Air conditioner
By tilting the partition assembly and air guide part in the air conditioner, the problems of low wind field uniformity and low energy efficiency due to limited installation space are solved, and more efficient heat exchange and air volume distribution are achieved.
Patent Information
- Application Number
- CN202410742732.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-07
- Publication Date
- 2025-07-25
AI Technical Summary
The existing air conditioners have low wind uniformity and low energy efficiency due to limited installation space.
The inclined partitioning assembly is used to separate the inner part of the air conditioner housing into the indoor and outdoor sides, and a condenser and an outer fan are provided on the outdoor side. The air guide part is used to change the cross-sectional shape of the air duct to improve the uniformity of the wind field and increase the contact area between the outdoor side and the condenser.
It improves the uniformity of the outdoor side wind field and the heat exchange efficiency of the condenser, increases the indoor side air volume, and further improves the energy efficiency of the air conditioner.
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Figure CN120368379A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioners, and particularly to an air conditioner. Background Art
[0002] As an integrated energy storage system, an energy storage container can achieve efficient storage and release of energy and can be applied to various application scenarios. For example, in the field of renewable energy power generation such as wind energy and solar energy, it stores energy during power surplus for subsequent use. However, a large amount of heat is generated during the charging and discharging process of the battery in the energy storage system. To extend the service life of the battery and improve the stability of the energy storage system, the energy storage container usually needs to be equipped with a dedicated air conditioner such as a door-mounted air conditioner to adjust the temperature inside the container.
[0003] To meet the installation requirements of application scenarios such as energy storage containers, the air conditioner needs to be miniaturized and thinned, which makes the installation space for various components such as compressors and heat exchangers inside the air conditioner relatively limited. Under the influence of the compact installation space, the indoor and outdoor air ducts may also be affected by the limited shape, resulting in uneven air flow field, which makes the heat exchanger unable to be fully utilized and affects the heat exchange efficiency of the air conditioner, thus reducing the air conditioner energy efficiency.
[0004] Correspondingly, a new technical solution is needed in this field to solve the above problems. Summary of the Invention
[0005] In order to solve at least one of the above problems in the prior art, that is, to solve the problems of low air flow field uniformity and low energy efficiency caused by limited installation space of the existing air conditioner, the present application provides an air conditioner, which includes:
[0006] An air conditioner housing;
[0007] A partition component, which is inclined in the air conditioner housing and is used to divide the interior of the air conditioner housing into an indoor side and an outdoor side along the thickness direction. The partition component forms a wind guiding part protruding towards the outdoor side;
[0008] A condenser, which is located on the outdoor side, and the upper end of the condenser is close to the upper end of the partition component in the height direction;
[0009] An external fan, which is located on the outdoor side and is arranged below the partition component.
[0010] In the case of adopting the above technical solution, the partition component divides the interior of the air conditioner housing into an indoor side and an outdoor side in an inclined manner, which can ensure that both the outdoor side and the indoor side have large-size sections, thereby ensuring the heat exchange areas of the indoor side and the outdoor side. The air guiding part protruding towards the outdoor side can change the cross-sectional shape of the outdoor side air duct, realizing reasonable guidance of the outdoor side wind direction, thereby improving the uniformity of the outdoor side wind field. The uniform air reception of the condenser can improve the heat exchange efficiency of the condenser and the energy efficiency of the air conditioner.
[0011] In a preferred technical solution of the above air conditioner, the partition component includes a middle partition board, the middle partition board includes a partition section, a first air guiding section and a second air guiding section, and the first air guiding section and the second air guiding section form the air guiding part;
[0012] The first air guiding section is respectively connected to the partition section and the second air guiding section, and there are angles between the first air guiding section and the second air guiding section and the partition section, and there is an angle between the first air guiding section and the second air guiding section.
[0013] In the case of adopting the above technical solution, while improving the uniformity of the outdoor side wind field through the first air guiding section and the second air guiding section, the volume of the indoor side air duct can also be increased, thereby increasing the air volume of the indoor side and further improving the energy efficiency of the air conditioner.
[0014] In a preferred technical solution of the above air conditioner, the first air guiding section is arranged to be parallel to the surface of the condenser; and / or
[0015] The angles between the first air guiding section and the second air guiding section and the partition section are both acute angles, and the angle between the first air guiding section and the second air guiding section is an obtuse angle; and / or
[0016] The angle between the first air guiding section and the partition section is equal to the angle between the second air guiding section and the partition section; and / or
[0017] The partition section, the first air guiding section and the second air guiding section are integrally formed.
[0018] In the case of adopting the above technical solution, the indoor side air is guided by the second air guiding section to the first air guiding section. The first air guiding section parallel to the surface of the condenser can increase the contact area between the outdoor side air and the condenser, thereby ensuring the heat exchange efficiency of the condenser. The integral formation of the partition section, the first air guiding section and the second air guiding section is beneficial to reducing the processing difficulty of the middle partition board.
[0019] In a preferred technical solution of the above air conditioner, the first air guiding section and the second air guiding section are close to the lower end in the height direction of the middle partition board; and / or
[0020] The projections of the first air guiding section and the second air guiding section on the bottom of the air conditioner housing at least partially cover the projection of the outdoor fan on the bottom of the air conditioner housing; and / or
[0021] The height of the connection position between the first air guiding section and the second air guiding section is less than or equal to the height of the bottom position of the condenser.
[0022] In the case of adopting the above technical solution, the outdoor side wind direction can be guided starting from the bottom of the condenser, which is beneficial to increasing the contact area between the outdoor side wind and the condenser and improving the heat exchange efficiency of the condenser.
[0023] In the preferred technical solution of the above air conditioner, the inclination angle of the partition section is any value between 5° and 15°; and / or
[0024] The included angle between the first air guiding section and the second air guiding section is any value between 130° and 150°;
[0025] The included angle between the first air guiding section and the partition section is any value between 5° and 15°; and / or
[0026] The included angle between the second air guiding section and the partition section is any value between 20° and 40°.
[0027] In the case of adopting the above technical solution, it is beneficial to give full play to the performance of each heat exchanger in the air conditioner through the specific angles of each part of the middle partition board.
[0028] In the preferred technical solution of the above air conditioner, the partition assembly includes a middle partition board and a wind guiding board. The middle partition board divides the interior of the air conditioner housing into an indoor side and an outdoor side along the thickness direction, and the wind guiding board forms the air guiding part;
[0029] The wind guiding board is arranged on the middle partition board. The wind guiding board includes a first panel and a second panel, and there are included angles between both the first panel and the second panel and the middle partition board, and there is an included angle between the first panel and the second panel.
[0030] In the case of adopting the above technical solution, connecting the integrated wind guiding board to the middle partition board can improve the wind field uniformity on the outdoor side while reducing the installation and processing difficulty.
[0031] In the preferred technical solution of the above air conditioner, the edges of the first panel and the second panel respectively extend outwards with flanges parallel to the middle partition board;
[0032] Connection holes are arranged on both of the two flanges, and the wind guiding board is connected to the middle partition board through the connection holes.
[0033] In the preferred technical solution of the above air conditioner, the first panel is arranged parallel to the surface of the condenser; and / or
[0034] The included angles between the first panel and the second panel and the middle partition are both acute angles, and the included angle between the first panel and the second panel is an obtuse angle; and / or
[0035] The included angle between the first panel and the middle partition is equal to the included angle between the second panel and the middle partition; and / or
[0036] The width of the air deflector is less than or equal to the width of the middle partition.
[0037] In the case of adopting the above technical solution, the indoor-side air is guided by the second panel to the first panel, and the contact area between the outdoor-side air and the condenser can be increased through the first panel parallel to the surface of the condenser, thereby ensuring the heat exchange efficiency of the condenser.
[0038] In the preferred technical solution of the above air conditioner, the air deflector is close to the lower end in the height direction of the middle partition;
[0039] The projection of the air deflector on the bottom of the air conditioner housing at least partially covers the projection of the external fan on the bottom of the air conditioner housing; and / or
[0040] The height of the connection position between the first panel and the second panel is less than or equal to the height of the bottom position of the condenser.
[0041] In the case of adopting the above technical solution, the outdoor-side air direction can be guided starting from the bottom of the condenser, which is beneficial to increasing the contact area between the outdoor-side air and the condenser and improving the heat exchange efficiency of the condenser. In the preferred technical solution of the above air conditioner, the inclination angle of the middle partition is any value between 5° and 15°; and / or The included angle between the first panel and the second panel is any value between 130° and 150°; The included angle between the first panel and the middle partition is any value between 5° and 15°; and / or
[0042] The included angle between the second panel and the middle partition is any value between 20° and 40°.
[0043] In the case of adopting the above technical solution, it is beneficial to give full play to the performance of each heat exchanger in the air conditioner through the specific angles of the air deflector and the middle partition. Description of the Drawings
[0044] The air conditioner of the present application will be described below with reference to the drawings. In the drawings:
[0045] Figure 1 Schematic diagram of the first air conditioner of the present application;
[0046] Figure 2 First view of the second air conditioner of the present application;
[0047] Figure 3 Second view of the second air conditioner of the present application.
[0048] List of reference numerals
[0049] 10. Air conditioner housing; 20. Partition assembly; 21. Middle partition; 211. Partition segment; 212. First air guide segment; 213. Second air guide segment; 20'. Partition assembly; 21'. Middle partition; 22. Air guide plate; 221. First panel; 222. Second panel; 30. Condenser; 40. External fan; 50. Evaporator; 60. Internal fan; 70. Water receiving tray. Detailed implementation manners
[0050] The preferred implementation manners of the present application will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these implementation manners are only used to explain the technical principle of the present application and are not intended to limit the protection scope of the present application. For example, although the air guide plate in the drawings is located at the middle and lower end in the height direction of the middle partition, this positional relationship is not fixed. Those skilled in the art can adjust it as needed to adapt to specific application scenarios. For example, the air guide plate is arranged at the bottom of the middle partition so that the height of the connection position between the first panel and the second panel of the air guide plate is lower than the height of the lower end of the condenser.
[0051] It should be noted that in the description of the present application, the terms indicating directions or positional relationships such as "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present application. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. In addition, in the description of the present application, "a plurality of" means at least two.
[0052] In addition, it should also be noted that in the description of the present application, unless otherwise clearly specified and limited, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.
[0053] As described in the background art, as an integrated energy storage system, the energy storage container can achieve efficient storage and release of energy and can be applied to various application scenarios. For example, in the field of renewable energy power generation such as wind energy and solar energy, it stores energy during periods of power surplus for subsequent use. During the charging and discharging process of the battery in the energy storage system, a large amount of heat is generated. To extend the service life of the battery and improve the stability of the energy storage system, the energy storage container usually needs to be equipped with a dedicated air conditioner such as a door-mounted air conditioner to regulate the temperature inside the container.
[0054] To meet the installation requirements of application scenarios such as energy storage containers, the air conditioner needs to be miniaturized and thinned, which makes the installation space for various components such as compressors and heat exchangers inside the air conditioner relatively limited. Under the influence of the compact installation space, the indoor and outdoor air ducts may also be affected by the limited shape, which affects the uniformity of the air field, making the heat exchanger unable to be fully utilized and affecting the heat exchange efficiency of the air conditioner, resulting in a reduction in air conditioner energy efficiency.
[0055] To solve the problems of low air field uniformity and low energy efficiency caused by limited installation space in existing air conditioners, the present application provides an air conditioner, which includes an air conditioner housing; a partition component, the partition component is inclined in the air conditioner housing and is used to divide the inside of the air conditioner housing into an indoor side and an outdoor side along the thickness direction, and the partition component forms a wind guiding part protruding towards the outdoor side; a condenser, the condenser is located on the outdoor side, and the upper end of the condenser is close to the upper end of the partition component in the height direction; an external fan, the external fan is located on the outdoor side, and the external fan is arranged below the partition component.
[0056] In the case of adopting the above technical solution, the partition component divides the inside of the air conditioner housing into an indoor side and an outdoor side obliquely, which can ensure that both the outdoor side and the indoor side have large-sized sections, thus ensuring the heat exchange area of the indoor side and the outdoor side. The wind guiding part protruding towards the outdoor side can change the cross-sectional shape of the outdoor side air duct, realize reasonable guidance of the outdoor side wind direction, thereby improving the uniformity of the outdoor side air field, and improving the heat exchange efficiency of the condenser and the air conditioner energy efficiency through the uniform wind receiving of the condenser.
[0057] The following refers to Figures 1 to 3 , to describe the air conditioner of the present application. Among them, Figure 1 is a schematic diagram of the first air conditioner of the present application; Figure 2 is the first view of the second air conditioner of the present application; Figure 3 is the second view of the second air conditioner of the present application.
[0058] As Figure 1As shown, in a preferred embodiment, the air conditioner includes an air conditioner housing 10, a partition assembly 20, a condenser 30, an outdoor fan 40, an evaporator 50, an indoor fan 60, and a water receiving tray 70. The partition assembly 20 includes a middle partition 21, and the middle partition 21 divides the air conditioner housing 10 into an indoor side ( Figure 1 the right side in the middle) and an outdoor side ( Figure 1 the left side in the middle). The condenser 30 and the outdoor fan 40 are both located on the outdoor side. The upper end of the condenser 30 is close to the upper end of the middle partition 21, and the outdoor fan 40 is located below the middle partition 21. The evaporator 50 and the indoor fan 60 are both located on the indoor side. The lower end of the evaporator 50 is close to the lower end of the middle partition 21, and the lower end of the middle partition 21 is connected to the water receiving tray 70. The evaporator 50 is located above the water receiving tray 70, which is used to collect the condensed water generated during the operation of the evaporator 50 and drain the condensed water. The indoor fan 60 is located above the middle partition 21. After the air enters from the outdoor fan 40 on the outdoor side, it passes upward through the condenser 30 and then enters the outdoor again. After the air enters from the evaporator 50 on the indoor side, it passes upward through the indoor fan 60 and then enters the indoor again.
[0059] The middle partition 21 includes a partition section 211, a first air guiding section 212, and a second air guiding section 213. The partition section 211, the first air guiding section 212, and the second air guiding section 213 are integrally formed. The first air guiding section 212 and the second air guiding section 213 form an air guiding part. The first air guiding section 212 is respectively connected to the partition section 211 and the second air guiding section 213, and there are angles between the first air guiding section 212 and the second air guiding section 213 and the partition section 211, and there is an angle between the first air guiding section 212 and the second air guiding section 213.
[0060] In this embodiment, the first air guiding section 212 and the second air guiding section 213 are located at the lower end in the height direction of the entire middle partition 21. The projections of the first air guiding section 212 and the second air guiding section 213 on the bottom of the air conditioner housing 10 at least partially coincide with the projection of the external blower 40 on the bottom of the air conditioner housing 10, that is, the first air guiding section 212 and the second air guiding section 213 are above the external blower 40. The included angles between the first air guiding section 212 and the second air guiding section 213 and the partition section 211 (the included angle between the upper side of the first air guiding section 212 and the extension plane of the partition section 211 and the included angle between the lower side of the second air guiding section 213 and the extension plane of the partition section 211) are both acute angles, and the included angle between the first air guiding section 212 and the second air guiding section 213 is an obtuse angle. In a possible implementation, the inclination angle of the partition section 211 relative to the vertical direction is any value within 5° - 15°, the included angle between the first air guiding section 212 and the second air guiding section 213 is any value within 130° - 150°, the included angle between the first air guiding section 212 and the partition section 211 is any value within 5° - 15°, and the included angle between the second air guiding section 213 and the partition section 211 is any value within 20° - 40°. Preferably, the first air guiding section 212 is parallel to the surface of the condenser 30, and the inclination angle of the partition section 211 relative to the vertical direction is 10°. At this time, the included angle between the partition section 211 and the first air guiding section 212 is 10°, the included angle between the second air guiding section 213 and the partition section 211 is 30°, and the included angle between the first air guiding section 212 and the second air guiding section 213 is 140°.
[0061] It should be noted that the inclined middle partition 21 enables both the outdoor side and the indoor side to have large-size sections, thus ensuring that both the condenser 30 and the evaporator 50 have a certain heat exchange space. When the air guiding parts, i.e., the first air guiding section 212 and the second air guiding section 213, are not provided, after the air on the outdoor side enters from the lower side and flows upward, the air volume is mainly concentrated at the upper end of the condenser 30, that is, the air volume is mainly between the upper end of the condenser 30 and the upper end of the partition section 211, resulting in a reduction in the heat dissipation area of the condenser 30. At this time, the wind speeds passing through each part of the condenser 30 are uneven, and the condenser 30 cannot achieve the due heat exchange efficiency. In the case where the first air guiding section 212 and the second air guiding section 213 are provided, when the air on the outdoor side flows upward, it is first guided by the second air guiding section 213 to the first air guiding section 212, and then flows upward along the first air guiding section 212 and parallel to the surface of the condenser 30, increasing the contact area between the outdoor air and the condenser 30, improving the uniformity of the wind field on the outdoor side, thus ensuring the heat exchange efficiency of the condenser 30 and improving the energy efficiency of the air conditioner. Compared with separating the indoor side and the outdoor side only through the inclined partition section 211, the setting of the first air guiding section 212 and the second air guiding section 213 can also increase the volume of the indoor side, making the air volume on the indoor side increase, further improving the energy efficiency of the air conditioner, and the setting of the specific angles of the partition section 211, the first air guiding section 212, and the second air guiding section 213 in the middle partition 21 is beneficial to giving full play to the performance of the condenser 30 and the evaporator 50 in the air conditioner.
[0062] Those skilled in the art can understand that the setting of the middle partition plate 21 is not fixed. Although in this embodiment, the middle partition plate 21 has only one partition segment 211, and the second air guiding segment 213 is directly connected to the water receiving tray 70, those skilled in the art can add a partition segment at the bottom of the second air guiding segment 213. At this time, the second air guiding segment 213 is connected to the water receiving tray 70 through another partition segment. In addition, the specific settings of the first air guiding segment 212 and the second air guiding segment 213 are not fixed either. In an alternative embodiment, the heights of the first air guiding segment 212 and the second air guiding segment 213 can be adjusted. Preferably, the first air guiding segment 212 and the second air guiding segment 213 are close to the lower end in the height direction of the middle partition plate 21, and the height of the connection position between the first air guiding segment 212 and the second air guiding segment 213 is less than or equal to the height of the bottom position of the condenser 30. In another alternative embodiment, those skilled in the art can adjust the angles of the first air guiding segment 212 and the second air guiding segment 213. For example, the angle between the first air guiding segment 212 and the partition segment 211 is set to be equal to the angle between the second air guiding segment 213 and the partition segment 211. However, considering the heights of the first air guiding segment 212 and the second air guiding segment 213, it is a better choice to control the angle between the second air guiding segment 213 and the partition segment 211 within 20 - 40°. Another example is that the setting where the first air guiding segment 212 is parallel to the surface of the condenser 30 can be omitted, and there can be a small angle between the first air guiding segment 212 and the surface of the condenser 30 such that the first air guiding segment 212 is as close to parallel to the surface of the condenser 30 as possible.
[0063] As Figure 2 and Figure 3 shown, in a possible alternative embodiment, the air conditioner includes an air conditioner housing 10, a partition assembly 20', a condenser 30, an external fan 40, an evaporator 50, an internal fan 60, and a water receiving tray 70. Among them, the partition assembly 20' includes a middle partition plate 21' and a wind guiding plate 22. The middle partition plate 21' divides the interior of the air conditioner housing 10 into an indoor side and an outdoor side along the thickness direction. The wind guiding plate 22 is provided on the integral middle partition plate 21', and the width of the wind guiding plate 22 is smaller than the width of the middle partition plate 21'. The wind guiding plate 22 includes a first panel 221 and a second panel 222. The angle between the first panel 221 and the middle partition plate 21' is an acute angle, the angle between the first panel 221 and the second panel 222 is an obtuse angle, and the angle between the first panel 221 and the middle partition plate 21' is equal to the angle between the second panel 222 and the middle partition plate 21'. The wind guiding plate 22 is close to the lower end in the height direction of the middle partition plate 21'.
[0064] In this embodiment, the edges of the first panel 221 and the second panel 222 respectively extend outwardly with flanges parallel to the middle partition 21'. Connection holes are provided on both flanges, and the first panel 221 and the second panel 222 are connected to the middle partition 21' through the connection holes. The projection of the air deflector 22 on the bottom of the air conditioner housing 10 at least partially covers the projection of the external blower 40 on the bottom of the air conditioner housing 10, that is, the air deflector 22 is located above the external blower 40. The inclination angle of the middle partition 21' is any value between 5° and 15°, the included angle between the first panel 221 and the second panel 222 is any value between 130° and 150°, the included angle between the first panel 221 and the middle partition 21' is any value between 5° and 15°, and the included angle between the second panel 222 and the middle partition 21' is any value between 20° and 40°. Preferably, the first panel 221 is parallel to the surface of the condenser 30, the inclination angle of the partition segment 211 relative to the vertical direction is 10°, at this time the included angle between the partition segment 211 and the first panel 221 is 10°, the included angle between the second panel 222 and the middle partition 21' is 30°, and the included angle between the first panel 221 and the second panel 222 is 140°.
[0065] It should be noted that the wind field uniformity on the outdoor side can be improved by either the partition assembly 20 or the partition assembly 20', thereby improving the heat exchange efficiency of the condenser 30. Those skilled in the art can change the design dimensions of the condenser 30 according to the selection of the position of the air guiding part, so as to reduce the cost required for the condenser 30. In addition, although in this embodiment, the air deflector 22 can be installed on the integrated middle partition 21' through the flanges at both ends to reduce the installation difficulty of the air deflector 22, its setting is not fixed. In an alternative embodiment, the middle partition 21' can be set as multiple segmented plates, and the partition assembly 20' is formed by the assembly of the multiple segmented plates and the air deflector 22. In another alternative embodiment, the width of the air deflector 22 can be set to be equal to the width of the middle partition 21'. In addition, the specific settings such as the angles and positions of the first panel 221 and the second panel 222 can also refer to the settings of the first air guiding segment 212 and the second air guiding segment 213 in the above embodiment, which will not be elaborated here.
[0066] Those skilled in the art can understand that although some of the embodiments described herein include certain features included in other embodiments rather than other features, the combination of the features of different embodiments means that it is within the scope of this application and forms different embodiments. For example, in the claims of this application, any one of the claimed embodiments can be used in any combination.
[0067] So far, the technical solutions of the present application have been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present application is obviously not limited to these specific embodiments. Without departing from the principle of the present application, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of the present application.
Claims
1. An air conditioner, characterized in that, Comprising: An air conditioner housing; A partitioning component, which is inclined in the air conditioner housing and is used to partition the interior of the air conditioner housing in the thickness direction into an indoor side and an outdoor side. The partitioning component forms a wind guiding portion protruding towards the outdoor side; A condenser, which is located on the outdoor side, and the upper end of the condenser is close to the upper end of the partitioning component in the height direction; An external blower, which is located on the outdoor side and is arranged below the partitioning component.
2. The air conditioner according to claim 1, wherein The partitioning component includes a middle partition board, and the middle partition board includes a partitioning section, a first wind guiding section, and a second wind guiding section. The first wind guiding section and the second wind guiding section form the wind guiding portion; The first wind guiding section is respectively connected to the partitioning section and the second wind guiding section, and there are angles between the first wind guiding section and the second wind guiding section and the partitioning section, and there is an angle between the first wind guiding section and the second wind guiding section.
3. The air conditioner according to claim 2, characterized in that, The first wind guiding section is arranged to be parallel to the surface of the condenser; and / or The angles between the first wind guiding section and the second wind guiding section and the partitioning section are both acute angles, and the angle between the first wind guiding section and the second wind guiding section is an obtuse angle; and / or The angle between the first wind guiding section and the partitioning section is equal to the angle between the second wind guiding section and the partitioning section; and / or The partitioning section, the first wind guiding section, and the second wind guiding section are integrally formed.
4. The air conditioner according to claim 2, characterized in that, The first wind guiding section and the second wind guiding section are close to the lower end of the middle partition board in the height direction; and / or The projections of the first wind guiding section and the second wind guiding section on the bottom of the air conditioner housing at least partially cover the projection of the external blower on the bottom of the air conditioner housing; and / or The height of the connection position between the first wind guiding section and the second wind guiding section is less than or equal to the height of the bottom position of the condenser.
5. The air conditioner according to claim 2, characterized in that, The inclination angle of the partitioning section is any value between 5° and 15°; and / or The angle between the first wind guiding section and the second wind guiding section is any value between 130° and 150°; The angle between the first wind guiding section and the partitioning section is any value between 5° and 15°; and / or The angle between the second wind guiding section and the partitioning section is any value between 20° and 40°.
6. The air conditioner according to claim 1, characterized in that, The partitioning component includes a middle partition board and a wind guiding board. The middle partition board partitions the interior of the air conditioner housing in the thickness direction into an indoor side and an outdoor side, and the wind guiding board forms the wind guiding portion; The wind guiding board is arranged on the middle partition board. The wind guiding board includes a first panel and a second panel, and there are angles between the first panel and the second panel and the middle partition board, and there is an angle between the first panel and the second panel.
7. The air conditioner according to claim 6, characterized in that, Edges of the first panel and the second panel respectively extend outwards with flanges parallel to the middle partition board; Connection holes are arranged on both of the two flanges, and the wind guiding board is connected to the middle partition board through the connection holes.
8. The air conditioner according to claim 6, characterized in that, The first panel is arranged to be parallel to the surface of the condenser; and / or The angles between the first panel and the middle partition and between the second panel and the middle partition are both acute angles, and the angle between the first panel and the second panel is an obtuse angle; and / or The angle between the first panel and the middle partition is equal to the angle between the second panel and the middle partition; and / or The width of the air guide plate is less than or equal to the width of the middle partition.
9. The air conditioner according to claim 6, characterized in that, The air guide plate is close to the lower end in the height direction of the middle partition; The projection of the air guide plate on the bottom of the air conditioner housing at least partially covers the projection of the external fan on the bottom of the air conditioner housing; and / or The height of the connection position between the first panel and the second panel is less than or equal to the height of the bottom position of the condenser.
10. The air conditioner according to claim 6, characterized in that, The inclination angle of the middle partition is any value between 5° and 15°; and / or The angle between the first panel and the second panel is any value between 130° and 150°; The angle between the first panel and the middle partition is any value between 5° and 15°; and / or The angle between the second panel and the middle partition is any value between 20° and 40°.