WO2020192062A1 - 空调器、空调器的控制方法和计算机可读存储介质 - Google Patents

空调器、空调器的控制方法和计算机可读存储介质 Download PDF

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Publication number
WO2020192062A1
WO2020192062A1 PCT/CN2019/109089 CN2019109089W WO2020192062A1 WO 2020192062 A1 WO2020192062 A1 WO 2020192062A1 CN 2019109089 W CN2019109089 W CN 2019109089W WO 2020192062 A1 WO2020192062 A1 WO 2020192062A1
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Prior art keywords
speed
current operating
air conditioner
fan
preset
Prior art date
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PCT/CN2019/109089
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English (en)
French (fr)
Inventor
谭周衡
曾威
陈良锐
方健
曾小朗
李金波
杜顺开
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
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Publication of WO2020192062A1 publication Critical patent/WO2020192062A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0018Indoor units, e.g. fan coil units characterised by fans
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/64Electronic processing using pre-stored data
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/65Electronic processing for selecting an operating mode
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/74Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity
    • F24F11/77Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity by controlling the speed of ventilators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/79Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling the direction of the supplied air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/80Control systems characterised by their outputs; Constructional details thereof for controlling the temperature of the supplied air
    • F24F11/86Control systems characterised by their outputs; Constructional details thereof for controlling the temperature of the supplied air by controlling compressors within refrigeration or heat pump circuits
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

Definitions

  • This application relates to the technical field of household appliances, and in particular, to an air conditioner, a control method of the air conditioner, and a computer-readable storage medium.
  • the existing air conditioner blows the air after heat exchange through the conventional air outlet of the air conditioner.
  • the air outlet method is conventional air outlet.
  • the air outlet is mostly laminar flow and turbulent flow, and the radiation range is short and narrow, which cannot achieve large-scale delivery. Wind, reduce the user experience.
  • This application aims to solve at least one of the technical problems existing in the prior art or related technologies.
  • An aspect of the application provides an air conditioner.
  • Another aspect of the present application provides a control method of an air conditioner.
  • Another aspect of the present application provides a computer-readable storage medium.
  • an air conditioner including: a vortex ring generating device; a fan, which works to supply air to the vortex ring generating device; a memory configured to store a computer program; and processing
  • the air conditioner is configured to execute a computer program to achieve: obtain the current operating mode of the air conditioner; according to the current operating mode, control the working state of the vortex generating device.
  • the air conditioner provided by the present application includes a vortex generating device, a fan, a memory storing a computer program, and a processor executing the stored computer program.
  • the processor executes the computer program to realize the following control strategy.
  • the air conditioner in the prior art discharges air in a conventional laminar or turbulent manner, and its air supply range is small and the air supply distance is short, and the wind generated by the fan passes through the vortex ring generator and is discharged as a vortex ring airflow, effectively
  • the air supply range and air supply distance of the air conditioner are expanded, and the vortex ring air flow is discharged through the vortex ring generator, which can realize the directional propagation of the air supply.
  • the vortex ring generator transmits the same wind The wind speed required for the distance of the distance is reduced, therefore, the energy consumption is greatly reduced and the personalized air supply is realized, the user's use cost is reduced and the user's use experience is improved.
  • the wind of the existing air conditioner is exhausted in a laminar or turbulent manner, so that the user has a concentrated airflow and a strong sense of wind, and the wind is discharged in the form of vortex airflow through the vortex ring generator to make the user experience no wind.
  • the blower can meet the needs of the elderly, children, and patients for air outlets from the air conditioner, further expand the scope of use of the product, and improve the market competitiveness of the product. Further, the prior art improves the user’s comfort in using the air conditioner by increasing the disturbance or reducing the wind speed, but by increasing the disturbance, the energy consumption is not reduced; reducing the wind speed or keeping the wind speed unchanged cannot guarantee the wind blown out of the air conditioner.
  • the above-mentioned air conditioner provided in this application may also have the following additional technical features:
  • the processor executes the computer program to realize the step of controlling the working state of the vortex generating device according to the current operating mode, including: judging whether the current operating mode is cooling mode, heating mode or air supply One of the modes; if yes, control the vortex ring generator to work; otherwise, control the vortex ring generator to stop working.
  • the vortex ring airflow is used to output the air, which expands the air supply range and air supply distance of the air conditioner, and can realize the directional transmission of the air supply.
  • the vortex ring generator transmits the wind The wind speed required for the same distance is reduced, therefore, energy consumption is greatly reduced and personalized air supply is realized, reducing the user's use cost and improving the user's use experience.
  • the wind of the existing air conditioner is exhausted in a laminar or turbulent manner so that the user has a concentrated air flow and a strong sense of wind, and the wind is discharged through the vortex ring generating device in the form of vortex airflow, which enables users to experience windless blowing. , Improve user satisfaction.
  • none of the current operating modes are cooling mode, heating mode or air supply mode, it means that the current operating mode of the air conditioner does not include air supply action, and the vortex ring generator is controlled to stop working, which avoids the air conditioner does not include air supply action and the vortex ring
  • the problem of waste of energy during device work has effectively reduced the user's use cost and improved the market competitiveness of the product.
  • the processor is also configured to execute a computer program to control the work of the scroll generating device, which specifically includes: obtaining the current operating speed of the fan based on the current operating mode being the cooling mode or the heating mode; Operating speed, adjust the operating speed of the fan, and control the operation of the vortex ring generator.
  • the current operating speed of the fan is obtained, and the operating speed of the fan is adjusted according to the current operating speed, and the operation of the vortex generating device is controlled to avoid the large temperature difference.
  • controlling the work of the vortex ring generating device may include adjusting the driving frequency of the vortex ring generating device, adjusting the transmission distance and transmission range of the vortex ring airflow of the vortex ring generating device, or other parameters that meet the requirements.
  • the processor executes the computer program to realize the steps of adjusting the operating speed of the fan according to the current operating speed, and controlling the operation of the vortex generating device, which specifically includes: based on the current operating speed being less than the first preset speed, The fan is controlled to increase the operating speed, and the vortex ring generator is controlled to work at the first driving frequency.
  • the vortex generator is controlled to be driven by the first Frequency operation is conducive to the rapid formation of the vortex ring airflow and the transmission in a larger range and the transmission distance is longer, which can make the vortex ring airflow formed by the vortex ring generator be received in a larger area in the room, thereby expanding the experience of no wind
  • the range of wind can make the indoor temperature quickly reach the comfort level and enhance the user experience.
  • the processor executes a computer program to adjust the operating speed of the fan according to the current operating speed, and control the operation of the vortex ring generator, which specifically includes: based on the current operating speed being greater than the second preset speed, The fan is controlled to reduce the operating speed, and the vortex ring generator is controlled to work at a second drive frequency; wherein the first preset speed is less than the second preset speed; the first drive frequency is greater than the second drive frequency.
  • the fan is controlled to reduce the operating speed and control the vortex ring.
  • the generating device works at the second drive frequency.
  • the first drive frequency is greater than the second drive frequency, which slows down the formation speed of the vortex ring airflow, and transmits in a smaller range and the transmission distance is shorter, which can avoid the vortex ring generating device.
  • the large driving frequency causes a large amount of vortex airflow with a large temperature difference to be transmitted indoors, which reduces the comfort of the user, effectively guarantees the comfort of the user's blowing, and improves the user's blowing experience.
  • the processor executes the computer program to realize the steps of adjusting the operating speed of the fan according to the current operating speed, and controlling the operation of the vortex ring generator, which specifically includes: based on the current operating speed being greater than or equal to the first preset The speed is less than or equal to the second preset speed, the fan is controlled to run at the current operating speed, and the vortex ring generator is controlled to work at the third drive frequency; wherein the second drive frequency is greater than the third drive frequency.
  • the current operating speed is greater than or equal to the first preset speed and less than or equal to the second preset speed, it indicates that the current room temperature is equivalent to the preset temperature.
  • the fan is controlled to run at the current operating speed and the vortex ring is controlled.
  • the device works at the third drive frequency.
  • the second drive frequency is greater than the third drive frequency, which further reduces the formation speed of the vortex ring airflow, and ensures an appropriate air supply range and air supply distance, which can keep the current indoor temperature from the preset value for a long time.
  • the temperature is kept consistent, so that indoor comfort can be maintained for a long time, and the user experience is improved.
  • the processor is also configured to execute a computer program to achieve: based on the current operating speed being less than the first preset speed, controlling the compressor of the air conditioner to reduce the frequency; based on the current operating speed being greater than the second The preset speed controls the compressor of the air conditioner to increase the frequency; based on the current operating speed being greater than or equal to the first preset speed and less than or equal to the second preset speed, the compressor of the air conditioner is controlled to keep the current frequency unchanged.
  • the air conditioner has a certain amount of heat exchange, and is helpful to maintain a comfortable indoor temperature; based on the current operating speed greater than the second preset speed, it indicates that the current indoor temperature and the expected If the temperature difference is large, by controlling the compressor of the air conditioner to increase the frequency and improve the heat exchange efficiency, it is helpful to quickly reduce the temperature difference between the current indoor temperature and the preset temperature, so that the current indoor temperature quickly reaches the preset temperature, thereby increasing the indoor temperature.
  • Temperature comfort based on the current operating speed being greater than or equal to the first preset speed and less than or equal to the second preset speed, indicating that the current indoor temperature is equivalent to the preset temperature, the current frequency is maintained by controlling the compressor of the air conditioner, It can maintain the comfort of indoor temperature for a long time, and improve the satisfaction of users.
  • the processor is further configured to execute a computer program to implement the step of controlling the operation of the vortex ring generator based on the current operating mode as the air supply mode, and further includes: obtaining the current operating speed of the fan; The running speed is less than the first preset speed, the fan is controlled to run at the first preset speed; based on the current running speed is greater than the second preset speed, the fan is controlled to run at the second preset speed; based on the current running speed greater than or equal to the first preset speed
  • the rotation speed is set to be less than or equal to the second preset rotation speed, and the fan is controlled to run at the current operating rotation speed; wherein the first preset rotation speed is less than the second preset rotation speed.
  • the vortex ring generator is controlled to work, which can expand the air supply range and air supply distance of the air conditioner, reduce energy consumption, and make the user experience windless blowing, which improves User satisfaction.
  • the current running speed of the fan based on the fact that the current running speed is less than the first preset speed, it indicates that the current wind speed is less different from the preset wind speed.
  • the fan By controlling the fan to run at the first preset speed, the current wind speed and the preset speed can be quickly reduced.
  • the difference in wind speed makes the current wind speed quickly reach the preset wind speed, thereby improving indoor comfort; based on the current operating speed greater than the second preset speed, the second preset speed is greater than the first preset speed, indicating that the current wind speed is different from the preset speed
  • the wind speed has a large difference.
  • the first preset speed is 300 r/min to 600 r/min
  • the second preset speed is 900 r/min to 1200 r/min.
  • the range of the first preset speed is 300r/min to 600r/min, which avoids that the first preset speed is too small to form a vortex ring airflow.
  • a reasonable range of the first preset speed can ensure the vortex ring The airflow is effectively formed, and the vortex ring airflow can be adequately and continuously spread, thereby enhancing the user's blowing experience and improving user satisfaction.
  • the second preset speed is 900r/min to 1200r/min, which avoids that the second preset speed is too large and the difference between the preset temperature is too large and affects the comfort of users.
  • a reasonable range of the second preset speed can make the air conditioner The device reduces the temperature difference and quickly achieves comfort in a short time, thereby increasing user satisfaction.
  • the first preset speed is 400r/min
  • the second preset speed is 1000r/min, which can ensure that the wind of the fan works through the vortex ring generator to form a vortex ring airflow, and blows continuously and adequately into the room, while making Indoors can quickly reach comfort and enhance the user experience.
  • the air conditioner includes a vortex ring generating device and a fan.
  • the fan works to supply air to the vortex ring generating device.
  • the control method of the air conditioner includes: The current operating mode of the generator; according to the current operating mode to control the working state of the vortex generator.
  • the air conditioner includes a vortex ring generating device and a fan, and the fan works to send air to the vortex ring generating device.
  • the conventional air outlet form of the air conditioner in the prior art can only be changed to the problem of laminar or turbulent flow.
  • the working state of the ring generator can achieve conventional or vortex airflow, and then achieve personalized airflow, which can meet the needs of different users for different airflow methods, improve user experience, and improve product market Competitiveness.
  • the air conditioner in the prior art discharges air in a conventional laminar or turbulent manner, and its air supply range is small and the air supply distance is short, and the wind generated by the fan passes through the vortex ring generator and is discharged as a vortex ring airflow, effectively
  • the air supply range and air supply distance of the air conditioner are expanded, and the vortex ring air flow is discharged through the vortex ring generator, which can realize the directional propagation of the air supply.
  • the vortex ring generator transmits the same wind The wind speed required for the distance of the distance is reduced, therefore, the energy consumption is greatly reduced and the personalized air supply is realized, the user's use cost is reduced and the user's use experience is improved.
  • the wind of the existing air conditioner is discharged in a laminar or turbulent manner, so that the user has a concentrated air flow and a strong sense of wind, and the wind is discharged through the vortex ring generating device in the form of vortex airflow, which enables the user to experience no wind
  • the feeling of blowing air can meet the needs of the elderly, children, and patients for the air from the air conditioner, further expand the scope of use of the product, and improve the market competitiveness of the product.
  • the prior art improves the user’s comfort in using the air conditioner by increasing the disturbance or reducing the wind speed, but by increasing the disturbance, the energy consumption is not reduced; reducing the wind speed or keeping the wind speed unchanged cannot guarantee the blowing of the air conditioner.
  • the wind from the fan is discharged through the vortex ring generator and then forms a vortex ring airflow, which can make users experience windless blowing, effectively ensuring the user’s good comfort and expanding the air supply of the air conditioner. Range and air supply distance, and reduce energy consumption, thereby improving the market competitiveness of products.
  • the step of controlling the working state of the scroll generating device includes: determining whether the current operating mode is one of the cooling mode, heating mode or air supply mode; if so , Control the vortex ring generator to work; otherwise, control the vortex ring generator to stop working.
  • the vortex ring airflow is used to output the air, which expands the air supply range and air supply distance of the air conditioner, and can realize the directional transmission of the air supply.
  • the vortex ring generator transmits the wind The wind speed required for the same distance is reduced, therefore, energy consumption is greatly reduced and personalized air supply is realized, reducing the user's use cost and improving the user's use experience.
  • the wind of the existing air conditioner is exhausted in a laminar or turbulent manner so that the user has a concentrated air flow and a strong sense of wind, and the wind is discharged through the vortex ring generating device in the form of vortex airflow, which enables users to experience windless blowing. , Improve user satisfaction.
  • none of the current operating modes are cooling mode, heating mode or air supply mode, it means that the current operating mode of the air conditioner does not include air supply action, and the vortex ring generator is controlled to stop working, which avoids the air conditioner does not include air supply action and the vortex ring
  • the problem of waste of energy during device work has effectively reduced the user's use cost and improved the market competitiveness of the product.
  • controlling the operation of the vortex generating device includes: obtaining the current operating speed of the fan based on the current operating mode being the cooling mode or heating mode; adjusting the operating speed of the fan according to the current operating speed, and controlling The vortex ring generator works.
  • controlling the work of the vortex ring generator can include adjusting the driving frequency of the vortex ring generator, adjusting the transmission distance and transmission range of the vortex ring air flow of the vortex ring generator, or other parameters that meet the requirements.
  • the steps of adjusting the operating speed of the fan according to the current operating speed and controlling the operation of the vortex ring generator include: controlling the fan to increase the operating speed based on the current operating speed being less than the first preset speed, and The control scroll generating device operates at the first driving frequency.
  • the vortex generator is controlled to be driven by the first Frequency operation is conducive to the rapid formation of the vortex ring airflow and the transmission in a larger range and the transmission distance is longer, which can make the vortex ring airflow formed by the vortex ring generator be received in a larger area in the room, thereby expanding the experience of no wind
  • the range of wind can make the indoor temperature quickly reach the comfort level and enhance the user experience.
  • the steps of adjusting the operating speed of the fan according to the current operating speed and controlling the operation of the vortex generating device specifically include: controlling the fan to reduce the operating speed based on the current operating speed being greater than the second preset speed, and The control vortex generating device operates at a second driving frequency; wherein, the first preset speed is less than the second preset speed; the first driving frequency is greater than the second driving frequency.
  • the fan is controlled to reduce the operating speed and control the vortex ring.
  • the generating device works at the second drive frequency.
  • the first drive frequency is greater than the second drive frequency, which slows down the formation speed of the vortex ring airflow, and transmits in a smaller range and the transmission distance is shorter, which can avoid the vortex ring generating device.
  • the large driving frequency causes a large amount of vortex airflow with a large temperature difference to be transmitted indoors, which reduces the comfort of the user, effectively guarantees the comfort of the user's blowing, and improves the user's blowing experience.
  • the steps of adjusting the operating speed of the fan according to the current operating speed and controlling the operation of the vortex ring generator include: based on the current operating speed being greater than or equal to the first preset speed and less than or equal to the second The preset speed is used to control the fan to run at the current operating speed, and control the vortex ring generator to work at the third driving frequency; wherein the second driving frequency is greater than the third driving frequency.
  • the current operating speed is greater than or equal to the first preset speed and less than or equal to the second preset speed, it indicates that the current room temperature is equivalent to the preset temperature.
  • the fan is controlled to run at the current operating speed and the vortex ring is controlled.
  • the device works at the third drive frequency.
  • the second drive frequency is greater than the third drive frequency, which further reduces the formation speed of the vortex ring airflow, and ensures an appropriate air supply range and air supply distance, which can keep the current indoor temperature from the preset value for a long time.
  • the temperature is kept consistent, so that indoor comfort can be maintained for a long time, and the user experience is improved.
  • it further includes: controlling the compressor of the air conditioner to decrease the frequency based on the current operating speed being less than the first preset speed; controlling the compressor of the air conditioner to increase based on the current operating speed being greater than the second preset speed Large frequency: Based on the current operating speed being greater than or equal to the first preset speed and less than or equal to the second preset speed, the compressor of the air conditioner is controlled to keep the current frequency unchanged.
  • the air conditioner has a certain amount of heat exchange, and is beneficial to maintain a comfortable indoor temperature; based on the current operating speed greater than the second preset speed, it indicates that the current indoor temperature and the expected If the temperature difference is large, by controlling the compressor of the air conditioner to increase the frequency and improve the heat exchange efficiency, it is helpful to quickly reduce the temperature difference between the current indoor temperature and the preset temperature, so that the current indoor temperature quickly reaches the preset temperature, thereby increasing the indoor temperature.
  • Temperature comfort based on the current operating speed being greater than or equal to the first preset speed and less than or equal to the second preset speed, indicating that the current indoor temperature is equivalent to the preset temperature, the current frequency is maintained by controlling the compressor of the air conditioner, It can maintain the comfort of indoor temperature for a long time, and improve the satisfaction of users.
  • the method further includes: obtaining the current operating speed of the fan; controlling the fan based on the current operating speed being less than the first preset speed Run at the first preset speed; based on the current operating speed greater than the second preset speed, control the fan to run at the second preset speed; based on the current operating speed greater than or equal to the first preset speed and less than or equal to the second preset speed , Controlling the fan to run at the current operating speed; wherein the first preset speed is less than the second preset speed.
  • the vortex ring generator is controlled to work, which can expand the air supply range and air supply distance of the air conditioner, reduce energy consumption, and make the user experience windless blowing, which improves User satisfaction.
  • the current running speed of the fan based on the fact that the current running speed is less than the first preset speed, it indicates that the current wind speed is less different from the preset wind speed.
  • the fan By controlling the fan to run at the first preset speed, the current wind speed and the preset speed can be quickly reduced.
  • the difference in wind speed makes the current wind speed quickly reach the preset wind speed, thereby improving indoor comfort; based on the current operating speed greater than the second preset speed, it means that the current wind speed is significantly different from the preset wind speed.
  • the second preset speed is greater than the first preset speed, which greatly improves the operating speed of the fan, helps to quickly reduce the difference between the current wind speed and the preset wind speed, and helps the indoor air to quickly reach the user's comfort level.
  • the first preset speed is 300 r/min to 600 r/min
  • the second preset speed is 900 r/min to 1200 r/min.
  • the range of the first preset speed is 300r/min to 600r/min, which avoids that the first preset speed is too small to form a vortex ring airflow.
  • a reasonable range of the first preset speed can ensure the vortex ring The airflow is effectively formed, and the vortex ring airflow can be adequately and continuously spread, thereby enhancing the user's blowing experience and improving user satisfaction.
  • the second preset speed is 900r/min to 1200r/min, which avoids that the second preset speed is too large and the difference between the preset temperature is too large and affects the comfort of users.
  • a reasonable range of the second preset speed can make the air conditioner The device reduces the temperature difference and quickly achieves comfort in a short time, thereby increasing user satisfaction.
  • the first preset speed is 400r/min
  • the second preset speed is 1000r/min, which can ensure that the wind of the fan works through the vortex ring generator to form a vortex ring airflow, and blows continuously and adequately into the room, while making Indoors can quickly reach comfort and enhance the user experience.
  • a computer-readable storage medium on which a computer program is stored.
  • the steps of the air conditioner control method as in any of the above technical solutions are realized.
  • a computer-readable storage medium is provided with a computer program stored thereon, and when the computer program is executed by a processor, the steps of the control method for an air conditioner as in any of the above technical solutions are realized, and thus the air conditioner All the technical effects of the control method of, will not be repeated here.
  • Fig. 1 shows a schematic structural diagram of an air conditioner according to an embodiment of the present application
  • Fig. 2 shows a schematic structural diagram of a part of an air conditioner according to an embodiment of the present application
  • Fig. 3 shows a schematic structural view of one direction of an air conditioner according to an embodiment of the present application
  • Fig. 4 shows a schematic structural view of another direction of the air conditioner according to an embodiment of the present application
  • Fig. 5 shows a left side view of the air conditioner in Fig. 3 according to an embodiment of the present application
  • Fig. 6 shows a front view of the air conditioner in Fig. 3 according to an embodiment of the present application
  • Fig. 7 shows a top view of the air conditioner in Fig. 3 according to an embodiment of the present application
  • Fig. 8 shows a cross-sectional view of the air conditioner A-A in Fig. 6 according to an embodiment of the present application
  • FIG. 9 shows a schematic flowchart of a control method of an air conditioner according to an embodiment of the present application.
  • FIG. 10 shows a schematic flowchart of a control method of an air conditioner according to another embodiment of the present application.
  • FIG. 11 shows a schematic flowchart of a control method of an air conditioner according to another embodiment of the present application.
  • FIG. 12 shows a schematic flowchart of a control method of an air conditioner according to another embodiment of the present application.
  • FIG. 13 shows a schematic flowchart of a control method of an air conditioner according to another embodiment of the present application.
  • FIG. 14 shows a schematic flowchart of a control method of an air conditioner according to another embodiment of the present application.
  • FIG. 15 shows a schematic flowchart of a control method of an air conditioner according to another embodiment of the present application.
  • FIG. 16 shows a schematic flowchart of a control method of an air conditioner according to another embodiment of the present application.
  • FIGS. 1 to 16 an air conditioner 1, a control method of the air conditioner, and a computer-readable storage medium according to some embodiments of the present application will be described with reference to FIGS. 1 to 16.
  • an embodiment of one aspect of the present application provides an air conditioner 1, including: a vortex ring generating device 14; a fan 16, which works to supply air to the vortex ring generating device 14; and a storage 100 , Is configured to store a computer program; the processor 200 is configured to execute a computer program to achieve: obtain the current operating mode of the air conditioner 1; control the working state of the vortex generator 14 according to the current operating mode.
  • the air conditioner 1 provided by the embodiment provided in this application, as shown in Figs. 1, 2 and 3, includes a vortex ring generator 14, a fan 16, a memory 100 storing a computer program, and a processor 200 executing the stored computer program
  • the processor 200 executes a computer program to implement the following control strategy.
  • the air conditioner 1 discharges air in a conventional laminar or turbulent manner, and its air supply range is small and the air supply distance is short, and the wind generated by the fan 16 passes through the vortex ring generator 14 and then forms a vortex ring airflow to be discharged.
  • the air supply range and air supply distance of the air conditioner 1 are effectively expanded, and the vortex ring air flow is discharged through the vortex ring generator 14, which can realize the directional propagation of the air supply.
  • the vortex ring The generating device 14 reduces the wind speed required for the wind to travel the same distance, thus greatly reducing energy consumption and realizing personalized air supply, reducing the user's use cost and improving the user's experience.
  • the wind of the existing air conditioner 1 is exhausted in a laminar or turbulent manner, so that the user has a concentrated air flow and a strong sense of wind, and the wind is discharged in the form of a vortex ring air flow through the vortex ring generator 14 to make the user experience no
  • the wind-sensing blower can meet the needs of the elderly, children, and patients for air outlet from the air conditioner 1, further expand the use range of the product, and improve the market competitiveness of the product.
  • the prior art improves the user’s comfort in using the air conditioner by increasing the disturbance or reducing the wind speed, but by increasing the disturbance, the energy consumption is not reduced; reducing the wind speed or keeping the wind speed unchanged cannot guarantee the air conditioner 1 blow The wind blows farther, and the wind from the fan 16 is discharged through the vortex ring generator 14 to form a vortex ring airflow, which can make the user experience windless blowing, effectively ensuring the user’s good comfort and expanding the air conditioner
  • the air supply range and air supply distance of the device 1 reduce energy consumption, thereby improving the market competitiveness of the product.
  • the memory 100 may include a mass memory 100 for data or instructions.
  • the memory 100 may include a hard disk drive (Hard Disk Drive, HDD), a floppy disk drive, a flash memory, an optical disk, a magneto-optical disk, a magnetic tape, a Universal Serial Bus (USB) drive, or two or more Multiple combinations of these.
  • the storage 100 may include removable or non-removable (or fixed) media.
  • the memory 100 may be inside or outside the integrated gateway disaster recovery device.
  • the memory 100 is a non-volatile solid-state memory 100.
  • the memory 100 includes read-only memory 100 (ROM).
  • the ROM can be mask-programmed ROM, programmable ROM (PROM), erasable PROM (EPROM), electrically erasable PROM (EEPROM), electrically rewritable ROM (EAROM) or flash memory or A combination of two or more of these.
  • the foregoing processor 200 may include a central processing unit 200 (CPU), or a specific integrated circuit (Application Specific Integrated Circuit, ASIC), or may be configured to implement one or more integrated circuits of the embodiments of the present application, and the processor 200 may also It is a microcontroller, such as an embedded controller such as a single chip microcomputer, to realize the intelligent identification and automatic control of the system.
  • CPU central processing unit 200
  • ASIC Application Specific Integrated Circuit
  • the processor 200 executes a computer program to implement the step of controlling the working state of the scroll generator 14 according to the current operating mode, including: judging whether the current operating mode is a cooling mode, One of the hot mode or the air supply mode; if so, the vortex ring generator 14 is controlled to work; otherwise, the vortex ring generator 14 is controlled to stop working.
  • the current operation mode of the air conditioner 1 includes air supply action, and the scroll generator 14 is controlled to work .
  • the air conditioner 1 is made to emit wind in the form of vortex airflow, thereby expanding the air supply range and air supply distance of the air conditioner 1, and can realize the directional propagation of the air supply.
  • the vortex The ring generating device 14 reduces the wind speed required for the wind to propagate the same distance, thus greatly reducing energy consumption and realizing personalized air supply, reducing the user's use cost and improving the user's experience.
  • the wind of the existing air conditioner 1 is exhausted in a laminar or turbulent manner, so that the user has a concentrated air flow, and the body feels that the wind is relatively large, and the wind is discharged through the vortex ring generator 14 in the form of vortex airflow, so that the user can experience no wind. Feel the wind and improve user satisfaction.
  • none of the current operating modes are cooling mode, heating mode or air supply mode, it means that the current operating mode of the air conditioner 1 does not include air supply action, and the control scroll generator 14 stops working, avoiding the air conditioner 1 not including air supply action
  • the problem of energy waste in the work of the vortex ring generator 14 effectively reduces the user's use cost and improves the market competitiveness of the product.
  • the processor 200 is further configured to execute a computer program to control the operation of the scroll generating device 14, specifically including: obtaining the fan 16 based on the current operating mode being the cooling mode or the heating mode Current operating speed; according to the current operating speed, adjust the operating speed of the fan 16 and control the operation of the vortex ring generator 14.
  • the current operating speed of the fan 16 is obtained, and the operating speed of the fan 16 is adjusted according to the current operating speed, and the operation of the vortex generating device 14 is controlled to avoid changing
  • the wind with a large temperature difference directly blows to the user and reduces the user's blowing experience.
  • it can make the indoor temperature quickly reach a comfortable level, improve the user's satisfaction, and make the user experience windless blowing, which improves the user's blowing experience.
  • controlling the work of the vortex ring generator 14 can include adjusting the driving frequency of the vortex ring generator 14, adjusting the transmission distance and transmission range of the vortex ring airflow of the vortex ring generator 14, or other parameters that meet the requirements. .
  • the processor 200 executes a computer program to realize the steps of adjusting the operating speed of the fan 16 according to the current operating speed, and controlling the operation of the vortex generating device 14, specifically including: At the first preset speed, the fan 16 is controlled to increase the operating speed, and the vortex ring generator 14 is controlled to work at the first driving frequency.
  • the vortex generating device 14 is controlled to Working at the first drive frequency is conducive to the rapid formation and transmission of the vortex ring airflow in a larger range and a longer transmission distance, which enables a larger range of indoors to receive the vortex ring airflow formed by the vortex ring generator 14, thereby expanding the experience
  • the range of wind without wind can make the indoor temperature quickly reach a comfortable level and improve the user experience.
  • the processor executes the computer program to realize the steps of adjusting the operating speed of the fan 16 according to the current operating speed, and controlling the operation of the vortex generating device 14, specifically including: based on the current operating speed being greater than the first Two preset speeds, controlling the fan 16 to reduce the running speed, and controlling the vortex ring generator 14 to work at the second driving frequency; wherein the first preset speed is less than the second preset speed; the first driving frequency is greater than the second driving frequency.
  • the fan 16 is controlled to reduce the operating speed.
  • the vortex ring generator 14 works at the second driving frequency.
  • the first driving frequency is greater than the second driving frequency, which slows down the formation speed of the vortex ring airflow, and transmits in a smaller range and the transmission distance is shorter, which can avoid the vortex ring.
  • the driving frequency of the generating device 14 is relatively large, so that a large amount of vortex airflow with a large temperature difference is transmitted to the room, thereby reducing the user's comfort, effectively ensuring the user's blowing comfort and improving the user's blowing experience.
  • the processor executes the computer program to realize the steps of adjusting the operating speed of the fan 16 according to the current operating speed, and controlling the operation of the vortex generating device 14, which specifically includes: based on the current operating speed greater than or Equal to the first preset speed and less than or equal to the second preset speed, the fan 16 is controlled to run at the current operating speed, and the vortex ring generator 14 is controlled to work at the third driving frequency; wherein the second driving frequency is greater than the third driving frequency .
  • the current room temperature is equivalent to the preset temperature.
  • the fan 16 is controlled to run at the current operating speed and the vortex is controlled.
  • the ring generator 14 works at the third driving frequency.
  • the second driving frequency is greater than the third driving frequency, which further reduces the formation speed of the vortex ring airflow, and ensures proper air supply range and air supply distance, which can keep the current indoor temperature for a long time. It is consistent with the preset temperature, so that the indoor comfort can be maintained for a long time, and the user experience is improved.
  • the processor 200 is further configured to execute a computer program to realize: based on the current operating speed being less than the first preset speed, controlling the compressor of the air conditioner 1 to reduce the frequency; The operating speed is greater than the second preset speed, the compressor of the air conditioner 1 is controlled to increase the frequency; based on the current operating speed being greater than or equal to the first preset speed and less than or equal to the second preset speed, the compressor of the air conditioner 1 is controlled to keep The current frequency is unchanged.
  • the compressor of the air conditioner 1 By controlling the compressor of the air conditioner 1 to reduce the frequency, it is avoided that the compressor frequency is greatly increased. Thermal efficiency makes the temperature difference larger. Running the compressor at a smaller frequency can ensure that the air conditioner 1 has a certain amount of heat exchange and is helpful to maintain a comfortable indoor temperature; based on the current operating speed greater than the second preset speed, it indicates that the current indoor There is a big difference between the temperature and the preset temperature.
  • the processor 200 is further configured to execute a computer program to realize that based on the current operating mode as the air supply mode, after the step of controlling the operation of the vortex generating device 14, the method further includes: obtaining the current status of the fan 16 Operating speed; based on the current operating speed being less than the first preset speed, the fan 16 is controlled to run at the first preset speed; based on the current operating speed greater than the second preset speed, the fan 16 is controlled to run at the second preset speed; based on the current running If the rotation speed is greater than or equal to the first preset rotation speed and less than or equal to the second preset rotation speed, the fan 16 is controlled to run at the current operating rotation speed; wherein the first preset rotation speed is less than the second preset rotation speed.
  • the vortex generating device 14 is controlled to work, which can expand the air supply range and air supply distance of the air conditioner 1, reduce energy consumption, and make the user experience no wind. Blowing, improve user satisfaction.
  • the current operating speed of the fan 16 By acquiring the current operating speed of the fan 16, based on the fact that the current operating speed is less than the first preset speed, it indicates that the current wind speed is less different from the preset wind speed. By controlling the fan 16 to run at the first preset speed, the current wind speed can be quickly reduced.
  • the difference between the preset wind speeds makes the current wind speed quickly reach the preset wind speed, thereby improving indoor comfort; based on the current operating speed greater than the second preset speed, the second preset speed is greater than the first preset speed, indicating that the current wind speed is The preset wind speed has a large difference.
  • the second preset speed is greater than the first preset speed, which greatly increases the operating speed of the fan 16 and helps to quickly reduce the current wind speed and the preset wind speed The difference between, which helps the indoor air to quickly reach the user’s comfort level, and improve user satisfaction; based on the current operating speed greater than or equal to the first preset speed and less than or equal to the second preset speed, the current wind speed and the preset speed The wind speed is equivalent and the user's comfort has been reached.
  • the fan 16 to run at the current operating speed the indoor comfort can be maintained for a long time.
  • the first preset rotation speed is 300 r/min to 600 r/min
  • the second preset rotation speed is 900 r/min to 1200 r/min.
  • the range of the first preset speed is 300r/min to 600r/min, which prevents the first preset speed from being too small to form a vortex ring air flow.
  • a reasonable range of the first preset speed can ensure that the vortex Circumferential airflow is effectively formed, and the vortex ring airflow can be adequately and continuously spread, thereby enhancing the user’s blowing experience and improving user satisfaction.
  • the second preset speed is 900r/min to 1200r/min, which avoids that the second preset speed is too large and the difference between the preset temperature is too large and affects the comfort of users.
  • a reasonable range of the second preset speed can make the air conditioner
  • the device 1 reduces the temperature difference in a short time and achieves comfort quickly, thereby improving user satisfaction.
  • the first preset speed is 400r/min
  • the second preset speed is 1000r/min, which can ensure that the working wind of the fan 16 forms a vortex ring airflow through the vortex ring generator 14 and blows continuously and sufficiently into the room. At the same time, the indoor comfort can be quickly reached, and the user experience can be improved.
  • the present application provides an air conditioner 1 with a vortex ring generating device 14, and the air conditioner 1 is provided with a vortex ring generating device 14 inside.
  • vortex ring generating device 14 is connected with air inlet 12 and air outlet 10,
  • vortex ring generating device 14 has a cavity 140 and
  • the vortex ring generating part 144 from the air inlet direction to the air outlet direction, the components of the air conditioner 1 sequentially include the fan 16, the motor 15, the heat exchanger 17, the vortex ring generating part 144, the rectifying plate 18, the cavity 140, and the outlet 142;
  • At the front end of the cavity 140 there is an outlet 142 with a gradual cross-sectional area.
  • the motor 15 and the fan 16 are arranged at the rear end of the cavity 140.
  • the fan 16 is driven by the motor 15 to suck air from the outside and pass through the vortex generating part 144.
  • the rectifying plate 18 is blown out from the outlet 142 through the air outlet 10.
  • the vortex generating device 14 sends the air blown out of the air conditioner to a designated farther position in the form of vortex airflow.
  • the indoor air passes through the heat exchanger 17 under the action of the fan 16 to achieve the vortex generating At the part 144, the vortex ring generating part 144 completes opening and closing within a certain period of time.
  • the air passes through the rectifying plate 18, and the gas in the front end of the cavity 140 is disturbed in the axial direction, thereby making the variable section cavity 140
  • the air flow blown out of the outlet 142 of the air conditioner forms a vortex ring, and the cold air/hot air/humid air is sent to the far end of the room in a circular pattern, which effectively expands the air supply range and air supply distance of the air conditioner 1, and can realize the delivery
  • the wind speed required by the vortex ring generator 14 to propagate the wind the same distance is reduced. Therefore, the energy consumption is greatly reduced and the personalized air supply is realized. This improves the user’s usage cost and enhances the user’s experience.
  • the wind of the existing air conditioner 1 is exhausted in a laminar or turbulent manner, so that the user has a concentrated airflow and a sense of greater wind. And the wind is discharged through the vortex ring generator 14 in the form of vortex airflow to make the user experience no wind Feel the wind and improve user satisfaction.
  • An embodiment of another aspect of the present application provides a method for controlling an air conditioner.
  • the air conditioner includes a vortex ring generating device and a fan, and the fan works to supply air to the vortex ring generating device.
  • a control method of an air conditioner according to an embodiment of the present application includes:
  • the control method of the air conditioner provided by the embodiment of the present application can change the conventional air outlet mode of the air conditioner in the prior art by acquiring the current operating mode of the air conditioner and controlling the working state of the vortex generating device according to the current operating mode. It can be laminar or turbulent. You can control the working state of the vortex ring generator to achieve conventional or vortex ring airflow to achieve personalized airflow, which can satisfy different users for different airflow methods. The demand for improving users’ experience and the market competitiveness of products.
  • the air conditioner in the prior art discharges air in a conventional laminar or turbulent manner, and its air supply range is small and the air supply distance is short, and the wind generated by the fan passes through the vortex ring generator and is discharged as a vortex ring airflow, effectively
  • the air supply range and air supply distance of the air conditioner are expanded, and the vortex ring air flow is discharged through the vortex ring generator, which can realize the directional propagation of the air supply.
  • the vortex ring generator transmits the same wind The wind speed required for the distance of the distance is reduced, therefore, the energy consumption is greatly reduced and the personalized air supply is realized, the user's use cost is reduced and the user's use experience is improved.
  • the wind of the existing air conditioner is exhausted in a laminar or turbulent manner, so that the user has a concentrated airflow and a strong sense of wind, and the wind is discharged in the form of vortex airflow through the vortex ring generator to make the user experience no wind.
  • the blower can meet the needs of the elderly, children, and patients for air outlets from the air conditioner, further expand the scope of use of the product, and improve the market competitiveness of the product.
  • the prior art improves the user’s comfort in using the air conditioner by increasing the disturbance or reducing the wind speed, but by increasing the disturbance, the energy consumption is not reduced; reducing the wind speed or keeping the wind speed unchanged cannot guarantee the wind blown out of the air conditioner. Blowing to farther places, and the wind from the fan is discharged through the vortex ring generator and then forms a vortex ring airflow, which can make users experience windless blowing, which effectively guarantees the user’s good comfort and expands the air conditioner’s delivery. Wind range and air supply distance, and reduce energy consumption, thereby improving the market competitiveness of products.
  • a control method of an air conditioner according to another embodiment of the present application includes:
  • the vortex ring generating device by acquiring the current operating mode of the air conditioner, and determining whether the current operating mode is one of the cooling mode, heating mode, or air supply mode, if so, it means that the current operating mode of the air conditioner includes air supply action , Control the operation of the vortex ring generating device, so that the air conditioner discharges air in the form of vortex ring airflow, thereby expanding the air supply range and air supply distance of the air conditioner, and can realize the directional propagation of the air supply, which is similar to the conventional air output of the existing air conditioner In comparison, the vortex ring generating device reduces the wind speed required to propagate the wind the same distance, thus greatly reducing energy consumption and realizing personalized air supply, reducing the user's use cost and improving the user's experience.
  • the wind of the existing air conditioner is exhausted in a laminar or turbulent manner so that the user has a concentrated air flow and a strong sense of wind, and the wind is discharged through the vortex ring generating device in the form of vortex airflow, which enables users to experience windless blowing. , Improve user satisfaction.
  • none of the current operating modes are cooling mode, heating mode or air supply mode, it means that the current operating mode of the air conditioner does not include air supply action, and the vortex ring generator is controlled to stop working, which avoids the air conditioner does not include air supply action and the vortex ring
  • the problem of waste of energy during device work has effectively reduced the user's use cost and improved the market competitiveness of the product.
  • a control method of an air conditioner according to another embodiment of the present application includes:
  • S406 Acquire the current operating speed of the fan based on whether the current operating mode is the cooling mode or the heating mode;
  • the current operating mode of the air conditioner by acquiring the current operating mode of the air conditioner and determining whether the current operating mode is one of the cooling mode, heating mode, or air supply mode, based on whether the current operating mode is the cooling mode or the heating mode, obtain The current running speed of the fan, adjust the running speed of the fan according to the current running speed, and control the operation of the vortex ring generator, which can avoid blowing the wind with a large temperature difference directly to the user and reduce the user's blowing experience, and at the same time can make the indoor temperature fast Achieve comfort, improve user satisfaction, and make the user experience windless blowing, and enhance the user's blowing experience.
  • controlling the work of the vortex ring generating device may include adjusting the driving frequency of the vortex ring generating device, adjusting the transmission distance and transmission range of the vortex ring airflow of the vortex ring generating device, or other parameters that meet the requirements.
  • the current operating modes are cooling mode, heating mode or air supply mode, it means that the current operating mode of the air conditioner does not include air supply action, and the vortex ring generator is controlled to stop working, which avoids the air conditioner does not include air supply action and the vortex ring
  • the problem of waste of energy during device work has effectively reduced the user's use cost and improved the market competitiveness of the product.
  • a control method of an air conditioner according to another embodiment of the present application includes:
  • S504 Determine whether the current operation mode is one of the cooling mode, heating mode or air supply mode, if yes, execute S506, otherwise, execute S510;
  • S506 Acquire the current operating speed of the fan based on whether the current operating mode is the cooling mode or the heating mode;
  • the current operating mode of the air conditioner by acquiring the current operating mode of the air conditioner and determining whether the current operating mode is one of the cooling mode, heating mode, or air supply mode, based on whether the current operating mode is the cooling mode or the heating mode, obtain The current operating speed of the fan, based on the fact that the current operating speed is less than the first preset speed, indicates that the current indoor temperature and the preset temperature are small and close to the comfort of the human body.
  • the vortex generator is controlled to be the first
  • the driving frequency works, which is conducive to the rapid formation of the vortex ring airflow and the transmission in a larger range and the transmission distance is longer, which can make the vortex ring airflow formed by the vortex ring generator be received in a larger range indoors, thereby expanding the experience of no wind
  • the range of the wind can make the indoor temperature quickly reach a comfortable level and improve the user experience.
  • the vortex generator is controlled to stop working, which avoids the air conditioner does not include air supply action.
  • the problem of energy waste in the work of the vortex ring generator effectively reduces the user's use cost and improves the market competitiveness of the product.
  • a control method of an air conditioner according to another embodiment of the present application includes:
  • S604 Determine whether the current operating mode is one of the cooling mode, heating mode or air supply mode, if so, execute S606, otherwise, execute S610;
  • S606 Acquire the current operating speed of the fan based on whether the current operating mode is the cooling mode or the heating mode;
  • S608 Based on the current operating speed being greater than the second preset speed, control the fan to reduce the operating speed, and control the vortex ring generator to work at the second drive frequency; wherein the first preset speed is less than the second preset speed; the first drive frequency Greater than the second driving frequency;
  • the current operating mode of the air conditioner by acquiring the current operating mode of the air conditioner and determining whether the current operating mode is one of the cooling mode, heating mode, or air supply mode, based on whether the current operating mode is the cooling mode or the heating mode, obtain The current running speed of the fan is based on the fact that the current running speed is greater than the second preset speed, and the first preset speed is less than the second preset speed, indicating that the current indoor temperature is significantly different from the preset temperature.
  • control the The ring generator works at the second driving frequency, the first driving frequency is greater than the second driving frequency, which slows down the formation speed of the vortex ring airflow, and transmits in a smaller range and the transmission distance is shorter, which can avoid the vortex ring generator
  • the large driving frequency of the vortex ring causes a large amount of vortex airflow with a large temperature difference to be transmitted indoors, which reduces the comfort of the user, effectively ensures the comfort of the user’s blowing, and improves the user’s blowing experience.
  • the vortex generator is controlled to stop working, which avoids the air conditioner does not include air supply action.
  • the problem of energy waste in the work of the vortex ring generator effectively reduces the user's use cost and improves the market competitiveness of the product.
  • a control method of an air conditioner according to another embodiment of the present application includes:
  • S704 Determine whether the current operating mode is one of the cooling mode, heating mode or air supply mode, if so, execute S706, otherwise, execute S710;
  • S706 Acquire the current operating speed of the fan based on whether the current operating mode is the cooling mode or the heating mode;
  • the current operating mode of the air conditioner by acquiring the current operating mode of the air conditioner and determining whether the current operating mode is one of the cooling mode, heating mode, or air supply mode, based on whether the current operating mode is the cooling mode or the heating mode, obtain The current running speed of the fan, based on the current running speed being greater than or equal to the first preset speed and less than or equal to the second preset speed, indicating that the current room temperature is equivalent to the preset temperature, by controlling the fan to run at the current running speed and controlling the vortex ring
  • the generating device works at the third drive frequency.
  • the second drive frequency is greater than the third drive frequency, which further reduces the formation speed of the vortex ring airflow, and guarantees an appropriate air supply range and air supply distance, which can keep the current indoor temperature in line with the forecast for a long time. Set the temperature to be consistent, so that the indoor comfort can be maintained for a long time, and the user experience is improved.
  • the vortex generator is controlled to stop working, which avoids the air conditioner does not include air supply action.
  • the problem of energy waste in the work of the vortex ring generator effectively reduces the user's use cost and improves the market competitiveness of the product.
  • a control method of an air conditioner according to another embodiment of the present application includes:
  • S804 Determine whether the current operating mode is one of the cooling mode, heating mode or air supply mode, if yes, execute S806, otherwise, execute S814;
  • the current operating mode of the air conditioner by acquiring the current operating mode of the air conditioner and determining whether the current operating mode is one of the cooling mode, heating mode, or air supply mode, based on whether the current operating mode is the cooling mode or the heating mode, obtain The current operating speed of the fan, based on the fact that the current operating speed is less than the first preset speed, indicates that the current indoor temperature and the preset temperature are small and close to the comfort of the human body.
  • the vortex generator is controlled to be the first
  • the driving frequency works, which is conducive to the rapid formation of the vortex ring airflow and the transmission in a larger range and the transmission distance is longer, which can make the vortex ring airflow formed by the vortex ring generator be received in a larger range indoors, thereby expanding the experience of no wind
  • the range of air outlet can make the indoor temperature quickly reach the comfort level and improve the user experience; at the same time, control the compressor of the air conditioner to reduce the frequency, avoiding the high frequency of the compressor to increase the heat exchange efficiency and make the temperature difference larger and compress
  • Running the air conditioner at a lower frequency can ensure that the air conditioner has a certain amount of heat exchange, and is helpful to maintain a comfortable indoor temperature, thereby improving user satisfaction; based on the current operating speed greater than the second preset speed, the first preset speed If the speed is less than the second preset speed, it means that the current indoor temperature is significantly different from the preset temperature.
  • the vortex ring generator is controlled to work at the second driving frequency.
  • the first driving frequency is greater than the second driving frequency, so that the vortex
  • the formation speed of the circulating air flow slows down, and the transmission is carried out in a smaller range and the transmission distance is shorter, which can prevent the large driving frequency of the vortex ring generator from causing a large number of vortex ring airflows with large temperature differences to be transmitted indoors and reduce the user’s Comfort, which effectively guarantees the user’s blowing comfort and enhances the user’s blowing experience.
  • the second drive frequency is greater than the third drive frequency, further reducing the speed of the vortex ring airflow, and ensuring proper air supply range and air supply distance, while controlling the fan to the current
  • the compressor operating at the running speed and controlling the air conditioner keeps the current frequency unchanged, which can keep the current indoor temperature consistent with the preset temperature for a long time, so that the indoor comfort can be maintained for a long time, and the user experience is improved.
  • the vortex generator is controlled to stop working, which avoids the air conditioner does not include air supply action.
  • the problem of energy waste in the work of the vortex ring generator effectively reduces the user's use cost and improves the market competitiveness of the product.
  • a control method of an air conditioner according to another embodiment of the present application includes:
  • S902 Acquire the current operating mode of the air conditioner
  • S904 Determine whether the current operating mode is one of the cooling mode, heating mode or air supply mode, if so, execute S906, otherwise, execute S914;
  • S910 Based on the current operating speed being greater than the second preset speed, control the fan to run at the second preset speed, where the first preset speed is less than the second preset speed;
  • the vortex loop generation is controlled.
  • the operation of the device can expand the air supply range and air supply distance of the air conditioner, and reduce energy consumption. At the same time, it enables users to experience windless blowing, and improves user satisfaction.
  • By obtaining the current running speed of the fan based on the fact that the current running speed is less than the first preset speed, it indicates that the current wind speed is less different from the preset wind speed. By controlling the fan to run at the first preset speed, the current wind speed and the preset speed can be quickly reduced.
  • the difference in wind speed makes the current wind speed quickly reach the preset wind speed, thereby improving indoor comfort; based on the current operating speed greater than the second preset speed, the second preset speed is greater than the first preset speed, indicating that the current wind speed is different from the preset speed
  • the wind speed has a large difference.
  • the vortex generator is controlled to stop working, which avoids the air conditioner does not include air supply action.
  • the problem of energy waste in the work of the vortex ring generator effectively reduces the user's use cost and improves the market competitiveness of the product.
  • the current operating mode of the air conditioner is acquired, the current operating mode is the cooling mode, and the operation of the vortex generating device is controlled, which can expand the air supply range and air supply distance of the air conditioner, and achieve directional air supply, while making The user experience has no sense of wind, which improves user satisfaction. Get the current running speed of the fan. If the current running speed is less than the first preset speed, the current indoor temperature is close to the preset temperature.
  • the fan speed can be increased to the first preset speed, and the vortex generator can be controlled to At the same time, in order to ensure a considerable cooling capacity and maintain a comfortable temperature in the room, the frequency of the compressor is reduced to prevent the indoor temperature from being too cold; if the current operating speed is greater than the second preset speed, the second The preset speed is greater than the first preset speed, indicating that the current indoor temperature and the preset temperature are quite different, and the indoor temperature needs to be cooled.
  • the fan speed can be increased to the second preset speed, and the vortex generator can be controlled to be lower The second driving frequency is working.
  • the first driving frequency is greater than the second driving frequency to prevent large temperature difference pulses from blowing into the room.
  • the vortex ring generator is controlled to work at a smaller third drive frequency, and the second drive frequency is greater than the third drive frequency, and the air conditioner remains Running the current fan speed and compressor frequency can maintain the comfort of indoor temperature for a long time and improve user satisfaction.
  • the first preset speed is 400r/min
  • the second preset speed is 1000r/min, which can ensure that the wind of the fan works through the vortex ring generating device to form a vortex ring airflow, and blows continuously and adequately into the room while making Indoors can quickly reach comfort and enhance the user experience.
  • the present application controls the vortex ring generator to stably generate the vortex ring airflow, and sends the air blown by the air conditioner to a designated farther position. At the same time, it can meet the different needs of users by controlling the fan speed and the working frequency of the compressor. And improve the comfort of the room, thereby increasing the satisfaction of users.
  • a computer-readable storage medium on which a computer program is stored.
  • the steps of the air conditioner control method as in any of the above technical solutions are realized.
  • a computer-readable storage medium is provided with a computer program stored thereon, and when the computer program is executed by a processor, the steps of the control method for an air conditioner as in any of the above technical solutions are realized, and thus the air conditioner All the technical effects of the control method of, will not be repeated here.
  • the computer-readable storage medium may include any medium that can store or transmit information. Examples of computer-readable storage media include electronic circuits, semiconductor memory devices, ROM, flash memory, erasable ROM (EROM), floppy disks, CD-ROMs, optical disks, hard disks, fiber optic media, radio frequency (RF) links, and so on.
  • the code segment can be downloaded via a computer network such as the Internet, an intranet, etc.
  • the term “plurality” refers to two or more than two, unless specifically defined otherwise.
  • the terms “installed”, “connected”, “connected”, “fixed” and other terms should be understood in a broad sense.
  • “connected” can be a fixed connection, a detachable connection, or an integral connection;
  • “connected” can be It is directly connected or indirectly connected through an intermediary.
  • the specific meanings of the above terms in this application can be understood according to specific circumstances.

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Abstract

一种空调器(1)、空调器(1)的控制方法和计算机可读存储介质,空调器(1)包括涡环发生装置(14)、风机(16)、存储器(100)和处理器(200),风机(16)工作以向涡环发生装置(14)送风,存储器(100)被配置为用于存储计算机程序,处理器(200)被配置为用于执行计算机程序以实现:获取空调器(1)的当前运行模式;根据当前运行模式,控制涡环发生装置(14)的工作状态。该方法可实现常规出风或涡环气流出风,改变现有技术中仅能层流或湍流出风的问题;并实现个性化出风,满足不同用户需求,提升使用体验。

Description

空调器、空调器的控制方法和计算机可读存储介质
本申请要求于2019年03月26日提交中国专利局、申请号为“201910234339.0”、发明名称为“空调器、空调器的控制方法和计算机可读存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及家用电器技术领域,具体而言,涉及一种空调器、一种空调器的控制方法和一种计算机可读存储介质。
背景技术
现有的空调器将经过热交换后的气流通过空调器常规风口吹出,其出风方式为常规出风,出风形式多为层流和湍流,且辐射范围短且窄,无法实现大范围送风,降低用户的使用体验。
发明内容
本申请旨在至少解决现有技术或相关技术中存在的技术问题之一。
本申请的一个方面提供了一种空调器。
本申请的另一个方面提供了一种空调器的控制方法。
本申请的再一个方面提供了一种计算机可读存储介质。
有鉴于此,根据本申请的一个方面,提供了一种空调器,包括:涡环发生装置;风机,风机工作以向涡环发生装置送风;存储器,被配置为用于存储计算机程序;处理器,被配置为用于执行计算机程序以实现:获取空调器的当前运行模式;根据当前运行模式,控制涡环发生装置的工作状态。
本申请提供的空调器,包括涡环发生装置、风机、存储计算机程序的存储器及执行存储的计算机程序的处理器,处理器执行计算机程序以实现如下控制策略。通过获取空调器的当前运行模式,根据当前运行模式,控制涡环发生装置的工作状态,能够改变现有技术中空调器的常规出风形式仅能为层流或湍流的问题,可以通过控制涡环发生装置的工作状态来实现 常规出风或以涡环气流的方式出风,进而实现个性化出风,能够满足不同用户对不同出风方式的需求,提升用户的使用体验,提高产品的市场竞争力。
进一步地,现有技术中空调器以层流或湍流的常规方式出风,其送风范围小且送风距离短,而风机工作的风经涡环发生装置后形成涡环气流排出,有效地扩大了空调器的送风范围和送风距离,且涡环气流经涡环发生装置排出,能够实现送风定向传播,与现有空调器常规出风相比,涡环发生装置将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现有空调器的风以层流或湍流的方式排出使用户有气流集中,风力较大的体感,而经涡环发生装置将风以涡环气流的方式排出能够使用户体验无风感吹风,能够满足了老人、儿童、病人对空调器出风的需求,进一步扩大了产品的使用范围,提高产品的市场竞争力。进一步地,现有技术通过增加扰动或者减小风速,提高用户使用空调的舒适性,但是通过增加扰动,能耗却没有减少;减小风速或保持风速不变,不能保证将空调器吹出的风吹向更远的地方,而风机工作的风经涡环发生装置后形成涡环气流排出,能够使用户体验无风感吹风,有效地保证了用户良好的舒适性,同时扩大了空调器的送风范围和送风距离,并降低了能耗,进而提高产品的市场竞争力。
另外,根据本申请提供的上述空调器,还可以具有如下附加技术特征:
在一种可能的设计中,处理器执行计算机程序以实现的根据当前运行模式,控制涡环发生装置工作的工作状态的步骤,包括:判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种;若是,控制涡环发生装置工作;否则,控制涡环发生装置停止工作。
在该设计中,通过判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,说明空调器的当前运行模式包括送风动作,控制涡环发生装置工作,使得空调器以涡环气流的方式出风,进而扩大了空调器的送风范围和送风距离,且能够实现送风定向传播,与现有空调器常规出风相比,涡环发生装置将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现 有空调器的风以层流或湍流的方式排出使用户有气流集中,风力较大的体感,而风经涡环发生装置以涡环气流的方式排出能够使用户体验无风感吹风,提高用户使用的满意度。基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
在一种可能的设计中,处理器还被配置为执行计算机程序以实现控制涡环发生装置工作,具体包括:基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速;根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作。
在该设计中,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速,根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作,能够避免将温差较大的风直接吹向用户而降低用户的吹风体验,同时能够使室内温度快速达到舒适度,提高用户使用的满意度,并使用户体验无风感吹风,提升用户的吹风体验。可以理解的是,控制涡环发生装置的工作可以包括调整涡环发生装置的驱动频率、调整涡环发生装置的涡环气流的传输距离和传输范围,也可以为满足要求的其他参数。
在一种可能的设计中,处理器执行计算机程序以实现根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作的步骤,具体包括:基于当前运行转速小于第一预设转速,控制风机提高运行转速,并控制涡环发生装置以第一驱动频率工作。
在该设计中,基于当前运行转速小于第一预设转速,说明当前室内温度与预设温度相差较小,接近人体的舒适感,通过提高风机的运行转速,控制涡环发生装置以第一驱动频率工作,有利于涡环气流快速形成并以较大的范围传输且传输的距离较远,能够使室内的较大范围接收到涡环发生装置形成的涡环气流,进而扩大体验无风感出风的范围,能够使室内温度快速达到舒适度,提升用户的使用体验。
在一种可能的设计中,处理器执行计算机程序以实现根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作的步骤,具体包括:基于当前 运行转速大于第二预设转速,控制风机降低运行转速,并控制涡环发生装置以第二驱动频率工作;其中,第一预设转速小于第二预设转速;第一驱动频率大于第二驱动频率。
在该设计中,基于当前运行转速大于第二预设转速,第一预设转速小于第二预设转速,说明室内当前温度与预设温度相差较大,通过控制风机降低运行转速,控制涡环发生装置以第二驱动频率工作,第一驱动频率大于第二驱动频率,使涡环气流的形成速度减慢,并以较小的范围传输且传输的距离较短,能够避免涡环发生装置的驱动频率较大而使大量温差较大的涡环气流传输至室内而降低用户的舒适度,有效地保证了用户吹风的舒适度,提升用户的吹风体验。
在一种可能的设计中,处理器执行计算机程序以实现根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作的步骤,具体包括:基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机以当前运行转速运行,并控制涡环发生装置以第三驱动频率工作;其中,第二驱动频率大于第三驱动频率。
在该设计中,基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前室温与预设温度相当,通过控制风机以当前运行转速运行,并控制涡环发生装置以第三驱动频率工作,第二驱动频率大于第三驱动频率,进一步减小涡环气流的形成速度,并保证适当的送风范围和送风距离,能够长时间使当前室内温度与预设温度保持一致,使室内能够长时间保持舒适性,提升用户的使用体验。
在一种可能的设计中,处理器还被配置为用于执行计算机程序以实现:基于当前运行转速小于第一预设转速,控制空调器的压缩机减小频率;基于当前运行转速大于第二预设转速,控制空调器的压缩机增大频率;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制空调器的压缩机保持当前频率不变。
在该设计中,基于当前运行转速小于第一预设转速,说明当前室内温度与预设温度相差较小,通过控制空调器的压缩机减小频率,避免了压缩机频率较大提高换热效率而使温差较大,压缩机以较小的频率运行能够保证空调器具 有一定的热量交换,且有利于保持室内舒适的温度;基于当前运行转速大于第二预设转速,说明当前室内温度与预设温度相差较大,通过控制空调器的压缩机增大频率,提高换热效率,有利于快速减小当前室内温度与预设温度的温差,使当前室内温度快速达到预设温度,进而提高室内温度的舒适度;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前室内温度与预设温度相当,通过控制空调器的压缩机保持当前频率不变,能够长时间保持室内温度的舒适度,提高用户使用的满意度。
在一种可能的设计中,处理器还被配置为执行计算机程序以实现基于当前运行模式为送风模式,控制涡环发生装置工作的步骤之后,还包括:获取风机的当前运行转速;基于当前运行转速小于第一预设转速,控制风机以第一预设转速运行;基于当前运行转速大于第二预设转速,控制风机以第二预设转速运行;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机以当前运行转速运行;其中,第一预设转速小于第二预设转速。
在该设计中,基于当前运行模式为送风模式,控制涡环发生装置工作,能够扩大了空调器的送风范围和送风距离,并降低能耗,同时使用户体验无风感吹风,提升用户使用的满意度。通过获取风机的当前运行转速,基于当前运行转速小于第一预设转速,说明当前风速与预设风速相差较小,通过控制风机以第一预设转速运行,能够快速减小当前风速与预设风速的差值,使当前风速快速达到预设风速,进而提高室内的舒适度;基于当前运行转速大于第二预设转速,第二预设转速大于第一预设转速,说明当前风速与预设风速相差较大,通过控制风机以第二预设转速运行,大大提高了风机的运行转速,有利于快速缩小当前风速和预设风速的差值,有利于室内空气快速达到用户的舒适度,提高用户使用的满意度;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前风速与预设风速相当,已达到用户的舒适度,通过控制风机以当前运行转速运行,能够长时间保持室内的舒适度。
在一种可能的设计中,第一预设转速为300r/min至600r/min,第二预设转速为900r/min至1200r/min。
在该设计中,第一预设转速的范围为300r/min至600r/min,避免了第一预设转速太小而无法形成涡环气流,第一预设转速合理的范围,能够保证涡环 气流有效形成,并保证涡环气流能够充足、连续地传播,进而提升用户的吹风体验,提高用户使用的满意度。
第二预设转速为900r/min至1200r/min,避免了第二预设转速太大与预设温度差值过大而影响用户的舒适度,第二预设转速合理的范围,能够使空调器在短时间内缩小温差并快速达到舒适度,进而提高用户使用的满意度。
进一步地,第一预设转速为400r/min,第二预设转速为1000r/min,能够保证风机工作的风经涡环发生装置形成涡环气流,并连续、充足的吹向室内,同时使室内能够快速达到舒适度,提升用户的使用体验。
根据本申请的另一个方面,提供了一种空调器的控制方法,空调器包括涡环发生装置和风机,风机工作以向涡环发生装置送风,其中,空调器的控制方法包括:获取空调器的当前运行模式;根据当前运行模式控制涡环发生装置的工作状态。
本申请的实施例提供的空调器的控制方法,空调器包括涡环发生装置和风机,风机工作以向涡环发生装置送风。通过获取空调器的当前运行模式,根据当前运行模式,控制涡环发生装置的工作状态,能够改变现有技术中空调器的常规出风形式仅能为层流或湍流的问题,可以通过控制涡环发生装置的工作状态来实现常规出风或以涡环气流的方式出风,进而实现个性化出风,能够满足不同用户对不同出风方式的需求,提升用户的使用体验,提高产品的市场竞争力。进一步地,现有技术中空调器以层流或湍流的常规方式出风,其送风范围小且送风距离短,而风机工作的风经涡环发生装置后形成涡环气流排出,有效地扩大了空调器的送风范围和送风距离,且涡环气流经涡环发生装置排出,能够实现送风定向传播,与现有空调器常规出风相比,涡环发生装置将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现有空调器的风以层流或湍流的方式排出使用户有气流集中,风力较大的体感,而风经涡环发生装置将风以涡环气流的方式排出能够使用户体验无风感吹风,能够满足了老人、儿童、病人对空调器出风的需求,进一步扩大了产品的使用范围,提高产品的市场竞争力。
进一步地,现有技术通过增加扰动或者减小风速,提高用户使用空调的舒 适性,但是通过增加扰动,能耗却没有减少;减小风速或保持风速不变,不能保证将空调吹出的风吹动更远的地方,而风机工作的风经涡环发生装置后形成涡环气流排出,能够使用户体验无风感吹风,有效地保证了用户良好的舒适性,同时扩大了空调器的送风范围和送风距离,并降低了能耗,进而提高产品的市场竞争力。
在一种可能的设计中,根据当前运行模式,控制涡环发生装置工作的工作状态的步骤,具体包括:判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种;若是,控制涡环发生装置工作;否则,控制涡环发生装置停止工作。
在该设计中,通过判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,说明空调器的当前运行模式包括送风动作,控制涡环发生装置工作,使得空调器以涡环气流的方式出风,进而扩大了空调器的送风范围和送风距离,且能够实现送风定向传播,与现有空调器常规出风相比,涡环发生装置将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现有空调器的风以层流或湍流的方式排出使用户有气流集中,风力较大的体感,而风经涡环发生装置以涡环气流的方式排出能够使用户体验无风感吹风,提高用户使用的满意度。基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
在一种可能的设计中,控制涡环发生装置工作,具体包括:基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速;根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作。
在该设计中,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速,根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作,能够避免将温差较大的风直接吹向用户而降低用户的吹风体验,同时能够使室内温度快速达到舒适度,提高用户使用的满意度,并使用户体验无风感吹风,提升用户的吹风体验。可以理解的是,控制涡环发生装置的工作可以包 括调整涡环发生装置的驱动频率、调整涡环发生装置的涡环气流的传输距离和传输范围,也可以为满足要求的其他参数。
在一种可能的设计中,根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作的步骤,具体包括:基于当前运行转速小于第一预设转速,控制风机提高运行转速,并控制涡环发生装置以第一驱动频率工作。
在该设计中,基于当前运行转速小于第一预设转速,说明当前室内温度与预设温度相差较小,接近人体的舒适感,通过提高风机的运行转速,控制涡环发生装置以第一驱动频率工作,有利于涡环气流快速形成并以较大的范围传输且传输的距离较远,能够使室内的较大范围接收到涡环发生装置形成的涡环气流,进而扩大体验无风感出风的范围,能够使室内温度快速达到舒适度,提升用户的使用体验。
在一种可能的设计中,根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作的步骤,具体包括:基于当前运行转速大于第二预设转速,控制风机降低运行转速,并控制涡环发生装置以第二驱动频率工作;其中,第一预设转速小于第二预设转速;第一驱动频率大于第二驱动频率。
在该设计中,基于当前运行转速大于第二预设转速,第一预设转速小于第二预设转速,说明室内当前温度与预设温度相差较大,通过控制风机降低运行转速,控制涡环发生装置以第二驱动频率工作,第一驱动频率大于第二驱动频率,使涡环气流的形成速度减慢,并以较小的范围传输且传输的距离较短,能够避免涡环发生装置的驱动频率较大而使大量温差较大的涡环气流传输至室内而降低用户的舒适度,有效地保证了用户吹风的舒适度,提升用户的吹风体验。
在一种可能的设计中,根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作的步骤,具体包括:基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机以当前运行转速运行,并控制涡环发生装置以第三驱动频率工作;其中,第二驱动频率大于第三驱动频率。
在该设计中,基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前室温与预设温度相当,通过控制风机以当前运行转速运行,并控制涡环发生装置以第三驱动频率工作,第二驱动频率大于第三驱动 频率,进一步减小涡环气流的形成速度,并保证适当的送风范围和送风距离,能够长时间使当前室内温度与预设温度保持一致,使室内能够长时间保持舒适性,提升用户的使用体验。
在一种可能的设计中,还包括:基于当前运行转速小于第一预设转速,控制空调器的压缩机减小频率;基于当前运行转速大于第二预设转速,控制空调器的压缩机增大频率;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制空调器的压缩机保持当前频率不变。
在该设计中,基于当前运行转速小于第一预设转速,说明当前室内温度与预设温度相差较小,通过控制空调器的压缩机减小频率,避免了压缩机频率较大提高换热效率而使温差较大,压缩机以较小的频率运行能够保证空调器具有一定的热量交换,且有利于保持室内舒适的温度;基于当前运行转速大于第二预设转速,说明当前室内温度与预设温度相差较大,通过控制空调器的压缩机增大频率,提高换热效率,有利于快速减小当前室内温度与预设温度的温差,使当前室内温度快速达到预设温度,进而提高室内温度的舒适度;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前室内温度与预设温度相当,通过控制空调器的压缩机保持当前频率不变,能够长时间保持室内温度的舒适度,提高用户使用的满意度。
在一种可能的设计中,基于当前运行模式为送风模式,控制涡环发生装置工作的步骤之后,还包括:获取风机的当前运行转速;基于当前运行转速小于第一预设转速,控制风机以第一预设转速运行;基于当前运行转速大于第二预设转速,控制风机以第二预设转速运行;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机以当前运行转速运行;其中,第一预设转速小于第二预设转速。
在该设计中,基于当前运行模式为送风模式,控制涡环发生装置工作,能够扩大了空调器的送风范围和送风距离,并降低能耗,同时使用户体验无风感吹风,提升用户使用的满意度。通过获取风机的当前运行转速,基于当前运行转速小于第一预设转速,说明当前风速与预设风速相差较小,通过控制风机以第一预设转速运行,能够快速减小当前风速与预设风速的差值,使当前风速快速达到预设风速,进而提高室内的舒适度;基于当前运行转速大于第二预设 转速,说明当前风速与预设风速相差较大,通过控制风机以第二预设转速运行,第二预设转速大于第一预设转速,大大提高了风机的运行转速,有利于快速缩小当前风速和预设风速的差值,有利于室内空气快速达到用户的舒适度,提高用户使用的满意度;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前风速与预设风速相当,已达到用户的舒适度,通过控制风机以当前运行转速运行,能够长时间保持室内的舒适度。
在一种可能的设计中,第一预设转速为300r/min至600r/min,第二预设转速为900r/min至1200r/min。
在该设计中,第一预设转速的范围为300r/min至600r/min,避免了第一预设转速太小而无法形成涡环气流,第一预设转速合理的范围,能够保证涡环气流有效形成,并保证涡环气流能够充足、连续地传播,进而提升用户的吹风体验,提高用户使用的满意度。
第二预设转速为900r/min至1200r/min,避免了第二预设转速太大与预设温度差值过大而影响用户的舒适度,第二预设转速合理的范围,能够使空调器在短时间内缩小温差并快速达到舒适度,进而提高用户使用的满意度。
进一步地,第一预设转速为400r/min,第二预设转速为1000r/min,能够保证风机工作的风经涡环发生装置形成涡环气流,并连续、充足的吹向室内,同时使室内能够快速达到舒适度,提升用户的使用体验。
根据本申请的再一个方面,提供了一种计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现如上述任一技术方案的空调器的控制方法的步骤。
根据本申请的再一个方面提供的计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现如上述任一技术方案的空调器的控制方法的步骤,因而具有该空调器的控制方法的全部技术效果,在此不再赘述。
本申请的附加方面和优点将在下面的描述部分中变得明显,或通过本申请的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描 述中将变得明显和容易理解,其中:
图1示出了根据本申请的一个实施例中空调器的结构示意图;
图2示出了根据本申请一个实施例的空调器的部分的结构示意图;
图3示出了根据本申请一个实施例的空调器的一个方向的结构示意图;
图4示出了根据本申请一个实施例的空调器的又一个方向的结构示意图;
图5示出了图3中根据本申请一个实施例的空调器的左视图;
图6示出了图3中根据本申请一个实施例的空调器的主视图;
图7示出了图3中根据本申请一个实施例的空调器的俯视图;
图8示出了图6中根据本申请一个实施例的空调器的A-A的剖视图;
图9示出了本申请一个实施例的空调器的控制方法的流程示意图;
图10示出了本申请另一个实施例的空调器的控制方法的流程示意图;
图11示出了本申请又一个实施例的空调器的控制方法的流程示意图;
图12示出了本申请又一个实施例的空调器的控制方法的流程示意图;
图13示出了本申请又一个实施例的空调器的控制方法的流程示意图;
图14示出了本申请又一个实施例的空调器的控制方法的流程示意图;
图15示出了本申请又一个实施例的空调器的控制方法的流程示意图;
图16示出了本申请又一个实施例的空调器的控制方法的流程示意图。
其中,图2至图8中附图标记与部件名称之间的对应关系为:
1空调器,10出风口,12进风口,14涡环发生装置,140腔体,142出口,144涡环发生部,15电机,16风机,17换热器,18整流板。
具体实施方式
为了能够更清楚地理解本申请的上述目的、特征和优点,下面结合附图和具体实施方式对本申请进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本申请,但是,本申请还可以采用其他不同于在此描述的其他方式来实施,因此,本申请 的保护范围并不受下面公开的具体实施例的限制。
下面参照图1至图16描述根据本申请一些实施例的空调器1、空调器的控制方法和计算机可读存储介质。
如图1至图8所示,本申请一个方面的实施例提供了一种空调器1,包括:涡环发生装置14;风机16,风机16工作以向涡环发生装置14送风;存储器100,被配置为用于存储计算机程序;处理器200,被配置为用于执行计算机程序以实现:获取空调器1的当前运行模式;根据当前运行模式,控制涡环发生装置14的工作状态。
本申请提供的实施例提供的空调器1,如图1、图2和图3所示,包括涡环发生装置14、风机16、存储计算机程序的存储器100及执行存储的计算机程序的处理器200,处理器200执行计算机程序以实现如下控制策略。通过获取空调器1的当前运行模式,根据当前运行模式,控制涡环发生装置14的工作状态,能够改变现有技术中空调器1的常规出风形式仅能为层流或湍流的问题,可以通过控制涡环发生装置14的工作状态来实现常规出风或以涡环气流的方式出风,进而实现个性化出风,能够满足不同用户对不同出风方式的需求,提升用户的使用体验,提高产品的市场竞争力。
进一步地,现有技术中空调器1以层流或湍流的常规方式出风,其送风范围小且送风距离短,而风机16工作的风经涡环发生装置14后形成涡环气流排出,有效地扩大了空调器1的送风范围和送风距离,且涡环气流经涡环发生装置14排出,能够实现送风定向传播,与现有空调器1常规出风相比,涡环发生装置14将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现有空调器1的风以层流或湍流的方式排出使用户有气流集中,风力较大的体感,而经涡环发生装置14将风以涡环气流的方式排出能够使用户体验无风感吹风,能够满足了老人、儿童、病人对空调器1出风的需求,进一步扩大了产品的使用范围,提高产品的市场竞争力。
进一步地,现有技术通过增加扰动或者减小风速,提高用户使用空调的舒适性,但是通过增加扰动,能耗却没有减少;减小风速或保持风速不变,不能保证将空调器1吹出的风吹向更远的地方,而风机16工作的风经涡环发生装 置14后形成涡环气流排出,能够使用户体验无风感吹风,有效地保证了用户良好的舒适性,同时扩大了空调器1的送风范围和送风距离,并降低了能耗,进而提高产品的市场竞争力。
具体地,存储器100可以包括用于数据或指令的大容量存储器100。举例来说而非限制,存储器100可包括硬盘驱动器(Hard Disk Drive,HDD)、软盘驱动器、闪存、光盘、磁光盘、磁带或通用串行总线(Universal Serial Bus,USB)驱动器或者两个或更多个以上这些的组合。在合适的情况下,存储器100可包括可移除或不可移除(或固定)的介质。在合适的情况下,存储器100可在综合网关容灾设备的内部或外部。在特定实施例中,存储器100是非易失性固态存储器100。在特定实施例中,存储器100包括只读存储器100(ROM)。在合适的情况下,该ROM可以是掩模编程的ROM、可编程ROM(PROM)、可擦除PROM(EPROM)、电可擦除PROM(EEPROM)、电可改写ROM(EAROM)或闪存或者两个或更多个以上这些的组合。
上述处理器200可以包括中央处理器200(CPU),或者特定集成电路(Application Specific Integrated Circuit,ASIC),或者可以被配置成实施本申请实施例的一个或多个集成电路,处理器200还可为微控制器,如单片机等嵌入式控制器,以实现***的智能识别和自动化控制。
本申请的一个实施例中,具体地,处理器200执行计算机程序以实现的根据当前运行模式,控制涡环发生装置14工作的工作状态的步骤,包括:判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种;若是,控制涡环发生装置14工作;否则,控制涡环发生装置14停止工作。
在该实施例中,通过判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,说明空调器1的当前运行模式包括送风动作,控制涡环发生装置14工作,使得空调器1以涡环气流的方式出风,进而扩大了空调器1的送风范围和送风距离,且能够实现送风定向传播,与现有空调器1常规出风相比,涡环发生装置14将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现有空调器1的风以层流或湍流的方式排出使用户有气流集中, 风力较大的体感,而风经涡环发生装置14以涡环气流的方式排出能够使用户体验无风感吹风,提高用户使用的满意度。基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器1的当前运行模式不包括送风动作,控制涡环发生装置14停止工作,避免了空调器1不包括送风动作而涡环发生装置14工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
本申请的一个实施例中,具体地,处理器200还被配置为执行计算机程序以实现控制涡环发生装置14工作,具体包括:基于当前运行模式为制冷模式或制热模式,获取风机16的当前运行转速;根据当前运行转速,调整风机16的运行转速,并控制涡环发生装置14工作。
在该实施例中,基于当前运行模式为制冷模式或制热模式,获取风机16的当前运行转速,根据当前运行转速,调整风机16的运行转速,并控制涡环发生装置14工作,能够避免将温差较大的风直接吹向用户而降低用户的吹风体验,同时能够使室内温度快速达到舒适度,提高用户使用的满意度,并使用户体验无风感吹风,提升用户的吹风体验。可以理解的是,控制涡环发生装置14的工作可以包括调整涡环发生装置14的驱动频率、调整涡环发生装置14的涡环气流的传输距离和传输范围,也可以为满足要求的其他参数。
本申请的一个实施例中,具体地,处理器200执行计算机程序以实现根据当前运行转速,调整风机16的运行转速,并控制涡环发生装置14工作的步骤,具体包括:基于当前运行转速小于第一预设转速,控制风机16提高运行转速,并控制涡环发生装置14以第一驱动频率工作。
在该实施例中,基于当前运行转速小于第一预设转速,说明当前室内温度与预设温度相差较小,接近人体的舒适感,通过提高风机16的运行转速,控制涡环发生装置14以第一驱动频率工作,有利于涡环气流快速形成并以较大的范围传输且传输的距离较远,能够使室内的较大范围接收到涡环发生装置14形成的涡环气流,进而扩大体验无风感出风的范围,能够使室内温度快速达到舒适度,提升用户的使用体验。
本申请的一个实施例中,具体地,处理器执行计算机程序以实现根据当前运行转速,调整风机16的运行转速,并控制涡环发生装置14工作的步骤,具体包括:基于当前运行转速大于第二预设转速,控制风机16降低运行转速, 并控制涡环发生装置14以第二驱动频率工作;其中,第一预设转速小于第二预设转速;第一驱动频率大于第二驱动频率。
在该实施例中,基于当前运行转速大于第二预设转速,第一预设转速小于第二预设转速,说明室内当前温度与预设温度相差较大,通过控制风机16降低运行转速,控制涡环发生装置14以第二驱动频率工作,第一驱动频率大于第二驱动频率,使涡环气流的形成速度减慢,并以较小的范围传输且传输的距离较短,能够避免涡环发生装置14的驱动频率较大而使大量温差较大的涡环气流传输至室内而降低用户的舒适度,有效地保证了用户吹风的舒适度,提升用户的吹风体验。
本申请的一个实施例中,具体地,处理器执行计算机程序以实现根据当前运行转速,调整风机16的运行转速,并控制涡环发生装置14工作的步骤,具体包括:基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机16以当前运行转速运行,并控制涡环发生装置14以第三驱动频率工作;其中,第二驱动频率大于第三驱动频率。
在该实施例中,基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前室温与预设温度相当,通过控制风机16以当前运行转速运行,并控制涡环发生装置14以第三驱动频率工作,第二驱动频率大于第三驱动频率,进一步减小涡环气流的形成速度,并保证适当的送风范围和送风距离,能够长时间使当前室内温度与预设温度保持一致,使室内能够长时间保持舒适性,提升用户的使用体验。
本申请的一个实施例中,具体地,处理器200还被配置为用于执行计算机程序以实现:基于当前运行转速小于第一预设转速,控制空调器1的压缩机减小频率;基于当前运行转速大于第二预设转速,控制空调器1的压缩机增大频率;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制空调器1的压缩机保持当前频率不变。
在该实施例中,基于当前运行转速小于第一预设转速,说明当前室内温度与预设温度相差较小,通过控制空调器1的压缩机减小频率,避免了压缩机频率较大提高换热效率而使温差较大,压缩机以较小的频率运行能够保证空调器1具有一定的热量交换,且有利于保持室内舒适的温度;基于当前运行转速 大于第二预设转速,说明当前室内温度与预设温度相差较大,通过控制空调器1的压缩机增大频率,提高换热效率,有利于快速减小当前室内温度与预设温度的温差,使当前室内温度快速达到预设温度,进而提高室内温度的舒适度;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前室内温度与预设温度相当,通过控制空调器1的压缩机保持当前频率不变,能够长时间保持室内温度的舒适度,提高用户使用的满意度。
本申请的一个实施例中,具体地,处理器200还被配置为执行计算机程序以实现基于当前运行模式为送风模式,控制涡环发生装置14工作的步骤之后还包括:获取风机16的当前运行转速;基于当前运行转速小于第一预设转速,控制风机16以第一预设转速运行;基于当前运行转速大于第二预设转速,控制风机16以第二预设转速运行;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机16以当前运行转速运行;其中,第一预设转速小于第二预设转速。
在该实施例中,基于当前运行模式为送风模式,控制涡环发生装置14工作,能够扩大了空调器1的送风范围和送风距离,并降低能耗,同时使用户体验无风感吹风,提升用户使用的满意度。通过获取风机16的当前运行转速,基于当前运行转速小于第一预设转速,说明当前风速与预设风速相差较小,通过控制风机16以第一预设转速运行,能够快速减小当前风速与预设风速的差值,使当前风速快速达到预设风速,进而提高室内的舒适度;基于当前运行转速大于第二预设转速,第二预设转速大于第一预设转速,说明当前风速与预设风速相差较大,通过控制风机16以第二预设转速运行,第二预设转速大于第一预设转速,大大提高了风机16的运行转速,有利于快速缩小当前风速和预设风速的差值,有利于室内空气快速达到用户的舒适度,提高用户使用的满意度;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前风速与预设风速相当,已达到用户的舒适度,通过控制风机16以当前运行转速运行,能够长时间保持室内的舒适度。
本申请的一个实施例中,具体地,第一预设转速为300r/min至600r/min,第二预设转速为900r/min至1200r/min。
在该实施例中,第一预设转速的范围为300r/min至600r/min,避免了第 一预设转速太小而无法形成涡环气流,第一预设转速合理的范围,能够保证涡环气流有效形成,并保证涡环气流能够充足、连续地传播,进而提升用户的吹风体验,提高用户使用的满意度。
第二预设转速为900r/min至1200r/min,避免了第二预设转速太大与预设温度差值过大而影响用户的舒适度,第二预设转速合理的范围,能够使空调器1在短时间内缩小温差并快速达到舒适度,进而提高用户使用的满意度。
进一步地,第一预设转速为400r/min,第二预设转速为1000r/min,能够保证风机16工作的风经涡环发生装置14形成涡环气流,并连续、充足的吹向室内,同时使室内能够快速达到舒适度,提升用户的使用体验。
在具体实施例中,如图4、图5、图6、图7和图8所示,本申请提供的具有涡环发生装置14的空调器1,空调器1内部设置有涡环发生装置14、换热器17、风机16、电机15、整流板18、进风口12和出风口10;涡环发生装置14与进风口12和出风口10相连通,涡环发生装置14具有腔体140和涡环发生部144,从进风方向到出风方向,空调器1的部件依次有风机16、电机15、换热器17、涡环发生部144、整流板18、腔体140、出口142;在腔体140的前端,具有横截面面积渐变的出口142,电机15和风机16设置在腔体140的后端,风机16在电机15的驱动下,从外界吸入空气,经过涡环发生部144、整流板18,从出口142经出风口10吹出。本申请通过涡环发生装置14,将空调器吹出的风以涡环气流的方式送达指定的更远的位置,室内的空气在风机16的作用下,经过换热器17,达到涡环发生部144处,涡环发生部144在一定时间内完成打开和关闭,空气经过整流板18,在腔体140前端的内部对其中气体施加了轴向上的扰动,进而使得从变截面腔体140的出口142吹出的气流形成涡环,冷空气/热空气/湿润的空气以环形的样式送到房间的远端,有效地扩大了空调器1的送风范围和送风距离,且能够实现送风定向传播,与现有空调器1常规出风相比,涡环发生装置14将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现有空调器1的风以层流或湍流的方式排出使用户有气流集中,风力较大的体感,而风经涡环发生装置14以涡环气流的方式排出能够使用户体验无风感吹 风,提高用户使用的满意度。
本申请另一个方面的实施例提供了一种空调器的控制方法,空调器包括涡环发生装置和风机,风机工作以向涡环发生装置送风。
如图9所示,根据本申请一个实施例的空调器的控制方法包括:
S202,获取空调器的当前运行模式;
S204,根据当前运行模式控制涡环发生装置的工作状态。
本申请的实施例提供的空调器的控制方法,通过获取空调器的当前运行模式,根据当前运行模式,控制涡环发生装置的工作状态,能够改变现有技术中空调器的常规出风形式仅能为层流或湍流的问题,可以通过控制涡环发生装置的工作状态来实现常规出风或以涡环气流的方式出风,进而实现个性化出风,能够满足不同用户对不同出风方式的需求,提升用户的使用体验,提高产品的市场竞争力。
进一步地,现有技术中空调器以层流或湍流的常规方式出风,其送风范围小且送风距离短,而风机工作的风经涡环发生装置后形成涡环气流排出,有效地扩大了空调器的送风范围和送风距离,且涡环气流经涡环发生装置排出,能够实现送风定向传播,与现有空调器常规出风相比,涡环发生装置将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现有空调器的风以层流或湍流的方式排出使用户有气流集中,风力较大的体感,而经涡环发生装置将风以涡环气流的方式排出能够使用户体验无风感吹风,能够满足了老人、儿童、病人对空调器出风的需求,进一步扩大了产品的使用范围,提高产品的市场竞争力。
进一步地,现有技术通过增加扰动或者减小风速,提高用户使用空调的舒适性,但是通过增加扰动,能耗却没有减少;减小风速或保持风速不变,不能保证将空调器吹出的风吹向更远的地方,而风机工作的风经涡环发生装置后形成涡环气流排出,能够使用户体验无风感吹风,有效地保证了用户良好的舒适性,同时扩大了空调器的送风范围和送风距离,并降低了能耗,进而提高产品的市场竞争力。
如图10所示,根据本申请的另一个实施例的空调器的控制方法包括:
S302,获取空调器的当前运行模式;
S304,判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,执行S306,否则,执行S308;
S306,控制涡环发生装置工作;
S308,控制涡环发生装置停止工作。
在该实施例中,通过获取空调器的当前运行模式,并判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,说明空调器的当前运行模式包括送风动作,控制涡环发生装置工作,使得空调器以涡环气流的方式出风,进而扩大了空调器的送风范围和送风距离,且能够实现送风定向传播,与现有空调器常规出风相比,涡环发生装置将风传播相同的距离所需要的风速减小,因此,大大降低了能耗并实现了个性化送风,降低了用户的使用成本并提升用户的使用体验。同时,现有空调器的风以层流或湍流的方式排出使用户有气流集中,风力较大的体感,而风经涡环发生装置以涡环气流的方式排出能够使用户体验无风感吹风,提高用户使用的满意度。基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
如图11所示,根据本申请又一个实施例的空调器的控制方法包括:
S402,获取空调器的当前运行模式;
S404,判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,执行S406,否则,执行S410;
S406,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速;
S408,根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作;
S410,控制涡环发生装置停止工作。
在该实施例中,通过获取空调器的当前运行模式,并判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,基于当前运行模式为制冷模式 或制热模式,获取风机的当前运行转速,根据当前运行转速,调整风机的运行转速,并控制涡环发生装置工作,能够避免将温差较大的风直接吹向用户而降低用户的吹风体验,同时能够使室内温度快速达到舒适度,提高用户使用的满意度,并使用户体验无风感吹风,提升用户的吹风体验。可以理解的是,控制涡环发生装置的工作可以包括调整涡环发生装置的驱动频率、调整涡环发生装置的涡环气流的传输距离和传输范围,也可以为满足要求的其他参数。基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
如图12所示,根据本申请又一个实施例的空调器的控制方法包括:
S502,获取空调器的当前运行模式;
S504,判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,执行S506,否则,执行S510;
S506,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速;
S508,基于当前运行转速小于第一预设转速,控制风机提高运行转速,并控制涡环发生装置以第一驱动频率工作;
S510,控制涡环发生装置停止工作。
在该实施例中,通过获取空调器的当前运行模式,并判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速,基于当前运行转速小于第一预设转速,说明当前室内温度与预设温度相差较小,接近人体的舒适感,通过提高风机的运行转速,控制涡环发生装置以第一驱动频率工作,有利于涡环气流快速形成并以较大的范围传输且传输的距离较远,能够使室内的较大范围接收到涡环发生装置形成的涡环气流,进而扩大体验无风感出风的范围,能够使室内温度快速达到舒适度,提升用户的使用体验。
进一步地,基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免 了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
如图13所示,根据本申请又一个实施例的空调器的控制方法包括:
S602,获取空调器的当前运行模式;
S604,判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,执行S606,否则,执行S610;
S606,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速;
S608,基于当前运行转速大于第二预设转速,控制风机降低运行转速,并控制涡环发生装置以第二驱动频率工作;其中,第一预设转速小于第二预设转速;第一驱动频率大于第二驱动频率;
S610,控制涡环发生装置停止工作。
在该实施例中,通过获取空调器的当前运行模式,并判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速,基于当前运行转速大于第二预设转速,第一预设转速小于第二预设转速,说明室内当前温度与预设温度相差较大,通过控制风机降低运行转速,控制涡环发生装置以第二驱动频率工作,第一驱动频率大于第二驱动频率,使涡环气流的形成速度减慢,并以较小的范围传输且传输的距离较短,能够避免涡环发生装置的驱动频率较大而使大量温差较大的涡环气流传输至室内而降低用户的舒适度,有效地保证了用户吹风的舒适度,提升用户的吹风体验。
进一步地,基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
如图14所示,根据本申请又一个实施例的空调器的控制方法包括:
S702,获取空调器的当前运行模式;
S704,判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,执行S706,否则,执行S710;
S706,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速;
S708,基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机以当前运行转速运行,并控制涡环发生装置以第三驱动频率工作;其中,第二驱动频率大于第三驱动频率;
S710,控制涡环发生装置停止工作。
在该实施例中,通过获取空调器的当前运行模式,并判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速,基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前室温与预设温度相当,通过控制风机以当前运行转速运行,并控制涡环发生装置以第三驱动频率工作,第二驱动频率大于第三驱动频率,进一步减小涡环气流的形成速度,并保证适当的送风范围和送风距离,能够长时间使当前室内温度与预设温度保持一致,使室内能够长时间保持舒适性,提升用户的使用体验。
进一步地,基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
如图15所示,根据本申请又一个实施例的空调器的控制方法包括:
S802,获取空调器的当前运行模式;
S804,判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,执行S806,否则,执行S814;
S806,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速;
S808,基于当前运行转速小于第一预设转速,控制涡环发生装置以第一驱动频率工作,控制风机提高运行转速,控制空调器的压缩机减小频率;
S810,基于当前运行转速大于第二预设转速,控制涡环发生装置以第二驱动频率工作,控制风机降低运行转速,控制空调器的压缩机增大频率,其中,第一预设转速小于第二预设转速,第一驱动频率大于第二驱动频率;
S812,基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机以当前运行转速工作,控制涡环发生装置以第三驱动频率工作,控制空调器的压缩机保持当前频率不变,其中,第一预设转速小于第二预设转速,第二驱动频率大于第三驱动频率;
S814,控制涡环发生装置停止工作。
在该实施例中,通过获取空调器的当前运行模式,并判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,基于当前运行模式为制冷模式或制热模式,获取风机的当前运行转速,基于当前运行转速小于第一预设转速,说明当前室内温度与预设温度相差较小,接近人体的舒适感,通过提高风机的运行转速,控制涡环发生装置以第一驱动频率工作,有利于涡环气流快速形成并以较大的范围传输且传输的距离较远,能够使室内的较大范围接收到涡环发生装置形成的涡环气流,进而扩大体验无风感出风的范围,能够使室内温度快速达到舒适度,提升用户的使用体验;同时,控制空调器的压缩机减小频率,避免了压缩机频率较大提高换热效率而使温差较大,压缩机以较小的频率运行能够保证空调器具有一定的热量交换,且有利于保持室内舒适的温度,进而提高用户使用的满意度;基于当前运行转速大于第二预设转速,第一预设转速小于第二预设转速,说明室内当前温度与预设温度相差较大,通过控制风机降低运行转速,控制涡环发生装置以第二驱动频率工作,第一驱动频率大于第二驱动频率,使涡环气流的形成速度减慢,并以较小的范围传输且传输的距离较短,能够避免涡环发生装置的驱动频率较大而使大量温差较大的涡环气流传输至室内而降低用户的舒适度,有效地保证了用户吹风的舒适度,提升用户的吹风体验,同时,控制空调器的压缩机增大频率,提高换热效率,有利于快速减小当前室内温度与预设温度的温差,使当前室内温度快速达到预设温度,进而提高室内温度的舒适度;基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,说明当前室温与预设温度相当,通过控制涡环发生装置以第三驱动频率工作,第二驱动频率大于第三驱动频率,进一步减小涡环气流的形成速度,并保证适当的送风范围和送风距离,同时控制风机以当前运行转速工作并控制空调器的压缩机保持当前频率不变,能够长时间使当前室内温度与预设温度保持一致,使室内能够长时间保持舒适性,提升用户的使用体验。
进一步地,基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
如图16所示,根据本申请又一个实施例的空调器的控制方法包括:
S902,获取空调器的当前运行模式;
S904,判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,若是,执行S906,否则,执行S914;
S906,基于当前运行模式为送风模式,控制涡环发生装置工作,获取风机的当前运行转速;
S908,基于当前运行转速小于第一预设转速,控制风机以第一预设转速运行;
S910,基于当前运行转速大于第二预设转速,控制风机以第二预设转速运行,其中,第一预设转速小于第二预设转速;
S912,基于当前运行转速大于或等于第一预设转速并小于或等于第二预设转速,控制风机以当前运行转速运行,其中,第一预设转速小于第二预设转速;
S914,控制涡环发生装置停止工作。
在该实施例中,通过获取空调器的当前运行模式,并判断当前运行模式是否为制冷模式、制热模式或送风模式中的一种,基于当前运行模式为送风模式,控制涡环发生装置工作,能够扩大了空调器的送风范围和送风距离,并降低能耗,同时使用户体验无风感吹风,提升用户使用的满意度。通过获取风机的当前运行转速,基于当前运行转速小于第一预设转速,说明当前风速与预设风速相差较小,通过控制风机以第一预设转速运行,能够快速减小当前风速与预设风速的差值,使当前风速快速达到预设风速,进而提高室内的舒适度;基于当前运行转速大于第二预设转速,第二预设转速大于第一预设转速,说明当前风速与预设风速相差较大,通过控制风机以第二预设转速运行,大大提高了风机的运行转速,有利于快速缩小当前风速和预设风速的差值,有利于室内空气快速达到用户的舒适度,提高用户使用的满意度;基于当前运行转速大于或等于 第一预设转速并小于或等于第二预设转速,说明当前风速与预设风速相当,已达到用户的舒适度,通过控制风机以当前运行转速运行,能够长时间保持室内的舒适度。
进一步地,基于当前运行模式均不是制冷模式、制热模式或送风模式,说明空调器的当前运行模式不包括送风动作,控制涡环发生装置停止工作,避免了空调器不包括送风动作而涡环发生装置工作浪费能源的问题,有效地降低了用户的使用成本,提高产品的市场竞争力。
在具体实施例中,获取空调器的当前运行模式,当前运行模式为制冷模式,控制涡环发生装置工作,能够扩大了空调器的送风范围和送风距离,并实现定向送风,同时使用户体验无风感吹风,提高用户使用的满意度。获取风机的当前运行转速,若当前运行转速小于第一预设转速时,室内当前温度与预设温度接近,此时可以将风机转速升高至第一预设转速,并控制涡环发生装置以较高的第一驱动频率工作,同时,为了保证相当的制冷量,保持房间舒适的温度,将压缩机的频率降低,防止室内温度过冷;若当前运行转速大于第二预设转速,第二预设转速大于第一预设转速,说明室内当前温度与预设温度相差较大,室内需要降温,此时可以将风机转速升高至第二预设转速,并控制涡环发生装置以较低的第二驱动频率工作,第一驱动频率大于第二驱动频率,防止较大的温差脉冲吹向室内,同时,为了保证相当的制冷量,保持房间继续下降,将压缩机的频率升高;否侧,若当前空调风机运行转速在第一预设转速和第二预设转速之间,控制涡环发生装置以较小的第三驱动频率工作,第二驱动频率大于第三驱动频率,空调保持运行当前风机转速和压缩机频率,能够长时间保持室内温度的舒适度,提高用户使用的满意度。具体地,第一预设转速为400r/min,第二预设转速为1000r/min,能够保证风机工作的风经涡环发生装置形成涡环气流,并连续、充足的吹向室内,同时使室内能够快速达到舒适度,提升用户的使用体验。本申请通过控制涡环发生装置稳定地产生涡环气流,将空调吹出的风送指定的更远的位置,同时通过控制风机转速和压缩机的工作频率等参数,能够满足用户的不同的需求,并提高室内的舒适性,进而提高用户使用的满意度。
根据本申请的再一个方面,提供了一种计算机可读存储介质,其上存储有 计算机程序,计算机程序被处理器执行时实现如上述任一技术方案的空调器的控制方法的步骤。
根据本申请的再一个方面提供的计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现如上述任一技术方案的空调器的控制方法的步骤,因而具有该空调器的控制方法的全部技术效果,在此不再赘述。
计算机可读存储介质可以包括能够存储或传输信息的任何介质。计算机可读存储介质的例子包括电子电路、半导体存储器设备、ROM、闪存、可擦除ROM(EROM)、软盘、CD-ROM、光盘、硬盘、光纤介质、射频(RF)链路,等等。代码段可以经由诸如因特网、内联网等的计算机网络被下载。
在本申请中,术语“多个”则指两个或两个以上,除非另有明确的限定。术语“安装”、“相连”、“连接”、“固定”等术语均应做广义理解,例如,“连接”可以是固定连接,也可以是可拆卸连接,或一体地连接;“相连”可以是直接相连,也可以通过中间媒介间接相连。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
在本说明书的描述中,术语“一个实施例”、“一些实施例”、“具体实施例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或实例。而且,描述的具体特征、结构、材料或特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (19)

  1. 一种空调器,其中,包括:
    涡环发生装置;
    风机,所述风机工作以向所述涡环发生装置送风;
    存储器,被配置为用于存储计算机程序;
    处理器,被配置为用于执行所述计算机程序以实现:
    获取所述空调器的当前运行模式;
    根据所述当前运行模式,控制所述涡环发生装置的工作状态。
  2. 根据权利要求1所述的空调器,其中,所述处理器执行所述计算机程序以实现的所述根据所述当前运行模式,控制所述涡环发生装置工作的工作状态的步骤,具体包括:
    判断所述当前运行模式是否为制冷模式、制热模式或送风模式中的一种;
    若是,控制所述涡环发生装置工作;
    否则,控制所述涡环发生装置停止工作。
  3. 根据权利要求2所述的空调器,其中,所述处理器还被配置为执行所述计算机程序以实现所述控制所述涡环发生装置工作,具体包括:
    基于所述当前运行模式为所述制冷模式或所述制热模式,获取所述风机的当前运行转速;
    根据所述当前运行转速,调整所述风机的运行转速,并控制所述涡环发生装置工作。
  4. 根据权利要求3所述的空调器,其中,所述处理器执行所述计算机程序以实现所述根据所述当前运行转速,调整所述风机的运行转速,并控制所述涡环发生装置工作的步骤,具体包括:
    基于所述当前运行转速小于第一预设转速,控制所述风机提高运行转速,并控制所述涡环发生装置以第一驱动频率工作。
  5. 根据权利要求4所述的空调器,其中,所述处理器执行所述计算机程序以实现所述根据所述当前运行转速,调整所述风机的运行转速,并控制所述涡环发生装置工作的步骤,具体包括:
    基于所述当前运行转速大于第二预设转速,控制所述风机降低运行转速,并控制所述涡环发生装置以第二驱动频率工作;
    其中,所述第一预设转速小于所述第二预设转速;
    所述第一驱动频率大于所述第二驱动频率。
  6. 根据权利要求5所述的空调器,其中,所述处理器执行所述计算机程序以实现所述根据所述当前运行转速,调整所述风机的运行转速,并控制所述涡环发生装置工作的步骤,具体包括:
    基于所述当前运行转速大于或等于所述第一预设转速并小于或等于所述第二预设转速,控制所述风机以所述当前运行转速运行,并控制所述涡环发生装置以第三驱动频率工作;
    其中,所述第二驱动频率大于所述第三驱动频率。
  7. 根据权利要求6所述的空调器,其中,所述处理器还被配置为用于执行所述计算机程序以实现:
    基于所述当前运行转速小于所述第一预设转速,控制所述空调器的压缩机减小频率;
    基于所述当前运行转速大于所述第二预设转速,控制所述空调器的压缩机增大频率;
    基于所述当前运行转速大于或等于所述第一预设转速并小于或等于所述第二预设转速,控制所述空调器的压缩机保持当前频率不变。
  8. 根据权利要求2至7中任一项所述的空调器,其中,所述处理器还被配置为执行所述计算机程序以实现基于所述当前运行模式为所述送风模式,所述控制所述涡环发生装置工作的步骤之后,还包括:
    获取所述风机的当前运行转速;
    基于所述当前运行转速小于第一预设转速,控制所述风机以所述第一预设转速运行;
    基于所述当前运行转速大于第二预设转速,控制所述风机以所述第二预设转速运行;
    基于所述当前运行转速大于或等于所述第一预设转速并小于或等于所述第二预设转速,控制所述风机以所述当前运行转速运行;
    其中,所述第一预设转速小于所述第二预设转速。
  9. 根据权利要求5至8中任一项所述的空调器,其中,
    所述第一预设转速为300r/min至600r/min,所述第二预设转速为900r/min至1200r/min。
  10. 一种空调器的控制方法,所述空调器包括涡环发生装置和风机,所述风机工作以向所述涡环发生装置送风,其中,所述空调器的控制方法包括:
    获取所述空调器的当前运行模式;
    根据所述当前运行模式控制所述涡环发生装置的工作状态。
  11. 根据权利要求10所述的空调器的控制方法,其中,所述根据所述当前运行模式,控制所述涡环发生装置工作的工作状态的步骤,具体包括:
    判断所述当前运行模式是否为制冷模式、制热模式或送风模式中的一种;
    若是,控制所述涡环发生装置工作;
    否则,控制所述涡环发生装置停止工作。
  12. 根据权利要求11所述的空调器的控制方法,其中,所述控制所述涡环发生装置工作,具体包括:
    基于所述当前运行模式为所述制冷模式或所述制热模式,获取所述风机的当前运行转速;
    根据所述当前运行转速,调整所述风机的运行转速,并控制所述涡环发生装置工作。
  13. 根据权利要求12所述的空调器的控制方法,其中,所述根据所述当前运行转速,调整所述风机的运行转速,并控制所述涡环发生装置工作的步骤,具体包括:
    基于所述当前运行转速小于第一预设转速,控制所述风机提高运行转速,并控制所述涡环发生装置以第一驱动频率工作。
  14. 根据权利要求13所述的空调器的控制方法,其中,所述根据所述当前运行转速,调整所述风机的运行转速,并控制所述涡环发生装置工作的步骤,具体包括:
    基于所述当前运行转速大于第二预设转速,控制所述风机降低运行转速,并控制所述涡环发生装置以第二驱动频率工作;
    其中,所述第一预设转速小于所述第二预设转速;
    所述第一驱动频率大于所述第二驱动频率。
  15. 根据权利要求14所述的空调器的控制方法,其中,所述根据所述当前运行转速,调整所述风机的运行转速,并控制所述涡环发生装置工作的步骤,具体包括:
    基于所述当前运行转速大于或等于所述第一预设转速并小于或等于所述第二预设转速,控制所述风机以所述当前运行转速运行,并控制所述涡环发生装置以第三驱动频率工作;
    其中,所述第二驱动频率大于所述第三驱动频率。
  16. 根据权利要求15所述的空调器的控制方法,其中,还包括:
    基于所述当前运行转速小于所述第一预设转速,控制所述空调器的压缩机减小频率;
    基于所述当前运行转速大于所述第二预设转速,控制所述空调器的压缩机增大频率;
    基于所述当前运行转速大于或等于所述第一预设转速并小于或等于所述第二预设转速,控制所述空调器的压缩机保持当前频率不变。
  17. 根据权利要求11至16中任一项所述的空调器的控制方法,其中,基于所述当前运行模式为所述送风模式,所述控制所述涡环发生装置工作的步骤之后,还包括:
    获取所述风机的当前运行转速;
    基于所述当前运行转速小于第一预设转速,控制所述风机以所述第一预设转速运行;
    基于所述当前运行转速大于第二预设转速,控制所述风机以所述第二预设转速运行;
    基于所述当前运行转速大于或等于所述第一预设转速并小于或等于所述第二预设转速,控制所述风机以所述当前运行转速运行;
    其中,所述第一预设转速小于所述第二预设转速。
  18. 根据权利要求14至17中任一项所述的空调器的控制方法,其中,
    所述第一预设转速为300r/min至600r/min,所述第二预设转速为900r/min 至1200r/min。
  19. 一种计算机可读存储介质,其上存储有计算机程序,其中,所述计算机程序被处理器执行时实现如权利要求10至18中任一项所述的空调器的控制方法的步骤。
PCT/CN2019/109089 2019-03-26 2019-09-29 空调器、空调器的控制方法和计算机可读存储介质 WO2020192062A1 (zh)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114963450A (zh) * 2022-05-27 2022-08-30 广东美的制冷设备有限公司 空调器送风控制方法、装置、空调器及存储介质
CN115235069A (zh) * 2021-04-25 2022-10-25 芜湖美智空调设备有限公司 空调器及其控制方法、计算机可读存储介质
CN115507536A (zh) * 2022-10-17 2022-12-23 宁波奥克斯电气股份有限公司 一种空调器及其控制方法、装置和可读存储介质

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111594916B (zh) * 2020-05-29 2021-12-28 佛山市万物互联科技有限公司 空调的控制方法、空调及存储介质

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07332750A (ja) * 1994-06-09 1995-12-22 Taikisha Ltd 気体搬送方法、及び、それに使用する気体搬送装置
JP2004053102A (ja) * 2002-07-18 2004-02-19 Daikin Ind Ltd 空気吹出ユニット
JP2017198433A (ja) * 2016-04-29 2017-11-02 株式会社九電工 空気渦輪発生装置
CN107525213A (zh) * 2017-07-20 2017-12-29 广东美的暖通设备有限公司 送风角度控制方法、送风角度控制装置和空调器
CN208238180U (zh) * 2018-05-22 2018-12-14 浙江大学 一种基于涡环原理的空调送风优化装置
CN109114791A (zh) * 2018-10-17 2019-01-01 宁波奥克斯电气股份有限公司 一种出风装置、控制方法及空调器

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4829814B2 (ja) * 2007-03-02 2011-12-07 富士重工業株式会社 芳香成分消臭装置
CN202370869U (zh) * 2011-10-12 2012-08-08 张天文 一种洁净空气冷热扇
JP6200248B2 (ja) * 2013-09-11 2017-09-20 三菱重工サーマルシステムズ株式会社 気流制御機能を有する空気調和機
JP2017053592A (ja) * 2015-09-11 2017-03-16 株式会社九電工 空気調和用渦輪発生装置

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07332750A (ja) * 1994-06-09 1995-12-22 Taikisha Ltd 気体搬送方法、及び、それに使用する気体搬送装置
JP2004053102A (ja) * 2002-07-18 2004-02-19 Daikin Ind Ltd 空気吹出ユニット
JP2017198433A (ja) * 2016-04-29 2017-11-02 株式会社九電工 空気渦輪発生装置
CN107525213A (zh) * 2017-07-20 2017-12-29 广东美的暖通设备有限公司 送风角度控制方法、送风角度控制装置和空调器
CN208238180U (zh) * 2018-05-22 2018-12-14 浙江大学 一种基于涡环原理的空调送风优化装置
CN109114791A (zh) * 2018-10-17 2019-01-01 宁波奥克斯电气股份有限公司 一种出风装置、控制方法及空调器

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115235069A (zh) * 2021-04-25 2022-10-25 芜湖美智空调设备有限公司 空调器及其控制方法、计算机可读存储介质
CN115235069B (zh) * 2021-04-25 2024-03-08 芜湖美智空调设备有限公司 空调器及其控制方法、计算机可读存储介质
CN114963450A (zh) * 2022-05-27 2022-08-30 广东美的制冷设备有限公司 空调器送风控制方法、装置、空调器及存储介质
CN115507536A (zh) * 2022-10-17 2022-12-23 宁波奥克斯电气股份有限公司 一种空调器及其控制方法、装置和可读存储介质

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