Integrated smart kitchen and bathroom air conditioner

By designing an integrated intelligent kitchen and bathroom air conditioner, the shortcomings of kitchen and bathroom in summer cooling and winter heating are solved, and the functions of warm winter and cool summer are realized. Through a variety of air supply and heat dissipation designs, the air quality is improved and resources are saved.

CN111396994BActive Publication Date: 2025-05-09BAMA ELECTRIC (HUZHOU) CO LTD
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Patent Information

Application Number
CN202010318682.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-04-21
Publication Date
2025-05-09
Estimated Expiration
2040-04-21

AI Technical Summary

Technical Problem

Existing kitchen air-conditioning equipment has shortcomings in cooling in summer and heating in winter, especially in kitchens and bathrooms, which are difficult to effectively cool down or provide fresh air, resulting in hidden health risks and waste of resources.

Method used

An integrated intelligent kitchen and bathroom air conditioner is designed. The equipment includes a shell, refrigeration component, air supply component and heat dissipation component. Through the design of a variety of air supply and heat dissipation air inlets and air outlets, the kitchen and bathroom can be achieved warm and cool in winter, and through the introduction and discharge of external gases, the oxygen deficiency and oil smoke problems in the kitchen are solved.

Benefits of technology

This air conditioner can not only effectively reduce cooling and heating, reduce secondary consumption of the filter, save resources, but also provide fresh air, improve the air quality of the kitchen and bathroom, and improve user health and use satisfaction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of air conditioning, and discloses an integrated intelligent kitchen and bathroom air conditioner, which comprises: a shell, a mounting cavity is defined in the shell and a first air supply inlet, a second air supply inlet, an air supply outlet, a first heat dissipation air inlet, a second heat dissipation air inlet and a heat dissipation air outlet are arranged on the shell; a refrigeration component is located in the mounting cavity and comprises a compressor, a condenser and an evaporator; an air supply component, the inlet of which can be selectively connected to the first air supply inlet or the second air supply inlet, and the outlet is connected to the air supply outlet; a heat dissipation component, the inlet of which can be selectively connected to the first heat dissipation air inlet or the second heat dissipation air inlet, and the outlet is connected to the heat dissipation air outlet. The integrated intelligent kitchen and bathroom air conditioner disclosed by the present invention has a simple structure and is easy to install. When installed on the top of a kitchen, it can not only cool down the kitchen but also supplement oxygen to the kitchen, and can also realize the refrigeration cycle of the gas inside the kitchen and the heat dissipation of the internal compressor. In addition, it also has a ventilation function.
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Description

Technical Field

[0001] The present invention relates to the technical field of air conditioning, and in particular to an integrated intelligent kitchen and bathroom air conditioner. Background Art

[0002] According to relevant data, the cooling problem of the bathroom and kitchen in the hot summer has not been systematically solved. Bathroom heaters are usually installed in the bathroom, but because the bathroom heater only has a heating function, it is only used for heating in winter and is just a decoration in summer. Users have to endure high temperatures when using the bathroom in summer. In order to prevent cooking fumes from entering other rooms, users generally choose to close the kitchen door. In this way, the combustion of liquefied gas will cause the kitchen to consume a lot of oxygen, and the kitchen will often be short of oxygen, which will manifest as dizziness, nausea, loss of appetite, etc., affecting people's health.

[0003] In the prior art, some users install air conditioners in the kitchen, but the air conditioners are only electric fans and cannot play a cooling role because of the internal circulation and are greatly affected by the oil fume problem; some users install kitchen-specific air conditioners in the kitchen, most of which are split-type installations. There is currently little space for installing external units in the kitchen, so many families are restricted in installation; some users install integrated kitchen air conditioners in the kitchen, whose air intake principle is generally internal circulation, relying on filters to block oil fume. The oil fume cannot be fully filtered in the internal circulation, which will cause kitchen oil fume to enter the internal refrigeration system, causing the evaporator and other components to be blocked, affecting the life of the machine, reducing the refrigeration effect, and the heat dissipation cannot meet the system requirements, resulting in frequent overheating protection of the machine. At the same time, the oil fume repeatedly passes through the internal refrigeration system and the air duct, causing a large amount of oil stains to accumulate in the refrigeration system and the air duct and breeding a large number of bacteria, posing a hidden danger to the health of users. The filter needs to be replaced frequently, which not only wastes manpower but also consumes a large amount of filter materials, which is very energy-inefficient. Summary of the invention

[0004] Based on the above, the purpose of the present invention is to provide an integrated intelligent kitchen and bathroom air conditioner that is easy to install, can solve the health problems caused by lack of oxygen in the kitchen, avoid secondary consumption of filters, save resources, and can also meet the function of keeping the bathroom warm in winter and cool in summer.

[0005] To achieve the above object, the present invention adopts the following technical solutions:

[0006] An integrated intelligent kitchen and bathroom air conditioner comprises: a shell, an installation cavity is defined in the shell, a first air supply inlet, a second air supply inlet, an air supply outlet, a first heat dissipation air inlet, a second heat dissipation air inlet and a heat dissipation air outlet are provided on the shell, all of which are connected to the installation cavity, the first air supply inlet and the air supply outlet can be connected to the room to be installed, the second air supply inlet can be connected to the outside world or other rooms, the first heat dissipation air inlet and the heat dissipation air outlet can be connected to the outside world or other rooms, and the second heat dissipation air inlet can be connected to the room to be installed; a refrigeration component, the refrigeration component is located in the installation cavity and comprises a compressor, a condenser and an evaporator; an air supply component, the inlet of the air supply component can be selectively The heat dissipation component is connected with the first air supply inlet or the second air supply inlet, and the outlet of the air supply component is connected with the air supply outlet. The gas is sucked into the installation cavity by the air supply component through the first air supply inlet or the second air supply inlet and is discharged through the air supply outlet after heat exchange with the evaporator; the heat dissipation component, the inlet of the heat dissipation component can be selectively connected with the first heat dissipation air inlet or the second heat dissipation air inlet, and the outlet of the heat dissipation component is connected with the heat dissipation air outlet. The gas is sucked into the installation cavity by the heat dissipation component through the first heat dissipation air inlet and is discharged through the heat dissipation air outlet, or the gas is sucked into the installation cavity by the heat dissipation component through the second heat dissipation air inlet and can be discharged through the heat dissipation air outlet after heat exchange with the compressor.

[0007] As a preferred solution of an integrated intelligent kitchen and bathroom air conditioner, the integrated intelligent kitchen and bathroom air conditioner also includes a partition, which is located in the installation cavity and divides the installation cavity into a first installation cavity and a second installation cavity, the first air supply inlet, the second air supply inlet and the air supply outlet are all connected to the first installation cavity, the evaporator and the air supply assembly are both located in the first installation cavity, the first heat dissipation air inlet, the second heat dissipation air inlet and the heat dissipation air outlet are all connected to the second installation cavity, and the compressor, the condenser and the heat dissipation assembly are all located in the second installation cavity.

[0008] As a preferred solution of the integrated intelligent kitchen and bathroom air conditioner, the integrated intelligent kitchen and bathroom air conditioner also includes a water receiving tray, which includes a first water receiving tray and a second water receiving tray connected to the first water receiving tray, the opening of the first water receiving tray is set toward the evaporator, and the opening of the second water receiving tray is set toward the condenser.

[0009] As a preferred solution of the integrated intelligent kitchen and bathroom air conditioner, the integrated intelligent kitchen and bathroom air conditioner also includes a water pump, which is arranged on the shell and the inlet of the water pump is connected to the water receiving tray, and the outlet of the water pump is connected to the outside to discharge the liquid in the water receiving tray.

[0010] As a preferred solution for the integrated intelligent kitchen and bathroom air conditioner, the compressor is located between the first heat dissipation air inlet and the inlet of the heat dissipation component. When the integrated intelligent kitchen and bathroom air conditioner is installed on the top of the room to be installed, the compressor is arranged upright.

[0011] As a preferred solution for an integrated intelligent kitchen and bathroom air conditioner, the air supply assembly is installed on the shell and includes an air supply fan and air supply louvers. The inlet of the air supply fan is connected to the installation cavity. The central axis of the air supply fan is arranged perpendicular to the central axis of the compressor. The air supply louvers are located at the air supply outlet and are arranged directly opposite the air supply outlet.

[0012] As a preferred solution for an integrated intelligent kitchen and bathroom air conditioner, the heat dissipation component includes a heat dissipation fan and heat dissipation louvers, the inlet of the heat dissipation fan is connected to the installation cavity, and the heat dissipation louvers are located at the outlet of the heat dissipation fan and are arranged opposite the heat dissipation outlet.

[0013] As a preferred solution for the integrated intelligent kitchen and bathroom air conditioner, the shell includes a first cover plate, and the compressor, the condenser and the evaporator are all arranged on the first cover plate.

[0014] As a preferred solution of the integrated intelligent kitchen and bathroom air conditioner, the integrated intelligent kitchen and bathroom air conditioner further includes a mask, which is disposed on the shell and spaced apart from the first cover plate, and the mask can cover the second heat dissipation air inlet.

[0015] As a preferred embodiment of the integrated intelligent kitchen and bathroom air conditioner, the integrated intelligent kitchen and bathroom air conditioner also includes a first wind shield and a second wind shield, the first wind shield is arranged corresponding to the first air supply inlet and is configured to be able to connect or isolate the room to be installed and the installation cavity through the first air supply inlet, and the second wind shield is arranged corresponding to the second air supply inlet and is configured to be able to connect or isolate the room to be installed and the installation cavity through the second air supply inlet.

[0016] As a preferred solution of the integrated intelligent kitchen and bathroom air conditioner, the integrated intelligent kitchen and bathroom air conditioner also includes a third wind shield and a fourth wind shield, the third wind shield is arranged corresponding to the first heat dissipation air inlet and is configured to be able to connect or isolate the room to be installed and the installation cavity through the first heat dissipation air inlet, and the fourth wind shield is arranged corresponding to the second heat dissipation air inlet and is configured to be able to connect or isolate the room to be installed and the installation cavity through the second heat dissipation air inlet.

[0017] The beneficial effects of the present invention are as follows: the integrated intelligent kitchen and bathroom air conditioner disclosed by the present invention has a simple structure and is easy to install. It can realize both winter heating and summer cooling. When installed on the top of the kitchen, when there is oil smoke in the kitchen and the refrigeration component is cooling, the air from the outside or other rooms is allowed to enter the installation cavity through the second air supply inlet, and then the cooled air is sent to the kitchen through the air supply outlet, so that the kitchen can be cooled and oxygen can be added to the kitchen at the same time; when there is no oil smoke in the kitchen and the refrigeration component is cooling, the air in the kitchen is allowed to enter the installation cavity through the first air supply inlet, and then the cooled air is sent to the kitchen through the air supply outlet. The air is sent back to the kitchen through the air supply outlet, thereby realizing the refrigeration cycle of the gas inside the kitchen; when the refrigeration component in the kitchen is refrigerating, the gas from the outside or other rooms enters the installation cavity through the first heat dissipation air inlet and then the heated gas is sent out through the heat dissipation outlet, thereby realizing the heat dissipation of the internal compressor, making the refrigeration efficiency of the refrigeration component higher; when the refrigeration component in the kitchen is not working, the smoke in the kitchen is sucked into the installation cavity by the heat dissipation component through the second heat dissipation air inlet and sent out through the heat dissipation outlet, thereby exhausting the smoke or fumes in the kitchen, thereby realizing the ventilation function of the kitchen. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments of the present invention. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the contents of the embodiments of the present invention and these drawings without paying any creative work.

[0019] Figure 1 is a schematic diagram of an integrated intelligent kitchen and bathroom air conditioner provided by a specific embodiment of the present invention;

[0020] Figure 2 It is a schematic diagram of the integrated intelligent kitchen and bathroom air conditioner provided by a specific embodiment of the present invention without the first end cover and the heat dissipation fan;

[0021] Figure 3 It is a schematic diagram of the integrated intelligent kitchen and bathroom air conditioner provided by a specific embodiment of the present invention without the second end cover, the surrounding frame, the heat dissipation duct and the partition.

[0022] In the figure:

[0023] 100, installation cavity; 101, first air supply inlet; 102, second air supply inlet; 103, air supply outlet; 104, first heat dissipation air inlet; 105, second heat dissipation air inlet; 106, heat dissipation air outlet; 11, first cover plate; 12, second cover plate; 13, enclosure frame;

[0024] 21. compressor; 22. condenser; 23. evaporator;

[0025] 3. Air supply assembly; 31. Air supply fan; 32. Air supply shutter;

[0026] 41. Cooling fan; 42. Cooling air duct;

[0027] 5. Partition;

[0028] 6. water receiving tray; 61. first water receiving tray; 62. second water receiving tray;

[0029] 7. Water pump;

[0030] 81. A second wind shield; 82. A third wind shield. DETAILED DESCRIPTION

[0031] In order to make the technical problems solved by the present invention, the technical solutions adopted and the technical effects achieved clearer, the technical solutions of the embodiments of the present invention will be further described in detail below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present invention.

[0032] In the description of the present invention, it should be noted that the terms "center", "up", "down", "left", "right", "vertical", "horizontal", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance. Among them, the terms "first position" and "second position" are two different positions.

[0033] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection or a detachable connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0034] This embodiment provides an integrated intelligent kitchen and bathroom air conditioner. Figures 1 to 3As shown, the integrated intelligent kitchen and bathroom air conditioner includes a shell, a refrigeration component, an air supply component 3 and a heat dissipation component. An installation cavity 100 is defined in the shell. The shell is provided with a first air supply inlet 101, a second air supply inlet 102, an air supply outlet 103, a first heat dissipation air inlet 104, a second heat dissipation air inlet 105 and a heat dissipation air outlet 106, all of which are connected to the installation cavity 100. The first air supply inlet 101 and the air supply outlet 103 can be connected to the room to be installed, the second air supply inlet 102 can be connected to the outside world or other rooms, the first heat dissipation air inlet 104 and the heat dissipation air outlet 106 can be connected to the outside world or other rooms, the second heat dissipation air inlet 105 can be connected to the room to be installed. The room to be installed in this embodiment is a kitchen. The refrigeration component is located in the installation cavity 100 and includes a compressor 21, a cooler 22, and a compressor 23. Condenser 22 and evaporator 23, the inlet of the air supply component 3 can be selectively connected to the first air supply inlet 101 or the second air supply inlet 102, the outlet of the air supply component 3 is connected to the air supply outlet 103, the gas is sucked into the installation cavity 100 by the air supply component 3 through the first air supply inlet 101 or the second air supply inlet 102, and is discharged through the air supply outlet 103 after heat exchange with the evaporator 23, the inlet of the heat dissipation component can be selectively connected to the first heat dissipation air inlet 104 or the second heat dissipation air inlet 105, the outlet of the heat dissipation component is connected to the heat dissipation air outlet 106, the gas is sucked into the installation cavity 100 by the heat dissipation component through the first heat dissipation air inlet 104 and is discharged through the heat dissipation air outlet 106, or the gas is sucked into the installation cavity 100 by the heat dissipation component through the second heat dissipation air inlet 105 and can be discharged through the heat dissipation air outlet 106 after heat exchange with the compressor 21.

[0035] Specifically, the number of the first air supply inlet 101, the second air supply inlet 102, the first heat dissipation air inlet 104, and the second heat dissipation air inlet 105 in this embodiment is one. In other embodiments of the present invention, the number of the first air supply inlet 101, the second air supply inlet 102, the first heat dissipation air inlet 104, and the second heat dissipation air inlet 105 is not limited to this embodiment, and can also be other numbers, which are specifically set according to actual needs.

[0036] It should be noted that the refrigeration component of this embodiment also includes structural parts such as a throttle valve (not shown in the figure) and a reversing valve (not shown in the figure). The throttle valve is located between the condenser 22 and the evaporator 23. The reversing valve can be connected to the compressor 21, the condenser 22 and the evaporator 23. By changing the flow direction of the refrigerant through the reversing valve, the refrigeration component can achieve cooling and heating functions. The refrigeration component belongs to the prior art and will not be described here.

[0037] The integrated intelligent kitchen and bathroom air conditioner provided in this embodiment has a simple structure and is easy to install. It can achieve both heating in winter and cooling in summer. When it is installed on the top of the kitchen, when there is oil smoke in the kitchen and the refrigeration component is cooling, the air from the outside or other rooms enters the installation cavity 100 through the second air supply inlet 102, and then the cooled air is sent to the kitchen through the air supply outlet 103, which can cool the kitchen and supplement oxygen to the kitchen at the same time; when there is no oil smoke in the kitchen and the refrigeration component is cooling, the air in the kitchen enters the installation cavity 100 through the first air supply inlet 101, and then the cooled air is sent to the kitchen through the air supply outlet 103. The air is sent back to the kitchen again, thus realizing the refrigeration cycle of the gas inside the kitchen; when the refrigeration component in the kitchen is refrigerating, the gas from the outside or other rooms enters the installation cavity 100 through the first heat dissipation air inlet 104, and then the heated gas is sent out through the heat dissipation air outlet 106, thus realizing the heat dissipation of the internal compressor 21, making the refrigeration efficiency of the refrigeration component higher; when the refrigeration component in the kitchen is not working, the smoke in the kitchen is sucked into the installation cavity 100 by the heat dissipation component through the second heat dissipation air inlet 105 and sent out through the heat dissipation air outlet 106, thereby exhausting the smoke or fumes in the kitchen, thus realizing the ventilation function of the kitchen. It should be noted that when the integrated intelligent kitchen and bathroom air conditioner is used for heating in winter, the selection of specific functions is similar to that in summer, which will not be repeated here.

[0038] In actual use, the integrated intelligent kitchen and bathroom air conditioner of this embodiment can select the working mode of the integrated intelligent kitchen and bathroom air conditioner according to the specific situation of the kitchen. When cooking in the kitchen, there will be hot air in the upper space of the kitchen when cooking. At this time, if the ventilation function of the integrated intelligent kitchen and bathroom air conditioner is first used to extract the hot air in the space above the human head, and then the refrigeration component is turned on, rapid refrigeration can be achieved, and the purpose of cooling down in a short time is achieved. Compared with directly turning on the refrigeration component to cool down the kitchen, this greatly shortens the cooling time of the kitchen and can cool down the kitchen faster.

[0039] Specifically, Figure 2As shown, the integrated intelligent kitchen and bathroom air conditioner of this embodiment also includes a partition 5, which is located in the installation cavity 100 and divides the installation cavity 100 into a first installation cavity and a second installation cavity, the first air supply inlet 101, the second air supply inlet 102 and the air supply outlet 103 are all connected to the first installation cavity, the evaporator 23 and the air supply assembly 3 are both located in the first installation cavity, the first heat dissipation air inlet 104, the second heat dissipation air inlet 105 and the heat dissipation air outlet 106 are all connected to the second installation cavity, the compressor 21, the condenser 22 and the heat dissipation assembly are all located in the second installation cavity. This arrangement can separate chambers with different temperatures. Specifically, when the refrigeration component is cooling, the temperature in the first installation cavity is relatively low, and the air entering the first installation cavity can be cooled, thereby realizing refrigeration of the kitchen. Since the second installation cavity is provided with a compressor 21 and a condenser 22, the temperature in the second installation cavity is relatively high. At this time, the first heat dissipation air inlet 104, the second heat dissipation air inlet 105 and the heat dissipation air outlet 106 are all connected to the second installation cavity, thereby cooling the second installation cavity and improving the refrigeration efficiency.

[0040] like Figure 2 and Figure 3 As shown, the integrated intelligent kitchen and bathroom air conditioner of this embodiment further includes a water receiving tray 6 and a water pump 7. The water pump 7 is arranged on the housing and the inlet of the water pump 7 is connected to the water receiving tray 6. The outlet of the water pump 7 is connected to the outside to discharge the liquid in the water receiving tray 6. The water receiving tray 6 of this embodiment includes a first water receiving tray 61 and a second water receiving tray 62 connected to the first water receiving tray 61. Figure 3 As shown, the opening of the first water receiving pan 61 is arranged toward the evaporator 23 and the first water receiving pan 61 is located directly below the evaporator 23, and the opening of the second water receiving pan 62 is arranged toward the condenser 22 and the second water receiving pan 62 is located directly below the condenser 22. The condensed water generated when the evaporator 23 condenses the gas can drip into the first water receiving pan 61, and the first water receiving pan 61 can guide the condensed water to the second water receiving pan 62 below the condenser 22, so that the condensed water contacts the condenser 22, and the low temperature of the condensed water is used to help the condenser 22 dissipate heat, so that the condensed water can absorb the heat of the condenser 22 and then be discharged to the outdoors through the water pump 7, and the heat dissipation effect of the condenser 22 is better.

[0041] The prior art directly sprays condensed water to the condenser 22 through a spray device. Although this setting can increase the heat dissipation of the condensed water to the condenser 22, the condensed water will cause the air volume flowing through the condenser 22 to decrease, the wind resistance to increase, and seriously affect the heat dissipation effect. In addition, the condenser 22 is humid over a large area, making it easy for dust and lint to adhere to the surface of the condenser 22, further causing the wind resistance of the condenser 22 to increase. The condenser 22 surface is humid to form a water curtain, which affects the ventilation volume and causes the all-in-one intelligent kitchen and bathroom air conditioner to shut down. However, this setting of the present embodiment, because it only contacts part of the condenser 22 and does not affect the ventilation volume, greatly reduces the probability of the all-in-one intelligent kitchen and bathroom air conditioner shutting down.

[0042] like Figure 2 and Figure 3 As shown, the compressor 21 of this embodiment is located between the first heat dissipation air inlet 104 and the inlet of the heat dissipation component, so that the compressor 21 can fully dissipate heat. When the integrated intelligent kitchen and bathroom air conditioner is installed on the top of the kitchen, the compressor 21 is arranged vertically. In the prior art, the compressor 21 is often arranged outside the first heat dissipation air inlet 104, the second heat dissipation air inlet 105 and the heat dissipation component, and is cooled only by the gas dissipated by the condenser 22, so that the compressor 21 is in a natural heat dissipation state. However, when the product is used, it is in a closed state with the ceiling, and the natural heat dissipation cannot meet the application requirements of the product in this field. The compressor 21 of this embodiment is arranged between the first heat dissipation air inlet 104 and the inlet of the heat dissipation component, so that the compressor 21 dissipates heat through mechanical air cooling, and the heat dissipation effect is greatly improved. Even if the compressor 21 is used in a high temperature environment, the probability of the integrated intelligent kitchen and bathroom air conditioner shutting down will be greatly reduced.

[0043] like Figure 2 As shown, the air supply assembly 3 of this embodiment is installed on the shell and includes an air supply fan 31 and an air supply louver 32. The inlet of the air supply fan 31 is connected to the installation cavity 100. The central axis of the air supply fan 31 is perpendicular to the central axis of the compressor 21. The air supply louver 32 is located at the air supply outlet 103 and is arranged directly opposite to the air supply outlet 103. The heat dissipation assembly of this embodiment includes a heat dissipation fan 41, a heat dissipation louver (not shown in the figure) and a heat dissipation duct 42. The inlet of the heat dissipation fan 41 is connected to the installation cavity 100. The heat dissipation louver is located at the outlet of the heat dissipation fan 41 and is arranged directly opposite to the heat dissipation outlet 106. The heat dissipation duct 42 is provided with a connecting hole at the position directly opposite to the heat dissipation outlet 106, and the heat dissipation duct 42 plays a role of guiding. In this embodiment, there are no other obstacles between the compressor 21 and the heat dissipation fan 41 except the heat dissipation duct 42 and the connecting pipeline, so as to prevent the obstacles from blocking the flow direction of the airflow, thereby affecting the heat dissipation effect of the heat dissipation fan 41 on the heat dissipation of the compressor 21.

[0044] like Figures 1 to 3As shown, the shell of this embodiment includes a first cover plate 11, a second cover plate 12 and a surrounding frame 13, the second cover plate 12 and the surrounding frame 13 are integrally formed, and the compressor 21, the condenser 22 and the evaporator 23 are all arranged on the first cover plate 11, so that the installation and assembly of the compressor 21, the condenser 22 and the evaporator 23 are more convenient. Of course, in other embodiments of the present invention, the compressor 21, the condenser 22 and the evaporator 23 can also be arranged on the second cover plate 12, or at least one of the compressor 21, the condenser 22 and the evaporator 23 can be arranged on the first cover plate 11, and the rest can be arranged on the second cover plate 12, according to actual needs.

[0045] like Figure 3 As shown, the integrated intelligent kitchen and bathroom air conditioner of this embodiment also includes a first wind shield (not shown in the figure), a second wind shield 81, a third wind shield 82 and a fourth wind shield (not shown in the figure). The first wind shield is arranged corresponding to the first air supply inlet 101 and is configured to be able to connect or isolate the kitchen and the installation cavity 100 through the first air supply inlet 101, the second wind shield 81 is arranged corresponding to the second air supply inlet 102 and is configured to be able to connect or isolate the kitchen and the installation cavity 100 through the second air supply inlet 102, the third wind shield 82 is arranged corresponding to the first heat dissipation air inlet 104 and is configured to be able to connect or isolate the kitchen and the installation cavity 100 through the first heat dissipation air inlet 104, and the fourth wind shield is arranged corresponding to the second heat dissipation air inlet 105 and is configured to be able to connect or isolate the kitchen and the installation cavity 100 through the second heat dissipation air inlet 105.

[0046] Preferably, the integrated intelligent kitchen and bathroom air conditioner of this embodiment further includes a controller (not shown in the drawings), which is arranged in the installation cavity and is electrically connected to the above-mentioned refrigeration component, air supply component 3, heat dissipation component, water pump 7, first wind shield, second wind shield 81, third wind shield 82 and fourth wind shield respectively. The controller can be a centralized or distributed controller, for example, the controller can be a single single-chip microcomputer, or it can be composed of multiple distributed single-chip microcomputers, and a control program can be run in the single-chip microcomputer to control the refrigeration component, air supply component 3, heat dissipation component, water pump 7, first wind shield, second wind shield 81, third wind shield 82 and fourth wind shield to realize their functions.

[0047] Of course, in other embodiments of the present invention, the first wind shield, the second wind shield 81, the third wind shield 82 and the fourth wind shield can also be connected or disconnected with the installation cavity 100 by manual operation of the user, which is specifically set according to the actual needs of the user.

[0048] It should be noted that the integrated intelligent kitchen and bathroom air conditioner of this embodiment also includes a mask (not shown in the figure), which is set on the first cover plate 11 of the shell. When the mask is set on the shell, the first air supply inlet 101 and the second heat dissipation air inlet 105 are blocked, that is, the mask can block the first air supply inlet 101 and the second heat dissipation air inlet 105, and the mask is provided with vents corresponding to the air supply outlet 103. When the mask is removed, the first air supply inlet 101 and the second heat dissipation air inlet 105 are exposed.

[0049] When the integrated intelligent kitchen and bathroom air conditioner of this embodiment is working, the specific implementation method is as follows:

[0050] When there is oil smoke in the kitchen in summer, the user turns on the refrigeration component to realize the refrigeration function, and the blower 31 is running. The air from the outside or other rooms outside the kitchen is cooled from the second air supply inlet 102 through the evaporator 23 to form air with a lower temperature. The generated condensed water falls into the first water receiving tray 61, and then flows to the second water receiving tray 62 to contact the condenser 22 and is discharged to the outside through the water pump 7. The air with a lower temperature is sent to the kitchen through the air supply outlet 103 and the air supply louver 32. During the whole process, no oil smoke enters and the air outside the kitchen is sent into the kitchen, which not only achieves cooling but also replenishes fresh air and oxygen. At the same time, the heat dissipation fan 41 is working, and the air from the outside or other rooms is sucked into the installation cavity 100 through the first heat dissipation air inlet 104. Under the action of the heat dissipation fan 41, the air cools the compressor 21 and the condenser 22 and is discharged through the heat dissipation outlet 106, thereby discharging the heat of the compressor 21 and the condenser 22. At this point, the integrated intelligent kitchen and bathroom air conditioner realizes a complete refrigeration and heat dissipation process.

[0051] When there is no oil smoke in the kitchen, the user turns on the refrigeration component to realize the refrigeration function, and the air supply fan 31 runs. The air in the kitchen is cooled from the first air supply inlet 101 through the evaporator 23 to form air with a lower temperature. The air with a lower temperature is sent to the kitchen through the air supply outlet 103 and the air supply louver 32. This circulation belongs to the internal circulation. At the same time, the heat dissipation fan 41 works, and the air from the outside or other rooms is sucked into the installation cavity 100 through the first heat dissipation air inlet 104. Under the action of the heat dissipation fan 41, the air cools the compressor 21 and the condenser 22 and is discharged through the heat dissipation outlet 106, thereby dissipating the heat generated by the compressor 21 and the condenser 22.

[0052] When the user does not need cooling, the heat dissipation fan 41 works, and the air in the kitchen is sucked into the installation cavity 100 through the second heat dissipation air inlet 105. The air in the room is sucked into the installation cavity 100 by the heat dissipation fan 41 nearby, and the air in the kitchen is discharged through the heat dissipation louvers, thereby realizing the ventilation function of the kitchen.

[0053] The integrated intelligent kitchen and bathroom air conditioner of this embodiment can be installed regardless of whether the user has an external equipment platform or not. It has a compact structure and clever design, and can realize functions such as cooling, heating, ventilation, and fresh air. Most importantly, it does not require filtering equipment when used in spaces such as kitchens where the air quality is not ideal. It is energy-saving and environmentally friendly, improves the user's health index, and can also replenish fresh air, solving the problems that have plagued summer kitchens for many years and improving user satisfaction. The installation of the integrated intelligent kitchen and bathroom air conditioner does not require outdoor operation, which reduces the danger of outdoor high-altitude operations brought to installers by high-altitude installation, eliminates the need for an external unit and reduces costs. Because there is no external unit, transportation costs are also reduced during transportation.

[0054] When the integrated intelligent kitchen and bathroom air conditioner of the present invention is applied to the bathroom, the refrigeration component realizes the refrigeration function, which solves the cooling problem of the bathroom in summer. When the refrigeration component heats, the energy efficiency is higher than that of the traditional bathroom heater, thus achieving the energy-saving purpose of the majority of user families.

[0055] In the description of this specification, the description with reference to the terms "some embodiments", "other embodiments", etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0056] The above contents are only preferred embodiments of the present invention. For ordinary technicians in this field, according to the concept of the present invention, there will be changes in the specific implementation methods and application scopes. The content of this specification should not be understood as limiting the present invention.

Claims

1. An integrated intelligent kitchen and bathroom air conditioner, characterized in that: include: A shell, wherein an installation cavity (100) is defined in the shell, and the shell is provided with a first air supply inlet (101), a second air supply inlet (102), an air supply outlet (103), a first heat dissipation air inlet (104), a second heat dissipation air inlet (105) and a heat dissipation air outlet (106) which are connected to the installation cavity (100), wherein the first air supply inlet (101) and the air supply outlet (103) can both be connected to a room to be installed, the second air supply inlet (102) can be connected to the outside world or other rooms, the first heat dissipation air inlet (104) and the heat dissipation air outlet (106) can both be connected to the outside world or other rooms, and the second heat dissipation air inlet (105) can be connected to the room to be installed; A refrigeration component, the refrigeration component is located in the installation cavity (100) and comprises a compressor (21), a condenser (22) and an evaporator (23); An air supply component (3), wherein the inlet of the air supply component (3) is selectively connected to the first air supply inlet (101) or the second air supply inlet (102), and the outlet of the air supply component (3) is connected to the air supply outlet (103); gas is sucked into the installation cavity (100) by the air supply component (3) through the first air supply inlet (101) or the second air supply inlet (102), exchanges heat with the evaporator (23), and is then discharged through the air supply outlet (103); A heat dissipation component, wherein the inlet of the heat dissipation component is selectively connected to the first heat dissipation air inlet (104) or the second heat dissipation air inlet (105), and the outlet of the heat dissipation component is connected to the heat dissipation air outlet (106); gas is sucked into the installation cavity (100) by the heat dissipation component through the first heat dissipation air inlet (104) and discharged through the heat dissipation air outlet (106); or gas is sucked into the installation cavity (100) by the heat dissipation component through the second heat dissipation air inlet (105) and can be discharged through the heat dissipation air outlet (106) after heat exchange with the compressor (21); When the integrated intelligent kitchen and bathroom air conditioner is installed on the top of the kitchen, when there is oil smoke in the kitchen and the refrigeration component is cooling, the air from the outside or other rooms enters the installation cavity (100) through the second air supply inlet (102), and the cooled air is then sent to the kitchen through the air supply outlet (103); when there is no oil smoke in the kitchen and the refrigeration component is cooling, the air in the kitchen enters the installation cavity (100) through the first air supply inlet (101), and the cooled air is then sent back to the kitchen through the air supply outlet (103); when the refrigeration component in the kitchen is cooling, the air from the outside or other rooms enters the installation cavity (100) through the first heat dissipation air inlet (104), and the heated air is then sent out through the heat dissipation air outlet (106); when the refrigeration component in the kitchen is not working, the smoke in the kitchen is sucked into the installation cavity (100) by the heat dissipation component through the second heat dissipation air inlet (105) and sent out through the heat dissipation air outlet (106).

2. The integrated intelligent kitchen and bathroom air conditioner according to claim 1, characterized in that: The integrated intelligent kitchen and bathroom air conditioner further comprises a partition (5), wherein the partition (5) is located in the installation cavity (100) and divides the installation cavity (100) into a first installation cavity and a second installation cavity, wherein the first air supply inlet (101), the second air supply inlet (102) and the air supply outlet (103) are all connected to the first installation cavity, the evaporator (23) and the air supply assembly (3) are both located in the first installation cavity, the first heat dissipation air inlet (104), the second heat dissipation air inlet (105) and the heat dissipation air outlet (106) are all connected to the second installation cavity, and the compressor (21), the condenser (22) and the heat dissipation assembly are all located in the second installation cavity.

3. The integrated intelligent kitchen and bathroom air conditioner according to claim 1, characterized in that: The integrated intelligent kitchen and bathroom air conditioner further comprises a water receiving tray (6), wherein the water receiving tray (6) comprises a first water receiving tray (61) and a second water receiving tray (62) connected to the first water receiving tray (61), wherein the opening of the first water receiving tray (61) is arranged toward the evaporator (23), and the opening of the second water receiving tray (62) is arranged toward the condenser (22).

4. The integrated intelligent kitchen and bathroom air conditioner according to claim 3, characterized in that: The integrated intelligent kitchen and bathroom air conditioner further comprises a water pump (7), wherein the water pump (7) is arranged on the housing and an inlet of the water pump (7) is connected to the water receiving tray (6), and an outlet of the water pump (7) is connected to the outside to discharge the liquid in the water receiving tray (6).

5. The integrated intelligent kitchen and bathroom air conditioner according to claim 1, characterized in that: The compressor (21) is located between the first heat dissipation air inlet (104) and the inlet of the heat dissipation component. When the integrated intelligent kitchen and bathroom air conditioner is installed on the top of the room to be installed, the compressor (21) is arranged in an upright position.

6. The integrated intelligent kitchen and bathroom air conditioner according to claim 1, characterized in that: The air supply assembly (3) is installed on the shell and includes an air supply fan (31) and an air supply louver (32). The inlet of the air supply fan (31) is connected to the installation cavity (100). The central axis of the air supply fan (31) is perpendicular to the central axis of the compressor (21). The air supply louver (32) is located at the air supply outlet (103) and is arranged directly opposite to the air supply outlet (103).

7. The integrated intelligent kitchen and bathroom air conditioner according to claim 1, characterized in that: The heat dissipation component comprises a heat dissipation fan (41) and heat dissipation louvers, the inlet of the heat dissipation fan (41) is connected to the installation cavity (100), and the heat dissipation louvers are located at the outlet of the heat dissipation fan (41) and are arranged directly opposite the heat dissipation outlet (106).

8. The integrated intelligent kitchen and bathroom air conditioner according to any one of claims 1 to 7, characterized in that: The shell comprises a first cover plate (11), and the compressor (21), the condenser (22) and the evaporator (23) are all arranged on the first cover plate (11).

9. The integrated intelligent kitchen and bathroom air conditioner according to claim 8, characterized in that: The integrated intelligent kitchen and bathroom air conditioner also includes a mask, which is arranged on the shell and is spaced apart from the first cover plate (11), and the mask can cover the second heat dissipation air inlet (105).

10. The integrated intelligent kitchen and bathroom air conditioner according to any one of claims 1 to 7, characterized in that: The integrated intelligent kitchen and bathroom air conditioner further comprises a first wind shield member and a second wind shield member (81), wherein the first wind shield member is arranged corresponding to the first air supply inlet (101) and is configured to be able to connect or isolate the room to be installed and the installation cavity (100) through the first air supply inlet (101), and the second wind shield member (81) is arranged corresponding to the second air supply inlet (102) and is configured to be able to connect or isolate the room to be installed and the installation cavity (100) through the second air supply inlet (102).

11. The integrated intelligent kitchen and bathroom air conditioner according to any one of claims 1 to 7, characterized in that: The integrated intelligent kitchen and bathroom air conditioner further comprises a third wind shield (82) and a fourth wind shield, wherein the third wind shield (82) is arranged corresponding to the first heat dissipation air inlet (104) and is configured to be able to connect or isolate the room to be installed and the installation cavity (100) through the first heat dissipation air inlet (104), and the fourth wind shield is arranged corresponding to the second heat dissipation air inlet (105) and is configured to be able to connect or isolate the room to be installed and the installation cavity (100) through the second heat dissipation air inlet (105).

Citation Information

Patent Citations

  • Kitchen air conditioner

    CN106969426A

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    CN204923242U

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    CN212618801U

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    CN215523580U

  • Integrated linear kitchen air conditioner

    CN219199362U