Integrated air conditioner

CN224743596UActive Publication Date: 2026-09-11GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202521881581.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-01
Publication Date
2026-09-11
Estimated Expiration
2035-09-01

AI Technical Summary

Technical Problem

[0003]本申请提供了一种一体化空调器,以解决现有空调占用空间大,且影响美观性与统一性的问题

Benefits of technology

[0026]本申请实施例提供的一体化空调器,通过将室内机部分设置于安装体的内侧壁内、室外机部分设置于安装体的外侧壁内,既能够减少室内机对室内有效空间的占用,也避免室外空间与外墙表面空间浪费,显著提升空间利用率;通过将冷媒循环管路设置于安装体内的安装通道内,形成隐藏式管线结构,避免了管线裸露,从而使室内机与室内装修、室外机与建筑外立面能够自然融合,有效保障室内视觉统一性及建筑外观完整性,提升整体美观性;同时,第一室内进风口与室内出风口位于室内空间,室外进风口与室外出风口位于室外空间,保证空气正常流通并能够进行稳定的制冷、制热,且安装体还能够对室外机形成一定的防护作用,减少恶劣天气影响。另外,室内机嵌入内侧壁、室外机嵌入外侧壁的安装方式,施工人员可依托安装体结构完成室内机、室外机的固定,预设的安装通道为冷媒循环管路提供专用的布置空间,省去了管线定位等步骤,从而简化了施工流程,降低了作业难度,方便施工与后期维护。

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Abstract

This application relates to an integrated air conditioner, belonging to the field of air conditioning technology. The integrated air conditioner of this application is applied to an installation body, including an installation channel, an indoor unit, an outdoor unit, and refrigerant circulation piping. The installation channel is located inside the installation body, which includes inner and outer side walls arranged opposite each other in the thickness direction, and the installation body divides the space into indoor and outdoor spaces. The indoor unit is located within the inner side wall, and includes a first indoor air inlet and an indoor air outlet located in the indoor space. The outdoor unit is located within the outer side wall, and includes an outdoor air inlet and an outdoor air outlet located in the outdoor space. The refrigerant circulation piping is located within the installation channel and is connected to both the indoor and outdoor units to circulate refrigerant between them. The technical solution disclosed in this application can solve the problems of existing air conditioners occupying a large space and affecting aesthetics and uniformity.
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Description

Technical Field

[0001] This application relates to the field of air conditioning technology, and more particularly to an integrated air conditioner. Background Technology

[0002] Split-type air conditioners consist of an indoor unit and an outdoor unit, which must be placed in the indoor and outdoor spaces respectively during installation. The two units work together to complete the cooling and heating functions of the indoor environment. In the current installation method, the outdoor unit is usually installed on the exterior wall of the building using a bracket. However, the outdoor unit and pipes are exposed, making it difficult to integrate with the building facade and compromising aesthetics and uniformity. The indoor unit is suspended on the interior wall using a mounting plate, with the unit body protruding significantly from the wall surface. This not only occupies usable indoor space but also affects the spatial layout and aesthetics, causing inconvenience to users. Utility Model Content

[0003] This application provides an integrated air conditioner to solve the problems of existing air conditioners occupying a large space and affecting aesthetics and uniformity.

[0004] In a first aspect, this application provides an integrated air conditioner applied to an installation body, the integrated air conditioner comprising:

[0005] An installation channel is provided inside the installation body, which includes an inner sidewall and an outer sidewall arranged opposite each other in the thickness direction, and the installation body divides the space into an indoor space and an outdoor space.

[0006] An indoor unit is partially installed inside the inner wall, and the indoor unit includes a first indoor air inlet and an indoor air outlet located in the indoor space.

[0007] An outdoor unit is partially installed inside the outer wall, and the outdoor unit includes an outdoor air inlet and an outdoor air outlet located in the outdoor space.

[0008] A refrigerant circulation pipeline is installed in the installation channel, and the refrigerant circulation pipeline is connected to the indoor unit and the outdoor unit respectively, so as to circulate and deliver refrigerant between the indoor unit and the outdoor unit.

[0009] In some embodiments, a purification component is included, the purification component being disposed within the mounting channel and configured to purify gas flowing through the mounting channel;

[0010] The installation channel is connected to the outdoor space, the indoor space, and the indoor unit, respectively, so that the purified gas flows into the indoor unit.

[0011] In some embodiments, the purification assembly includes a plurality of purification plates laid on the inner wall of the installation channel, and / or a plurality of purification rods vertically disposed on the inner wall of the installation channel.

[0012] In some embodiments, the purification component is an activated carbon purification component.

[0013] In some embodiments, the outer wall is provided with a first air vent to connect the installation channel to the outdoor space.

[0014] In some embodiments, the inner sidewall is provided with a second air vent to connect the installation channel to the indoor space.

[0015] In some embodiments, a third air vent is provided on the inner sidewall, and a second indoor air inlet is provided on the side of the indoor unit facing the installation channel. The third air vent is connected to and communicates with the second indoor air inlet so that the purified gas flows into the indoor unit.

[0016] In some embodiments, the first air vent is located above the second air vent, and the third air vent is located between the first air vent and the second air vent.

[0017] In some embodiments, including:

[0018] Valves are respectively installed on the first air outlet, the second air outlet and the third air outlet to control the opening and closing of the first air outlet, the second air outlet and the third air outlet respectively;

[0019] Filters are respectively installed in the first air vent, the second air vent, and the third air vent;

[0020] An air quality sensor is installed at the first air outlet and the indoor air outlet respectively to detect the air quality of the indoor space and the outdoor space.

[0021] The control module is electrically connected to the valve and the air quality sensor respectively, and controls the operation of the valve according to the air quality of the indoor space and the outdoor space.

[0022] In some embodiments, the refrigerant circulation pipeline includes:

[0023] A liquid pipe, with its two ends connected to the indoor unit and the outdoor unit respectively, is used to deliver liquid refrigerant to the indoor unit;

[0024] The gas pipe is connected at both ends to the indoor unit and the outdoor unit, respectively, and is used to deliver gaseous refrigerant to the outdoor unit.

[0025] The technical solutions provided in this application have the following advantages compared with the prior art:

[0026] The integrated air conditioner provided in this application embodiment, by placing the indoor unit inside the inner wall of the mounting body and the outdoor unit inside the outer wall of the mounting body, can reduce the occupation of the indoor unit in the effective indoor space and avoid wasting outdoor space and exterior wall surface space, thus significantly improving space utilization. By placing the refrigerant circulation pipeline in the installation channel inside the mounting body, a concealed pipeline structure is formed, avoiding exposed pipelines, so that the indoor unit can be naturally integrated with the interior decoration and the outdoor unit with the building facade, effectively ensuring the visual unity of the interior and the integrity of the building's appearance, and improving the overall aesthetics. At the same time, the first indoor air inlet and indoor air outlet are located in the indoor space, and the outdoor air inlet and outdoor air outlet are located in the outdoor space, ensuring normal air circulation and stable cooling and heating. In addition, the mounting body can also provide a certain degree of protection for the outdoor unit, reducing the impact of severe weather. In addition, the installation method of embedding the indoor unit into the inner wall and the outdoor unit into the outer wall allows the installer to fix the indoor and outdoor units based on the installation structure. The pre-set installation channel provides dedicated space for the refrigerant circulation pipeline, eliminating the need for pipeline positioning and other steps, thereby simplifying the construction process, reducing the difficulty of operation, and facilitating construction and subsequent maintenance. Attached Figure Description

[0027] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with the present invention and, together with the description, serve to explain the principles of the present invention.

[0028] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0029] One or more embodiments are illustrated by way of example with reference numerals in the accompanying drawings. These illustrations do not constitute a limitation on the embodiments. Elements with the same reference numerals in the drawings are denoted as similar elements. Unless otherwise stated, the figures in the drawings are not to be limited by scale.

[0030] Figure 1 This is a schematic diagram of the structure of an integrated air conditioner provided in an embodiment of this application.

[0031] Explanation of reference numerals in the attached figures:

[0032] 10. Install the channel;

[0033] 20. Indoor unit; 210. First indoor air inlet; 220. Indoor air outlet; 230. Indoor fan;

[0034] 30. Outdoor unit; 310. Outdoor air inlet; 320. Outdoor air outlet; 330. Outdoor fan;

[0035] 40. Refrigerant circulation piping; 410. Liquid piping; 420. Gas piping;

[0036] 50. Mounting body; 510. Inner side wall; 5101. Second air outlet; 5103. Third air outlet; 520. Outer side wall; 5201. First air outlet;

[0037] 60. Purification component; 610. Purification rod. Detailed Implementation

[0038] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0039] The following disclosure provides numerous different embodiments or examples for implementing various structures of the present invention. To simplify the disclosure, specific examples of components and arrangements are described below. These are merely examples and are not intended to limit the scope of the invention. Furthermore, reference numerals and / or letters may be repeated in different examples. Such repetition is for simplification and clarity and does not in itself indicate a relationship between the various embodiments and / or arrangements discussed.

[0040] For ease of description, spatial relative terms may be used in the text to describe the relative position or movement of one element or feature relative to another element or feature, as shown in the figure. These relative terms include, for example, "inside," "outside," "middle," "outer," "below," "below," "above," "front," "back," etc. Such spatial relative terms are intended to include different orientations of the device in use or operation, other than those depicted in the figure. For example, if the device in the figure undergoes a positional flip, orientation change, or change of motion, these directional indications will change accordingly. For instance, an element described as "below other elements or features" or "below other elements or features" will subsequently be oriented "above other elements or features" or "above other elements or features." Therefore, the example term "below" can include both upper and lower orientations. The device may be otherwise oriented (rotated 90 degrees or in other directions), and the spatial relative descriptors used in the text will be interpreted accordingly.

[0041] Split-type air conditioners have become the mainstream air conditioning equipment in residential and commercial buildings due to their advantages such as high heat exchange efficiency and flexible application scenarios. A split-type air conditioner consists of an indoor unit and an outdoor unit, which must be placed in the indoor and outdoor spaces respectively during installation. They work together to complete the cooling and heating functions of the indoor environment. In existing installation methods, the outdoor unit is usually mounted on the building's exterior wall using a bracket, but the exposed outdoor unit and piping make it difficult to integrate with the building's facade, compromising aesthetics and uniformity. The indoor unit, on the other hand, is suspended from the interior wall using a mounting plate, with the unit protruding significantly from the wall, occupying valuable indoor space, affecting spatial layout and aesthetics, and causing inconvenience to users.

[0042] Example 1

[0043] In response to the above technical problems, such as Figure 1 As shown, this application embodiment provides an integrated air conditioner applied to an installation body 50. The integrated air conditioner includes an installation channel 10, an indoor unit 20, an outdoor unit 30, and a refrigerant circulation pipeline 40. The installation channel 10 is disposed inside the installation body 50, which includes an inner sidewall 510 and an outer sidewall 520 arranged opposite each other in the thickness direction, and the installation body 50 divides the space into an indoor space and an outdoor space. The indoor unit 20 is partially disposed within the inner sidewall 510, and the indoor unit 20 includes a first indoor air inlet 210 and an indoor air outlet 220 located in the indoor space. The outdoor unit 30 is partially disposed within the outer sidewall 520, and the outdoor unit 30 includes an outdoor air inlet 310 and an outdoor air outlet 320 located in the outdoor space. The refrigerant circulation pipeline 40 is disposed within the installation channel 10, and the refrigerant circulation pipeline 40 is connected to the indoor unit 20 and the outdoor unit 30 respectively, so as to circulate and transport refrigerant between the indoor unit 20 and the outdoor unit 30.

[0044] As can be seen from the above, by placing the indoor unit 20 part inside the inner wall 510 of the mounting body 50 and the outdoor unit 30 part inside the outer wall 520 of the mounting body 50, the space occupied by the indoor unit 20 can be reduced, and the waste of outdoor space and exterior wall surface space can be avoided, significantly improving space utilization. By placing the refrigerant circulation pipe 40 in the installation channel 10 inside the mounting body 50, a concealed pipeline structure is formed, avoiding exposed pipelines. This allows the indoor unit 20 to blend naturally with the interior decoration and the outdoor unit 30 to blend naturally with the building facade, effectively ensuring the visual unity of the interior and the integrity of the building's appearance, and improving the overall aesthetics. At the same time, the first indoor air inlet 210 and the indoor air outlet 220 are located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 are located in the outdoor space, ensuring normal air circulation and stable cooling and heating. The mounting body 50 can also provide a certain degree of protection for the outdoor unit 30, reducing the impact of severe weather. In addition, the installation method, in which the indoor unit is located inside the inner wall and the outdoor unit is located inside the outer wall, allows the installers to fix the indoor and outdoor units by relying on the installation structure. The pre-set installation channel provides dedicated space for the refrigerant circulation pipeline, eliminating the need for pipeline positioning and other steps, thereby simplifying the construction process, reducing the difficulty of operation, and facilitating construction and subsequent maintenance.

[0045] It should be noted that, as Figure 1 As shown, the thickness direction is parallel to the X direction.

[0046] It should also be noted that the mounting body 50 can be part of the wall, or the wall can have a mounting window, and the mounting body can be installed inside the mounting window.

[0047] It should also be noted that the outdoor unit 30 includes a casing, a compressor and an outdoor heat exchanger housed within the casing. The compressor is used to compress the refrigerant and provide power for the refrigerant circulation. The outdoor heat exchanger acts as a condenser in cooling mode and as an evaporator in heating mode. The outdoor unit 30 also includes a four-way valve, a throttling device, and an outdoor fan 330, the specific details of which will not be elaborated in this application. The indoor unit 20 includes a casing and an indoor heat exchanger housed within the casing. The indoor heat exchanger acts as an evaporator in cooling mode and as a condenser in heating mode. The indoor unit 20 also includes an indoor fan 230 and an air guide plate, the specific details of which will not be elaborated in this application. In addition, the refrigerant circulation pipeline 40 is connected to the outdoor heat exchanger and the indoor heat exchanger respectively.

[0048] It should also be noted that, such as Figure 1 As shown, the first indoor air inlet 210 is located at the top of the indoor unit 20, and the indoor air outlet 220 is located on the side of the indoor unit 20 away from the installation channel 10 and at the bottom of the indoor unit 20; the outdoor air inlet 310 is located on both sides of the outdoor unit 30, and the outdoor air outlet 320 is located on the side of the outdoor unit 30 away from the installation channel 10.

[0049] It should also be noted that the depth of the indoor unit 20 embedded in the mounting body 50 and the depth of the outdoor unit 30 embedded in the mounting body 50 can be specifically set according to the thickness of the mounting body 50, user needs, etc. Except for the first indoor air inlet 210 and the indoor air outlet 220 which must be located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 which must be located in the outdoor space, the other components of the indoor unit 20 and the outdoor unit 30 can be set in the mounting body 50, including the outer shell and internal components. For example, when the user requires deep embedding, the indoor unit 20 and outdoor unit 30 can be fixed in the mounting body 50 using sheet metal parts, embedding the entire body of the indoor unit 20 and outdoor unit 30 as much as possible, and the indoor unit 20 and outdoor unit 30 can occupy the space of the installation channel 10; when the user does not require embedding depth, by default only the gas pipe 420 and liquid pipe 410 are placed in the installation channel 10, and the indoor unit 20 and outdoor unit 30 are embedded in the inner side wall 510 and outer side wall 520 respectively, without occupying the space in the installation channel 10, so that more purification components 60 can be arranged in the installation channel 10, improving the air purification effect.

[0050] Example 2

[0051] like Figure 1 As shown, this application embodiment provides an integrated air conditioner applied to an installation body 50. The integrated air conditioner includes an installation channel 10, an indoor unit 20, an outdoor unit 30, and a refrigerant circulation pipeline 40. The installation channel 10 is disposed inside the installation body 50, which includes an inner sidewall 510 and an outer sidewall 520 arranged opposite each other in the thickness direction, and the installation body 50 divides the space into an indoor space and an outdoor space. The indoor unit 20 is partially disposed within the inner sidewall 510, and the indoor unit 20 includes a first indoor air inlet 210 and an indoor air outlet 220 located in the indoor space. The outdoor unit 30 is partially disposed within the outer sidewall 520, and the outdoor unit 30 includes an outdoor air inlet 310 and an outdoor air outlet 320 located in the outdoor space. The refrigerant circulation pipeline 40 is disposed within the installation channel 10, and the refrigerant circulation pipeline 40 is connected to the indoor unit 20 and the outdoor unit 30 respectively, so as to circulate and transport refrigerant between the indoor unit 20 and the outdoor unit 30.

[0052] As can be seen from the above, by placing the indoor unit 20 part inside the inner wall 510 of the mounting body 50 and the outdoor unit 30 part inside the outer wall 520 of the mounting body 50, the space occupied by the indoor unit 20 can be reduced, and the waste of outdoor space and exterior wall surface space can be avoided, significantly improving space utilization. By placing the refrigerant circulation pipe 40 in the installation channel 10 inside the mounting body 50, a concealed pipeline structure is formed, avoiding exposed pipelines. This allows the indoor unit 20 to blend naturally with the interior decoration and the outdoor unit 30 to blend naturally with the building facade, effectively ensuring the visual unity of the interior and the integrity of the building's appearance, and improving the overall aesthetics. At the same time, the first indoor air inlet 210 and the indoor air outlet 220 are located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 are located in the outdoor space, ensuring normal air circulation and stable cooling and heating. The mounting body 50 can also provide a certain degree of protection for the outdoor unit 30, reducing the impact of severe weather. In addition, the installation method, in which the indoor unit is located inside the inner wall and the outdoor unit is located inside the outer wall, allows the installers to fix the indoor and outdoor units by relying on the installation structure. The pre-set installation channel provides dedicated space for the refrigerant circulation pipeline, eliminating the need for pipeline positioning and other steps, thereby simplifying the construction process, reducing the difficulty of operation, and facilitating construction and subsequent maintenance.

[0053] It should be noted that, as Figure 1 As shown, the thickness direction is parallel to the X direction.

[0054] It should also be noted that the mounting body 50 can be part of the wall, or the wall can have a mounting window, and the mounting body can be installed inside the mounting window.

[0055] It should also be noted that the outdoor unit 30 includes a casing, a compressor and an outdoor heat exchanger housed within the casing. The compressor is used to compress the refrigerant and provide power for the refrigerant circulation. The outdoor heat exchanger acts as a condenser in cooling mode and as an evaporator in heating mode. The outdoor unit 30 also includes a four-way valve, a throttling device, and an outdoor fan 330, the specific details of which will not be elaborated in this application. The indoor unit 20 includes a casing and an indoor heat exchanger housed within the casing. The indoor heat exchanger acts as an evaporator in cooling mode and as a condenser in heating mode. The indoor unit 20 also includes an indoor fan 230 and an air guide plate, the specific details of which will not be elaborated in this application. In addition, the refrigerant circulation pipeline 40 is connected to the outdoor heat exchanger and the indoor heat exchanger respectively.

[0056] It should also be noted that, such as Figure 1 As shown, the first indoor air inlet 210 is located at the top of the indoor unit 20, and the indoor air outlet 220 is located on the side of the indoor unit 20 away from the installation channel 10 and at the bottom of the indoor unit 20; the outdoor air inlet 310 is located on both sides of the outdoor unit 30, and the outdoor air outlet 320 is located on the side of the outdoor unit 30 away from the installation channel 10.

[0057] It should also be noted that the depth of the indoor unit 20 embedded in the mounting body 50 and the depth of the outdoor unit 30 embedded in the mounting body 50 can be specifically set according to the thickness of the mounting body 50, user needs, etc. Except for the first indoor air inlet 210 and the indoor air outlet 220 which must be located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 which must be located in the outdoor space, the other components of the indoor unit 20 and the outdoor unit 30 can be set in the mounting body 50, including the outer shell and internal components. For example, when the user requires deep embedding, the indoor unit 20 and outdoor unit 30 can be fixed in the mounting body 50 using sheet metal parts, embedding the entire body of the indoor unit 20 and outdoor unit 30 as much as possible, and the indoor unit 20 and outdoor unit 30 can occupy the space of the installation channel 10; when the user does not require embedding depth, by default only the gas pipe 420 and liquid pipe 410 are placed in the installation channel 10, and the indoor unit 20 and outdoor unit 30 are embedded in the inner side wall 510 and outer side wall 520 respectively, without occupying the space in the installation channel 10, so that more purification components 60 can be arranged in the installation channel 10, improving the air purification effect.

[0058] In some embodiments, a purification component 60 is included, which is disposed in the installation channel 10 and configured to purify the gas flowing through the installation channel 10; wherein the installation channel 10 is connected to an outdoor space, an indoor space, and an indoor unit 20, so that the purified gas flows into the indoor unit 20.

[0059] By installing the purification component 60 within the installation channel 10, the spatial layout can be optimized, allowing for a concealed arrangement of the purification component 60. The installation channel 10 connects to the outdoor space, indoor space, and indoor unit 20, forming multiple gas flow paths and directional delivery paths for purified gas. Specifically, the outdoor space can introduce outdoor air into the installation channel, and the indoor space can introduce indoor air into the installation channel. This allows the purification component 60 to handle both fresh air and indoor return air, preventing outdoor pollutants from entering the room and resolving issues such as indoor odors and pollutants. Meanwhile, the indoor unit 20 introduces purified air into the indoor space, enabling the purification function of the purification component 60 to work in conjunction with the temperature and humidity control functions of the air conditioner, improving indoor air quality and meeting users' needs for indoor air comfort and health.

[0060] Example 3

[0061] like Figure 1As shown, this application embodiment provides an integrated air conditioner, including an installation channel 10, an indoor unit 20, an outdoor unit 30, and a refrigerant circulation pipeline 40. The installation channel 10 is disposed inside a mounting body 50, which includes an inner sidewall 510 and an outer sidewall 520 arranged opposite each other in the thickness direction, and the mounting body 50 divides the space into an indoor space and an outdoor space. The indoor unit 20 is partially disposed within the inner sidewall 510, and the indoor unit 20 includes a first indoor air inlet 210 and an indoor air outlet 220 located in the indoor space. The outdoor unit 30 is partially disposed within the outer sidewall 520, and the outdoor unit 30 includes an outdoor air inlet 310 and an outdoor air outlet 320 located in the outdoor space. The refrigerant circulation pipeline 40 is disposed within the installation channel 10, and the refrigerant circulation pipeline 40 is connected to the indoor unit 20 and the outdoor unit 30 respectively, so as to circulate and transport refrigerant between the indoor unit 20 and the outdoor unit 30.

[0062] As can be seen from the above, by placing the indoor unit 20 part inside the inner wall 510 of the mounting body 50 and the outdoor unit 30 part inside the outer wall 520 of the mounting body 50, the space occupied by the indoor unit 20 can be reduced, and the waste of outdoor space and exterior wall surface space can be avoided, significantly improving space utilization. By placing the refrigerant circulation pipe 40 in the installation channel 10 inside the mounting body 50, a concealed pipeline structure is formed, avoiding exposed pipelines. This allows the indoor unit 20 to blend naturally with the interior decoration and the outdoor unit 30 to blend naturally with the building facade, effectively ensuring the visual unity of the interior and the integrity of the building's appearance, and improving the overall aesthetics. At the same time, the first indoor air inlet 210 and the indoor air outlet 220 are located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 are located in the outdoor space, ensuring normal air circulation and stable cooling and heating. The mounting body 50 can also provide a certain degree of protection for the outdoor unit 30, reducing the impact of severe weather. In addition, the installation method, in which the indoor unit is located inside the inner wall and the outdoor unit is located inside the outer wall, allows the installers to fix the indoor and outdoor units by relying on the installation structure. The pre-set installation channel provides dedicated space for the refrigerant circulation pipeline, eliminating the need for pipeline positioning and other steps, thereby simplifying the construction process, reducing the difficulty of operation, and facilitating construction and subsequent maintenance.

[0063] It should be noted that, as Figure 1 As shown, the thickness direction is parallel to the X direction.

[0064] It should also be noted that the mounting body 50 can be part of the wall, or the wall can have a mounting window, and the mounting body can be installed inside the mounting window.

[0065] It should also be noted that the outdoor unit 30 includes a casing, a compressor and an outdoor heat exchanger housed within the casing. The compressor is used to compress the refrigerant and provide power for the refrigerant circulation. The outdoor heat exchanger acts as a condenser in cooling mode and as an evaporator in heating mode. The outdoor unit 30 also includes a four-way valve, a throttling device, and an outdoor fan 330, the specific details of which will not be elaborated in this application. The indoor unit 20 includes a casing and an indoor heat exchanger housed within the casing. The indoor heat exchanger acts as an evaporator in cooling mode and as a condenser in heating mode. The indoor unit 20 also includes an indoor fan 230 and an air guide plate, the specific details of which will not be elaborated in this application. In addition, the refrigerant circulation pipeline 40 is connected to the outdoor heat exchanger and the indoor heat exchanger respectively.

[0066] It should also be noted that, such as Figure 1 As shown, the first indoor air inlet 210 is located at the top of the indoor unit 20, and the indoor air outlet 220 is located on the side of the indoor unit 20 away from the installation channel 10 and at the bottom of the indoor unit 20; the outdoor air inlet 310 is located on both sides of the outdoor unit 30, and the outdoor air outlet 320 is located on the side of the outdoor unit 30 away from the installation channel 10.

[0067] It should also be noted that the depth of the indoor unit 20 embedded in the mounting body 50 and the depth of the outdoor unit 30 embedded in the mounting body 50 can be specifically set according to the thickness of the mounting body 50, user needs, etc. Except for the first indoor air inlet 210 and the indoor air outlet 220 which must be located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 which must be located in the outdoor space, the other components of the indoor unit 20 and the outdoor unit 30 can be set in the mounting body 50, including the outer shell and internal components. For example, when the user requires deep embedding, the indoor unit 20 and outdoor unit 30 can be fixed in the mounting body 50 using sheet metal parts, embedding the entire body of the indoor unit 20 and outdoor unit 30 as much as possible, and the indoor unit 20 and outdoor unit 30 can occupy the space of the installation channel 10; when the user does not require embedding depth, by default only the gas pipe 420 and liquid pipe 410 are placed in the installation channel 10, and the indoor unit 20 and outdoor unit 30 are embedded in the inner side wall 510 and outer side wall 520 respectively, without occupying the space in the installation channel 10, so that more purification components 60 can be arranged in the installation channel 10, improving the air purification effect.

[0068] In some embodiments, a purification component 60 is included, which is disposed in the installation channel 10 and configured to purify the gas flowing through the installation channel 10; wherein the installation channel 10 is connected to an outdoor space, an indoor space, and an indoor unit 20, so that the purified gas flows into the indoor unit 20.

[0069] By installing the purification component 60 within the installation channel 10, the spatial layout can be optimized, allowing for a concealed arrangement of the purification component 60. The installation channel 10 connects to the outdoor space, indoor space, and indoor unit 20, forming multiple gas flow paths and directional delivery paths for purified gas. Specifically, the outdoor space can introduce outdoor air into the installation channel, and the indoor space can introduce indoor air into the installation channel. This allows the purification component 60 to handle both fresh air and indoor return air, preventing outdoor pollutants from entering the room and resolving issues such as indoor odors and pollutants. Meanwhile, the indoor unit 20 introduces purified air into the indoor space, enabling the purification function of the purification component 60 to work in conjunction with the temperature and humidity control functions of the air conditioner, improving indoor air quality and meeting users' needs for indoor air comfort and health.

[0070] In some embodiments, the purification assembly 60 includes a plurality of purification plates laid on the inner wall of the installation channel 10, and / or a plurality of purification rods 610 vertically disposed on the inner wall of the installation channel 10.

[0071] By laying a purification plate inside the installation channel 10, a large purification contact surface can be formed using the planar space, while the vertically arranged purification rod 610 forms a purification interception. The combination of the two or their individual use can increase the contact area between the gas and the purification component 60, reduce the situation where unpurified gas directly passes through the installation channel 10, and improve the gas purification effect. In addition, the purification plate and purification rod 610 are highly flexible and adaptable, and can be used individually or in combination according to the size of the installation channel 10.

[0072] It should be noted that when the space inside the installation channel 10 is small, only the purification plate can be laid to avoid the purification rod 610 occupying the space inside the installation channel 10, which would prevent the refrigerant circulation pipe 40 from being installed normally. When the space inside the installation channel 10 is large enough to meet the vertical installation requirements of the purification rod 610, the purification rod 610 can be installed vertically on the inner wall of the installation channel 10. Of course, both the purification plate and the purification rod 610 can be laid.

[0073] It should also be noted that the cleanroom panels can be laid on every inner wall of the installation channel 10, or only on a portion of the inner walls of the installation channel 10; furthermore, the inner walls of the installation channel 10 include the top wall and the side walls, such as... Figure 1 As shown, the purification rods 610 can be arranged at intervals on the top wall or on the side wall, ensuring smooth airflow and efficient purification while avoiding excessive wind resistance.

[0074] In some embodiments, the purification component 60 is an activated carbon purification component 60.

[0075] The activated carbon purification component 60 can adsorb various pollutants in the gas inside the installation channel 10, such as solid particulate matter like dust, gaseous substances like formaldehyde, and odors like cooking fumes, thereby achieving multi-dimensional purification, making the output air cleaner and effectively improving air quality; in addition, activated carbon is low in cost and easy to maintain.

[0076] It should be noted that the purification plate can be an activated carbon filter plate, that is, a plate-shaped structure processed from activated carbon material, and the purification rod 610 can be an activated carbon filter rod, that is, a columnar structure processed from activated carbon material.

[0077] Example 4

[0078] like Figure 1 As shown, this application embodiment provides an integrated air conditioner, including an installation channel 10, an indoor unit 20, an outdoor unit 30, and a refrigerant circulation pipeline 40. The installation channel 10 is disposed inside a mounting body 50, which includes an inner sidewall 510 and an outer sidewall 520 arranged opposite each other in the thickness direction, and the mounting body 50 divides the space into an indoor space and an outdoor space. The indoor unit 20 is partially disposed within the inner sidewall 510, and the indoor unit 20 includes a first indoor air inlet 210 and an indoor air outlet 220 located in the indoor space. The outdoor unit 30 is partially disposed within the outer sidewall 520, and the outdoor unit 30 includes an outdoor air inlet 310 and an outdoor air outlet 320 located in the outdoor space. The refrigerant circulation pipeline 40 is disposed within the installation channel 10, and the refrigerant circulation pipeline 40 is connected to the indoor unit 20 and the outdoor unit 30 respectively, so as to circulate and transport refrigerant between the indoor unit 20 and the outdoor unit 30.

[0079] As can be seen from the above, by placing the indoor unit 20 part inside the inner wall 510 of the mounting body 50 and the outdoor unit 30 part inside the outer wall 520 of the mounting body 50, the space occupied by the indoor unit 20 can be reduced, and the waste of outdoor space and exterior wall surface space can be avoided, significantly improving space utilization. By placing the refrigerant circulation pipe 40 in the installation channel 10 inside the mounting body 50, a concealed pipeline structure is formed, avoiding exposed pipelines. This allows the indoor unit 20 to blend naturally with the interior decoration and the outdoor unit 30 to blend naturally with the building facade, effectively ensuring the visual unity of the interior and the integrity of the building's appearance, and improving the overall aesthetics. At the same time, the first indoor air inlet 210 and the indoor air outlet 220 are located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 are located in the outdoor space, ensuring normal air circulation and stable cooling and heating. The mounting body 50 can also provide a certain degree of protection for the outdoor unit 30, reducing the impact of severe weather. In addition, the installation method, in which the indoor unit is located inside the inner wall and the outdoor unit is located inside the outer wall, allows the installers to fix the indoor and outdoor units by relying on the installation structure. The pre-set installation channel provides dedicated space for the refrigerant circulation pipeline, eliminating the need for pipeline positioning and other steps, thereby simplifying the construction process, reducing the difficulty of operation, and facilitating construction and subsequent maintenance.

[0080] It should be noted that, as Figure 1 As shown, the thickness direction is parallel to the X direction.

[0081] It should also be noted that the mounting body 50 can be part of the wall, or the wall can have a mounting window, and the mounting body can be installed inside the mounting window.

[0082] It should also be noted that the outdoor unit 30 includes a casing, a compressor and an outdoor heat exchanger housed within the casing. The compressor is used to compress the refrigerant and provide power for the refrigerant circulation. The outdoor heat exchanger acts as a condenser in cooling mode and as an evaporator in heating mode. The outdoor unit 30 also includes a four-way valve, a throttling device, and an outdoor fan 330, the specific details of which will not be elaborated in this application. The indoor unit 20 includes a casing and an indoor heat exchanger housed within the casing. The indoor heat exchanger acts as an evaporator in cooling mode and as a condenser in heating mode. The indoor unit 20 also includes an indoor fan 230 and an air guide plate, the specific details of which will not be elaborated in this application. In addition, the refrigerant circulation pipeline 40 is connected to the outdoor heat exchanger and the indoor heat exchanger respectively.

[0083] It should also be noted that, such as Figure 1 As shown, the first indoor air inlet 210 is located at the top of the indoor unit 20, and the indoor air outlet 220 is located on the side of the indoor unit 20 away from the installation channel 10 and at the bottom of the indoor unit 20; the outdoor air inlet 310 is located on both sides of the outdoor unit 30, and the outdoor air outlet 320 is located on the side of the outdoor unit 30 away from the installation channel 10.

[0084] It should also be noted that the depth of the indoor unit 20 embedded in the mounting body 50 and the depth of the outdoor unit 30 embedded in the mounting body 50 can be specifically set according to the thickness of the mounting body 50, user needs, etc. Except for the first indoor air inlet 210 and the indoor air outlet 220 which must be located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 which must be located in the outdoor space, the other components of the indoor unit 20 and the outdoor unit 30 can be set in the mounting body 50, including the outer shell and internal components. For example, when the user requires deep embedding, the indoor unit 20 and outdoor unit 30 can be fixed in the mounting body 50 using sheet metal parts, embedding the entire body of the indoor unit 20 and outdoor unit 30 as much as possible, and the indoor unit 20 and outdoor unit 30 can occupy the space of the installation channel 10; when the user does not require embedding depth, by default only the gas pipe 420 and liquid pipe 410 are placed in the installation channel 10, and the indoor unit 20 and outdoor unit 30 are embedded in the inner side wall 510 and outer side wall 520 respectively, without occupying the space in the installation channel 10, so that more purification components 60 can be arranged in the installation channel 10, improving the air purification effect.

[0085] In some embodiments, a purification component 60 is included, which is disposed in the installation channel 10 and configured to purify the gas flowing through the installation channel 10; wherein the installation channel 10 is connected to an outdoor space, an indoor space, and an indoor unit 20, so that the purified gas flows into the indoor unit 20.

[0086] By installing the purification component 60 within the installation channel 10, the spatial layout can be optimized, allowing for a concealed arrangement of the purification component 60. The installation channel 10 connects to the outdoor space, indoor space, and indoor unit 20, forming multiple gas flow paths and directional delivery paths for purified gas. Specifically, the outdoor space can introduce outdoor air into the installation channel, and the indoor space can introduce indoor air into the installation channel. This allows the purification component 60 to handle both fresh air and indoor return air, preventing outdoor pollutants from entering the room and resolving issues such as indoor odors and pollutants. Meanwhile, the indoor unit 20 introduces purified air into the indoor space, enabling the purification function of the purification component 60 to work in conjunction with the temperature and humidity control functions of the air conditioner, improving indoor air quality and meeting users' needs for indoor air comfort and health.

[0087] In some embodiments, the purification assembly 60 includes a plurality of purification plates laid on the inner wall of the installation channel 10, and / or a plurality of purification rods 610 vertically disposed on the inner wall of the installation channel 10.

[0088] By laying a purification plate inside the installation channel 10, a large purification contact surface can be formed using the planar space, while the vertically arranged purification rod 610 forms a purification interception. The combination of the two or their individual use can increase the contact area between the gas and the purification component 60, reduce the situation where unpurified gas directly passes through the installation channel 10, and improve the gas purification effect. In addition, the purification plate and purification rod 610 are highly flexible and adaptable, and can be used individually or in combination according to the size of the installation channel 10.

[0089] It should be noted that when the space inside the installation channel 10 is small, only the purification plate can be laid to avoid the purification rod 610 occupying the space inside the installation channel 10, which would prevent the refrigerant circulation pipe 40 from being installed normally. When the space inside the installation channel 10 is large enough to meet the vertical installation requirements of the purification rod 610, the purification rod 610 can be installed vertically on the inner wall of the installation channel 10. Of course, both the purification plate and the purification rod 610 can be laid.

[0090] It should also be noted that the cleanroom panels can be laid on every inner wall of the installation channel 10, or only on a portion of the inner walls of the installation channel 10; furthermore, the inner walls of the installation channel 10 include the top wall and the side walls, such as... Figure 1 As shown, the purification rods 610 can be arranged at intervals on the top wall or on the side wall, ensuring smooth airflow and efficient purification while avoiding excessive wind resistance.

[0091] In some embodiments, the purification component 60 is an activated carbon purification component 60.

[0092] The activated carbon purification component 60 can adsorb various pollutants in the gas inside the installation channel 10, such as solid particulate matter like dust, gaseous substances like formaldehyde, and odors like cooking fumes, thereby achieving multi-dimensional purification, making the output air cleaner and effectively improving air quality; in addition, activated carbon is low in cost and easy to maintain.

[0093] It should be noted that the purification plate can be an activated carbon filter plate, that is, a plate-shaped structure processed from activated carbon material, and the purification rod 610 can be an activated carbon filter rod, that is, a columnar structure processed from activated carbon material.

[0094] In some embodiments, the outer wall 520 is provided with a first air vent 5201 so that the installation channel 10 is connected to the outdoor space.

[0095] By setting the first air vent 5201, outdoor air can be introduced into the installation channel 10, allowing the outdoor air to come into contact with the purification component 60 within the installation channel 10, thus completing the purification treatment of pollutants such as dust in the outdoor air, preventing outdoor air from flowing directly into the room without purification, thereby providing clean fresh air to the room.

[0096] In some embodiments, the inner sidewall 510 is provided with a second air vent 5101 so that the installation channel 10 is connected to the indoor space.

[0097] By setting a second air vent 5101, indoor air can be introduced into the installation channel 10, allowing the indoor air to come into contact with the purification component 60 within the installation channel 10. This purifies the indoor air by removing dust, odors, formaldehyde, and other pollutants, preventing unpurified indoor air from flowing back into the room and further improving indoor air quality.

[0098] In some embodiments, the inner sidewall 510 is provided with a third air vent 5103, and the indoor unit 20 is provided with a second indoor air inlet on the side facing the installation channel 10. The third air vent 5103 is connected to and communicates with the second indoor air inlet so that the purified gas flows into the indoor unit 20.

[0099] The third air vent 5103 is connected to the second indoor air inlet, establishing a transport channel for the purified gas in the installation channel 10. This ensures that the purified gas in the installation channel 10 flows into the indoor unit 20 through the third air vent 5103. At the same time, since the indoor unit 20 generates a certain negative pressure at the indoor air inlet during operation, it can draw in the purified gas in the installation channel 10, providing the power for directional airflow and preventing the purified gas from freely diffusing and causing secondary pollution during transmission.

[0100] In some embodiments, the first air vent 5201 is located above the second air vent 5101, and the third air vent 5103 is located between the first air vent 5201 and the second air vent 5101.

[0101] By placing the second air vent 5101 at the bottom, polluted air accumulated in the indoor space, such as carbon dioxide and dust exhaled from breathing, can be collected more efficiently. Due to their slightly higher density, these pollutants tend to settle at the bottom of the indoor space, allowing them to quickly flow into the installation channel 10. The third air vent 5103, located between the first air vent 5201 and the second air vent 5101, can receive the purified outdoor fresh air from above and the purified indoor return air from below within the installation channel 10. This allows for connection to the indoor unit 20 without significantly altering the airflow direction, reducing gas stagnation and backflow. Furthermore, this layout is suitable for purification systems requiring longer airflow channels. Placing the first air vent 5201 above the second air vent 5101 allows for sufficient channel space to accommodate the purification component 60, resulting in a longer gas residence and purification time, and increasing the contact area and contact time between the gas and the purification component 60.

[0102] Example 5

[0103] like Figure 1As shown, this application embodiment provides an integrated air conditioner, including an installation channel 10, an indoor unit 20, an outdoor unit 30, and a refrigerant circulation pipeline 40. The installation channel 10 is disposed inside a mounting body 50, which includes an inner sidewall 510 and an outer sidewall 520 arranged opposite each other in the thickness direction, and the mounting body 50 divides the space into an indoor space and an outdoor space. The indoor unit 20 is partially disposed within the inner sidewall 510, and the indoor unit 20 includes a first indoor air inlet 210 and an indoor air outlet 220 located in the indoor space. The outdoor unit 30 is partially disposed within the outer sidewall 520, and the outdoor unit 30 includes an outdoor air inlet 310 and an outdoor air outlet 320 located in the outdoor space. The refrigerant circulation pipeline 40 is disposed within the installation channel 10, and the refrigerant circulation pipeline 40 is connected to the indoor unit 20 and the outdoor unit 30 respectively, so as to circulate and transport refrigerant between the indoor unit 20 and the outdoor unit 30.

[0104] As can be seen from the above, by placing the indoor unit 20 part inside the inner wall 510 of the mounting body 50 and the outdoor unit 30 part inside the outer wall 520 of the mounting body 50, the space occupied by the indoor unit 20 can be reduced, and the waste of outdoor space and exterior wall surface space can be avoided, significantly improving space utilization. By placing the refrigerant circulation pipe 40 in the installation channel 10 inside the mounting body 50, a concealed pipeline structure is formed, avoiding exposed pipelines. This allows the indoor unit 20 to blend naturally with the interior decoration and the outdoor unit 30 to blend naturally with the building facade, effectively ensuring the visual unity of the interior and the integrity of the building's appearance, and improving the overall aesthetics. At the same time, the first indoor air inlet 210 and the indoor air outlet 220 are located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 are located in the outdoor space, ensuring normal air circulation and stable cooling and heating. The mounting body 50 can also provide a certain degree of protection for the outdoor unit 30, reducing the impact of severe weather. In addition, the installation method, in which the indoor unit is located inside the inner wall and the outdoor unit is located inside the outer wall, allows the installers to fix the indoor and outdoor units by relying on the installation structure. The pre-set installation channel provides dedicated space for the refrigerant circulation pipeline, eliminating the need for pipeline positioning and other steps, thereby simplifying the construction process, reducing the difficulty of operation, and facilitating construction and subsequent maintenance.

[0105] It should be noted that, as Figure 1 As shown, the thickness direction is parallel to the X direction.

[0106] It should also be noted that the mounting body 50 can be part of the wall, or the wall can have a mounting window, and the mounting body can be installed inside the mounting window.

[0107] It should also be noted that the outdoor unit 30 includes a casing, a compressor and an outdoor heat exchanger housed within the casing. The compressor is used to compress the refrigerant and provide power for the refrigerant circulation. The outdoor heat exchanger acts as a condenser in cooling mode and as an evaporator in heating mode. The outdoor unit 30 also includes a four-way valve, a throttling device, and an outdoor fan 330, the specific details of which will not be elaborated in this application. The indoor unit 20 includes a casing and an indoor heat exchanger housed within the casing. The indoor heat exchanger acts as an evaporator in cooling mode and as a condenser in heating mode. The indoor unit 20 also includes an indoor fan 230 and an air guide plate, the specific details of which will not be elaborated in this application. In addition, the refrigerant circulation pipeline 40 is connected to the outdoor heat exchanger and the indoor heat exchanger respectively.

[0108] It should also be noted that, such as Figure 1 As shown, the first indoor air inlet 210 is located at the top of the indoor unit 20, and the indoor air outlet 220 is located on the side of the indoor unit 20 away from the installation channel 10 and at the bottom of the indoor unit 20; the outdoor air inlet 310 is located on both sides of the outdoor unit 30, and the outdoor air outlet 320 is located on the side of the outdoor unit 30 away from the installation channel 10.

[0109] It should also be noted that the depth of the indoor unit 20 embedded in the mounting body 50 and the depth of the outdoor unit 30 embedded in the mounting body 50 can be specifically set according to the thickness of the mounting body 50, user needs, etc. Except for the first indoor air inlet 210 and the indoor air outlet 220 which must be located in the indoor space, and the outdoor air inlet 310 and the outdoor air outlet 320 which must be located in the outdoor space, the other components of the indoor unit 20 and the outdoor unit 30 can be set in the mounting body 50, including the outer shell and internal components. For example, when the user requires deep embedding, the indoor unit 20 and outdoor unit 30 can be fixed in the mounting body 50 using sheet metal parts, embedding the entire body of the indoor unit 20 and outdoor unit 30 as much as possible, and the indoor unit 20 and outdoor unit 30 can occupy the space of the installation channel 10; when the user does not require embedding depth, by default only the gas pipe 420 and liquid pipe 410 are placed in the installation channel 10, and the indoor unit 20 and outdoor unit 30 are embedded in the inner side wall 510 and outer side wall 520 respectively, without occupying the space in the installation channel 10, so that more purification components 60 can be arranged in the installation channel 10, improving the air purification effect.

[0110] In some embodiments, a purification component 60 is included, which is disposed in the installation channel 10 and configured to purify the gas flowing through the installation channel 10; wherein the installation channel 10 is connected to an outdoor space, an indoor space, and an indoor unit 20, so that the purified gas flows into the indoor unit 20.

[0111] By installing the purification component 60 within the installation channel 10, the spatial layout can be optimized, allowing for a concealed arrangement of the purification component 60. The installation channel 10 connects to the outdoor space, indoor space, and indoor unit 20, forming multiple gas flow paths and directional delivery paths for purified gas. Specifically, the outdoor space can introduce outdoor air into the installation channel, and the indoor space can introduce indoor air into the installation channel. This allows the purification component 60 to handle both fresh air and indoor return air, preventing outdoor pollutants from entering the room and resolving issues such as indoor odors and pollutants. Meanwhile, the indoor unit 20 introduces purified air into the indoor space, enabling the purification function of the purification component 60 to work in conjunction with the temperature and humidity control functions of the air conditioner, improving indoor air quality and meeting users' needs for indoor air comfort and health.

[0112] In some embodiments, the purification assembly 60 includes a plurality of purification plates laid on the inner wall of the installation channel 10, and / or a plurality of purification rods 610 vertically disposed on the inner wall of the installation channel 10.

[0113] By laying a purification plate inside the installation channel 10, a large purification contact surface can be formed using the planar space, while the vertically arranged purification rod 610 forms a purification interception. The combination of the two or their individual use can increase the contact area between the gas and the purification component 60, reduce the situation where unpurified gas directly passes through the installation channel 10, and improve the gas purification effect. In addition, the purification plate and purification rod 610 are highly flexible and adaptable, and can be used individually or in combination according to the size of the installation channel 10.

[0114] It should be noted that when the space inside the installation channel 10 is small, only the purification plate can be laid to avoid the purification rod 610 occupying the space inside the installation channel 10, which would prevent the refrigerant circulation pipe 40 from being installed normally. When the space inside the installation channel 10 is large enough to meet the vertical installation requirements of the purification rod 610, the purification rod 610 can be installed vertically on the inner wall of the installation channel 10. Of course, both the purification plate and the purification rod 610 can be laid.

[0115] It should also be noted that the cleanroom panels can be laid on every inner wall of the installation channel 10, or only on a portion of the inner walls of the installation channel 10; furthermore, the inner walls of the installation channel 10 include the top wall and the side walls, such as... Figure 1 As shown, the purification rods 610 can be arranged at intervals on the top wall or on the side wall, ensuring smooth airflow and efficient purification while avoiding excessive wind resistance.

[0116] In some embodiments, the purification component 60 is an activated carbon purification component 60.

[0117] The activated carbon purification component 60 can adsorb various pollutants in the gas inside the installation channel 10, such as solid particulate matter like dust, gaseous substances like formaldehyde, and odors like cooking fumes, thereby achieving multi-dimensional purification, making the output air cleaner and effectively improving air quality; in addition, activated carbon is low in cost and easy to maintain.

[0118] It should be noted that the purification plate can be an activated carbon filter plate, that is, a plate-shaped structure processed from activated carbon material, and the purification rod 610 can be an activated carbon filter rod, that is, a columnar structure processed from activated carbon material.

[0119] In some embodiments, the outer wall 520 is provided with a first air vent 5201 so that the installation channel 10 is connected to the outdoor space.

[0120] By setting the first air vent 5201, outdoor air can be introduced into the installation channel 10, allowing the outdoor air to come into contact with the purification component 60 within the installation channel 10, thus completing the purification treatment of pollutants such as dust in the outdoor air, preventing outdoor air from flowing directly into the room without purification, thereby providing clean fresh air to the room.

[0121] In some embodiments, the inner sidewall 510 is provided with a second air vent 5101 so that the installation channel 10 is connected to the indoor space.

[0122] By setting a second air vent 5101, indoor air can be introduced into the installation channel 10, allowing the indoor air to come into contact with the purification component 60 within the installation channel 10. This purifies the indoor air by removing dust, odors, formaldehyde, and other pollutants, preventing unpurified indoor air from flowing back into the room and further improving indoor air quality.

[0123] In some embodiments, the inner sidewall 510 is provided with a third air vent 5103, and the indoor unit 20 is provided with a second indoor air inlet on the side facing the installation channel 10. The third air vent 5103 is connected to and communicates with the second indoor air inlet so that the purified gas flows into the indoor unit 20.

[0124] The third air vent 5103 is connected to the second indoor air inlet, establishing a transport channel for the purified gas in the installation channel 10. This ensures that the purified gas in the installation channel 10 flows into the indoor unit 20 through the third air vent 5103. At the same time, since the indoor unit 20 generates a certain negative pressure at the indoor air inlet during operation, it can draw in the purified gas in the installation channel 10, providing the power for directional airflow and preventing the purified gas from freely diffusing and causing secondary pollution during transmission.

[0125] In some embodiments, the first air vent 5201 is located above the second air vent 5101, and the third air vent 5103 is located between the first air vent 5201 and the second air vent 5101.

[0126] By placing the second air vent 5101 at the bottom, polluted air accumulated in the indoor space, such as carbon dioxide and dust exhaled from breathing, can be collected more efficiently. Due to their slightly higher density, these pollutants tend to settle at the bottom of the indoor space, allowing them to quickly flow into the installation channel 10. The third air vent 5103, located between the first air vent 5201 and the second air vent 5101, can receive the purified outdoor fresh air from above and the purified indoor return air from below within the installation channel 10. This allows for connection to the indoor unit 20 without significantly altering the airflow direction, reducing gas stagnation and backflow. Furthermore, this layout is suitable for purification systems requiring longer airflow channels. Placing the first air vent 5201 above the second air vent 5101 allows for sufficient channel space to accommodate the purification component 60, resulting in a longer gas residence and purification time, and increasing the contact area and contact time between the gas and the purification component 60.

[0127] In some embodiments, the system includes valves, filters, air quality sensors, and a control module. Valves are respectively disposed on a first air vent 5201, a second air vent 5101, and a third air vent 5103 to control the opening and closing of the first air vent 5201, the second air vent 5101, and the third air vent 5103. Filters are respectively disposed within the first air vent 5201, the second air vent 5101, and the third air vent 5103. Air quality sensors are respectively disposed at the first air vent 5201 and the indoor air outlet 220 to detect the air quality in the indoor and outdoor spaces. The control module is electrically connected to the valves and the air quality sensors, and controls the valve operation based on the air quality in the indoor and outdoor spaces.

[0128] By independently controlling the opening and closing of the first air vent 5201, the second air vent 5101, and the third air vent 5103 with separate valves, air conditioning needs in different scenarios can be met, providing multiple operating modes. Specifically, in fresh air mode, the first air vent 5201 and the third air vent 5103 are opened, and the second air vent 5101 is closed, allowing outdoor air to be purified before entering the indoor space. In internal circulation purification mode, the second air vent 5101 and the third air vent 5103 are opened, and the first air vent 5201 is closed, allowing indoor air to be purified before entering the indoor space. Air quality sensors monitor indoor and outdoor air quality separately, providing data for selecting different operating modes, ensuring indoor air quality, and avoiding energy waste caused by blind ventilation and excessive purification. Specifically, when indoor air quality is poor and outdoor air quality is good, the fresh air mode is selected; when both indoor and outdoor air quality are poor, the indoor circulation purification mode is selected. Furthermore, a filter is installed to further improve the air purification effect.

[0129] It should be noted that the valves include, but are not limited to, solenoid valves; the control modules include, but are not limited to, PLC controllers. The control modules are electrically connected to the indoor unit 20 and the outdoor unit 30 respectively, and can control the opening and closing of the first indoor air inlet 210 of the indoor unit 20 and control the operation of the indoor fan 230.

[0130] It should also be noted that the operating modes include an internal circulation purification mode and a normal temperature control mode. In the internal circulation purification mode, only the indoor unit 20 is activated, while the outdoor unit 30 is not activated. In the normal temperature control mode, both the indoor unit 20 and the outdoor unit 30 work together to regulate the temperature, including cooling and heating modes. Of course, it can also include a regular mode and a fresh air mode, as detailed below:

[0131] Normal mode: Control all three valves to close, so that the first air vent 5201, the second air vent 5101 and the third air vent 5103 are all closed; control the first indoor air inlet 210 to open, so that air enters through the first indoor air inlet 210 and exits through the indoor air outlet 220 to achieve cooling or heating of the indoor air;

[0132] Internal circulation purification mode: The first indoor air inlet 210 and the first air outlet 5201 are closed, the second air outlet 5101 and the third air outlet 5103 are opened, and the indoor fan 230 is turned on. At this time, indoor air is drawn into the installation channel 10 under the action of pressure difference. The air pollutants, including formaldehyde and PM2.5, are removed by the purification component 60. Then the purified air returns to the indoor space through the second air outlet 5101 and the indoor air outlet 220, returning to the self-circulation purification of indoor air.

[0133] Fresh air mode: When the indoor air needs to be replaced with fresh air, the first air vent 5201 and the third air vent 5103 are opened, the second air vent 5101 is closed, and the indoor fan 230 is turned on. The indoor fan 230 draws the outdoor air purified by the purification component 60 into the indoor space.

[0134] It should also be noted that air quality sensors are used to monitor the concentration of particulate matter and gas composition in the air. They primarily monitor values ​​such as temperature, humidity, air pressure, light intensity, PM2.5, and TVOC, as well as the concentrations of gases such as oxygen, carbon dioxide, carbon monoxide, and formaldehyde. Air quality sensors include, but are not limited to, infrared particulate matter sensors and laser particulate matter sensors. Furthermore, air quality sensors determine air quality based on preset thresholds; when pollutant concentrations exceed preset values, the air quality is poor, and vice versa.

[0135] It should also be noted that the control module can control the valve operation based on the air quality detected by the air quality sensor in the indoor and outdoor spaces, thereby switching to different operating modes; when the indoor air quality is poor and the outdoor air quality is good, it switches to the fresh air mode for ventilation; when both the indoor and outdoor air quality are poor, it switches to the internal circulation purification mode; when the indoor air quality is good, it switches to the cooling mode or heating mode for cooling or heating.

[0136] In some embodiments, the refrigerant circulation pipeline 40 includes a liquid pipe 410 and a gas pipe 420; the two ends of the liquid pipe 410 are respectively connected to the indoor unit 20 and the outdoor unit 30, and the liquid pipe 410 is used to deliver liquid refrigerant to the indoor unit 20; the two ends of the gas pipe 420 are respectively connected to the indoor unit 20 and the outdoor unit 30, and the gas pipe 420 is used to deliver gaseous refrigerant to the outdoor unit 30.

[0137] By setting up liquid pipe 410 and gas pipe 420, a path is provided for refrigerant delivery under different conditions, ensuring the stability of refrigerant flow and the reliability of air conditioning operation.

[0138] It should be noted that during cooling, the outdoor heat exchanger acts as the condenser and the indoor heat exchanger acts as the evaporator. The gaseous refrigerant is heated and pressurized by the compressor and then diverted to the condenser via the four-way valve. The high-temperature and high-pressure gaseous refrigerant condenses into a high-temperature and high-pressure liquid refrigerant in the condenser. Then, the liquid refrigerant is depressurized through the capillary tube and becomes a low-temperature and low-pressure liquid refrigerant. It enters the evaporator through the liquid pipe 410, absorbs heat and evaporates in the evaporator, and returns to the compressor through the gas pipe 420, thus forming a cycle. It can be understood that during heating, the outdoor heat exchanger acts as the evaporator and the indoor heat exchanger acts as the condenser. The specific process will not be described in detail in this application.

[0139] It should also be noted that the two ends of the liquid pipe 410 are connected to the throttling device (such as a capillary tube) of the outdoor unit 30 and the indoor heat exchanger, respectively; the two ends of the gas pipe 420 are connected to the indoor heat exchanger and the compressor of the outdoor unit 30, respectively.

[0140] It should be understood that the terminology used herein is for the purpose of describing particular exemplary embodiments only and is not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms “a,” “an,” and “described” as used herein may also include the plural forms. The terms “comprising,” “including,” “containing,” and “having” are inclusive and therefore indicate the presence of the stated features, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, elements, components, and / or combinations thereof. The method steps, processes, and operations described herein are not construed as requiring them to be performed in a particular order described or illustrated unless the order of performance is explicitly indicated. It should also be understood that additional or alternative steps may be used.

[0141] Although terms such as first, second, third, etc., may be used in this document to describe multiple elements, components, regions, layers, and / or segments, these elements, components, regions, layers, and / or segments should not be limited by these terms. These terms may be used only to distinguish one element, component, region, layer, or segment from another. Unless the context clearly indicates otherwise, terms such as "first," "second," and other numerical terms used herein do not imply order or sequence. Therefore, the first element, component, region, layer, or segment discussed below may be referred to as the second element, component, region, layer, or segment without departing from the teachings of the exemplary embodiments.

[0142] The above description is merely a specific embodiment of the present invention, enabling those skilled in the art to understand or implement the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features claimed herein.

Claims

1. An integrated air conditioner characterized by comprising: The integrated air conditioner, applied to an installation body, includes: An installation channel is provided inside the mounting body, which includes an inner sidewall and an outer sidewall arranged opposite each other in the thickness direction, and the mounting body divides the space into an indoor space and an outdoor space. An indoor unit is partially installed inside the inner wall, and the indoor unit includes a first indoor air inlet and an indoor air outlet located in the indoor space. An outdoor unit is partially installed inside the outer wall, and the outdoor unit includes an outdoor air inlet and an outdoor air outlet located in the outdoor space. A refrigerant circulation pipeline is installed in the installation channel, and the refrigerant circulation pipeline is connected to the indoor unit and the outdoor unit respectively, so as to circulate and deliver refrigerant between the indoor unit and the outdoor unit.

2. The integrated air conditioner according to claim 1, wherein Includes a purification component, which is disposed within the installation channel and configured to purify the gas flowing through the installation channel; The installation channel is connected to the outdoor space, the indoor space, and the indoor unit, respectively, so that the purified gas flows into the indoor unit.

3. The integrated air conditioner according to claim 2, characterized in that, The purification assembly includes multiple purification plates laid on the inner wall of the installation channel, and / or multiple purification rods vertically arranged on the inner wall of the installation channel.

4. The integrated air conditioner according to claim 3, characterized in that, The purification component is an activated carbon purification component.

5. The integrated air conditioner according to any one of claims 2-4, characterized in that, The outer wall is provided with a first air vent to connect the installation channel to the outdoor space.

6. The integrated air conditioner according to claim 5, characterized in that, The inner wall is provided with a second air vent to connect the installation channel to the indoor space.

7. The integrated air conditioner according to claim 6, wherein The inner wall is provided with a third air vent, and the indoor unit is provided with a second indoor air inlet on the side facing the installation channel. The third air vent is connected to and communicates with the second indoor air inlet so that the purified gas flows into the indoor unit.

8. The integrated air conditioner according to claim 7, wherein The first air vent is located above the second air vent, and the third air vent is located between the first air vent and the second air vent.

9. The integrated air conditioner according to claim 7, wherein include: Valves are respectively installed on the first air outlet, the second air outlet and the third air outlet to control the opening and closing of the first air outlet, the second air outlet and the third air outlet respectively; Filters are respectively installed in the first air vent, the second air vent, and the third air vent; An air quality sensor is installed at the first air outlet and the indoor air outlet respectively to detect the air quality of the indoor space and the outdoor space. The control module is electrically connected to the valve and the air quality sensor respectively, and controls the operation of the valve according to the air quality of the indoor space and the outdoor space.

10. The integrated air conditioner according to any one of claims 1-4, wherein The refrigerant circulation pipeline includes: A liquid pipe, with its two ends connected to the indoor unit and the outdoor unit respectively, is used to deliver liquid refrigerant to the indoor unit; The gas pipe is connected at both ends to the indoor unit and the outdoor unit, respectively, and is used to deliver gaseous refrigerant to the outdoor unit.