Air conditioning system
By arranging the cooling and heat exchange fans in a cross-line configuration within the kitchen air conditioner, and utilizing the compressor to offset vibrations, combined with support components and damping devices, the problems of vibration and resonance in the kitchen air conditioner are solved, achieving more stable operation.
Patent Information
- Application Number
- CN202310122865.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-01-20
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2043-01-20
AI Technical Summary
The compressor, refrigeration components, and heat exchange components in a kitchen air conditioner are prone to vibration, and may even resonate at the same frequency, affecting the stability of the air conditioner.
By placing the refrigeration fan and heat exchange fan on opposite sides of the casing and placing the compressor in between, a cross-line layout is formed. The vibration of the compressor is used to counteract the vibration of the refrigeration fan and heat exchange fan. At the same time, support components and shock-absorbing components are installed inside the casing to enhance stability.
It effectively reduces overall vibration, prevents resonance at the same frequency, and improves the stability and shock resistance of the air conditioner.
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Figure CN116136324B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of kitchen air conditioners, in particular to an air conditioning system. BACKGROUND
[0002] There are many schemes for refrigeration in the kitchen, such as cooling bar, air cooler, etc., but the best effect of the kitchen air conditioner scheme is to assemble a special kitchen air conditioner in the kitchen, which has a similar structure to the ordinary air conditioner. However, the kitchen air conditioner only has a refrigeration effect and can overcome the problem of oil smoke in the kitchen, so it is widely used in the kitchen.
[0003] The current kitchen air conditioner includes a compressor, a refrigeration assembly and a heat exchange assembly. However, when the kitchen air conditioner is in use, the compressor, the refrigeration assembly and the heat exchange assembly inside will produce a large vibration during operation. Sometimes, due to improper internal layout, the compressor, the refrigeration assembly and the heat exchange assembly may also produce the same frequency and common vibration, which affects the stability of the kitchen air conditioning body, and needs to be improved. SUMMARY
[0004] Therefore, the technical problem to be improved by the present application is that the compressor, the refrigeration assembly and the heat exchange assembly in the current kitchen air conditioner are prone to vibration and same frequency and common vibration, thereby providing a kitchen air conditioner structure.
[0005] The present application comprises the following technical solutions:
[0006] An air conditioning system comprises a shell, the shell having a compressor, a refrigeration assembly and a heat exchange assembly inside,
[0007] The refrigeration assembly comprises a refrigeration fan, and the heat exchange assembly comprises a heat exchange fan, the refrigeration fan and the heat exchange fan being located on two sides of the shell and being farthest apart in the shell;
[0008] The compressor is located between the refrigeration fan and the heat exchange fan, and the compressor has a rotation axis arranged along the length direction of the compressor;
[0009] The shell has a bottom wall, the projection of the rotation axis on the bottom wall and the connecting line formed by the refrigeration fan and the heat exchange fan on the bottom wall are two intersecting lines.
[0010] By adopting the above technical solutions, the refrigeration fan is provided in the refrigeration assembly, and the motor, the shaft and the fan wheel inside the refrigeration fan produce a large vibration when working. The heat exchange fan is provided in the heat exchange assembly, and the motor, the shaft and the fan wheel inside the heat exchange fan produce a large vibration when working. The compressor also produces a vibration when working due to the internal structure.
[0011] The refrigeration fan and the heat exchange fan are farthest apart in the shell to prevent the two from being too close to generate the same frequency resonance, and the compressor is located between the refrigeration fan and the heat exchange fan to offset part of the vibration of the refrigeration fan and the heat exchange fan through its own vibration, so that the original overall vibration is offset.
[0012] The projection of the rotation axis on the bottom wall and the projection of the connecting line formed by the refrigeration fan and the heat exchange fan on the bottom wall are two intersecting lines, the two intersecting lines are two opposite sides of a quadrilateral, and the positions of the refrigeration fan and the heat exchange fan are two vertices of the quadrilateral. The compressor transmits vibration to the other two opposite vertices of the quadrilateral, so that the vibration generated by the refrigeration fan, the heat exchange fan and the compressor is located at the four vertices of the quadrilateral, respectively. Vibration is generated at the four vertices of the quadrilateral and is offset by each other, thereby balancing and offsetting, so that the overall vibration is reduced.
[0013] As a preferred, the shell has a first included angle and a second included angle, the refrigeration fan is arranged at the first included angle and at least partially connected with the shell at the first included angle, and the heat exchange fan is arranged at the second included angle and at least partially connected with the shell at the second included angle.
[0014] By adopting the above technical scheme, the refrigeration fan is arranged at the first included angle and at least partially connected with the shell at the first included angle, and the heat exchange fan is arranged at the second included angle and at least partially connected with the shell at the second included angle, so that the refrigeration fan and the heat exchange fan are located at two opposite included angles, respectively. The shell has stronger resistance to vibration at the included angle, and the shell as a whole is more stable.
[0015] As a preferred, the shell has a first long side, a first short side, a second long side and a second short side connected in sequence, the first long side is connected with the first short side and forms a first included angle, the second long side is connected with the second short side and forms a second included angle, and an angle between the rotation axis of the compressor and the second long side is greater than 0° and less than 90°.
[0016] By adopting the above technical scheme, the shell is a quadrilateral, and the compressor is inclinedly arranged in the shell. When the compressor is inclined, the two end points are directed to the vicinity of the other two included angles of the first included angle and the second included angle. The compressor extends the vibration of the two ends to the vicinity of the other two included angles, so that the vibration is concentrated there, and the included angle has stronger anti-vibration capability.
[0017] As a preferred, the refrigeration fan has a refrigeration fan rotor shaft, the heat exchange fan has a heat exchange fan rotor shaft, the refrigeration fan rotor shaft is parallel to the heat exchange fan rotor shaft, and the refrigeration fan rotor shaft is perpendicular to the rotation axis of the compressor.
[0018] By adopting the technical scheme, the refrigeration fan mainly generates vibration along the radial direction of the refrigeration fan rotating shaft during operation, the heat exchange fan mainly generates rotation along the radial direction of the heat exchange fan rotating shaft during operation, and the compressor mainly generates vibration along the radial direction of the rotation axis of the compressor during operation. When the refrigeration fan rotating shaft is perpendicular to the rotation axis of the compressor, the vibration of the compressor, the refrigeration fan and the heat exchange fan cancels out each other, so that the overall vibration of the shell is weakened.
[0019] Preferably, the refrigeration assembly further comprises an evaporator, which is arranged on the second long side and is spaced from the compressor, the refrigeration fan and the heat exchange fan.
[0020] By adopting the technical scheme, the evaporator is arranged on the second long side, so that the evaporator is far away from the compressor, the refrigeration fan and the heat exchange fan on the second long side, thereby reducing the influence of vibration.
[0021] Preferably, the heat exchange assembly further comprises a condenser, a third included angle is formed between the first long side and the second short side, the condenser is located in the third included angle, and the condenser is connected with the first long side and the second short side.
[0022] By adopting the technical scheme, the condenser is connected with the first long side and the second short side, which can reinforce the shell as a whole and maintain the stability of the shell when the shell generates large vibration.
[0023] Preferably, a shock absorption assembly is arranged between the inner wall connected with the compressor and the shell.
[0024] By adopting the technical scheme, the shock absorption assembly arranged between the inner wall connected with the compressor and the shell can prevent the vibration of the compressor from being directly transmitted to the shell, thereby playing a shock absorption role.
[0025] Preferably, the shell further comprises a support, and the support is connected with the first long side and the second long side at two ends thereof.
[0026] By adopting the technical scheme, even if the compressor is arranged at a specific angle in the shell, the compressor will still cause weak vibration of the shell during operation. After the compressor is arranged at an angle, the compressor still causes vibration of the shell along the first short side, and the support is connected with the first long side and the second long side to reinforce the stability of the shell along the first short side, thereby further weakening the influence of the compressor on the vibration of the shell along the first short side.
[0027] Preferably, the support has a first protruding portion, the first protruding portion protrudes towards the side of the compressor, and the refrigeration fan and the compressor are located on two sides of the first protruding portion and abut against the first protruding portion.
[0028] By adopting the technical scheme, when the compressor generates vibration, the first protruding part protruding towards the compressor abuts against the compressor, which can directly resist the vibration generated by the compressor, and after the refrigeration fan abuts against the first protruding part, the vibration of the compressor can also be offset, thereby playing a role of anti-vibration for the compressor and improving the stability of the shell along the first long side direction.
[0029] Preferably, the support member has a second protruding part protruding towards the refrigeration fan, and the refrigeration fan and the compressor are respectively located on two sides of the first protruding part and abut against the first protruding part.
[0030] By adopting the technical scheme, when the refrigeration fan generates vibration, the second protruding part protruding towards the refrigeration fan abuts against the refrigeration fan, which can directly resist the vibration generated by the refrigeration fan, and after the compressor abuts against the second protruding part, the vibration of the refrigeration fan can also be offset, thereby playing a role of anti-vibration for the refrigeration fan and improving the stability of the shell along the first long side direction.
[0031] Preferably, the support member includes a third protruding part protruding towards the heat exchange fan and abutting against the heat exchange fan.
[0032] By adopting the technical scheme, when the heat exchange fan generates vibration, the third protruding part protruding towards the heat exchange fan abuts against the heat exchange fan, which can directly resist the vibration generated by the heat exchange fan, thereby playing a role of anti-vibration for the heat exchange fan and improving the stability of the shell along the first long side direction.
[0033] The present application has at least the following effects:
[0034] 1. By arranging the positions of the compressor, the refrigeration fan and the heat exchange fan, the vibration among them can be offset by each other, the overall vibration is weakened, and the problem of same frequency and common vibration is improved.
[0035] 2. The support member arranged in the shell is used to reinforce the shell along the first long side direction and the first short side direction, so that the shell remains stable when vibration occurs. BRIEF DESCRIPTION OF DRAWINGS
[0036] In order to more clearly illustrate the specific embodiments of the present application or the technical schemes in the prior art, the drawings needed in the specific embodiments or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.
[0037] Figure 1A schematic diagram of the overall structure provided by the present application is shown in the figure;
[0038] Figure 2 A schematic diagram of the overall structure provided by the present application is shown in the figure; Figure 1 A schematic diagram of the overall structure provided by the present application is shown in the figure;
[0039] Figure 3 A schematic diagram of the overall structure provided by the present application is shown in the figure;
[0040] Figure 4 A schematic diagram of the overall structure provided by the present application is shown in the figure.
[0041] Explanation of reference signs:
[0042] 100 - housing; 101 - first long side; 102 - second long side; 103 - first short side; 104 - second short side; 105 - first included angle; 106 - second included angle; 107 - third included angle; 108 - fourth included angle; 109 - bottom wall; 10 - compressor; 11 - rotation axis; 20 - heat exchange assembly; 21 - condenser; 22 - heat exchange fan; 221 - heat exchange fan wheel rotation shaft; 30 - refrigeration assembly; 31 - evaporator; 32 - refrigeration fan; 321 - refrigeration fan wheel rotation shaft; 40 - support; 41 - upper part; 411 - first protruding part; 42 - lower part; 421 - third protruding part; 43 - second protruding part; 50 - shock absorption assembly; 51 - shock absorption spring; 52 - mounting seat; 60 - connecting line. DETAILED DESCRIPTION
[0043] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0044] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication between two elements, it can be wireless connection, or it can be wired connection. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0045] In the description of the present application, it should be noted that the term "and / or" used in the specification and the appended claims of the present application means any combination of one or more of the associated listed items and all possible combinations, and includes these combinations.
[0046] In addition, the technical features involved in the different embodiments of the application described below can be combined with each other as long as there is no conflict.
[0047] The technical solutions of the present application will be described below in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the scope of protection of the present application.
[0048] The technical solutions of the present application will be described below in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the scope of protection of the present application. Figure 1 The present application is further described in detail below.
[0049] The embodiments of the present application disclose a kitchen air conditioner structure, which comprises a shell 100, the shell 100 is internally provided with a compressor 10, a refrigeration assembly 30 and a heat exchange assembly 20. The refrigeration assembly 30 generates cold air and discharges the cold air from the shell 100 into a kitchen, and the heat exchange assembly 20 absorbs heat, part of return air in the room enters the shell 100 and passes through the heat exchange assembly 20, and the part of return air carries away the heat contained in the heat exchange assembly 20 and discharges to the outside.
[0050] Specifically, the refrigeration assembly 30 comprises an evaporator 31 and a refrigeration fan 32, the evaporator 31 absorbs heat, and the refrigeration fan 32 blows cold air to the inside of the kitchen. The heat exchange assembly 20 comprises a condenser 21 and a heat exchange fan 22, the condenser 21 releases heat to generate a large amount of heat, and the heat exchange fan 22 makes the return air in the room discharge into the shell 100, and the return air carries away the heat after passing through the condenser 21 and discharges to the outside.
[0051] The outer edge of the shell 100 is rectangular, and the shell 100 comprises a bottom wall 109 and first, second, third and fourth side walls 101, 102, 103 and 104 respectively arranged corresponding to the four side edges of the bottom wall 109 and perpendicular to the bottom wall 109. The shell 100 forms a cavity for accommodating the compressor 10, the refrigeration assembly 30 and the heat exchange assembly 20 through the first, second, third and fourth side walls 101, 102, 103 and 104 and the bottom wall 109. In other embodiments, the outer edge of the shell 100 can be circular or other polygons other than quadrilaterals.
[0052] In an embodiment, the compressor 10 is located between the refrigeration fan 32 and the heat exchange fan 22, and the compressor 10 has a rotating axis 11 arranged along the length direction of the compressor 10; the projection of the rotating axis 11 on the bottom wall 109 and the projection of the connecting line 60 formed by the refrigeration fan 32 and the heat exchange fan 22 on the bottom wall 109 are two intersecting lines.
[0053] In an embodiment, the compressor 10 is parallel to the bottom wall 109, and the refrigeration fan 32 and the heat exchange fan 22 are perpendicular to the bottom wall 109. In other embodiments, the compressor 10 can be inclined to the bottom wall 109 and form an angle other than 90°, and the refrigeration fan 32 and the heat exchange fan 22 can be inclined to the bottom wall 109 and form an angle other than 90°.
[0054] The first long side 101 and the first short side 103 form a first angle 105, the second long side 102 and the second short side 104 form a second angle 106, and the first long side 101 and the second short side 104 form a third angle 107. The first angle 105 and the second angle 106 are diagonally opposite and are farthest apart in the middle of the shell 100, and the second long side 102 and the first short side 103 form a fourth angle 108.
[0055] In an embodiment, the refrigeration fan 32 is arranged in the first angle 105 and connected to the first long side 101 and the first short side 103, respectively. In the refrigeration assembly 30, the refrigeration fan 32 needs to be provided with air, so the vibration generated by the internal motor, shaft and fan during operation is large. Therefore, the refrigeration fan 32 is installed at the first angle 105 and connected to the first long side 101 and the first short side 103, respectively, to increase the shock resistance.
[0056] Specifically, the air inlet of the refrigeration fan 32 is located at the first short side 103.
[0057] The heat exchange fan 22 is arranged in the second angle 106 and connected to the second long side 102 and the second short side 104, respectively. In the heat exchange assembly 20, the heat exchange fan 22 needs to be provided with air, so the vibration generated by the internal motor, shaft and fan during operation is large. Therefore, the heat exchange fan 22 is installed at the second angle 106 and connected to the second long side 102 and the second short side 104, respectively, to increase the shock resistance.
[0058] Specifically, the air outlet of the heat exchange fan 22 is located at the second short side 104.
[0059] The condenser 21 is located in the third angle 107, and the condenser 21 is connected to the first long side 101 and the second short side 104. The connection of the condenser 21 to the first long side 101 and the second short side 104 can reinforce the whole shell 100 and maintain the stability of the shell 100 when a large vibration occurs in the shell 100.
[0060] Specifically, the condenser 21 is L-shaped, and the two ends of the condenser 21 perpendicular to each other are parallel to the first long side 101 and the second short side 104 respectively, and the turning position between the two ends of the condenser 21 is opposite to the third included angle 107.
[0061] The compressor 10 is located between the refrigeration fan 32 and the heat exchange fan 22, and the compressor 10 has a rotating axis 11 inside, and the rotating axis 11 of the compressor 10 and the second long side 102 form an included angle greater than 0° and less than 90°. The refrigeration fan 32 has a refrigeration fan wheel rotating shaft 321, and the heat exchange fan 22 has a heat exchange fan wheel rotating shaft 221, the refrigeration fan wheel rotating shaft 321 is parallel to the heat exchange fan wheel rotating shaft 221, and the refrigeration fan wheel rotating shaft 321 is perpendicular to the rotating axis 11 of the compressor 10. When the compressor 10 is working, the rotating shaft inside the compressor 10 also vibrates, and when the compressor 10 is located between the refrigeration fan 32 and the heat exchange fan 22, it can offset part of the vibration of the refrigeration fan 32 and the heat exchange fan 22 through its own vibration, so that the original overall vibration is offset, and the first included angle 105 and the second included angle 106 are oppositely arranged and the farthest in the shell 100, after the compressor 10 is arranged, the heat exchange fan 22 and the refrigeration fan 32 with parallel shafts are not easy to produce the same frequency and common vibration.
[0062] As a preferred, the included angle between the rotating axis 11 of the compressor 10 and the second long side 102 is 65°, and at this time, the space occupied by the compressor 10 in the shell 100 is the smallest, so that the fan blades of the refrigeration fan 32 and the heat exchange fan 22 can be enlarged, and the refrigeration efficiency and the heat exchange efficiency are improved.
[0063] In an embodiment, the shell 100 also has a support 40, and the two ends of the support 40 are connected with the first long side 101 and the second long side 102 respectively. Even if the compressor 10 is arranged at a specific angle in the shell 100, the compressor 10 will still cause weak vibration of the shell 100 when it is running, and the compressor 10 still has vibration to the shell 100 along the first short side 103 after being arranged at an angle. The support 40 connects and reinforces the first long side 101 and the second long side 102, further improves the stability of the shell 100 along the first short side 103, and further reduces the influence of the compressor 10 on the vibration of the shell 100 along the first short side 103.
[0064] Specifically, the support 40 includes an upper part 41 and a lower part 42, the top end of the upper part 41 is connected and fixed with the first long side 101, and the bottom end of the lower part 42 is connected and fixed with the second long side 102.
[0065] In an embodiment, the support 40 has a first protruding portion 411 protruding towards the side of the compressor 10, and the compressor 10 and the refrigeration fan 32 are located on two sides of the first protruding portion 411 and abut against the first protruding portion 411. When the compressor 10 generates vibration, the first protruding portion 411 protruding towards the compressor 10 abutting against the compressor 10 can directly resist the vibration generated by the compressor 10, and at the same time, the refrigeration fan 32 abutting against the first protruding portion 411 can also offset the vibration of the compressor 10, playing a role of anti-vibration for the compressor 10, and improving the stability of the shell 100 in the direction of the first long side 101.
[0066] Specifically, the first protruding portion 411 is located on the upper portion 41.
[0067] The support 40 has a second protruding portion 43 protruding towards the side of the refrigeration fan 32, and the refrigeration fan 32 and the compressor 10 are located on two sides of the second protruding portion 43 and abut against the second protruding portion 43. When the refrigeration fan 32 generates vibration, the second protruding portion 43 protruding towards the refrigeration fan 32 abutting against the refrigeration fan 32 can directly resist the vibration generated by the refrigeration fan 32, and at the same time, the compressor 10 abutting against the second protruding portion 43 can also offset the vibration of the refrigeration fan 32, playing a role of anti-vibration for the refrigeration fan 32, and improving the stability of the shell 100 in the direction of the first long side 101.
[0068] Specifically, the second protruding portion 43 is located between the upper portion 41 and the lower portion 42. The first protruding portion 411 and the second protruding portion 43 both protrude in the length direction of the first long side 101, and the protruding directions of the first protruding portion 411 and the second protruding portion 43 are opposite, so that the vibrations of the compressor 10 and the refrigeration fan 32 acting on the support 40 can offset each other.
[0069] The support 40 includes a third protruding portion 421 protruding towards the heat exchange fan 22 and abutting against the heat exchange fan 22. When the heat exchange fan 22 generates vibration, the third protruding portion 421 protruding towards the heat exchange fan 22 abutting against the heat exchange fan 22 can directly resist the vibration generated by the heat exchange fan 22, playing a role of anti-vibration for the heat exchange fan 22, and improving the stability of the shell 100 in the direction of the first long side 101.
[0070] Specifically, the third protruding portion 421 is located on the lower portion 42.
[0071] In an embodiment, the heat exchange fan 22, the refrigeration fan 32 and the compressor 10 are located in the same plane, and the plane is parallel to the bottom wall 109. When the heat exchange fan 22, the refrigeration fan 32 and the compressor 10 are located in the same plane, the vibrations generated by different components all act on adjacent components, which can avoid misalignment and cause the misaligned parts to be difficult to offset the vibration.
[0072] The inner wall between the compressor 10 and the shell 100 is provided with a damping assembly 50. The damping assembly 50 is arranged between the inner wall between the compressor 10 and the shell 100, which can prevent the vibration of the compressor 10 from being directly transmitted to the shell 100, and has a damping effect.
[0073] Specifically, the damping assembly 50 comprises a damping spring 51 and a mounting seat 52. One end of the damping spring 51 is connected to the mounting seat 52, and the other end is connected to the bottom wall 109 of the shell 100. The compressor 10 is mounted on the mounting seat 52. Alternatively, one end of the damping spring 51 is connected to the mounting seat 52, and the bottom wall of the shell has a pad. The other end of the damping spring 51 is connected to the pad on the bottom wall 109 of the shell 100.
[0074] In an embodiment, the evaporator 31 is arranged on the second long side 102 and is spaced apart from the compressor 10, the refrigeration fan 32 and the heat exchange fan 22. The evaporator 31 is arranged on the second long side 102, which can make the evaporator 31 away from the compressor 10, the refrigeration fan 32 and the heat exchange fan 22 on the second long side 102, so as to reduce the influence of vibration.
[0075] Obviously, the above embodiments are only examples for clearly illustrating, but not limitation to the embodiments. For those skilled in the art, other different forms of changes or variations can be made on the basis of the above description. Here, it is not necessary and impossible to enumerate all the embodiments. The obvious changes or variations derived therefrom are still within the protection scope of the present application.
Claims
1. An air conditioning system comprising a housing (100) having a compressor (10), a refrigeration assembly (30) and a heat exchange assembly (20) therein, characterized in that, the refrigeration assembly (30) comprises a refrigeration fan (32), and the heat exchange assembly (20) comprises a heat exchange fan (22), the refrigeration fan (32) and the heat exchange fan (22) are located on two sides of the housing (100) respectively and are farthest apart in the housing (100); the compressor (10) is located between the refrigeration fan (32) and the heat exchange fan (22), and the compressor (10) has a rotation axis (11) arranged along the length direction of the compressor (10); the housing (100) has a bottom wall (109), the projection of the rotation axis (11) on the bottom wall (109) and the connecting line (60) formed by the refrigeration fan (32) and the heat exchange fan (22) are two intersecting lines on the bottom wall (109).
2. The air conditioning system of claim 1, wherein, the housing (100) has a first included angle (105) and a second included angle (106) arranged oppositely, the refrigeration fan (32) is arranged at the first included angle (105) and at least partially connected with the housing (100) at the first included angle (105), and the heat exchange fan (22) is arranged at the second included angle (106) and at least partially connected with the housing (100) at the second included angle (106).
3. The air conditioning system of claim 2, wherein, the housing (100) has a first long side (101), a first short side (103), a second long side (102) and a second short side (104) connected in sequence, the first long side (101) is connected with the first short side (103) and forms the first included angle (105), the second long side (102) is connected with the second short side (104) and forms the second included angle (106), and an included angle between the rotation axis (11) of the compressor (10) and the second long side (102) is greater than 0° and less than 90°.
4. The air conditioning system according to any one of claims 1 to 3, wherein the refrigeration fan (32) has a refrigeration fan wheel rotation axis (321), the heat exchange fan (22) has a heat exchange fan wheel rotation axis (221), the refrigeration fan wheel rotation axis (321) is parallel to the heat exchange fan wheel rotation axis (221), and the refrigeration fan wheel rotation axis (321) is perpendicular to the rotation axis (11) of the compressor (10).
5. The air conditioning system of claim 3, wherein, the refrigeration assembly (30) further comprises an evaporator (31), and the evaporator (31) is arranged on the second long side (102) and spaced from the compressor (10), the refrigeration fan (32) and the heat exchange fan (22).
6. The air conditioning system of claim 3, wherein, the heat exchange assembly (20) further comprises a condenser (21), a third included angle (107) is formed between the first long side (101) and the second short side (104), the condenser (21) is located in the third included angle (107), and the condenser (21) is connected with the first long side (101) and the second short side (104).
7. The air conditioning system of claim 1, wherein, The compressor (10) is connected with the inner wall of the shell (100), and a shock absorbing assembly (50) is arranged between the compressor (10) and the inner wall of the shell (100).
8. The air conditioning system of claim 3, wherein, The shell (100) further has a support (40), and two ends of the support (40) are connected with the first long side (101) and the second long side (102) respectively.
9. The air conditioning system of claim 8, wherein, The support (40) has a first protruding part (411), the first protruding part (411) protrudes towards the side of the compressor (10), and the refrigeration fan (32) and the compressor (10) are located on two sides of the first protruding part (411) and abut against the first protruding part (411) respectively.
10. The air conditioning system of claim 8, wherein, The support (40) has a second protruding part (43), the second protruding part (43) protrudes towards the side of the refrigeration fan (32), and the refrigeration fan (32) and the compressor (10) are located on two sides of the second protruding part (43) and abut against the second protruding part (43) respectively.
11. The air conditioning system of claim 8, wherein, The support (40) comprises a third protruding part (421), the third protruding part (421) protrudes towards the heat exchange fan (22) and abuts against the heat exchange fan (22).
Citation Information
Patent Citations
Air conditioner structure
CN220103294U