Air conditioning apparatus and control method of air conditioning apparatus

By integrating detection modules, filtration modules, and external pipelines into the air conditioning equipment, all-weather detection and intelligent processing of air quality in the kitchen environment are achieved, solving the problem that ordinary air conditioners cannot meet the needs of the kitchen and ensuring air safety and quality.

CN115289567BActive Publication Date: 2025-11-28GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202210960305.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-11
Publication Date
2025-11-28
Estimated Expiration
2042-08-11

AI Technical Summary

Technical Problem

Existing conventional air conditioners for cooling and heating cannot meet the needs of complex spaces like kitchens, especially in terms of the lack of effective solutions for air quality detection and treatment.

Method used

An air conditioning device was designed, comprising an air conditioning module, a detection module, a filter module, and external piping. A battery module powers the detection module when the air conditioner is not in operation, enabling all-weather air quality detection. The device is connected to the range hood duct via external piping to automatically control air circulation or exhaust. Combined with an alarm and a filter module, it achieves intelligent air treatment.

Benefits of technology

It can effectively detect natural gas leaks and cooking odors in the kitchen, ensuring safety and air quality. It supports continuous monitoring around the clock, quickly processes polluted air, and reduces safety hazards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an air conditioner and a control method thereof. The air conditioner comprises an air conditioner module, which is used for refrigerating or heating indoor air when in a working state; and a detection module, which is provided with a battery module, and is used for supplying power to the detection module when the air conditioner module is in a non-working state, so that the detection module detects air quality. The air conditioner can detect indoor air quality, especially for kitchens, can effectively detect natural gas leakage or odors left over by cooking, and can ensure safety and air quality.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of circuit control, in particular to an air conditioning equipment and a control method of the air conditioning equipment. BACKGROUND

[0002] At present, there are various types of air conditioners on the market, and different types of air conditioners are developed for different places and different needs. However, for such a complex place as a kitchen, ordinary refrigeration and heating air conditioners cannot meet the needs, and there is no solution in the industry at present. SUMMARY

[0003] The purpose of the present application is to overcome the above technical deficiencies, and to provide an air conditioning equipment and a control method of the air conditioning equipment, so as to solve the technical problem that ordinary refrigeration and heating air conditioners cannot meet the needs for complex places such as kitchens in the related art.

[0004] In order to achieve the above technical purpose, the present application adopts the following technical scheme:

[0005] According to one aspect of the present application, an air conditioning equipment is provided, comprising: an air conditioning module, configured to cool or heat indoor air when in a working state; a detection module, provided with a battery module, the battery module being configured to supply power to the detection module when the air conditioning module is in a non-working state, so that the detection module detects air quality.

[0006] Optionally, the air conditioning equipment further comprises: a filtering module, configured to filter indoor air.

[0007] Optionally, the air conditioning equipment further comprises: a control module, electrically connected with the filtering module, configured to control the filtering speed of the filtering module.

[0008] Optionally, the air conditioning equipment further comprises: an external pipeline, connected with an exhaust fan air duct.

[0009] Optionally, the external pipeline is internally provided with a first air valve, the first air valve being configured to control the communication or disconnection of the external pipeline and the exhaust fan air duct.

[0010] Optionally, the first air valve is configured to be opened when the air quality meets a first preset condition, so as to make the external pipeline communicate with the exhaust fan air duct.

[0011] Optionally, the detection module comprises: an alarm, configured to output an alarm information when the air quality meets a second preset condition.

[0012] Optionally, the air conditioner module comprises: a fan blade for generating an air flow, a transmission path of the air flow passing through the detection module; an evaporator for receiving the air flow passing through the detection module and performing heat exchange on the air flow passing through the detection module; and a fan for blowing the heat-exchanged air flow to a second air valve, the second air valve being used for blowing the heat-exchanged air flow out.

[0013] According to an aspect of the present application, a control method of an air conditioner is also provided, applied to any of the above-mentioned air conditioners, comprising: receiving a first control instruction, the first control instruction being used for instructing the air conditioner to operate in a first operation mode, the first operation mode comprising at least one of the following: the detection module being in a working state, the detection module being in a non-working state; and controlling the air conditioner to operate in the first operation mode based on the first control instruction.

[0014] Optionally, in the case that the detection module is in the working state, the method further comprises: when the air quality detected by the detection module meets a first preset condition, controlling an external pipeline of the air conditioner to communicate with an air duct of an extractor hood to discharge air to the outside.

[0015] Optionally, in the case that the detection module is in the working state, the method further comprises: when the air quality detected by the detection module meets a third preset condition, controlling the external pipeline to be disconnected from the air duct of the extractor hood to discharge air to the inside.

[0016] Optionally, in the case that the detection module is in the working state, the method further comprises: when the air quality detected by the detection module meets a second preset condition, outputting an alarm information.

[0017] Optionally, the first operation mode comprises at least one of the following: the detection module being in the working state and the air conditioner module being in a non-working state, the detection module being in the non-working state and the air conditioner module being in the non-working state, and the detection module being in the working state and the air conditioner module being in the working state.

[0018] Optionally, the first operation mode further comprises at least one of the following: the filter module being in the working state, and the filter module being in the non-working state.

[0019] Optionally, the first control instruction further comprises a first control sub-instruction, the first control sub-instruction being used for instructing the filter module to perform filtering at a specified filtering speed; and the controlling the air conditioner to operate in the first operation mode based on the first control instruction comprises: controlling the filter module to perform filtering at the specified filtering speed.

[0020] The air conditioner equipment provided by the present application comprises an air conditioner module for cooling or heating indoor air when in a working state; and a detection module provided with a battery module for supplying power to the detection module when the air conditioner module is in a non-working state, so that the detection module detects air quality. The air conditioner equipment can detect indoor air quality, especially for kitchens, can effectively detect natural gas leakage or odors left over by cooking, and can ensure safety and air quality. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is a schematic diagram of an air conditioner equipment provided by an embodiment of the present application;

[0022] Figure 2A 、 2B is a schematic diagram of an external structure of a ceiling-mounted kitchen purification air conditioner provided by an embodiment of the present application;

[0023] Figure 3A 、 3B is a schematic diagram of an internal cross-sectional view of a ceiling-mounted kitchen purification air conditioner provided by an embodiment of the present application;

[0024] Figure 4 is a schematic diagram of a control method of an air conditioner equipment provided by an embodiment of the present application. DETAILED DESCRIPTION

[0025] In order to make the purpose, technical solutions and advantages of the present application clearer, the present application is further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.

[0026] At present, there are various types of air conditioners on the market, and different types of air conditioners have been developed for different places and different needs. However, for such a complex place as a kitchen, ordinary cooling and heating air conditioners cannot meet the needs, and there is no solution in the industry at present.

[0027] In order to effectively solve the above problems, the present application provides an air conditioner equipment and a control method of the air conditioner equipment, which are described in detail below.

[0028] According to an embodiment of the present application, an air conditioner equipment is provided. Please refer to Figure 1 The air conditioner equipment can comprise:

[0029] An air conditioner module 10 for cooling or heating indoor air when in a working state.

[0030] The detection module 11 is provided with a battery module, which is used to supply power to the detection module when the air conditioner module is in a non-working state, so that the detection module detects the air quality.

[0031] The battery module is used to supply power to the detection module 11 independently when the air conditioner device is powered off (i.e., the air conditioner module 10 is not working). Optionally, when the air conditioner module 10 is in a working state, power can be supplied through the air conditioner device main machine power supply, for example, the air conditioner device main machine is connected to the power supply, and the battery module does not supply power at this time. At this time, the detection module 11 obtains power through the main machine power supply. That is, the battery module can only supply power to the detection module 11 when the air conditioner module 10 does not perform refrigeration or heating, which can guarantee all-weather air quality detection. Of course, it should be noted that the battery module can also be pre-specified to work during a specified time period, and power supply to the detection module 11 is stopped during other time periods. In addition, when the battery module has a power lower than a preset threshold, the battery module can automatically charge itself after the main machine power supply is turned on.

[0032] Optionally, the air quality can include the methane content in the air.

[0033] The air conditioner device provided in the embodiment includes: an air conditioner module, which is used to perform refrigeration or heating on indoor air when in a working state; and a detection module provided with a battery module, which is used to supply power to the detection module when the air conditioner module is in a non-working state, so that the detection module detects the air quality. The air conditioner device can detect the air quality in the room, especially for the kitchen, can effectively detect natural gas leakage or odors left over by cooking, and can ensure safety and air quality.

[0034] Optionally, the air conditioner device further includes a filtering module, which is used to filter indoor air. The filtering module can be any structure with filtering function. For example, the filtering module can be a filter screen. Preferably, it can be an activated carbon filter screen.

[0035] Optionally, the air conditioner device further includes a control module electrically connected with the filtering module, which is used to control the filtering speed of the filtering module. Optionally, the filtering speed can be controlled by controlling the physical structure of the filtering module (for example, the size of the filtering surface); or the filtering speed can also be controlled by controlling the air flow through the filtering module.

[0036] Optionally, the air conditioner device further includes an external pipeline connected with the range hood air duct. By connecting the pipeline with the range hood air duct, the dirty air in the kitchen can be quickly treated, and the air in the kitchen can be kept clean and odorless.

[0037] Optionally, the external pipeline is internally provided with a first air valve for controlling the communication or disconnection of the external pipeline with the range hood air duct. Optionally, the first air valve is used to open when the air quality meets a first preset condition, so that the external pipeline is in communication with the range hood air duct. The first preset condition can be that the first preset concentration is reached, for example, the methane concentration reaches the first preset concentration. This embodiment can automatically detect whether the air quality meets the first preset condition, and automatically control the communication of the external pipeline with the range hood air duct when the first preset condition is met, thereby realizing full-automatic intelligent control.

[0038] Optionally, the detection module includes an alarm for outputting alarm information when the air quality meets a second preset condition. Optionally, the alarm can be an audible and light alarm, or can be sending an alarm message to a designated user, etc. The second preset condition can be that the second preset concentration is reached, wherein the second preset concentration can be greater than the first preset concentration. This embodiment can automatically alarm when it is detected that the air quality meets the second preset condition, for example, the kitchen natural gas content can be monitored to remind people, thereby reducing the safety hazard.

[0039] Optionally, the air conditioner module includes a fan blade for generating an air flow, a transmission path of the air flow passing through the detection module; an evaporator receiving the air flow passing through the detection module and performing heat exchange on the air flow passing through the detection module; and a fan for blowing the heat-exchanged air flow to a second air valve, the second air valve being used to blow out the heat-exchanged air flow. Wherein, under the action of a high-speed motor, a centrifugal fan blade is driven to pass through a bottom plate component, a water receiving tray and a detection module, and then pass through an evaporator, and then the air flow enters the air duct from the middle, and then the air flow is thrown out from both sides by the centrifugal fan through the air valve. The condensed water generated after the heat exchange of the evaporator flows out through the water receiving tray. The overall air flow circulation is from bottom to top, into the whole machine interior. After the heat exchange through the evaporator, the air is blown out by the centrifugal fan through the air valves on the left and right sides controlled by the electrical box.

[0040] The air conditioner device in the above embodiment can detect the air quality in the room, especially for the kitchen, can effectively detect the leakage of natural gas and the smell left by cooking, etc., can ensure safety and air quality. Support uninterrupted monitoring of the kitchen natural gas content all day long, give people a reminder, reduce the safety hazard. And through the pipeline connected with the range hood air duct, realize the rapid treatment of the dirty air in the kitchen, ensure the clean air in the kitchen without odor.

[0041] Figure 2A 、 2B is a schematic view of the overall external structure of a ceiling type kitchen purification air conditioner provided by the embodiment of the present application. Figure 3A 、 3Bis a kind of internal section view cross section of ceiling type kitchen purification air conditioner provided by the embodiment of the present application. As shown in Figure 2A 、 2B Ceiling type kitchen purification air conditioner includes: electrical box component 1, panel 2, activated carbon filter screen 3, air valve 4, external pipeline orifice 5, cover component 6, air inlet grille 7. As shown in Figure 3A 、 3B Ceiling type kitchen purification air conditioner further includes: motor support component 8, flow guide ring 9, water pan 10, detection module 11.

[0042] In this embodiment, the working principle of the above-mentioned ceiling type kitchen air conditioner is that air is driven by centrifugal fan under the action of high-speed motor in motor support component 8, indoor airflow passes through bottom plate component 2, through water pan 10 and detection module 11, and then passes through evaporator 12, airflow enters air duct from the middle, and then is thrown out from both sides by centrifugal fan through air valve 4, and condensed water generated after heat exchange of evaporator flows out through water pan. The overall airflow circulation is from bottom to top, into the whole machine interior. After heat exchange through evaporator, the gas is blown out by centrifugal fan through air valve 4 on the left and right sides controlled by electrical box 1. The detection module 11 is mainly used for detecting the presence of methane in natural gas leaked in the kitchen. The content of methane in natural gas is 80%, colorless and odorless, and when the content of methane in the kitchen is too high, explosion will occur when encountering open flame. Because the density of natural gas is lower than that of air, it will float upwards, so on the basis of ceiling-mounted air conditioner, natural gas detection module is added to effectively ensure indoor safety.

[0043] In this embodiment, detection module component 11 includes battery, detection device and alarm inside. Under normal air conditioner power supply conditions, the detection module will automatically charge the battery, and the detection module will be powered by the battery when power is off.

[0044] In this embodiment, the detection module has two operating conditions, which are divided into two kinds of power-off and continuous power supply, and the detection module can achieve all-weather 24-hour uninterrupted detection.

[0045] In this embodiment, the roof type air conditioner is also provided with external pipeline, and the external pipeline contains air valve inside the range hood air duct orifice, which is used to block the external pipeline of air conditioner and the range hood air duct. The pipeline connects the air conditioner with the range hood air duct, and through the setting, when the kitchen is empty, the content of methane in the kitchen is high, and when the air conditioner is running, it can automatically ventilate to the outside, and when the air in the kitchen is too turbid and the concentration is too large, the filter screen cannot play a large role, and the turbid air in the room is directly discharged to the outside.

[0046] According to another embodiment of the present application, a control method of air conditioning equipment is also provided, as shown in Figure 4As shown, the method can be applied to the air conditioning device described in any of the above, and the execution subject can be the air conditioning device or a server. The method can include:

[0047] In step S401, a first control instruction is received, which is used to instruct the air conditioning device to operate in a first operation mode, and the first operation mode includes at least one of the following: the detection module is in a working state, and the detection module is in a non-working state.

[0048] In the first operation mode, the air conditioning module can be in a working state or a non-working state.

[0049] In step S402, the air conditioning device is controlled to operate in the first operation mode based on the first control instruction.

[0050] The air conditioning device in this embodiment can include: an air conditioning module, configured to cool or heat indoor air when in a working state; and a detection module, provided with a battery module, configured to supply power to the detection module when the air conditioning module is in a non-working state, so that the detection module detects air quality.

[0051] The control method of the above air conditioning device can control the detection module to be in a working state or a non-working state when the air conditioning module can be in a working state or a non-working state. Even if the air conditioning does not cool or heat, the detection module can detect air quality, and for complex areas such as kitchens, it can effectively detect natural gas leakage or odors left over by cooking, and can ensure safety and air quality.

[0052] Optionally, when the detection module is in a working state, the method further includes: when the air quality detected by the detection module meets a first preset condition, controlling the external pipeline of the air conditioning device to communicate with the range hood air duct to discharge air outside.

[0053] The first preset condition can be a first preset concentration, for example, the methane concentration can reach a first preset concentration. This embodiment can automatically detect whether the air quality meets the first preset condition, and automatically control the external pipeline to communicate with the range hood air duct when the first preset condition is met, realizing full-automatic intelligent control.

[0054] Optionally, when the detection module is in a working state, the method further includes: when the air quality detected by the detection module meets a third preset condition, controlling the external pipeline to be disconnected from the range hood air duct to discharge air into the room.

[0055] The third preset condition can be lower than a third preset concentration (e.g., representing good air quality). This embodiment can automatically detect whether the air quality meets the third preset condition, and automatically control the external pipeline to be disconnected from the range hood air duct when the third preset condition is met, to realize internal circulation of the air.

[0056] Optionally, when the air quality detected by the detection module meets a second preset condition, the method further includes outputting an alarm message.

[0057] The alarm can be an audible and light alarm, or can be sending an alarm message to a designated user. The second preset condition can be reaching a second preset concentration, where the second preset concentration can be greater than the first preset concentration. This embodiment can automatically alarm when the air quality meets the second preset condition, for example, the kitchen natural gas content can be monitored to remind people, thereby reducing safety hazards.

[0058] Optionally, the first operating mode includes at least one of the following: the detection module is in an active state and the air conditioning module is in an inactive state, the detection module is in an inactive state and the air conditioning module is in an inactive state, and the detection module is in an active state and the air conditioning module is in an active state. In this embodiment, the detection module can work independently when the air conditioning module does not work, i.e., it can realize uninterrupted monitoring of the indoor natural gas content at all times, reminding people and reducing safety hazards.

[0059] Optionally, the first operating mode further includes at least one of the following: the filter module is in an active state, and the filter module is in an inactive state. In this embodiment, the filter module can work independently when the air conditioning module does not work, i.e., it can realize uninterrupted filtration and automatically realize internal circulation of the air.

[0060] Optionally, the first control instruction further includes a first control sub-instruction for instructing the filter module to filter at a specified filtering speed; and the controlling the air conditioning device to operate in the first operating mode based on the first control instruction includes controlling the filter module to filter at the specified filtering speed. Optionally, the filtering speed can be controlled by controlling the physical structure of the filter module (e.g., the size of the filter surface); or the filtering speed can also be controlled by controlling the air flow through the filter module.

[0061] The above control method of the air conditioning device can also control the detection module to detect the air quality when the air conditioning device does not perform cooling or heating, supporting uninterrupted monitoring of the kitchen natural gas content at all times, reminding people and reducing safety hazards. By connecting the pipeline to the range hood air duct, the method can quickly process the dirty air in the kitchen, ensuring that the air in the kitchen is clean and odorless.

[0062] According to the embodiment of the present application, another control method of the air conditioner is also provided. In the method, the air conditioner comprises an electrical box component, a panel, an activated carbon filter screen, a wind valve, an external pipeline port, an outer cover component, an air inlet grille, a motor support component, a flow guide ring, a water pan and a detection module.

[0063] The detection module contains a power storage, a detection device and an alarm inside. Under normal air conditioner power supply conditions, the detection module automatically charges the battery, and when the power is off, the detection module is powered by the battery. The detection module has two operating conditions, namely power-off and power-on. Therefore, it can be detected continuously for 24 hours. The air conditioner is also provided with an external pipeline, an external exhaust hood air duct port, and a wind valve inside for blocking the external pipeline of the air conditioner and the exhaust hood air duct. The pipeline connects the air conditioner with the exhaust hood air duct. This is to solve the problem that when there is no one in the kitchen, the methane content in the kitchen is high, and when the air conditioner is running, it will automatically ventilate outside. When the air in the kitchen is too turbid and the filter screen cannot play a big role, the turbid air in the room is directly discharged to the outside.

[0064] In this embodiment, the air conditioner has three operating modes, namely, power-off, detection function on; power-on, filter and detection on, and no air conditioning cooling and heating; and power-on, cooling / heating function, detection function and filter function of the detection module on.

[0065] Mode one: This mode is mainly for when the air conditioner is in a power-off condition, the air conditioner cannot start and cannot cool or heat. At this time, only the detection module is running, the detection module is powered by the internal battery, and the methane content in the kitchen is detected. When the methane content exceeds the standard, the module automatically connects the internal alarm to notify the user in time.

[0066] Mode two: This mode is for when the air conditioner is powered on, and people want to filter the air in the kitchen without cooling or heating. After the motor component is powered on, the speed of the fan is adjusted to suck the dirty air in the kitchen, and the filter screen achieves the purpose of purifying the air in the kitchen through the adsorption function. At the same time, the filter screen of the whole machine can be disassembled and belongs to consumables. The speed of the fan can be controlled by the controller, and the user can control the filtering speed of the air conditioner according to the actual demand. At this time, the detection module is also continuously detecting.

[0067] Mode three: This mode is for when the air conditioner is in a running state, the room can cool or heat and filter. This mode is full-on, and the detection module is also dynamically detecting the methane content in the air. For people using natural gas, the methane content in the kitchen air does not reach the trigger value, so there will be no alarm.

[0068] In the embodiment, for mode one: the whole room is in power-off state, the air conditioning mode cannot run, the detection module is powered by the battery, when it is detected that the methane content in the kitchen is too high, the battery automatically starts the fan and opens the air valve, so that the methane is directly discharged into the air duct of the range hood through the pipeline opening. Avoid the situation that no one is at home and methane leakage encounters fire explosion. At this time, the indoor is under negative pressure, and air will enter through the door and window gaps to transport air to the kitchen.

[0069] For mode two: this mode is the internal circulation purification function, in this mode, if the methane content is detected to be too high, mode two automatically converts to one-way flow mode, no longer internal circulation, methane is directly discharged into the air duct through the external pipeline after being adsorbed by the fan, and discharged to the outdoor, when the indoor methane content is lower than the standard value, the internal circulation function can be restored.

[0070] For mode three: this operating mode is similar to mode two, and additionally has the refrigeration and heating functions of the air conditioner itself, which will not be described here.

[0071] In the embodiment, the air conditioning device can be installed in the ceiling, without occupying the kitchen space; the air conditioning device can monitor the kitchen natural gas content all day long, detect whether the natural gas leaks and the leakage degree, and feedback in time to prevent the user from leaving the place and forgetting to turn off the gas for a long time, so as to solve the safety hazard; and the pipeline is connected with the air duct of the range hood, so that the dirty air in the kitchen can be quickly treated, and the kitchen air is clean and odorless.

[0072] According to the embodiment of the application, a control device of an air conditioning device is also provided, which can be applied to any of the above-mentioned air conditioning devices, and the device can include:

[0073] A first control instruction receiving unit is configured to receive a first control instruction, the first control instruction being used to instruct the air conditioning device to run in a first running mode, and the first running mode including at least one of the following: the detection module being in a working state or the detection module being in a non-working state.

[0074] In the first running mode, the air conditioning module can be in the working state or the non-working state.

[0075] A running unit is configured to control the air conditioning device to run in the first running mode based on the first control instruction.

[0076] The air conditioning device in the embodiment can include: an air conditioning module, configured to perform refrigeration or heating on indoor air when in a working state; and a detection module, provided with a battery module, the battery module being configured to supply power to the detection module when the air conditioning module is in a non-working state, so that the detection module detects air quality.

[0077] Optionally, in the case that the detection module is in the working state, the device further comprises a first external pipeline control unit, configured to control the external pipeline of the air conditioning device to be communicated with the range hood air duct to discharge air to the outside when the air quality detected by the detection module meets the first preset condition.

[0078] Optionally, in the case that the detection module is in the working state, the device further comprises a second external pipeline control unit, configured to control the external pipeline to be disconnected from the range hood air duct to discharge air to the indoor when the air quality detected by the detection module meets the third preset condition.

[0079] Optionally, in the case that the detection module is in the working state, the device further comprises an alarm information output unit, configured to output alarm information when the air quality detected by the detection module meets the second preset condition.

[0080] Optionally, the first operation mode comprises at least one of the following: the detection module is in the working state and the air conditioning module is in the non-working state, the detection module is in the non-working state and the air conditioning module is in the non-working state, and the detection module is in the working state and the air conditioning module is in the working state.

[0081] Optionally, the first operation mode further comprises at least one of the following: the filter module is in the working state, and the filter module is in the non-working state.

[0082] Optionally, the first control instruction further comprises a first control sub-instruction, the first control sub-instruction being configured to instruct the filter module to filter at a specified filtering speed; and the running unit is further configured to control the filter module to filter at the specified filtering speed.

[0083] The control device of the air conditioning device can control the detection module to be in the working state or the non-working state when the air conditioning module can be in the working state or the non-working state. Even when the air conditioning does not perform refrigeration or heating, the detection module can detect the air quality, effectively detect natural gas leakage or odors left over by cooking in complex areas such as kitchens, and ensure safety and air quality.

[0084] The detection module can be operated to detect air quality for early warning under the condition that the air conditioning device is powered off. The air conditioning device can operate the filtering function when not performing refrigeration or heating. The external pipeline of the air conditioning device is communicated with the range hood air duct to discharge exhaust gas into the air duct, thereby achieving uninterrupted monitoring of air quality (e.g., kitchen natural gas content) throughout the day, reminding people, reducing safety hazards, and quickly processing dirty air in the kitchen by connecting the pipeline with the range hood air duct, thereby ensuring clean indoor air without odors.

[0085] Of course, those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be implemented by a computer program to instruct relevant hardware (such as a processor, a controller, etc.) to complete, and the program can be stored in a computer-readable storage medium. When the program is executed, the processes of the above-mentioned embodiment methods can be included. The storage medium can be a memory, a magnetic disk, an optical disk, etc.

[0086] The specific embodiments of the application described above do not constitute a limitation on the protection scope of the application. Any other corresponding changes and modifications made according to the technical concept of the application should be included in the protection scope of the claims of the application.

Claims

1. An air conditioning device, characterized in that, include: An air conditioning module is used to cool or heat indoor air when it is in operation. The detection module is equipped with a battery module, which is used to supply power to the detection module when the air conditioning module is not in operation, so that the detection module can detect air quality. The air conditioning equipment also includes: External piping connects to the range hood's ductwork. The external pipeline is equipped with a first air valve, which is used to control the connection or disconnection between the external pipeline and the range hood duct. The first air valve is used to open when the air quality meets the first preset condition, so that the external pipe is connected to the range hood duct. The air conditioning module includes: The fan blades are used to generate airflow, and the airflow travels through the detection module. The evaporator receives the airflow passing through the detection module and performs heat exchange on the airflow passing through the detection module. A fan is used to blow the heat-exchanged airflow to a second air valve, which is used to blow the heat-exchanged airflow out.

2. The air conditioning equipment according to claim 1, characterized in that, The air conditioning equipment also includes: The filter module is used to filter indoor air.

3. The air conditioning equipment according to claim 2, characterized in that, The air conditioning equipment also includes: The control module is electrically connected to the filter module and is used to control the filtration speed of the filter module.

4. The air conditioning equipment according to claim 1, characterized in that, The detection module includes: An alarm is used to output alarm information when the air quality meets a second preset condition.

5. A control method for an air conditioning device, characterized in that, The air conditioning device applied to any one of claims 1-4 comprises: Receive a first control command, the first control command being used to instruct the air conditioning equipment to operate according to a first operating mode, the first operating mode including at least one of the following: the detection module is in a working state, the detection module is in a non-working state; Based on the first control command, the air conditioning equipment is controlled to operate according to the first operating mode.

6. The control method according to claim 5, characterized in that, When the detection module is in operation, the method further includes: When the air quality detected by the detection module meets the first preset condition, the external pipe of the air conditioning equipment is connected to the duct of the range hood to exhaust the air outdoors.

7. The control method according to claim 5, characterized in that, When the detection module is in operation, the method further includes: When the air quality detected by the detection module meets the third preset condition, the external pipeline is disconnected from the range hood duct to exhaust air into the room.

8. The control method according to claim 5, characterized in that, When the detection module is in operation, the method further includes: When the air quality detected by the detection module meets the second preset condition, an alarm message is output.

9. The control method according to claim 5, characterized in that, The first operating mode includes at least one of the following: the detection module is in a working state and the air conditioning module is in a non-working state; the detection module is in a non-working state and the air conditioning module is in a non-working state; and the detection module is in a working state and the air conditioning module is in a working state.

10. The control method according to claim 5, characterized in that, The first operating mode further includes at least one of the following: the filter module is in a working state, or the filter module is in a non-working state.

11. The control method according to claim 10, characterized in that, The first control instruction further includes a first control sub-instruction, which is used to instruct the filtering module to filter at a specified filtering speed; The step of controlling the air conditioning equipment to operate according to the first operating mode based on the first control command includes: The filtering module is controlled to filter at the specified filtering speed.

Citation Information

Patent Citations

  • Air conditioning equipment

    CN218001700U