, characterized in that: A window (410) is provided on the hanging plate (400), and the window (410) is used for the ventilation pipe to pass through.
Citation Information
Patent Citations
Wall-mounted air conditioner
CN216769604U