Integrated cooker, control method thereof and computer readable storage medium
By mixing oil fumes with condensate water in the fume purification mode of the integrated stove, the problem of the integrated stove's inability to filter harmful substances is solved, achieving effective purification of oil fumes and avoiding air pollution.
Patent Information
- Application Number
- CN202110579260.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-05-26
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2041-05-26
AI Technical Summary
Existing integrated cooktops cannot effectively filter harmful substances in cooking fumes, causing these substances to be directly discharged outdoors, resulting in air pollution.
In the fume purification mode of the integrated stove, the exhaust module mixes the inhaled fumes with the condensate from the air conditioning module, using the condensate to cool the harmful gases and turn them into liquid, thereby reducing the harmful substances in the fumes.
By mixing oil fumes with condensate, the temperature of the flue gas is effectively reduced, causing harmful substances to cool and precipitate in the water, thus reducing harmful substances in the oil fumes and preventing air pollution.
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Figure CN115405954B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of kitchen appliances, in particular to a control method of an integrated cooker, the integrated cooker and a computer readable storage medium. BACKGROUND
[0002] The integrated cooker is a kitchen device integrating smoke exhaust, cookers and tableware sterilization, which is widely used in daily life. When the smoke exhaust function of the integrated cooker is turned on, the oil fume generated during the cooking process of the user can be discharged outdoors through the smoke exhaust module.
[0003] At present, the integrated cooker generally sets a filter screen at the oil fume outlet of the smoke exhaust module to filter the oil fume. However, the filter screen can only filter large molecular substances such as oil droplets in the oil fume, and cannot filter harmful substances in the oil fume. The harmful substances directly discharged outdoors can easily cause air pollution. SUMMARY
[0004] The main purpose of the present application is to provide a control method of an integrated cooker, the integrated cooker and a computer readable storage medium, which aims to reduce harmful substances in oil fume, purify oil fume and avoid air pollution.
[0005] To achieve the above purpose, the present application provides a control method of an integrated cooker, the integrated cooker comprising an air conditioner module and a smoke exhaust module, the control method of the integrated cooker comprising the following steps:
[0006] Obtaining the operating mode of the integrated cooker;
[0007] When the operating mode is an oil fume purification mode, controlling the smoke exhaust module to mix the inhaled oil fume with the condensed water of the air conditioner module to purify the oil fume.
[0008] Optionally, before the step of controlling the smoke exhaust module to mix the inhaled oil fume with the condensed water of the air conditioner module, the method further comprises:
[0009] When the operating mode is the oil fume purification mode, obtaining the oil fume concentration of the space where the integrated cooker is located;
[0010] When the oil fume concentration is greater than or equal to a target concentration, performing the step of controlling the smoke exhaust module to mix the inhaled oil fume with the condensed water of the air conditioner module.
[0011] Optionally, after the step of obtaining the oil fume concentration of the space where the integrated cooker is located, the method further comprises:
[0012] When the oil fume concentration is greater than or equal to a target concentration, detecting the current water level in the water tank in the air conditioner module; the water tank is used to store the condensed water;
[0013] When the current water level is greater than or equal to a target water level, the step of controlling the fume exhaust module to mix the sucked fume with the condensed water of the air conditioner module is executed.
[0014] Optionally, after the step of detecting the current water level in the water tank of the air conditioner module, the method further comprises:
[0015] When the current water level is less than the target water level, the fume exhaust module is controlled to blow the sucked fume towards the filter screen to purify the fume.
[0016] Optionally, after the step of obtaining the fume concentration of the space where the integrated cooker is located when the operation mode is the fume purification mode, the method further comprises:
[0017] When the fume concentration is greater than or equal to a target concentration, the fume exhaust module is controlled to operate at a first target operation wind level, and the step of controlling the fume exhaust module to mix the sucked fume with the condensed water of the air conditioner module is executed.
[0018] The first target operation wind level is greater than a preset wind level.
[0019] Optionally, after the step of obtaining the fume concentration of the space where the integrated cooker is located, the method further comprises:
[0020] When the fume concentration is less than the target concentration, the fume exhaust module is controlled to blow the sucked fume towards the filter screen to purify the fume.
[0021] Optionally, after the step of obtaining the fume concentration of the space where the integrated cooker is located when the operation mode is the fume purification mode,
[0022] When the fume concentration is less than the target concentration, a second target operation wind level of the fume exhaust module is determined according to the fume concentration.
[0023] The fume exhaust module is controlled to operate at the second target operation wind level, and the step of controlling the fume exhaust module to blow the sucked fume towards the filter screen is executed.
[0024] Optionally, the step of determining the second target operation wind level of the fume exhaust module according to the fume concentration comprises:
[0025] When the fume concentration is within a first concentration interval, a first preset wind level is determined as the second target operation wind level.
[0026] When the fume concentration is within a second concentration interval, a second preset wind level is determined as the second target operation wind level.
[0027] The concentration in the first concentration interval is less than the concentration in the second concentration interval, and the first preset air shutter is less than the second preset air shutter.
[0028] In addition, in order to achieve the above object, the present application further provides an integrated cooker, which comprises:
[0029] An air conditioner module;
[0030] An exhaust module; and
[0031] A control device, the air conditioner module and the exhaust module are connected with the control device, the control device comprises a memory, a processor and an integrated cooker control program stored in the memory and executable on the processor, and the integrated cooker control program realizes the steps of the control method of the integrated cooker according to any one of the above when executed by the processor.
[0032] In addition, in order to achieve the above object, the present application further provides a computer readable storage medium, which stores an integrated cooker control program, and the integrated cooker control program realizes the steps of the control method of the integrated cooker according to any one of the above when executed by a processor.
[0033] The control method of the integrated cooker provided by the present application is based on an integrated cooker comprising an air conditioner module and an exhaust module, and when the operation mode of the integrated cooker is an oil fume purification mode, the exhaust module is controlled to mix the inhaled oil fume with the condensed water of the air conditioner module. Since most of the harmful substances in the oil fume are volatile gases generated at high temperature, the mixture of the oil fume and the condensed water can reduce the temperature of the flue gas, rapidly cool the harmful gas volatilized at high temperature to liquid state and mix in the water, thereby effectively reducing the harmful substances in the oil fume, purifying the oil fume and avoiding air pollution. BRIEF DESCRIPTION OF DRAWINGS
[0034] Figure 1 It is a structural schematic diagram of an embodiment of the integrated cooker of the present application;
[0035] Figure 2 It is a hardware structure schematic diagram related to the operation of an embodiment of the integrated cooker of the present application;
[0036] Figure 3 It is a flowchart of an embodiment of the control method of the integrated cooker of the present application;
[0037] Figure 4 It is a flowchart of another embodiment of the control method of the integrated cooker of the present application;
[0038] Figure 5 It is a flowchart of still another embodiment of the control method of the integrated cooker of the present application;
[0039] Figure 6A flowchart of another embodiment of the control method of the integrated cooker.
[0040] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0041] It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
[0042] The main solution of the embodiment of the present application is: based on the integrated cooker including an air conditioner module and an exhaust module, obtaining the operation mode of the integrated cooker; when the operation mode is an oil fume purification mode, controlling the exhaust module to mix the inhaled oil fume with the condensed water of the air conditioner module to purify the oil fume.
[0043] In the prior art, the integrated cooker generally sets a filter screen at the oil fume outlet of the exhaust module to filter the oil fume, but the filter screen can only filter the macromolecular substances such as oil droplets in the oil fume, and cannot filter the harmful substances in the oil fume, which are directly discharged to the outdoor and are easy to cause air pollution.
[0044] The present application provides the above-mentioned solution, which aims to reduce the harmful substances in the oil fume to purify the oil fume and avoid air pollution.
[0045] In the embodiment of the present application, an integrated cooker is provided. The integrated cooker is specifically an integrated device integrating a cooking module (such as a cooktop 2, a microwave oven and / or an oven, etc.) and other kitchen appliance function modules (such as an exhaust module 3, a tableware disinfection module, a tableware drying module and / or a purification module, etc.).
[0046] In the embodiment, referring to Figure 1 , the integrated cooker includes a shell 1, a cooktop 2, an exhaust module 3 and an air conditioner module 4, etc. The cooktop 2, the exhaust module 3 and the air conditioner module 4 are integrated and installed on the shell 1. The shell 1 is provided with at least two separated installation cavities, the exhaust module 3 and the air conditioner module 4 are respectively installed in different installation cavities, the airflow channel of the exhaust module 3 and the airflow channel in the air conditioner module 4 can be isolated from each other, or a ventilation opening can be provided, and a bypass valve is arranged at the ventilation opening to communicate or isolate the two airflow channels according to actual control requirements.
[0047] The cooktop 2 is specifically used for installing a cooktop, and the cooktop can be a module integrated on the integrated cooker or can be installed by the user based on the user's own requirements.
[0048] The smoke exhaust module 3 is specifically used to exhaust indoor cooking fumes outdoors. The housing 1 is equipped with an indoor smoke exhaust port and a smoke outlet. The smoke exhaust module 3 includes a smoke exhaust duct and a smoke exhaust fan installed within the duct. The smoke exhaust duct connects the indoor smoke exhaust port and the smoke outlet. The smoke outlet can be directly connected to the outdoor environment, or to a fume purification device, or to the exhaust pipe of the air conditioning module 4, etc. The number of indoor smoke exhaust ports can be one or more.
[0049] In this embodiment, the exhaust fan is a fan with different speed settings. When the exhaust fan operates at different speed settings, the operating airflow of the exhaust fan is different, resulting in different amounts of oil fumes drawn into the indoor air by the exhaust module 3 per unit time. The higher the speed setting of the exhaust fan, the larger its operating airflow, and the greater the amount of oil fumes drawn in per unit time; conversely, the lower the speed setting, the greater the amount of oil fumes drawn in per unit time. In other embodiments, the exhaust fan may also be a fixed-speed fan.
[0050] The indoor smoke exhaust outlet of the smoke exhaust module 3 may be equipped with a smoke exhaust valve or a flow guide, which is used to control the opening or closing of the indoor smoke exhaust outlet. Furthermore, the opening degree of the smoke exhaust valve or the position of the flow guide can be adjusted, and the amount of air drawn into the indoor environment by the smoke exhaust module 3 varies with different opening degrees or different flow guide positions.
[0051] The air conditioning module 4 includes a refrigerant circulation loop, which comprises a compressor, a first heat exchanger, a throttling device, and a second heat exchanger connected in sequence. Within the housing 1, the installation space of the air conditioning module 4 is provided with isolated first and second air chambers. The housing 1 is provided with an air outlet and a return air outlet communicating with the first air chamber, and an air inlet and an exhaust outlet communicating with the second air chamber. The number of air outlets, return air outlets, exhaust outlets, and / or air inlets may be one or more. In this embodiment, the indoor smoke exhaust outlet of the smoke exhaust module 3 is located above the air outlet of the air conditioning module 4.
[0052] In this embodiment, the housing 1 is also provided with a fresh air inlet communicating with the first air cavity, through which outdoor air can enter the first air cavity. The return air vent and the fresh air inlet may be respectively provided with valves to control their opening or closing.
[0053] A first heat exchanger is located in the first air cavity, and a supply fan is installed inside the first air cavity. When the supply fan is running, it drives indoor air to enter the first air cavity from the return air inlet and / or fresh air inlet. After heat exchange in the first heat exchanger, the air is delivered into the indoor environment from the air outlet. In this embodiment, the supply fan is a fan with different speed settings. When the supply fan runs at different speed settings, the air conditioning module 4 has different air outlet settings, resulting in different air volumes delivered into the indoor environment per unit time. The higher the speed setting, the larger the air outlet setting of the air conditioning module 4, and the greater the amount of oil fumes absorbed by the air conditioning module 4 per unit time; conversely, the lower the speed setting, the greater the amount of oil fumes absorbed by the air conditioning module 4 per unit time. In other embodiments, the supply fan can also be a fixed-speed fan.
[0054] The second heat exchanger is arranged in the second air cavity, and an exhaust fan is arranged in the second air cavity. When the exhaust fan is running, the exhaust fan drives external air to enter the second air cavity from the air inlet, and the external air is discharged to the outdoor environment from the air outlet after heat exchange by the second heat exchanger. The second air cavity and the air outlet can be connected by an exhaust duct. The air outlet herein and the smoke outlet in the smoke exhaust module 3 can be a shared air outlet.
[0055] The air outlet of the air conditioner module 4 can be provided with a wind guide. When the wind guide is operated in different wind guide positions, the air outlet direction and / or the air outlet volume of the air outlet of the air conditioner module 4 are different.
[0056] When the air conditioner module 4 is running in a cooling mode, the first heat exchanger is an evaporator, and the second heat exchanger is a condenser. The indoor air can pass through the first heat exchanger to reduce the temperature. When the air conditioner module 4 is running in a heating mode, the first heat exchanger is a condenser, and the second heat exchanger is an evaporator. The indoor air can pass through the first heat exchanger to increase the temperature.
[0057] The air conditioner module 4 can be a single-cooling heat pump module, a single-heating heat pump module, or a heat pump module with a cooling and heating switching function. When the air conditioner module 4 is a heat pump module with a cooling and heating switching function, the refrigerant circulation loop further includes a four-way valve connected to the compressor exhaust port, the compressor return port, the first heat exchanger, and the second heat exchanger. When the four-way valve is operated in a first valve position, the air conditioner module 4 runs in a cooling mode. When the four-way valve is operated in a second valve position, the air conditioner module 4 runs in a heating mode.
[0058] Further, the air conditioner module 4 further includes a water tank for collecting and storing condensate water generated during heat exchange of the first heat exchanger and / or the second heat exchanger. The water tank is provided with an exhaust duct. When the water level in the water tank is greater than a target water level, the outlet of the exhaust duct is immersed in the condensate water stored in the water tank. The smoke exhaust duct in the oil fume module 3 is provided with a ventilation port in communication with the water tank exhaust duct. The ventilation port is provided with a flow direction switching valve 7. The flow direction switching valve 7 can be used to switch the flow direction of the oil fume entering the smoke exhaust duct to a first flow direction or a second flow direction. The first flow direction is that the oil fume entering the smoke exhaust duct is discharged to the outdoor environment from the smoke outlet in communication with the outdoor environment. The second flow direction is that the oil fume entering the smoke exhaust duct is sent to the water tank through the exhaust duct. The oil fume treated by the condensate water in the water tank can be sent to the outdoor environment through the smoke outlet of the smoke exhaust duct, or sent to the outdoor environment through the air outlet of the air conditioner module 4, or even returned to the indoor environment, etc.
[0059] Further, the smoke outlet of the smoke exhaust duct in the oil fume module 3 or the smoke exhaust duct is provided with a filter screen for filtering the oil fume discharged from the smoke outlet. In this embodiment, the filter screen is a coarse filter screen. In other embodiments, the filter screen can also be set to other types of filter screens according to actual needs, such as medium-efficiency filter screens, high-efficiency filter screens, etc.
[0060] Further, the integrated cooker further comprises an oil fume sensor 5, which is specifically configured to detect the oil fume concentration of the indoor environment where the integrated cooker is located. In the embodiment, the oil fume sensor 5 can be arranged at the indoor smoke exhaust port of the smoke exhaust module 3. In other embodiments, the oil fume sensor 5 can also be arranged at other positions according to actual needs, such as on the cooking bench 2, outside the shell 1, etc.
[0061] Further, the integrated cooker further comprises a water level sensor 6, which is specifically configured to detect the water level of the condensate water loaded in the water tank of the air conditioner module 4. In the embodiment, the water level sensor 6 is arranged in the water tank of the air conditioner module 4.
[0062] Further, the integrated cooker further comprises a control device. Referring to Figure 2 , the air conditioner module 4, the smoke exhaust module 3, the oil fume sensor 5, the water level sensor 6, and the flow direction switching valve 7 are all connected to the control device, which can be used to control the operation of the air conditioner module 4, the smoke exhaust module 3, and the flow direction switching valve 7, and can also be used to obtain the data detected by the oil fume sensor 5 and the water level sensor 6.
[0063] The control device comprises a processor 1001 (such as a CPU), a memory 1002, etc. The memory 1002 can be a high-speed RAM memory, or a stable memory (non-volatile memory) such as a disk memory. The memory 1002 can also be a storage device independent of the aforementioned processor 1001.
[0064] Those skilled in the art can understand that Figure 2 the device structure shown in the embodiment does not constitute a limitation on the device, and can include more or fewer components than those shown, or combine certain components, or different component arrangements.
[0065] As shown in Figure 2 , the memory 1002 as a computer readable storage medium can include a control program of the integrated cooker. In Figure 2 the device, the processor 1001 can be used to call the control program of the integrated cooker stored in the memory 1002, and perform the related step operations of the control method of the integrated cooker in the following embodiments.
[0066] The embodiment of the present application also provides a control method of an integrated cooker, which is applied to control the integrated cooker.
[0067] Referring to Figure 3 , an embodiment of the control method of the integrated cooker is proposed. In the embodiment, the control method of the integrated cooker comprises:
[0068] Step S10, obtaining an operation mode of the integrated cooker;
[0069] The integrated cooker can be divided into several operation modes according to the functions to be achieved, such as a smoke exhaust mode, a sterilization mode, a dehumidification mode, an oil fume purification mode, etc. Among them, in the oil fume purification mode, the integrated cooker is operated for the purpose of purifying oil fume.
[0070] The operation mode can be determined by obtaining a mode control instruction input by a user, can also be determined based on a mode opening instruction generated based on a monitored environmental parameter, and can also be determined based on a current operation parameter of the integrated cooker. Among them, the oil fume purification mode can be opened by the user through input instruction, can also be opened when it is detected that the oil fume concentration is greater than a set threshold, and can also be opened by default when the smoke exhaust module is opened.
[0071] Step S20, when the operation mode is the oil fume purification mode, controlling the smoke exhaust module to mix the inhaled oil fume with the condensed water of the air conditioning module to purify the oil fume.
[0072] If the operation mode of the integrated cooker is the oil fume purification mode, all or part of the oil fume inhaled by the smoke exhaust module from the indoor environment into the smoke exhaust air duct can be mixed with the condensed water of the air conditioning module. The condensed water of the air conditioning module is the condensed water generated by the heat exchanger of the air conditioning module during the heat exchange process when the air conditioning module is opened, and the condensed water is collected and stored by the water tank in the air conditioning module.
[0073] In this embodiment, all the oil fume inhaled by the smoke exhaust module is mixed with the condensed water. Specifically, the flow direction of the inhaled oil fume can be switched to the second flow direction by the flow direction switching valve in the smoke exhaust module, so that the oil fume inhaled by the smoke exhaust module can be completely sent into the water tank through the exhaust duct and mixed with the condensed water in the water tank.
[0074] In other embodiments, the smoke exhaust module can also be provided with a sprayer in communication with the water tank. The sprayer can extract the condensed water in the water tank, and spray the extracted condensed water to the oil fume flowing through the smoke exhaust air duct. The condensed water and the oil fume can be discharged at the same time, and the discharged oil fume can be purified.
[0075] The gas after the oil fume is treated by the condensed water can be discharged to the outdoor environment, or can be sent to the indoor environment according to actual needs, so as to ensure the balance of indoor air pressure, especially when the air conditioning module is opened, the loss of heat exchange amount input to the indoor environment by the air conditioning module can be avoided.
[0076] In the oil fume purification mode, the air conditioning module can be opened or closed. In this embodiment, the air conditioning module is in an open state in the oil fume purification mode, which is conducive to generating new condensed water into the water tank to reduce the water temperature in the water tank and improve the purification effect of the oil fume.
[0077] The smoke exhaust module can be started based on a user input instruction, can be automatically started when it is detected that the cooking module such as a stove is in a working state, or can be started when it is detected that the indoor environment oil fume concentration is greater than or equal to a target concentration threshold.
[0078] The control method of the integrated stove provided in the embodiment of the present application is based on an integrated stove including an air conditioner module and a smoke exhaust module. When the operation mode of the integrated stove is an oil fume purification mode, the smoke exhaust module is controlled to mix the inhaled oil fume with the condensed water of the air conditioner module. Since most of the harmful substances in the oil fume are volatile gases generated at high temperatures, the mixing of the oil fume and the condensed water can reduce the temperature of the flue gas, rapidly cool the harmful gas volatilized at high temperatures into a liquid state and mix the liquid in the water, thereby effectively reducing the harmful substances in the oil fume, purifying the oil fume, and avoiding air pollution.
[0079] Further, based on the above embodiment, another embodiment of the control method of the integrated stove is provided. In the embodiment, referring to Figure 3 , after step S10, the method further includes:
[0080] Step S11, when the operation mode is the oil fume purification mode, the oil fume concentration of the space where the integrated stove is located is acquired.
[0081] Step S12, it is judged whether the oil fume concentration is greater than or equal to a target concentration.
[0082] If the oil fume concentration is greater than or equal to the target concentration, step S20 is executed; if the oil fume concentration is less than the target concentration, step S30 is executed.
[0083] Step S30, the smoke exhaust module is controlled to blow the inhaled oil fume to the filter screen to purify the oil fume.
[0084] The target concentration is the maximum concentration value allowed when the oil fume discharged to the outdoor environment does not cause pollution to the atmosphere. The target concentration can be a pre-set fixed parameter or a parameter acquired based on the actual operation of the integrated stove. Specifically, the outdoor environment temperature can be acquired, and the target concentration here is determined according to the outdoor environment temperature. Since the harmfulness of the oil fume to the environment is different under different outdoor environment temperatures, for example, the harmful substances in the oil fume are easy to cool into liquid droplets and settle down, and are not easy to pollute the atmosphere in the outdoor low-temperature environment, therefore, the lower the outdoor environment temperature, the higher the corresponding target concentration can be.
[0085] The oil fume concentration greater than or equal to the target concentration indicates that there are more harmful substances in the current oil fume, and the oil fume filtered through the filter screen or directly discharged to the outdoor will pollute the atmosphere. Therefore, the oil fume is purified by mixing the oil fume with the condensate water of the air conditioning module and the exhaust smoke module, so as to effectively reduce the harmful substances in the oil fume and avoid polluting the atmospheric environment. The oil fume concentration less than the target concentration indicates that there are fewer harmful substances in the current oil fume. At this time, the oil fume can be purified by the filter screen filtering method, which can ensure that the oil fume will not pollute the atmosphere, effectively avoid the poor purification effect of the condensate water caused by frequent use of the condensate water filtering, and improve the utilization rate of the condensate water in the water tank in purifying the oil fume.
[0086] Further, based on the above embodiment, another embodiment of the control method of the integrated cooker is provided. In the embodiment, referring to Figure 4 , after the step S11 (after the step S12 described above), further comprising:
[0087] When the oil fume concentration is greater than or equal to the target concentration, the step S21 is performed.
[0088] Step S21, detecting the current water level in the water tank in the air conditioning module; the water tank is used to store the condensate water;
[0089] The current water level here can be obtained by reading the data detected by the water level sensor arranged in the water tank.
[0090] Step S22, judging whether the current water level is greater than or equal to the target water level;
[0091] When the current water level is greater than or equal to the target water level, the step S20 is performed; when the current water level is less than the target water level, the step S50 is performed.
[0092] Step S50, controlling the exhaust smoke module to blow the inhaled oil fume to the filter screen to purify the oil fume.
[0093] The target water level is specifically the minimum water level required for the condensate water to effectively purify the oil fume. In the embodiment, the water level when the water surface in the water tank is level with the air outlet of the exhaust duct is less than or equal to the target water level here, so that the oil fume entering the water tank through the exhaust duct can be effectively mixed with the condensate water.
[0094] The target water level can be a fixed parameter pre-set and stored, or a parameter determined based on the oil fume concentration, the water temperature of the condensate water, and / or the actual speed of the exhaust smoke fan.
[0095] In the present embodiment, the smoke exhaust duct in the smoke exhaust module is provided with a flow direction switching valve. When the current water level is greater than or equal to the target water level, the flow direction switching valve can be controlled to operate at a second valve position, so that the oil fume sucked by the smoke exhaust module can be sent into the water tank through the exhaust duct to mix with the condensed water (i.e., the oil fume entering the smoke exhaust duct flows in a second flow direction). When the current water level is less than the target water level, the flow direction switching valve can be controlled to operate at a first valve position, so that the oil fume sucked by the smoke exhaust module can be filtered by the filter screen before being discharged to the outdoor environment (i.e., the oil fume entering the smoke exhaust duct flows in a second flow direction).
[0096] When the current water level in the water tank is greater than or equal to the target water level, it indicates that the current condensed water in the water tank can effectively reduce or eliminate harmful substances in the oil fume after mixing with the oil fume in the smoke exhaust module. Therefore, the oil fume can be purified by the condensed water in the water tank at this time to avoid air pollution. When the current water level in the water tank is less than the target water level, it indicates that the current condensed water in the water tank is insufficient to effectively purify the oil fume. Therefore, the oil fume can be purified by the filter screen at this time to ensure that the oil fume can be filtered and purified to a certain extent before being discharged to the outdoor environment to reduce air pollution.
[0097] Further, in the oil fume purification mode, in addition to water level detection, the water temperature in the water tank can also be detected before the oil fume mixes with the condensed water. Specifically, when the current water level is greater than or equal to the target water level, the water temperature of the condensed water can be detected. When the water temperature is greater than a set water temperature, the air conditioning module can be controlled to be turned on, so that the air conditioning module generates new condensed water to enter the water tank to reduce the water temperature in the water tank, thereby improving the purification effect of the condensed water on the oil fume.
[0098] In other embodiments, when the current water level is less than the target water level, the oil fume can also be purified without using the filter screen or by combining the filter screen with other filtering methods. For example, the cold air generated by the air conditioning module in refrigeration mode can be sent into the smoke exhaust duct to reduce the temperature of the flue gas in the smoke exhaust duct, so that the harmful flue gas is cooled to liquid droplets and settles in the smoke exhaust duct or is adsorbed by the filter screen after passing through the filter screen, thereby achieving purification of the oil fume.
[0099] In other embodiments, in the oil fume purification mode, the current water level in the water tank can also be detected without detecting the oil fume concentration.
[0100] Further, based on any of the above embodiments, another embodiment of a control method of the integrated cooker is proposed. In the present embodiment, referring to Figure 5 , after step S11 (after step S12 described above), the method further includes:
[0101] When the oil fume concentration is less than the target concentration, step S13 is performed.
[0102] Step S13, determining a second target running wind gear of the smoke exhaust module according to the oil fume concentration;
[0103] Different oil fume concentrations correspond to different second target running wind gears, and different second target running wind gears correspond to different rotating speeds of the smoke exhaust fan, so that the smoke exhaust speed (i.e. the speed of the oil fume sucked from the indoor environment per unit time) of the smoke exhaust module is different.
[0104] The corresponding relationship between the oil fume concentration and the running wind gear of the smoke exhaust module can be pre-established, which can be in the form of a calculation relationship or a mapping relationship. In this embodiment, in the corresponding relationship, the running wind gear increases with the increase of the oil fume concentration, so as to ensure the cleanliness of the indoor environment air and avoid excessive oil fume from polluting the indoor environment. In other embodiments, the running wind gear can also decrease with the increase of the oil fume concentration. Based on the pre-established corresponding relationship between the oil fume concentration and the running wind gear of the smoke exhaust module, the running wind gear corresponding to the current oil fume concentration can be determined by calculation or by querying a mapping table.
[0105] In this embodiment, the oil fume concentration is pre-divided into at least two different concentration intervals, different concentration intervals correspond to different running wind gears of the smoke exhaust module, and the greater the concentration in the concentration interval, the greater the corresponding running wind gear. The concentration intervals divided here can be continuous intervals or discontinuous intervals. The concentrations in all the divided concentration intervals are less than the target concentration. Specifically, the pre-set at least two concentration intervals include a first concentration interval and a second concentration interval, when the oil fume concentration is in the first concentration interval, the first pre-set wind gear is determined as the second target running wind gear; when the oil fume concentration is in the second concentration interval, the second pre-set wind gear is determined as the second target running wind gear; the concentration in the first concentration interval is less than the concentration in the second concentration interval, and the first pre-set wind gear is less than the second pre-set wind gear.
[0106] Step S14, controlling the smoke exhaust module to run at the second target running wind gear. During the execution of step S14, step S30 is executed.
[0107] In this embodiment, the running wind gear of the smoke exhaust fan is determined according to the oil fume concentration, which is beneficial to ensure that the smoke exhaust efficiency of the smoke exhaust module matches the actual oil fume concentration, improve the smoke exhaust effect of the indoor environment, ensure the air cleanliness of the indoor environment, and avoid the harm of oil fume to the human body. When the oil fume concentration is large, a larger running wind gear is adopted, which is beneficial to ensure the smoke exhaust effect; when the oil fume concentration is small, a smaller running wind gear is adopted, which can ensure the smoke exhaust effect while reducing the energy consumption of the smoke exhaust module.
[0108] Further, based on any of the above embodiments, referring to Figure 5, after step S11 (after step S12 described above), further comprising:
[0109] When the oil fume concentration is greater than or equal to the target concentration, step S15 is performed.
[0110] In step S15, the smoke exhaust module is controlled to run at a first target running air damper; wherein the first target running air damper is greater than the preset air damper; during the execution of step S15, step S20 is performed.
[0111] In this embodiment, the preset air damper herein is the second preset air damper described above. Specifically, the first target running air damper can be the maximum running air damper of the smoke exhaust module. For example, the running air damper of the smoke exhaust module can be divided into low air damper, medium air damper and high air damper. When the oil fume concentration is greater than or equal to the target concentration, the first target running air damper can be the high air damper; when the oil fume concentration is less than the target concentration, the second target running air damper can be the low air damper when the oil fume concentration is in the first concentration interval, and the second target running air damper can be the medium air damper when the oil fume concentration is in the second concentration interval.
[0112] When steps S21 and S22 are further included after step S11, step S15 can be performed first and then steps S21 and S22 are performed, after step S22, when the current water level is less than the target water level, steps S15 and S50 are executed synchronously; when the current water level is greater than or equal to the target water level, steps S15 and S20 are executed synchronously; in addition, when steps S21 and S22 are further included after step S11, steps S21 and S22 can be performed first, and steps S15, S20 or S50 are executed at the same time after step S22.
[0113] In this embodiment, when the oil fume concentration is greater than or equal to the target concentration, it indicates that there are more harmful components in the oil fume, and at this time, the smoke exhaust module is controlled to run at the first target running air damper greater than the preset air damper, which can ensure that the smoke exhaust module can quickly exhaust the oil fume in the room with high efficiency, effectively avoiding the damage of the oil fume to the health of the users in the room.
[0114] In addition, the embodiment of the present application further proposes a computer readable storage medium, and the computer readable storage medium stores a control program of an integrated cooker. When the control program of the integrated cooker is executed by a processor, the related steps of any embodiment of the control method of the integrated cooker are realized.
[0115] It should be noted that, in this document, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or system that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or system. Without further limitation, an element preceded by "comprises a" does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or system that comprises the recited element.
[0116] The above-mentioned embodiment numbers of the present application are only for description, not representing the advantages and disadvantages of the embodiments.
[0117] From the above description of the embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be realized by means of software and necessary general hardware platforms, of course, they can also be realized by hardware, but in many cases the former is a better embodiment. Based on such understanding, the technical solutions of the present application can be embodied in the form of a software product, which is stored in a storage medium (such as a ROM / RAM, a magnetic disk, or an optical disk) as described above, and includes a number of instructions for making a terminal device (which can be a mobile phone, a computer, a server, an integrated cooker, or a network device, etc.) execute the methods described in the various embodiments of the present application.
[0118] The above is only the preferred embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation, or direct or indirect application in other related technical fields, is also included in the patent protection scope of the present application.
Claims
1. A control method of an integrated kitchen, characterized by, The integrated cooker comprises an air conditioner module and a smoke exhaust module, and a control method of the integrated cooker comprises the following steps: obtaining an operation mode of the integrated cooker; when the operation mode is an oil fume purification mode, obtaining an oil fume concentration of a space where the integrated cooker is located; when the oil fume concentration is greater than or equal to a target concentration, detecting a current water level in a water tank in the air conditioner module; the water tank is used to store condensed water generated in a heat exchange process of a heat exchanger when the air conditioner module is turned on; when the current water level is greater than or equal to a target water level, controlling the smoke exhaust module to mix the inhaled oil fume with the condensed water of the air conditioner module to purify the oil fume, wherein the target concentration is a maximum concentration value allowed when the oil fume exhausted to the outdoor does not cause pollution to the atmosphere; when the current water level is less than the target water level, controlling the smoke exhaust module to blow the inhaled oil fume to a filter screen to purify the oil fume; when the oil fume concentration is less than the target concentration, controlling the smoke exhaust module to blow the inhaled oil fume to the filter screen to purify the oil fume. 2.The control method of the integrated cooktop of claim 1, wherein, After the step of obtaining the oil fume concentration of the space where the integrated cooker is located, the method further comprises: when the oil fume concentration is greater than or equal to a target concentration, controlling the smoke exhaust module to operate at a first target operation wind level to perform the step of controlling the smoke exhaust module to mix the inhaled oil fume with the condensed water of the air conditioner module; wherein the first target operation wind level is greater than a preset wind level. 3.The control method of the integrated cooktop of claim 1, wherein, After the step of obtaining the oil fume concentration of the space where the integrated cooker is located, the method further comprises: when the oil fume concentration is less than the target concentration, determining a second target operation wind level of the smoke exhaust module according to the oil fume concentration; controlling the smoke exhaust module to operate at the second target operation wind level and performing the step of controlling the smoke exhaust module to blow the inhaled oil fume to the filter screen. 4.The control method of the integrated cooktop of claim 3, wherein, The step of determining the second target operation wind level of the smoke exhaust module according to the oil fume concentration comprises: when the oil fume concentration is within a first concentration interval, determining a first preset wind level as the second target operation wind level; when the oil fume concentration is within a second concentration interval, determining a second preset wind level as the second target operation wind level; a concentration within the first concentration interval is less than a concentration within the second concentration interval, and the first preset wind level is less than the second preset wind level.
5. An integrated hob, characterized in that The integrated cooker comprises: an air conditioner module; a smoke exhaust module; and a control device, the air conditioner module and the smoke exhaust module are connected with the control device, the control device comprises a memory, a processor and an integrated cooker control program stored in the memory and executable on the processor, and the integrated cooker control program is executed by the processor to implement the steps of the control method of the integrated cooker according to any one of claims 1 to 4.
6. A computer-readable storage medium, characterized in that, The computer readable storage medium stores an integrated cooker control program, and the integrated cooker control program is executed by a processor to implement the steps of the control method of the integrated cooker according to any one of claims 1 to 4.
Citation Information
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Kitchen integrated stove air conditioner
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