Air conditioner cabinet and control method thereof
By installing a liftable heat insulation baffle and a fixing plate on the fish tank of the air conditioner unit, the heat conduction effect can be adjusted, solving the problem of insufficient temperature regulation of the fish tank by the air outlet temperature of the air conditioner in the existing technology, and realizing dynamic temperature regulation and convenient cleaning of the fish tank.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- NINGBO AUX ELECTRIC CO LTD
- Filing Date
- 2023-01-09
- Publication Date
- 2026-05-01
AI Technical Summary
Existing cabinet air conditioners with built-in fish tanks only prevent the temperature of the air conditioner outlet from affecting the temperature of the fish tank by separately installing heat insulation material. As a result, the fish tank cannot effectively use the temperature of the air conditioner outlet to regulate its temperature, and thus cannot meet the temperature requirements for raising fish in the fish tank.
A heat insulation component is installed on the fish tank of the air conditioner cabinet unit, including a heat insulation fixing plate and a liftable heat insulation baffle. By adjusting the distance between the heat insulation baffle and the fixing plate, the heat conduction effect is adjusted to control the temperature of the fish tank. Heat insulation components are also installed at the top and bottom of the fish tank to further regulate the temperature.
It enables dynamic adjustment of the aquarium temperature based on changes in the air conditioner's outlet temperature and the aquarium temperature, ensuring the aquarium remains within a suitable temperature range and facilitating cleaning and installation while preventing the aquarium from falling out and dust from entering.
Smart Images

Figure CN118310082B_ABST
Abstract
Description
A cabinet air conditioner and its control method Technical Field
[0001] This invention relates to the field of air conditioning technology, and more specifically, to a cabinet air conditioner and a control method for a cabinet air conditioner. Background Technology
[0002] Currently, the utilization of housing space and the design of housing space layout are important aspects of home decoration, and the practice of installing fish tanks in cabinet air conditioners is gradually appearing in modern cabinet air conditioners.
[0003] However, in actual use, there is a problem: the temperature of the aquarium is required when keeping fish, and fish can survive better at a specific water temperature. However, the current cabinet air conditioners with aquariums only have insulation materials to prevent the temperature of the air conditioner outlet from affecting the temperature of the aquarium, which means that the aquarium cannot make good use of the temperature of the air conditioner outlet. Summary of the Invention
[0004] Therefore, this embodiment of the invention provides a cabinet air conditioner that can be raised and lowered on a heat insulation fixed plate by adjusting the heat insulation baffle to adjust the thermal conductivity, thereby using the air conditioner to regulate the temperature of the fish tank.
[0005] To address the aforementioned problems, the present invention provides a cabinet air conditioner, comprising: a cabinet body; a fish tank embedded in the cabinet body; and at least one heat insulation component, the heat insulation component comprising: a heat insulation fixing plate and a heat insulation baffle, wherein the heat insulation fixing plate is fixedly connected to the fish tank, and the heat insulation baffle is disposed on the side of the heat insulation fixing plate away from the fish tank; wherein the heat insulation baffle is liftable and adjustable on the heat insulation fixing plate.
[0006] Compared with existing technologies, the technical effects achieved by this solution are as follows: Since fish tanks require specific water temperatures for better fish survival, current cabinet air conditioners with integrated aquariums only have separate insulation materials to prevent the air conditioner's outlet temperature from affecting the aquarium temperature. This results in the aquarium not effectively utilizing the air conditioner's outlet temperature. This application addresses this by embedding an insulation component within the aquarium of the cabinet unit. This component includes an insulation fixing plate and a liftable insulation baffle mounted on the insulation fixing plate. By adjusting the distance between the insulation baffle and the insulation fixing plate at different air conditioner outlet and aquarium temperatures, the heat conduction effect can be adjusted, thereby utilizing the air conditioner's outlet temperature to regulate the aquarium temperature.
[0007] In one embodiment of the present invention, the fish tank has an upper end, a lower end and a side end face, and the fish tank is detachably mounted on the cabinet body through the side end face, and the upper end of the fish tank has an opening.
[0008] Compared with existing technologies, the technical effects achieved by adopting this technical solution are as follows: by detachably mounting the fish tank onto the cabinet body and providing an opening at the top of the fish tank, it is convenient for users to remove the fish tank and clean it.
[0009] In one embodiment of the present invention, the at least one heat insulation component includes: a first heat insulation component and a second heat insulation component, wherein the first heat insulation component is disposed at the upper end of the fish tank; and the second heat insulation component is disposed at the lower end of the fish tank.
[0010] Compared with existing technologies, the technical effects achieved by adopting this technical solution are as follows: by setting the first heat insulation component and the second heat insulation component at the upper and lower ends of the fish tank respectively, the heat conduction effect at both ends can be adjusted, thereby facilitating the adjustment of the fish tank temperature using the air outlet temperature of the air conditioner.
[0011] In one embodiment of the present invention, the side end face of the fish tank is provided with a front end face and a rear end face, and the cabinet body is provided with an installation opening, which is located on the front side of the cabinet body; the angle between the lower end of the fish tank and the front end face is an obtuse angle, and the angle between the lower end of the fish tank and the rear end face is an acute angle; wherein, when the fish tank is installed to the cabinet body, the rear end face of the fish tank is first inserted into the installation opening, and then the entire fish tank is installed to the cabinet body.
[0012] Compared with existing technologies, the technical effect achieved by this technical solution is as follows: when the installation opening is located on the front of the cabinet body, by making the angle between the lower end and the front face of the fish tank obtuse and the angle between the lower end and the rear face of the fish tank acute, the bottom end of the fish tank is set at an angle, thereby preventing the fish tank from falling off the cabinet body.
[0013] In one embodiment of the present invention, the side end face of the fish tank is provided with a front end face and a rear end face, and the cabinet body is provided with an installation opening, which is located on the back of the cabinet body; the included angle between the lower end of the fish tank and the front end face is an acute angle, and the included angle between the lower end of the fish tank and the rear end face is an obtuse angle; wherein, when the fish tank is installed to the cabinet body, the front end face of the fish tank is first inserted into the installation opening, and then the entire fish tank is installed to the cabinet body.
[0014] Compared with existing technologies, the technical effect achieved by this technical solution is as follows: when the installation opening is located on the back of the cabinet body, by making the angle between the lower end and the front end of the fish tank acute and the angle between the lower end and the rear end of the fish tank obtuse, the bottom end of the fish tank is set at an angle, thereby preventing the fish tank from falling off the cabinet body.
[0015] In one embodiment of the invention, it further includes an end cap assembly disposed at the opening.
[0016] Compared with existing technologies, the technical effect achieved by adopting this technical solution is: by setting an end cap at the opening, dust inside the air conditioner unit is prevented from entering the fish tank.
[0017] In one embodiment of the present invention, the end cap assembly includes: a guide groove, the guide groove being embedded in the side end face near the upper end; a first rotating cover plate, the first rotating cover plate being engaged in the guide groove; and a second rotating cover plate, the second rotating cover plate being engaged in the guide groove; wherein the first rotating cover plate and the second rotating cover plate are rotatably disposed in the guide groove, and the thickness of the first rotating cover plate is d1, the thickness of the second rotating cover plate is d2, the thickness of the guide groove is d3, and d1+d2≤d3.
[0018] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: by setting a first rotating cover plate and a second rotating cover plate on the guide groove, and the thickness d1 of the first rotating cover plate plus the thickness d2 of the second rotating cover plate is less than or equal to the thickness d3 of the guide groove, the first rotating cover plate and the second rotating cover plate can rotate relative to each other in the guide groove without interfering with each other. The user can rotate the first rotating cover plate and the second rotating cover plate to open and close the opening as needed.
[0019] In one embodiment of the present invention, the first rotating cover plate and the second rotating cover plate are incomplete circles.
[0020] Compared with the existing technology, the technical effect achieved by adopting this technical solution is as follows: by setting the first rotating cover plate and the second rotating cover plate as incomplete circles, the user can rotate the first rotating cover plate and the second rotating cover plate to open and close the opening as needed.
[0021] In one embodiment of the present invention, the angle between the first rotating cover plate and the second rotating cover plate is in the range of 92°-100°.
[0022] Compared with the existing technology, the technical effects achieved by adopting this technical solution are as follows: by setting the angle range of the first rotating cover and the second rotating cover to 92°-100°, the first rotating cover and the second rotating cover are prevented from falling onto the same horizontal plane when rotating. In addition, the angle of 92°-100° can also make the opening at the top of the fish tank larger, which is convenient for users to clean.
[0023] In one embodiment of the invention, it further includes at least one handle, which is disposed in the fish tank.
[0024] Compared with existing technologies, the technical effect achieved by adopting this technical solution is: by setting at least one handle, it is convenient for users to install or disassemble the fish tank.
[0025] On the other hand, embodiments of the present invention also provide a control method for a cabinet air conditioner, which controls and adjusts the cabinet air conditioner described in any of the above claims. The control method specifically includes: setting a preset temperature Ty for the aquarium; detecting the status of the cabinet air conditioner; when the cabinet air conditioner is in the on state, detecting the air outlet temperature Tc of the cabinet air conditioner and the water temperature Ts of the aquarium; when 0≤Ty-Tc≤Ty-Ts or 0≤Tc-Ty≤Ts-Ty, adjusting the distance between the heat insulation fixing plate and the heat insulation baffle to a first preset distance L1; when 0≤Ty-Ts≤Ty-Tc or 0≤Ts-Ty≤Tc-Ty, adjusting the distance between the heat insulation fixing plate and the heat insulation baffle to a second preset distance L2; wherein, the first preset distance L1 is less than the second preset distance L2.
[0026] Compared with existing technologies, the technical effects achieved by this technical solution are as follows: the first preset distance L1 is less than the second preset distance L2. When 0≤Ty-Tc≤Ty-Ts or 0≤Tc-Ty≤Ts-Ty, it means that the aquarium water temperature Ts can be adjusted to a more suitable temperature by adjusting the air outlet temperature of the air conditioner unit. Therefore, the distance between the heat insulation fixing plate and the heat insulation baffle is reduced, thereby improving the heat conduction effect. When 0≤Ty-Ts<Ty-Tc or 0≤Ts-Ty<Tc-Ty, it means that the air outlet temperature of the air conditioner unit will cause the aquarium water temperature Ts to deviate from the suitable temperature. Therefore, the distance between the heat insulation fixing plate and the heat insulation baffle is increased, thereby reducing the heat conduction effect.
[0027] By adopting the technical solution of the present invention, the following technical effects can be achieved:
[0028] (1) By setting a heat insulation component on the fish tank embedded in the cabinet body, and the heat insulation component includes a heat insulation fixing plate and a heat insulation baffle that can be lifted and lowered on the heat insulation fixing plate, the heat conduction effect can be adjusted by adjusting the distance between the heat insulation baffle and the heat insulation fixing plate when the air outlet temperature of the air conditioner and the fish tank temperature are different. In this way, the temperature of the fish tank can be adjusted by using the air outlet temperature of the air conditioner.
[0029] (2) When the installation opening is located on the front of the cabinet body, the bottom of the fish tank is tilted by making the angle between the lower end and the front face of the fish tank obtuse and the angle between the lower end and the rear face of the fish tank acute, thereby preventing the fish tank from falling off the cabinet body.
[0030] (3) By setting a first rotating cover plate and a second rotating cover plate on the guide groove, and the thickness d1 of the first rotating cover plate plus the thickness d2 of the second rotating cover plate is less than or equal to the thickness d3 of the guide groove, the first rotating cover plate and the second rotating cover plate can rotate relative to each other in the guide groove without interfering with each other. The user can rotate the first rotating cover plate and the second rotating cover plate to open and close the opening as needed. Attached Figure Description
[0031] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings to be used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0032] Figure 1 is one of the structural schematic diagrams of an air conditioner cabinet unit provided in an embodiment of the present invention.
[0033] Figure 2 is one of the structural diagrams of a fish tank.
[0034] Figure 3 is the second schematic diagram of the fish tank structure.
[0035] Figure 4 is the third schematic diagram of the fish tank structure.
[0036] Figure 5 is a schematic diagram of the thickness between the first rotating cover plate, the second rotating cover plate, and the guide groove.
[0037] Figure 6 is one of the structural schematic diagrams of the thermal insulation component.
[0038] Figure 7 is the second schematic diagram of the thermal insulation component.
[0039] Explanation of reference numerals in the attached figures:
[0040] 100 is the air conditioner cabinet unit; 110 is the cabinet unit body; 120 is the fish tank; 121 is the upper end; 122 is the lower end; 123 is the side end face; 124 is the first rotating cover; 125 is the second rotating cover; 126 is the handle; 127 is the guide groove; 130 is the heat insulation component; 131 is the heat insulation fixing plate; 132 is the heat insulation baffle; 133 is the motor. Detailed Implementation
[0041] To make the above-mentioned objectives, features, and advantages of the present invention more apparent and understandable, the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0042] Referring to Figure 1, which is a structural schematic diagram of an air conditioner cabinet unit 100 provided in an embodiment of the present invention. Specifically, referring to Figures 1-7, the air conditioner cabinet unit 100 provided by the present invention includes, for example: a cabinet unit body 110; a fish tank 120, the fish tank 120 being embedded in the cabinet unit body 110; at least one heat insulation component 130, the heat insulation component 130 including: a heat insulation fixing plate 131 and a heat insulation baffle 132, wherein the heat insulation fixing plate 131 is fixedly connected to the fish tank 120, and the heat insulation baffle 132 is disposed on the side of the heat insulation fixing plate 131 away from the fish tank 120; wherein, the heat insulation baffle 132 is liftable and adjustable on the heat insulation fixing plate 131.
[0043] For example, when keeping fish in a fish tank 120, there are certain requirements for the temperature of the fish tank 120. Fish can survive better at a specific water temperature. However, some cabinet air conditioners with fish tanks 120 only have insulation materials to prevent the temperature of the air conditioner outlet from affecting the temperature of the fish tank 120. As a result, the fish tank 120 cannot make good use of the air conditioner outlet temperature. This application solves the problem by setting an insulation component 130 embedded in the fish tank 120 of the cabinet body 110. The insulation component 130 includes an insulation fixing plate 131 and an insulation baffle 132 that can be raised and lowered on the insulation fixing plate 131. When the air conditioner outlet temperature and the fish tank 120 temperature are different, the heat conduction effect can be adjusted by adjusting the distance between the insulation baffle 132 and the insulation fixing plate 131, thereby realizing the adjustment of the fish tank 120 temperature by using the air conditioner outlet temperature.
[0044] Furthermore, the fish tank 120 has an upper end 121, a lower end 122, and a side end face 123. The fish tank 120 is detachably mounted to the cabinet body 110 via the side end face 123, and the upper end 121 of the fish tank 120 has an opening. For example, by detachably mounting the fish tank 120 to the cabinet body 110 and providing an opening at the upper end 121 of the fish tank 120, it is convenient for the user to remove the fish tank 120 for cleaning.
[0045] Preferably, at least one heat insulation component 130 includes: a first heat insulation component and a second heat insulation component, wherein the first heat insulation component is disposed at the upper end 121 of the fish tank; and the second heat insulation component is disposed at the lower end 122 of the fish tank.
[0046] For example, by setting a first heat insulation component and a second heat insulation component at the upper and lower ends of the fish tank 120 respectively, the heat conduction effect at both ends can be adjusted, thus facilitating the adjustment of the fish tank temperature using the air outlet temperature of the air conditioner.
[0047] Furthermore, referring to Figure 3, the side end face 123 of the fish tank 120 is provided with a front end face and a rear end face, and the cabinet body 110 is provided with an installation opening, which is located on the front of the cabinet body 110; the angle between the lower end 122 of the fish tank 120 and the front end face is γ, and the angle between the lower end 122 of the fish tank 120 and the front end face is an obtuse angle, and γ is an obtuse angle; the angle between the lower end 122 of the fish tank 120 and the rear end face is α, and the angle between the lower end 122 of the fish tank 120 and the rear end face is an acute angle, and α is an acute angle; wherein, when the fish tank 120 is installed to the cabinet body 110, the rear end face of the fish tank 120 is first inserted into the installation opening, and then the entire fish tank 120 is installed to the cabinet body 110.
[0048] For example, when the installation opening is located on the front of the cabinet body 110, by making the angle between the lower end 122 of the fish tank 120 and the front face obtuse and the angle between the lower end 122 of the fish tank 120 and the rear face acute, the bottom of the fish tank 120 is tilted, thereby preventing the fish tank 120 from falling off the cabinet body 110.
[0049] Furthermore, the side end face 123 of the fish tank 120 is provided with a front end face and a rear end face, and the cabinet body 110 is provided with an installation opening, which is located on the back of the cabinet body 110; the angle between the lower end 122 of the fish tank 120 and the front end face is an acute angle, and γ is an acute angle; the angle between the lower end 122 of the fish tank 120 and the rear end face is an obtuse angle, and α is an obtuse angle; wherein, when the fish tank 120 is installed to the cabinet body 110, the front end face of the fish tank 120 is first inserted into the installation opening, and then the entire fish tank 120 is installed to the cabinet body 110.
[0050] For example, when the installation opening is located on the back of the cabinet body 110, by making the angle between the lower end 122 of the fish tank 120 and the front end face an acute angle and the angle between the lower end 122 of the fish tank 120 and the rear end face an obtuse angle, the bottom end of the fish tank 120 is set at an angle, thereby preventing the fish tank 120 from falling off the cabinet body 110.
[0051] Preferably, the air conditioner unit 100 further includes, for example, an end cap assembly disposed at the opening. For instance, by providing an end cap at the opening, dust inside the air conditioner unit 100 is prevented from entering the fish tank 120.
[0052] Furthermore, the end cap assembly includes: a guide groove 127, which is embedded in the side end face 123 near the upper end 121; a first rotating cover plate 124, which is engaged in the guide groove 127; and a second rotating cover plate 125, which is engaged in the guide groove 127. The first rotating cover plate 124 and the second rotating cover plate 125 are rotatably disposed in the guide groove 127, and the thickness of the first rotating cover plate 124 is d1, the thickness of the second rotating cover plate 125 is d2, the thickness of the guide groove 127 is d3, and d1+d2≤d3.
[0053] For example, by setting a first rotating cover plate 124 and a second rotating cover plate 125 on the guide groove 127, and the thickness d1 of the first rotating cover plate 124 plus the thickness d2 of the second rotating cover plate 125 is less than or equal to the thickness d3 of the guide groove 127, the first rotating cover plate 124 and the second rotating cover plate 125 can rotate relative to each other in the guide groove 127 without interfering with each other. The user can rotate the first rotating cover plate 124 and the second rotating cover plate 125 to open and close the opening as needed.
[0054] In one specific embodiment, a first rotating cover 124 is disposed above, and a second rotating cover 125 is disposed below the first rotating cover 124. Both the first rotating cover 124 and the second rotating cover 125 are disposed within the guide groove 127, so that both the first rotating cover 124 and the second rotating cover can rotate within the guide groove 127, which is convenient for users to clean.
[0055] Preferably, the first rotating cover plate 124 and the second rotating cover plate 125 are incomplete circles.
[0056] For example, by setting the first rotating cover 124 and the second rotating cover 125 as incomplete circles, the user can rotate the first rotating cover 124 and the second rotating cover 125 to open and close the opening as needed.
[0057] Furthermore, the angle between the first rotating cover 124 and the second rotating cover 125 is in the range of 92°-100°. For example, by setting the angle between the first rotating cover 124 and the second rotating cover 125 to 92°-100°, it prevents the first rotating cover 124 and the second rotating cover 125 from falling onto the same horizontal plane during rotation. The angle of 92°-100° also allows for a larger opening at the top 121 of the aquarium 120, making it easier for the user to clean.
[0058] Preferably, the air conditioner unit 100 further includes, for example, at least one handle 126, which is disposed on the fish tank 120. For example, by providing at least one handle 126, it is convenient for the user to install or remove the fish tank 120.
[0059] In one specific embodiment, at least one handle 126 is provided on two sides of the front or rear face of the fish tank 120. When the angle between the lower end 122 of the fish tank 120 and the front face is γ, and the angle between the lower end 122 of the fish tank 120 and the front face is obtuse, γ is an obtuse angle; when the angle between the lower end 122 of the fish tank 120 and the rear face is α, and the angle between the lower end 122 of the fish tank 120 and the rear face is acute, α is an acute angle, the two handles 126 are provided on the front face of the fish tank 120; when the angle between the lower end 122 of the fish tank 120 and the front face is acute, γ is an acute angle; and when the angle between the lower end 122 of the fish tank 120 and the rear face is obtuse, α is an obtuse angle, the two handles 126 are provided on the rear face of the fish tank 120, thereby facilitating the user to install or remove the fish tank 120.
[0060] Preferably, referring to Figures 6-7, the heat insulation component 130 further includes, for example, at least one motor 133 and a rotating component; the output end of the motor 133 is connected to the rotating component, the end of the rotating component away from the motor 133 is rotatably connected to the heat insulation fixing plate 131, and the end of the rotating component close to the motor 133 is fixedly connected to the heat insulation baffle 132. The rotating component is driven to rotate forward or backward by the motor 133, thereby realizing the adjustment of the distance between the heat insulation fixing plate 131 and the heat insulation baffle 132.
[0061] On the other hand, this embodiment of the invention also provides a control method for a cabinet air conditioner, which controls and adjusts the cabinet air conditioner 100 described above. The control method specifically includes: setting a preset temperature Ty for the fish tank; detecting the state of the cabinet air conditioner 100; when the cabinet air conditioner 100 is in the on state, detecting the air outlet temperature Tc of the cabinet air conditioner and the water temperature Ts of the fish tank; when 0≤Ty-Tc≤Ty-Ts or 0≤Tc-Ty≤Ts-Ty, adjusting the distance between the heat insulation fixing plate 131 and the heat insulation baffle 132 to a first preset distance L1; when 0≤Ty-Ts≤Ty-Tc or 0≤Ts-Ty≤Tc-Ty, adjusting the distance between the heat insulation fixing plate 131 and the heat insulation baffle 132 to a second preset distance L2; wherein, the first preset distance L1 is less than the second preset distance L2.
[0062] For example, if the first preset distance L1 is less than the second preset distance L2, when 0≤Ty-Tc≤Ty-Ts or 0≤Tc-Ty≤Ts-Ty, it means that the aquarium water temperature Ts can be adjusted to a more suitable temperature by adjusting the air outlet temperature of the air conditioner unit 100. Therefore, the distance between the heat insulation fixing plate 131 and the heat insulation baffle 132 is reduced, thereby improving the heat conduction effect. When 0≤Ty-Ts<Ty-Tc or 0≤Ts-Ty<Tc-Ty, it means that the air outlet temperature of the air conditioner unit 100 will cause the aquarium water temperature Ts to deviate from the suitable temperature. Therefore, the distance between the heat insulation fixing plate 131 and the heat insulation baffle 132 is increased, thereby reducing the heat conduction effect.
[0063] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A control method for a cabinet air conditioner, characterized in that, An air conditioner cabinet unit control method is used to control and adjust an air conditioner cabinet unit. The air conditioner cabinet unit includes: a cabinet unit body (110); a fish tank (120) embedded in the cabinet unit body (110); and at least one heat insulation component (130). The heat insulation component (130) includes: a heat insulation fixing plate (131) and a heat insulation baffle (132). The heat insulation fixing plate (131) is fixedly connected to the fish tank (120), and the heat insulation baffle (132) is located on the side of the heat insulation fixing plate (131) away from the fish tank (120). The heat insulation baffle (132) can be raised and lowered on the heat insulation fixing plate (131). By adjusting the distance between the heat insulation baffle (132) and the heat insulation fixing plate (131), the air conditioner can be adjusted to utilize the air conditioner's heat insulation properties. The outlet temperature adjusts the temperature of the fish tank (120); the air conditioner cabinet control method specifically includes: setting a preset temperature Ty for the fish tank; detecting the status of the air conditioner cabinet, and when the air conditioner cabinet is in the open state, detecting the air outlet temperature Tc and the fish tank water temperature Ts; when 0≤Ty-Tc≤Ty-Ts or 0≤Tc-Ty≤Ts-Ty, adjusting the distance between the heat insulation fixing plate (131) and the heat insulation baffle (132) to a first preset distance L1; when 0≤Ty-Ts<Ty-Tc or 0≤Ts-Ty<Tc-Ty, adjusting the distance between the heat insulation fixing plate (131) and the heat insulation baffle (132) to a second preset distance L2; wherein, the first preset distance L1 is less than the second preset distance L2.
2. The air conditioner cabinet unit control method according to claim 1, characterized in that, The fish tank (120) has an upper end (121), a lower end (122) and a side end face (123), and the fish tank (120) is detachably mounted on the cabinet body (110) through the side end face (123), and the upper end (121) of the fish tank (120) has an opening.
3. The air conditioner cabinet unit control method according to claim 2, characterized in that, The at least one heat insulation component (130) includes: a first heat insulation component and a second heat insulation component, wherein the first heat insulation component is disposed at the upper end (121) of the fish tank (120); and the second heat insulation component is disposed at the lower end (122) of the fish tank (120).
4. The air conditioner cabinet unit control method according to claim 2, characterized in that, The side end face (123) of the fish tank (120) is provided with a front end face and a rear end face, and the cabinet body (110) is provided with an installation opening, and the installation opening is located on the front of the cabinet body (110); the angle between the lower end (122) of the fish tank (120) and the front end face is an obtuse angle, and the angle between the lower end (122) of the fish tank (120) and the rear end face is an acute angle; wherein, when the fish tank (120) is installed to the cabinet body (110), the rear end face of the fish tank (120) is first inserted into the installation opening, and then the entire fish tank (120) is installed to the cabinet body (110).
5. The air conditioner cabinet unit control method according to claim 2, characterized in that, The side end face (123) of the fish tank (120) is provided with a front end face and a rear end face, and the cabinet body (110) is provided with an installation opening, which is located on the back of the cabinet body (110); the angle between the lower end (122) of the fish tank (120) and the front end face is an acute angle, and the angle between the lower end (122) of the fish tank (120) and the rear end face is an obtuse angle; wherein, when the fish tank (120) is installed to the cabinet body (110), the front end face of the fish tank (120) is first inserted into the installation opening, and then the entire fish tank (120) is installed to the cabinet body (110).
6. The air conditioner cabinet unit control method according to claim 2, characterized in that, The air conditioner cabinet unit also includes: an end cover assembly, which is disposed at the opening.
7. The air conditioner cabinet unit control method according to claim 6, characterized in that, The end cap assembly includes: a guide groove (127) embedded in the side end face (123) near the upper end (121); a first rotating cover plate (124) engaged in the guide groove (127); and a second rotating cover plate (125) engaged in the guide groove (127); wherein the first rotating cover plate (124) and the second rotating cover plate (125) are rotatably disposed in the guide groove (127), and the thickness of the first rotating cover plate (124) is d1, the thickness of the second rotating cover plate (125) is d2, the thickness of the guide groove (127) is d3, and d1+d2≤d3.
8. The air conditioner cabinet unit control method according to claim 7, characterized in that, The first rotating cover plate (124) and the second rotating cover plate (125) are incomplete circles; wherein the angle of the first rotating cover plate (124) and the second rotating cover plate (125) ranges from 92° to 100°.
9. The air conditioner cabinet unit control method according to claim 1, characterized in that, The air conditioner cabinet unit also includes at least one handle (126), which is located on the fish tank (120).
Citation Information
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