CN109237707A - A kind of air conditioning control method - Google Patents

A kind of air conditioning control method Download PDF

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Publication number
CN109237707A
CN109237707A CN201810973990.5A CN201810973990A CN109237707A CN 109237707 A CN109237707 A CN 109237707A CN 201810973990 A CN201810973990 A CN 201810973990A CN 109237707 A CN109237707 A CN 109237707A
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CN
China
Prior art keywords
air
temperature difference
air outlet
temperature
air inlet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201810973990.5A
Other languages
Chinese (zh)
Inventor
王春玉
李新
张吉义
刘新波
陈冬铃
王海梅
李珍
查文龙
董德智
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Haier Air Conditioning Electric Co Ltd
Original Assignee
Qingdao Haier Air Conditioning Electric Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Qingdao Haier Air Conditioning Electric Co Ltd filed Critical Qingdao Haier Air Conditioning Electric Co Ltd
Priority to CN201810973990.5A priority Critical patent/CN109237707A/en
Publication of CN109237707A publication Critical patent/CN109237707A/en
Pending legal-status Critical Current

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Classifications

    • 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
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • 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
    • 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
    • F24F11/89Arrangement or mounting of control or safety devices
    • 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

Abstract

The invention discloses a kind of air conditioning control methods, in the blowing range of left air outlet when someone, into the comfortable wind mode in left side, obtain the temperature of left air inlet and the temperature difference △ T1 of setting target temperature;If temperature difference △ T1 >=first sets the temperature difference, controls left air door and be opened to full gate degree;If the second setting temperature difference≤temperature difference △ T1 < first sets the temperature difference, controls left air door and be opened to the first aperture;In the blowing range of right air outlet when someone, into the comfortable wind mode in right side, the temperature of right air inlet and the temperature difference △ T2 of setting target temperature are obtained;If temperature difference △ T2 >=first sets the temperature difference, controls right air door and be opened to full gate degree;If the second setting temperature difference≤temperature difference △ T2 < first sets the temperature difference, controls right air door and be opened to the first aperture;Cold air after the heat exchange of left/right heat exchanger is blown out again after mixing with the indoor air for entering left/right air duct from left/right by-pass port, improves the usage experience of user.

Description

A kind of air conditioning control method
Technical field
The invention belongs to air-conditioning technical fields, specifically, being to be related to a kind of air conditioning control method.
Background technique
Existing clamping air conditioner offers air inlet and outlet on shell, be provided in shell evaporator, partition, Spiral case, motor, fan etc., room air is blown out after evaporator heat exchange by air outlet, therefore air outlet temperature is relatively low, It causes impact big human body, blows that people is uncomfortable, and user experience is poor.
Summary of the invention
The present invention provides a kind of air conditioning control methods, improve user experience.
In order to solve the above-mentioned technical problem, the present invention is achieved by the following scheme:
A kind of air conditioning control method, air conditioner indoor unit include shell, and left air inlet is formed on the left plate of the shell, It is formed with right air inlet on the right side plate of the shell, left air outlet and right outlet air are formed on the front panel of the shell Mouthful, the left air outlet is close to left air inlet, and the right air outlet is close to right air inlet;It is formed with air duct in the shell, Air duct is separated into left air duct and right air duct by partition in being laid in the air duct, the middle partition;The left air duct connection Left air inlet and left air outlet;The right air duct is connected to right air inlet and right air outlet;A left side is provided in the left air duct to change Hot device and left blower;Right heat exchanger and right blower are provided in the right air duct;It is formed with left by-pass port on the housing With right by-pass port, the left by-pass port is connected to left air duct and the interior space, is provided with left air door at the left by-pass port;It is described Right by-pass port is connected to right air duct and the interior space, is provided with right air door at the right by-pass port;
The control method includes:
(1) judge in the blowing range of left air outlet whether someone;
If so, entering the comfortable wind mode in left side executes following step under the comfortable wind mode in left side:
Obtain the temperature of left air inlet and the temperature difference △ T1 of setting target temperature;
If temperature difference △ T1 >=first sets the temperature difference, controls left air door and be opened to full gate degree, control left fan operation;
If the second setting temperature difference≤temperature difference △ T1 < first sets the temperature difference, controls left air door and be opened to the first aperture, control is left Fan operation;
If temperature difference △ T1 < second sets the temperature difference, controls left air door and close;
(2) judge in the blowing range of right air outlet whether someone;
If so, entering the comfortable wind mode in right side executes following step under the comfortable wind mode in right side:
Obtain the temperature of right air inlet and the temperature difference △ T2 of setting target temperature;
If temperature difference △ T2 >=first sets the temperature difference, controls right air door and be opened to full gate degree, control right fan operation;
If the second setting temperature difference≤temperature difference △ T2 < first sets the temperature difference, controls right air door and be opened to the first aperture, control is right Fan operation;
If temperature difference △ T2 < second sets the temperature difference, controls right air door and close;
Wherein, 0 < the first aperture < full gate degree;Step (1) and step (2) unlimited sequence.
Further, as nobody in the blowing range of left air outlet, air-conditioning enters left side normal operation mode;On a left side Under the normal operation mode of side, left air door is closed;As nobody in the blowing range of right air outlet, air-conditioning enters the normal fortune in right side Row mode;Under the normal operation mode of right side, right air door is closed.
Further, as nobody in the blowing range of nobody and right air outlet in the blowing range of left air outlet When, air-conditioning enters normal operation mode;In the normal operating mode, left air door is closed, and right air door is closed.
Further, the normal operation mode further includes fast cooling mode;Under fast cooling mode, left blower It is run simultaneously with right blower.
Further, the normal operation mode includes extending life pattern;In the case where extending life pattern, left blower list Solely run perhaps right blower isolated operation or left blower and right blower alternate run.
Further, the normal operation mode further includes energy-saving mode;In the energy-saving mode, if the air-supply of left air outlet In range in nobody time >=first setting time and the blowing range of right air outlet when nobody time >=first setting Between, then air-conditioning shuts down.
Further, in the energy-saving mode, if in the blowing range of left air outlet when nobody time >=first setting Between and temperature difference △ T1 < second set in the temperature difference and the blowing range of right air outlet nobody time >=first setting time and Temperature difference △ T2 < second sets the temperature difference, then air-conditioning shuts down.
Further, first the temperature difference is set as 10 DEG C, second sets the temperature difference as 0.5 DEG C.
Further, the first aperture is the 1/3~1/2 of full gate degree.
Further, the temperature signal of left air inlet is acquired by the way that the left temperature sensor of left air inlet is arranged in, And it is sent to control panel, control panel calculates the temperature of left air inlet and the temperature difference △ T1 of setting target temperature;Existed by setting The right temperature sensor of right air inlet, acquires the temperature signal of right air inlet, and is sent to control panel, and control panel calculates right The temperature of air inlet and the temperature difference △ T2 of setting target temperature;By the way that the left infrared sensor near left air outlet is arranged in, In blowing range to detect left air outlet whether someone;By the way that the right infrared sensor near right air outlet is arranged in, to examine Survey in the blowing range of right air outlet whether someone.
Compared with prior art, the advantages and positive effects of the present invention are: air conditioning control method of the invention, in left outlet air In the blowing range of mouth when someone, the temperature of left air inlet is obtained under the comfortable wind mode in left side into the comfortable wind mode in left side The temperature difference △ T1 of degree and setting target temperature;If temperature difference △ T1 >=first sets the temperature difference, controls left air door and is opened to full gate degree, Control left fan operation;If the second setting temperature difference≤temperature difference △ T1 < first sets the temperature difference, controls left air door and be opened to first Aperture controls left fan operation;If temperature difference △ T1 < second sets the temperature difference, controls left air door and close;In sending for right air outlet When demeanour encloses interior someone, into the comfortable wind mode in right side, under the comfortable wind mode in right side, obtains the temperature of right air inlet and set The temperature difference △ T2 for the temperature that sets the goal;If temperature difference △ T2 >=first sets the temperature difference, controls right air door and be opened to full gate degree, control is right Fan operation;If the second setting temperature difference≤temperature difference △ T2 < first sets the temperature difference, controls right air door and be opened to the first aperture, control Make right fan operation;If temperature difference △ T2 < second sets the temperature difference, controls right air door and close;Therefore, the air-conditioning control of the present embodiment Method processed, cold air after the heat exchange of left/right heat exchanger and the indoor environment for entering left/right air duct from left/right by-pass port are empty Gas mixing after blow out again, mixed air themperature reduce with human body temperature difference, more comfortable mixing air is blowed to Human body improves the comfort of air-conditioning, improves the usage experience of user.
After the detailed description of embodiment of the present invention is read in conjunction with the figure, the other features and advantages of the invention will become more Add clear.
Detailed description of the invention
Fig. 1 is the flow chart of one embodiment of air conditioning control method proposed by the invention;
Fig. 2 is the main view of the air conditioner indoor unit in Fig. 1;
Fig. 3 is the top view of the air conditioner indoor unit in Fig. 1.
Appended drawing reference:
20, shell;20-1, left air inlet;20-2, right air inlet;20-3, left air outlet;20-4, right air outlet;20-5, left side Port;20-6, right by-pass port;
21, left air duct;22, right air duct;23, middle partition;24, insulating layer;25, control panel;
31, left drip tray;32, left heat exchanger;33, left spiral case;34, left fan;35;Left motor;
41, right drip tray;42, right heat exchanger;43, right spiral case;44, right fan;45;Right motor.
Specific embodiment
A specific embodiment of the invention is described in more detail with reference to the accompanying drawing.
For the problem that the charming appearance and behaviour people of air conditioner indoor set wind outlet blowout is uncomfortable, affect user experience, this implementation Example proposes a kind of air conditioning control method, so that comfortable mixing air blows to interior, improves the user experience.In the following, right The air conditioning control method of the present embodiment is described in detail.
Air-conditioning includes air conditioner indoor unit and air-conditioner outdoor unit, and air conditioner indoor unit is connected with air-conditioner outdoor unit.
Air conditioner indoor unit, including shell 20, shell 20 include front panel, postnotum, left plate, right side plate, top plate, bottom Plate;It is formed with left air inlet 20-1 on the left plate of shell 20, right air inlet 20-2 is formed on the right side plate of shell, Left outlet air 20-3 mouthfuls and right air outlet 20-4 are formed on the front panel of shell 20, left air outlet 20-3 is close to left air inlet 20- 1, right air outlet 20-4 is close to right air inlet 20-2;Be formed with air duct in shell 20, be laid in air duct in partition 23, in Air duct is separated into left air duct 21 and right air duct 22 by partition 23;Left air duct 21 is connected to left air inlet 20-1 and left air outlet 20-3; Right air duct 22 is connected to right air inlet 20-2 and right air outlet 20-4, referring to fig. 2, shown in Fig. 3.
Left heat exchanger 32 and left blower are provided in left air duct 21;Left blower includes left spiral case 33, left fan 34 and a left side Motor 35, for left motor 35 close to middle partition 23, left spiral case 33 is located at the left side of left motor 35, and left fan 34 is located at left spiral case 33 It is interior, and the output shaft of left motor 35 is connect with the shaft of left fan 34, and left fan 34 is driven to rotate;Left heat exchanger 32 is located at left snail The left side of shell 33, left heat exchanger 32 is close to left air inlet 20-1, and left spiral case 33 is close to left air outlet 20-3.
Right heat exchanger 42 and right blower are provided in right air duct 22;Right blower includes right spiral case 43, right fan 44 and the right side Motor 45, for right motor 45 close to middle partition 23, right spiral case 43 is located at the right side of right motor 45, and right fan 44 is located at right spiral case 43 It is interior, and the output shaft of right motor 45 is connect with the shaft of right fan 44, and right fan 44 is driven to rotate;Right heat exchanger 42 is located at right snail The right side of shell 43, right heat exchanger 42 is close to right air inlet 20-2, and right spiral case 43 is close to right air outlet 20-4.It is provided in shell 20 Control panel 25, control panel 25 control the operation of left motor 35 and right motor 45 respectively.
Air duct in shell 20 is separated into left air duct 21 and right wind by middle partition 23 by the air conditioner indoor unit of the present embodiment Road 22 is successively laid with left heat exchanger 32, left spiral case 33, left motor 35 from left to right in left air duct 21, in right air duct 22 It is successively laid with right motor 45, right spiral case 43, right heat exchanger 42 from left to right, so as to shorten indoor unit width d2, that is, shortens The distance between shell front panel and postnotum, i.e. d2 in Fig. 3, to also can easily be installed when installation space is narrow Indoor unit solves the problems, such as that indoor unit is not easy to install when installation space is narrow;Air conditioner indoor unit is easily installed in peace The narrow place in space is filled, space utilization rate is improved, increases fitting limit, improves the market competitiveness.
Left heat exchanger 32 and right heat exchanger 42 are connect with the outdoor heat exchanger of air-conditioner outdoor unit respectively, form refrigerant circulation pipe Road;It is provided with the first electric expansion valve on the connecting line of left heat exchanger 32 and outdoor heat exchanger, in right heat exchanger 42 and room The second electric expansion valve is provided on the connecting line of external heat exchanger, control panel 25 controls the fortune of the two electric expansion valves respectively Row.Specifically, the liquid pipe of left heat exchanger 32 and the liquid pipe of right heat exchanger 42 are connect with the liquid pipe of outdoor heat exchanger respectively, and a left side is changed The tracheae of hot device 32 and the tracheae of right heat exchanger 42 are connect with the tracheae of outdoor heat exchanger respectively;First electric expansion valve is laid in In the liquid pipe of left heat exchanger 32, the second electric expansion valve is laid in the liquid pipe of right heat exchanger 42.
When left air outlet 20-3, right air outlet 20-4 are not required to outlet air, control panel 25 controls the left shutdown of motor 35, first Electric expansion valve is closed, and controls the right shutdown of motor 45, the second electric expansion valve is closed;Left air outlet 20-3 and right air outlet 20-4 Not outlet air.
When needing left air outlet 20-3 individually to blow, control panel 25 controls the left operating of motor 35, the first electric expansion valve It opens, controls the right shutdown of motor 45, the second electric expansion valve is closed;The operating of left motor 35 drive air from left air inlet 20-3 into Enter left air duct 21, then flows through after left heat exchanger 32 exchanged heat, entered the room by left spiral case 33, left air outlet 20-3, it is real Existing left air outlet 20-3 outlet air.
When needing right air outlet 20-4 individually to blow, control panel 25 controls the right operating of motor 45, the second electric expansion valve It opens, controls the left shutdown of motor 35, the first electric expansion valve is closed;The operating of right motor 45 drive air from right air outlet 20-4 into Enter right air duct 22, then flows through after right heat exchanger 42 exchanged heat, entered the room by right spiral case 43, right air outlet 20-4, it is real Existing right air outlet 20-4 outlet air.
When needing left air outlet 20-3 and right air outlet 20-4 outlet air simultaneously, control panel 25 control the left operating of motor 35, First electric expansion valve is opened, and controls the right operating of motor 45, the second electric expansion valve is opened;The operating of left motor 35 drive air from Left air inlet 20-3 enters left air duct 21, then flows through after left heat exchanger 32 exchanged heat, passes through left spiral case 33, left air outlet 20-3 is entered the room, and realizes left air outlet 20-3 outlet air;The right operating of motor 45 drives air to enter right wind from right air outlet 20-4 Road 22 then flows through after right heat exchanger 42 exchanged heat, is entered the room by right spiral case 43, right air outlet 20-4, realize that the right side goes out Air port 20-4 outlet air realizes indoor fast cooling wet down or is rapidly heated.
If two motors operate always, it is easy to happen fatigue damage, leads to the problem of noise vibration, is influencing indoor unit just Often operation reduces service life;Therefore, in the present embodiment, control panel 25 controls the fortune of left motor 35 and right motor 45 respectively Row, left motor 35 and right motor 45 can be separately operable, and solve fan, motor works long hours and is easy to happen fatigue damage production The problem of raw vibrating noise;Moreover, left motor 35 and right motor 45 are mutually backups, when one of motor damage, another Motor it is also ensured that indoor unit operation.I.e. when one of air outlet not outlet air, another air outlet can also be made to go out Wind, to guarantee that user uses.Within the period of the motor of user's waiting repair damage, air-conditioning can still be run, and be improved empty Utilization rate is adjusted, reduces to shut down and unnecessary influence is caused on client.
Left by-pass port 20-5 and right by-pass port 20-6 are formed on the top plate of shell 20.Left by-pass port 20-5 is connected to left wind Road 21 and the interior space, right by-pass port 20-6 are connected to right air duct 22 and the interior space.
Left by-pass port 20-5 is connected to the space in left air duct 21 between left heat exchanger 32 and left spiral case 33;In left by-pass port Left air door is provided at 20-5, control panel 25 drives the opening and closing of left air door by left damper motor.It is indoor when left air door is opened Wind enters the space in left air duct 21 between left heat exchanger 32 and left spiral case 33 through left by-pass port 20-5, with the left air inlet of process 20-1 enters left air duct 21 and mixes with the cold wind after the heat exchange of left heat exchanger 32, forms mixing wind, then mixing wind is through left spiral case 33, left air outlet 20-3 enters the room space, provides comfortable mixing wind for user, avoids the wind mistake of left air outlet 20-3 blowout It is cold.
Right by-pass port 20-6 is connected to the space in right air duct 22 between right heat exchanger 42 and right spiral case 43;In right by-pass port Right air door is provided at 20-6, control panel 25 drives the opening and closing of right air door by right damper motor.It is indoor when right air door is opened Wind enters the space in right air duct 22 between right heat exchanger 42 and right spiral case 43 through right by-pass port 20-6, with the right air inlet of process 20-2 enters right air duct 22 and mixes with the cold wind after the heat exchange of right heat exchanger 42, forms mixing wind, then mixing wind is through right spiral case 43, right air outlet 20-4 enters the room space, provides comfortable mixing wind for user, avoids the wind mistake of right air outlet 20-4 blowout It is cold.
The present embodiment is by designing left by-pass port and right by-pass port, cold air and indoor air after heat exchanger Blown out again after mixing, mixed air themperature reduce with human body temperature difference, more comfortable mixing air is blowed into people Body improves the comfort of air-conditioning.
It is respectively arranged with filter screen at left by-pass port 20-5 and right by-pass port 20-6, the air for being filtered through mentions High air quality, avoids secondary pollution.
Left temperature sensor, left temperature sensor acquisition temperature are provided at left air inlet 20-1 on the left plate of shell 20 Signal is spent, and is sent to control panel 25.Control panel 25 generates driving letter according to the signal that the left temperature sensor received is sent Number, to control the opening and closing of left air door.
Right temperature sensor, right temperature sensor acquisition temperature are provided at the upper right air inlet 20-2 of right side plate of shell 20 Signal is spent, and is sent to control panel 25.Control panel 25 generates driving letter according to the signal that the right temperature sensor received is sent Number, to control the opening and closing of right air door.
On the front panel of shell 20 near left air outlet 20-3 (side of such as left air outlet 20-3) be provided with it is left infrared Sensor, for detect left air outlet 20-3 nearby whether someone;Near the upper right air outlet 20-4 of front panel of shell 20 (such as The side of right air outlet 20-4) be provided with right infrared sensor, for detect right air outlet 20-4 nearby whether someone;It is left infrared Sensor and right infrared sensor are connect with control panel respectively, and collected infrared signal is sent to control panel 25.
Control panel 25 is swollen according to the left motor 35 of infrared signal control, the first electronics that the left infrared sensor received is sent The operation of swollen valve.Control panel 25 controls right the 45, second electricity of motor according to the infrared signal that the right infrared sensor received is sent The operation of sub- expansion valve.
For example, illustrating a left side when infrared signal that the left infrared sensor that control panel 25 receives is sent is greater than given threshold Someone near air outlet 20-3 controls left motor 35, the operation of the first electric expansion valve, realizes left air outlet 20-3 outlet air.
By the way that left infrared sensor and right infrared sensor is arranged, in order to obtain left air outlet 20-3 and right air outlet Nearby whether someone to control the operation of left motor 35 and right motor 45 improves the usage experience of user to 20-4.
The left and right sides of middle partition 23 is laid with insulating layer 24 respectively, avoids heat between left air duct 21 and right air duct 22 Transmitting, avoids energy waste.
Left heat exchanger 32 and right heat exchanger 42 are laid vertically or inclination is laid.In the present embodiment, left heat exchanger 32 and the right side Heat exchanger 42 is preferably tilted and is laid, and to increase heat exchange area, further shortens indoor unit width.
The lower section of left heat exchanger 32 is provided with left drip tray 31 in left air duct 21, avoids the gas of left 32 windward side of heat exchanger Flow the blocking by left drip tray 31;The floor projection of left heat exchanger 32 is entirely located in left drip tray 31, avoids left heat exchanger 32 condensing drip is fallen on outside left drip tray 31.
The lower section of right heat exchanger 42 is provided with right drip tray 41 in right air duct 22, avoids the gas of right 42 windward side of heat exchanger Flow the blocking by right drip tray 41;The floor projection of right heat exchanger 42 is entirely located in right drip tray 41, avoids right heat exchanger 42 condensing drip is fallen on outside right drip tray 41.
Based on above-mentioned air conditioner indoor unit, the present embodiment proposes a kind of air conditioning control method, includes the following steps, referring to Shown in Fig. 1.
User can select the operational mode of air-conditioning by the touch screen of remote controler, line control machine or air conditioner indoor unit, alternatively, Air-conditioning is according to actual motion state automatic choosing running mode.The operational mode of air-conditioning include the comfortable wind mode in left side, right side relax Suitable wind mode, the comfortable wind mode of left and right sides, left side normal operation mode, right side normal operation mode, normal operation mode.
After power-on of air conditioner, step S1 and S2 are executed, the execution sequence of S1 and S2 are unlimited, and it can first carry out S1 and execute S2 again, S2 can also be first carried out and execute S1 again, also may be performed simultaneously S1 and S2.
Step S1: judge in the blowing range of left air outlet whether someone.
If it is not, illustrating nobody in the blowing range of left air outlet, step S11 is executed: entering left side normal operation mode. Under the normal operation mode of left side, left air door is closed, and completely encloses left by-pass port;Air enters left air duct from left air inlet, changes It is blown out after heat from left air outlet.
If so, illustrating someone in the blowing range of left air outlet, S12 is thened follow the steps: entering the comfortable wind mode in left side, Under the comfortable wind mode in left side, then following step is executed:
Step S12-1: the temperature of left air inlet and the temperature difference △ T1 of setting target temperature are obtained, then according to temperature difference △ T1 Size left air door is controlled.
If temperature difference △ T1 >=first sets the temperature difference, illustrates that difference △ T1 is very big, then controls left air door and be opened to full gate degree, Control left fan operation.Left air door is opened to full gate degree, is completely exposed left by-pass port, indoor wind (temperature t0) is through left by-pass port Into in left air duct, mixed with the cold wind (temperature t1) after left air inlet enters left air duct and exchanges heat with left heat exchanger, It is formed mixing wind (temperature t2), then mixing wind enters the room space through left spiral case, left air outlet, provides comfortably for user Mixing wind avoids the wind supercooling of left air outlet blowout, reaches cool without cold out, to improve the usage experience of user.Assuming that setting The temperature that sets the goal is t3, then t1 < t2≤t3≤t0.
If the second setting temperature difference≤temperature difference △ T1 < first sets the temperature difference, illustrates that difference △ T1 is larger, then control left air door It is opened to the first aperture, controls left fan operation.0 < the first aperture < full gate degree, left air door are opened to the first aperture, exposed division Point left by-pass port, indoor wind enter in left air duct through left by-pass port, with by left air inlet enter left air duct and with left heat exchanger Cold wind mixing after heat exchange, forms mixing wind, then mixing wind enters the room space through left spiral case, left air outlet, mentions for user For comfortable mixing wind, the wind supercooling of left air outlet blowout is avoided, to improve the usage experience of user.
If temperature difference △ T1 < second sets the temperature difference, illustrate difference △ T1 very little, the comfortable wind mode in left side can be exited at this time, It controls left air door to close, left by-pass port is completely enclosed, into left side normal operation mode.
Step S2: judge in the blowing range of right air outlet whether someone.
If it is not, illustrating nobody in the blowing range of right air outlet, step S21 is executed: entering right side normal operation mode. Under the normal operation mode of right side, right air door is closed, and completely encloses right by-pass port;Air enters right air duct from right air inlet, changes It is blown out after heat from right air outlet.
If so, illustrating someone in the blowing range of right air outlet, S22 is thened follow the steps: entering the comfortable wind mode in right side, Under the comfortable wind mode in right side, then following step is executed:
Step S22-1: the temperature of right air inlet and the temperature difference △ T2 of setting target temperature are obtained, then according to temperature difference △ T2's Size controls right air door.
If temperature difference △ T2 >=first sets the temperature difference, illustrates that difference △ T2 is very big, then controls right air door and be opened to full gate degree, Control right fan operation.Right air door is opened to full gate degree, is completely exposed right by-pass port, indoor wind (temperature t0) is through right by-pass port Into in right air duct, mixed with the cold wind (temperature t1) after right air inlet enters right air duct and exchanges heat with right heat exchanger, It is formed mixing wind (temperature t2), then mixing wind enters the room space through right spiral case, right air outlet, provides comfortably for user Mixing wind avoids the wind supercooling of right air outlet blowout, reaches cool without cold out, to improve the usage experience of user.Assuming that setting The temperature that sets the goal is t3, then t1 < t2≤t3≤t0.
If the second setting temperature difference≤temperature difference △ T2 < first sets the temperature difference, illustrates that difference △ T2 is larger, then control right air door It is opened to the first aperture, controls right fan operation.0 < the first aperture < full gate degree, right air door are opened to the first aperture, exposed division Point right by-pass port, indoor wind enter in right air duct through right by-pass port, with by right air inlet enter right air duct and with right heat exchanger Cold wind mixing after heat exchange, forms mixing wind, then mixing wind enters the room space through right spiral case, right air outlet, mentions for user For comfortable mixing wind, the wind supercooling of right air outlet blowout is avoided, to improve the usage experience of user.
If temperature difference △ T2 < second sets the temperature difference, illustrate difference △ T2 very little, the comfortable wind mode in right side can be exited at this time, It controls right air door to close, right by-pass port is completely enclosed, into right side normal operation mode.
If someone in the blowing range of left air outlet, and also someone in the blowing range of right air outlet, then air-conditioning into Enter the comfortable wind mode in left side and the comfortable wind mode in right side, i.e. present mode of operation is the comfortable wind mode of left and right sides.
It is if nobody in the blowing range of left air outlet, and also nobody in the blowing range of right air outlet, then empty It transfers in into normal operation mode.In the normal operating mode, left air door is closed, and right air door is closed.
The air conditioning control method of the present embodiment, in the blowing range of left air outlet when someone, into the comfortable wind mould in left side Formula obtains the temperature of left air inlet and the temperature difference △ T1 of setting target temperature under the comfortable wind mode in left side;If temperature difference △ T1 >=the first setting temperature difference, then control left air door and be opened to full gate degree, control left fan operation;If the second setting temperature difference≤temperature difference △ T1 < first sets the temperature difference, then controls left air door and be opened to the first aperture, control left fan operation;If temperature difference △ T1 < second is set Determine the temperature difference, then controls left air door and close;In the blowing range of right air outlet when someone, into the comfortable wind mode in right side, on the right side Under the comfortable wind mode in side, the temperature of right air inlet and the temperature difference △ T2 of setting target temperature are obtained;If temperature difference △ T2 >=the first The temperature difference is set, then controls right air door and is opened to full gate degree, control right fan operation;If the second setting temperature difference≤temperature difference △ T2 < the The one setting temperature difference, then control right air door and be opened to the first aperture, control right fan operation;If temperature difference △ T2 < second sets temperature Difference then controls right air door and closes;Therefore, the air conditioning control method of the present embodiment, the cold air after the heat exchange of left/right heat exchanger With mixed from the indoor air that left/right by-pass port enters left/right air duct after blow out again, mixed air themperature reduces With human body temperature difference, more comfortable mixing air is blowed into human body, the comfort of air-conditioning is improved, improves the use of user Experience.
In the present embodiment, first the temperature difference is set as 10 DEG C, second sets the temperature difference as 0.5 DEG C.Therefore,
Under the comfortable wind mode in left side, in the blowing range of left air outlet when someone:
When temperature difference T1 >=10 DEG C △, controls left air door and be opened to full gate degree, control left fan operation;
At 10 DEG C of < of 0.5 DEG C≤temperature difference △ T1, controls left air door and be opened to the first aperture, control left fan operation;
At 0.5 DEG C of < of temperature difference △ T1, controls left air door and close, into left side normal operation mode.
Under the comfortable wind mode in right side, in the blowing range of right air outlet when someone:
When temperature difference T2 >=10 DEG C △, controls right air door and be opened to full gate degree, control right fan operation;
At 10 DEG C of < of 0.5 DEG C≤temperature difference △ T2, controls right air door and be opened to the first aperture, control right fan operation;
At 0.5 DEG C of < of temperature difference △ T2, controls right air door and close, into right side normal operation mode.
Above-mentioned value is chosen by the first setting temperature difference and the second setting temperature difference, temperature difference △ T1 and temperature difference △ T2 are drawn respectively It is divided into three sections, according to the aperture of place range restraint left air door and right air door, to adjust left air outlet and right air outlet Leaving air temp is improved the user experience by comfortable wind to user.
In the present embodiment, the first aperture is the 1/3~1/2 of full gate degree.Such as, full gate degree is indicated with MAX, then the first aperture For 1/3*MAX~1/2*MAX.First aperture chooses above range, has both avoided entering caused by value is too small through left/right by-pass port The too small caused leaving air temp of air quantity in left/right air duct is lower, and avoids entering caused by value is excessive through left/right by-pass port The excessive caused leaving air temp of air quantity in left/right air duct is higher, influences refrigeration effect.
In the present embodiment, under the normal operation mode of left side, left air door is closed, and is completely enclosed left by-pass port, is avoided a left side By-pass port influences the leaving air temp of left air outlet.Under the normal operation mode of right side, right air door is closed, and completely encloses right bypass Mouthful, avoid right by-pass port from influencing the leaving air temp of right air outlet.In the normal operating mode, left air door is closed, and right air door is closed, Left by-pass port and right by-pass port are completely closed, the leaving air temp for influencing left air outlet and right air outlet is avoided.
Normal operation mode further includes fast cooling mode.Under fast cooling mode, left air door is closed, and right air door closes It closes, left blower and right blower are run simultaneously, and the first electric expansion valve is opened, and the second electric expansion valve is opened, and left motor 35 operates Drive air from left air inlet 20-3 to enter left air duct 21, then flow through after left heat exchanger 32 exchanged heat, by left spiral case 33, Left air outlet 20-3 is entered the room, and realizes left air outlet 20-3 outlet air;The right operating of motor 45 drives air from right air outlet 20-4 Into right air duct 22, then flows through after right heat exchanger 42 exchanged heat, is entered the room by right spiral case 43, right air outlet 20-4, Right air outlet 20-4 outlet air is realized, to realize indoor fast cooling wet down or be rapidly heated.
Normal operation mode further includes extending life pattern.In the case where extending life pattern, left air door is closed, and right air door closes It closes, perhaps right blower isolated operation or left blower and right blower alternate run, quickening air flow for left blower isolated operation, The significant fast cooling of energy, is able to extend the air-conditioning service life, reduces the noise in use, energy-saving, and improves motor, fan use Service life reduces fatigue damage.
Normal operation mode further includes energy-saving mode.In the energy-saving mode, left air door is closed, and right air door is closed, left blower With right fan operation, if in the blowing range of left air outlet nobody time >=first setting time and right air outlet air-supply Nobody time >=first setting time in range, then air-conditioning shuts down.The long-time nothing i.e. in the blowing range of two air outlets When people, air-conditioning is closed, saves the energy.In the present embodiment, the first setting time is 120 minutes, and the time had both been avoided too short to cause Air-conditioning frequent start-stop, and avoid waste of energy caused by overlong time.
As another preferred design of the present embodiment, in the energy-saving mode, if in the blowing range of left air outlet Nobody time >=first setting time and temperature difference △ T1 < second set in the temperature difference and the blowing range of right air outlet nobody Time >=first setting time and temperature difference △ T2 < second set the temperature difference, then air-conditioning shut down.I.e. in the air-supply of two air outlets When nobody, the temperature difference are smaller for a long time in range, air-conditioning is closed, saves the energy.In the present embodiment, the first setting time is 120 Minute, air-conditioning frequent start-stop caused by not only having avoided the time too short, but also avoid waste of energy caused by overlong time.In the present embodiment In, second sets the temperature difference as 0.5 DEG C, waste of energy caused by not only having avoided the temperature difference too small, but also avoids influencing caused by excessive temperature differentials User experience.
Left temperature sensor by the way that left air inlet is arranged in acquires the temperature signal of left air inlet, and is sent to control Making sheet, control panel calculate the temperature of left air inlet and the temperature difference △ T1 of setting target temperature;By being arranged in right air inlet Right temperature sensor, acquire the temperature signal of right air inlet, and be sent to control panel, control panel calculates right air inlet The temperature difference △ T2 of temperature and setting target temperature.By the way that left temperature sensor and right temperature sensor is arranged, temperature detection is convenient, At low cost, effect is good.
By the way that the left infrared sensor near left air outlet is arranged in, whether have in the blowing range to detect left air outlet People;By the way that the right infrared sensor near right air outlet is arranged in, in the blowing range to detect right air outlet whether someone.It is logical It crosses and left infrared sensor and right infrared sensor is set, easy to detect, at low cost, effect is good.
Certainly, the above description is not a limitation of the present invention, and the present invention is also not limited to the example above, this technology neck The variations, modifications, additions or substitutions that the those of ordinary skill in domain is made within the essential scope of the present invention, also should belong to this hair Bright protection scope.

Claims (10)

1. a kind of air conditioning control method, it is characterised in that: air conditioner indoor unit includes shell, is formed on the left plate of the shell There is left air inlet, right air inlet is formed on the right side plate of the shell, is formed with a left side on the front panel of the shell and goes out Air port and right air outlet, the left air outlet is close to left air inlet, and the right air outlet is close to right air inlet;In the shell Be formed with air duct, be laid in the air duct in partition, air duct is separated into left air duct and right air duct by the middle partition;It is described Left air duct is connected to left air inlet and left air outlet;The right air duct is connected to right air inlet and right air outlet;In the left air duct It is provided with left heat exchanger and left blower;Right heat exchanger and right blower are provided in the right air duct;It is formed on the housing There are left by-pass port and right by-pass port, the left by-pass port is connected to left air duct and the interior space, is provided at the left by-pass port Left air door;The right by-pass port is connected to right air duct and the interior space, is provided with right air door at the right by-pass port;
The control method includes:
(1) judge in the blowing range of left air outlet whether someone;
If so, entering the comfortable wind mode in left side executes following step under the comfortable wind mode in left side:
Obtain the temperature of left air inlet and the temperature difference △ T1 of setting target temperature;
If temperature difference △ T1 >=first sets the temperature difference, controls left air door and be opened to full gate degree, control left fan operation;
If the second setting temperature difference≤temperature difference △ T1 < first sets the temperature difference, controls left air door and be opened to the first aperture, control is left Fan operation;
If temperature difference △ T1 < second sets the temperature difference, controls left air door and close;
(2) judge in the blowing range of right air outlet whether someone;
If so, entering the comfortable wind mode in right side executes following step under the comfortable wind mode in right side:
Obtain the temperature of right air inlet and the temperature difference △ T2 of setting target temperature;
If temperature difference △ T2 >=first sets the temperature difference, controls right air door and be opened to full gate degree, control right fan operation;
If the second setting temperature difference≤temperature difference △ T2 < first sets the temperature difference, controls right air door and be opened to the first aperture, control is right Fan operation;
If temperature difference △ T2 < second sets the temperature difference, controls right air door and close;
Wherein, 0 < the first aperture < full gate degree;
Step (1) and step (2) unlimited sequence.
2. control method according to claim 1, it is characterised in that:
As nobody in the blowing range of left air outlet, air-conditioning enters left side normal operation mode;Mould is operated normally in left side Under formula, left air door is closed;
As nobody in the blowing range of right air outlet, air-conditioning enters right side normal operation mode;Mould is operated normally on right side Under formula, right air door is closed.
3. control method according to claim 1, it is characterised in that: as nobody in the blowing range of left air outlet and In the blowing range of right air outlet when nobody, air-conditioning enters normal operation mode;
In the normal operating mode, left air door is closed, and right air door is closed.
4. control method according to claim 3, it is characterised in that: the normal operation mode further includes fast cooling mould Formula;
Under fast cooling mode, left blower and right blower are run simultaneously.
5. control method according to claim 3, it is characterised in that: the normal operation mode includes extending service life mould Formula;
In the case where extending life pattern, perhaps right blower isolated operation or left blower and right blower replace for left blower isolated operation Operation.
6. control method according to claim 3, it is characterised in that: the normal operation mode further includes energy-saving mode;
In the energy-saving mode, if nobody time >=first setting time and right air outlet in the blowing range of left air outlet Nobody time >=first setting time in blowing range, then air-conditioning shuts down.
7. control method according to claim 6, it is characterised in that: in the energy-saving mode, if the air-supply model of left air outlet Enclose it is interior nobody time >=first setting time and temperature difference △ T1 < second set in the temperature difference and the blowing range of right air outlet Nobody time >=first setting time and the setting temperature difference of temperature difference △ T2 < second, then air-conditioning shuts down.
8. control method according to claim 1, it is characterised in that: first sets the temperature difference as 10 DEG C, and second sets the temperature difference It is 0.5 DEG C.
9. control method according to claim 1, it is characterised in that: the first aperture is the 1/3~1/2 of full gate degree.
10. control method according to claim 1, it is characterised in that:
Left temperature sensor by the way that left air inlet is arranged in acquires the temperature signal of left air inlet, and is sent to control Plate, control panel calculate the temperature of left air inlet and the temperature difference △ T1 of setting target temperature;
By the way that the right temperature sensor of right air inlet is arranged in, the temperature signal of right air inlet is acquired, and be sent to control Plate, control panel calculate the temperature of right air inlet and the temperature difference △ T2 of setting target temperature;
By the way that the left infrared sensor near left air outlet is arranged in, in the blowing range to detect left air outlet whether someone;
By the way that the right infrared sensor near right air outlet is arranged in, in the blowing range to detect right air outlet whether someone.
CN201810973990.5A 2018-08-24 2018-08-24 A kind of air conditioning control method Pending CN109237707A (en)

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CN113883648A (en) * 2020-07-02 2022-01-04 青岛海尔空调电子有限公司 Control method and system for indoor unit of air conditioner
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CN114110778A (en) * 2021-11-10 2022-03-01 珠海格力电器股份有限公司 Wall-mounted air conditioner and control method

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