WO2020133915A1 - Procédé de détection de défaillance de corps de soupape de système de climatisation, et système de climatisation associé - Google Patents

Procédé de détection de défaillance de corps de soupape de système de climatisation, et système de climatisation associé Download PDF

Info

Publication number
WO2020133915A1
WO2020133915A1 PCT/CN2019/089849 CN2019089849W WO2020133915A1 WO 2020133915 A1 WO2020133915 A1 WO 2020133915A1 CN 2019089849 W CN2019089849 W CN 2019089849W WO 2020133915 A1 WO2020133915 A1 WO 2020133915A1
Authority
WO
WIPO (PCT)
Prior art keywords
outdoor unit
threshold
outdoor
coil temperature
absolute value
Prior art date
Application number
PCT/CN2019/089849
Other languages
English (en)
Chinese (zh)
Inventor
王命仁
李骏
杨国忠
谭志军
Original Assignee
合肥美的暖通设备有限公司
广东美的暖通设备有限公司
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 合肥美的暖通设备有限公司, 广东美的暖通设备有限公司 filed Critical 合肥美的暖通设备有限公司
Publication of WO2020133915A1 publication Critical patent/WO2020133915A1/fr

Links

Images

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
    • F24F11/32Responding to malfunctions or emergencies
    • F24F11/38Failure diagnosis
    • 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
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/52Indication arrangements, e.g. displays
    • 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
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/61Control or safety arrangements characterised by user interfaces or communication using timers
    • 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

Definitions

  • the present application relates to the technical field of air conditioning, and in particular, to a valve body failure detection method of an air conditioning system and an air conditioning system.
  • the outdoor units are usually turned on in turn, which can effectively improve the service life of the air conditioning system.
  • the electronic expansion valve connected to the outdoor heat exchanger may fail due to the heating of the valve body's own electromagnetic coil, or the port of the control main board may be unsoldered to cause the electronic expansion valve to fail.
  • the failure of the electronic expansion valve will cause the operating parameters of the air-conditioning system to change and cannot effectively execute the control logic, thus resulting in poor reliability of the air-conditioning system.
  • the embodiments of the present application provide a valve body failure detection method of an air conditioning system and an air conditioning system.
  • the valve body failure detection method is applied to an air conditioning system.
  • the air conditioning system includes at least two outdoor units.
  • the outdoor unit includes a heat exchanger and a throttle valve connected to the heat exchanger.
  • the detection Methods include:
  • the valve body failure detection method of the air-conditioning system can determine the throttle valve of the non-operating outdoor unit according to the absolute value of the difference between the coil temperature of the heat exchanger of the non-operating outdoor unit and the outdoor ambient temperature Whether it fails, so as to ensure the reliability of the air conditioning system.
  • obtaining the coil temperature of the heat exchanger of the outdoor unit that is not in operation includes: When the degree of superheat of the compressor of the outdoor unit is less than the first threshold value and lasts for a first period of time, the coil temperature of the heat exchanger of the outdoor unit that is not in operation is obtained.
  • obtaining the coil temperature of the heat exchanger of the outdoor unit that is not in operation includes: When the outdoor unit includes at least two and the minimum compressor superheat of the outdoor unit in operation is less than the first threshold, the coil temperature of the heat exchanger of the outdoor unit that is not in operation is obtained.
  • the outdoor unit includes at least one heat exchanger, each of the heat exchangers is connected to the throttle valve, and the compressor superheat of the outdoor unit during operation is less than Obtaining the coil temperature of the heat exchanger of the outdoor unit that is not in operation at the first threshold includes: when the compressor superheat of the outdoor unit in operation is less than the first threshold, obtaining the same non-operation The coil temperature of all the heat exchangers of the outdoor unit; determine whether the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than a second threshold, including one of the following: one by one for each Whether the absolute value of the difference between the coil temperature of the heat exchanger and the outdoor ambient temperature is greater than the second threshold; selecting one of the coils among all the coil temperatures of the heat exchanger according to a preset condition Temperature and determine whether the absolute value of the difference between the selected coil temperature and the outdoor ambient temperature is greater than the second threshold.
  • the preset condition is a minimum coil temperature among coil temperatures of all the heat exchangers of the same outdoor unit that is not in operation.
  • determining that the throttle valve of the outdoor unit that is not operating is ineffective includes: When the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold value and lasts for a second duration, it is determined that the throttle valve of the outdoor unit that is not operating is invalid.
  • the second threshold includes a first sub-threshold.
  • the failure of the throttle valve of the outdoor unit in operation includes: in the pure heating mode, the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the first sub-threshold and continues During the second time period, it is determined that the throttle valve of the outdoor unit that has not been operated fails.
  • the second threshold includes a second sub-threshold.
  • the failure of the throttle valve of the outdoor unit in operation includes: in the pure cooling mode, when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second sub-threshold value and continues During the second time period, it is determined that the throttle valve of the outdoor unit that has not been operated fails.
  • the detection method includes: when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is not greater than the second threshold, it is determined that the throttle of the outdoor unit that is not operating The valve is effective.
  • the detection method includes: after it is determined that the throttle valve of the outdoor unit that has not been operated fails, prompting a valve body failure.
  • the air conditioning system includes at least two outdoor units and a controller.
  • the outdoor unit includes a heat exchanger and a throttle valve connected to the heat exchanger.
  • the controller is used to operate When the compressor superheat of the outdoor unit is less than the first threshold, obtain the coil temperature of the heat exchanger of the outdoor unit that is not in operation, and determine the difference between the coil temperature and the outdoor ambient temperature Whether the absolute value is greater than a second threshold, and used to determine that the throttle valve of the outdoor unit that is not operating is invalid when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold.
  • the air-conditioning system can determine whether the throttle valve of the non-operating outdoor unit is invalid according to the absolute value of the difference between the coil temperature of the heat exchanger of the non-operating outdoor unit and the outdoor ambient temperature, thereby ensuring air conditioning System reliability.
  • the controller is used to obtain the heat exchanger of the outdoor unit that is not in operation when the superheat of the compressor of the outdoor unit in operation is less than the first threshold for a first duration Coil temperature.
  • the controller is used to obtain unoperated when the outdoor unit in operation includes at least two and the minimum compressor superheat of the outdoor unit in operation is less than the first threshold The coil temperature of the heat exchanger of the outdoor unit.
  • the outdoor unit includes at least one of the heat exchangers, each of the heat exchangers is connected to the throttle valve, and the controller is used for the operation of the outdoor unit
  • the controller is used to determine the temperature of each heat exchanger one by one. Whether the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold, or used to select one of the coil temperatures of all the heat exchanger coil temperatures according to a preset condition And it is determined whether the absolute value of the difference between the selected coil temperature and the outdoor ambient temperature is greater than the second threshold.
  • the preset condition is a minimum coil temperature among coil temperatures of all the heat exchangers of the same outdoor unit that is not in operation.
  • the controller is configured to determine that the outdoor unit is not in operation when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold for a second duration Of the throttle valve failed.
  • the second threshold includes a first sub-threshold.
  • the controller In the pure heating mode, the controller is used to determine that the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the When the first sub-threshold value lasts for the second duration, it is determined that the throttle valve of the outdoor unit that has not been operated fails.
  • the second threshold includes a second sub-threshold.
  • the controller In the pure cooling mode, the controller is used for when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the first When two sub-thresholds continue for the second duration, it is determined that the throttle valve of the outdoor unit that has not been operated is invalid.
  • the controller is used to determine that the throttle valve of the outdoor unit that is not operating when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is not greater than the second threshold effective.
  • the controller is used to notify the valve body of a failure after determining that the throttle valve of the outdoor unit that has not been operated fails.
  • FIG. 1 is a schematic flowchart of a valve body failure detection method of an air conditioning system according to an embodiment of the present application
  • FIG. 2 is a schematic block diagram of an air-conditioning system according to an embodiment of the present application.
  • FIG. 3 is another schematic flowchart of a valve body failure detection method of an air-conditioning system according to an embodiment of the present application
  • FIG. 4 is another schematic flowchart of a valve body failure detection method of an air conditioning system according to an embodiment of the present application.
  • FIG. 5 is another schematic flowchart of the valve body failure detection method of the air-conditioning system according to the embodiment of the present application.
  • FIG. 6 is another schematic flowchart of a valve body failure detection method of an air conditioning system according to an embodiment of the present application.
  • FIG. 7 is another schematic flowchart of the valve body failure detection method of the air-conditioning system according to the embodiment of the present application.
  • FIG. 8 is another schematic flowchart of a valve body failure detection method of an air conditioning system according to an embodiment of the present application.
  • the air conditioning system 100 the outdoor unit 10, the heat exchanger 12, the throttle valve 14, the compressor 16, the four-way valve 18, the indoor unit 20, and the controller 30.
  • first and second are used for description purposes only, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features.
  • the features defined as “first” and “second” may explicitly or implicitly include one or more of the features.
  • the meaning of “plurality” is two or more, unless otherwise specifically limited.
  • the terms “installation”, “connected”, and “connected” should be understood in a broad sense, for example, it can be a fixed connection or It is a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or can communicate with each other; it can be directly connected, or it can be indirectly connected through an intermediary, it can be a connection between two components or two components Interaction.
  • installation should be understood in a broad sense, for example, it can be a fixed connection or It is a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or can communicate with each other; it can be directly connected, or it can be indirectly connected through an intermediary, it can be a connection between two components or two components Interaction.
  • the valve body failure detection method according to the embodiment of the present application is applied to the air conditioning system 100.
  • the air-conditioning system 100 includes at least two outdoor units 10 and a plurality of indoor units 20. At least two outdoor units 10 are connected in parallel, a plurality of indoor units 20 are connected in parallel, and the outdoor units 10 are connected to the indoor units 20.
  • the refrigerant circulates between the outdoor unit 10 and the indoor unit 20. In the air conditioning system 100, both the high-pressure pipe and the low-pressure pipe are connected in parallel.
  • Each outdoor unit 10 includes a heat exchanger 12 and a throttle valve 14 connected to the heat exchanger 12.
  • Each outdoor unit 10 also includes a compressor 16 and a four-way valve 18 connected to the compressor 16.
  • the throttle valve 14 adjusts the opening degree according to a preset program or a control signal to adjust the amount of cold coal entering the heat exchanger 12. For example, opening the large throttle valve 14 can increase the amount of cold coal entering the outdoor unit 10, and closing the small throttle valve 14 can reduce the amount of cold coal entering the outdoor unit 10.
  • the throttle valve 14 is an electronic expansion valve. Electronic expansion valves include electromagnetic expansion valves and electric expansion valves.
  • the throttle valve 14 is an electromagnetic expansion valve.
  • the detection methods include:
  • Step S10 When the compressor superheat of the outdoor unit 10 in operation is less than the first threshold, obtain the coil temperature of the heat exchanger 12 of the outdoor unit 10 in operation;
  • Step S20 Determine whether the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold
  • Step S30 When the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold, it is determined that the throttle valve 14 of the outdoor unit 10 that has not been operated fails.
  • the valve body failure detection method of the air-conditioning system 100 can determine the unoperated outdoor unit 10 according to the absolute value of the difference between the coil temperature of the heat exchanger 12 of the unoperated outdoor unit 10 and the outdoor ambient temperature Whether the throttle valve 14 fails, thereby ensuring the reliability of the air conditioning system 100.
  • the air-conditioning system 100 of the embodiment of the present application may form a multi-line system.
  • the multi-line system means that at least one outdoor unit 10 is connected to two or more indoor units 20 through piping.
  • the air-conditioning system 100 includes at least two outdoor units 10.
  • the multi-connection system can be a two-control multi-connection system or a three-control heat recovery multi-connection system.
  • the air-conditioning system 100 is a two-control parallel multi-connection system.
  • the four-way valve 18 and the throttle valve 14 of the outdoor unit 10 that are not in operation are in a closed state. Therefore, before detecting whether the throttle valve 14 of the non-operating outdoor unit 10 fails, you can first determine whether the throttle valve 14 of the non-operating outdoor unit 10 has been adjusted to the minimum (that is, in the closed state) to improve the detection accuracy degree.
  • the compressor superheat degree refers to the compressor superheat degree of exhaust, that is, the temperature difference between the exhaust temperature of the compressor exhaust pipe and the saturation temperature corresponding to the exhaust high pressure.
  • the failure of the throttle valve 14 means that the throttle valve 14 loses effective control.
  • the throttle valve 14 is effective means that the throttle valve 14 can be effectively controlled.
  • step S10 includes step S12: when the compressor superheat of the outdoor unit 10 in operation is less than the first threshold and lasts for the first duration, the replacement of the outdoor unit 10 that is not in operation is acquired.
  • the compressor superheat of the outdoor unit 10 in operation has remained less than the first threshold value, indicating that the throttle valve 14 of the outdoor unit 10 that is not in operation is more likely to fail.
  • the first threshold is 4-6°C, preferably, the first threshold is 5°C.
  • the first duration is 3-7 minutes, preferably, the first duration is 5 minutes.
  • the minimum compressor superheat is selected and compared with the first threshold to save time.
  • the outdoor unit 10 includes at least one heat exchanger 12, and each heat exchanger 12 is connected with a throttle valve 14.
  • Step S10 includes: when the compressor superheat of the outdoor unit 10 in operation is less than the first threshold, acquiring coil temperatures of all the heat exchangers 12 of the same outdoor unit 10 that is not in operation.
  • Step S20 includes determining one by one whether the absolute value of the difference between the coil temperature of each heat exchanger 12 and the outdoor ambient temperature is greater than the second threshold.
  • the outdoor unit 10 may include one heat exchanger 12, two heat exchangers 12, or more than two heat exchangers 12. Each heat exchanger 12 is connected with a throttle valve 14. It is assumed that in the air conditioning system 100, the outdoor unit 10 includes two or more heat exchangers 12, and there are two outdoor units 10 that are not in operation, and the valve body failure detection needs to be performed separately. For example, after the detection of one non-operational outdoor unit 10 is completed, another non-operational outdoor unit 10 is detected.
  • the compressor superheat of the outdoor unit 10 in operation is less than the first threshold, obtain the coil temperatures of all the heat exchangers 12 of one of the outdoor units 10 that are not in operation, and then determine the temperature of each heat exchanger 12 one by one. Whether the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold. When it is determined that the absolute value of the difference between the temperature of one of the coils and the outdoor ambient temperature is greater than the second threshold, it may be determined that the throttle valve 14 of the outdoor unit 10 that has not been operated fails to terminate the detection. Of course, after determining that a certain throttle valve 14 has failed, it may continue to determine whether other throttle valves 14 have failed until all the throttle valves 14 have been confirmed. In this way, it can be determined which throttle valve 14 fails, which is convenient for maintenance.
  • the number of coil temperatures acquired does not necessarily correspond to the number of heat exchangers 12. That is to say, the number of coil temperatures acquired may be the same as the number of heat exchangers 12, or the number of coil temperatures acquired may be less than the number of heat exchangers 12.
  • step S20 includes: selecting one of the coil temperatures of all the heat exchangers 12 according to preset conditions and determining whether the absolute value of the difference between the selected coil temperature and the outdoor ambient temperature is greater than The second threshold.
  • the preset condition is the minimum coil temperature among the coil temperatures of all heat exchangers 12 of the same outdoor unit 10 that is not in operation.
  • comparing the absolute value of the difference between the minimum coil temperature and the outdoor ambient temperature of the coil temperature of all the heat exchangers 12 of the same outdoor unit 10 that is not in operation directly and the second threshold value can save the detection time, It is quickly determined whether the throttle valve 14 of the outdoor unit 10 that is not in operation has failed. If the absolute value of the difference between the minimum coil temperature and the outdoor environment temperature is not greater than the second threshold, it means that the absolute value of the difference between the temperature of the other coils and the outdoor environment temperature is also not greater than the second threshold. If the absolute value of the difference between the minimum coil temperature and the outdoor ambient temperature is greater than the second threshold, it is determined that the throttle valve 14 has failed in the outdoor unit 10 that is not operating.
  • step S30 includes step S32: when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold value and continues for the second duration, it is determined that the outdoor unit 10 is not in operation. The throttle valve 14 has failed.
  • step S32 includes step S322: In the pure heating mode, when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the first sub-threshold value and continues for the second duration, it is determined that the outdoor unit 10 is not in operation Throttle valve 14 fails. Referring to FIG.
  • step S32 includes step S324: In the pure cooling mode, when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second sub-threshold value and continues for the second duration, it is determined that the outdoor unit 10 is not in operation. The throttle valve 14 has failed.
  • the first sub-threshold value is 28-32°C, preferably, the first sub-threshold value is 30°C.
  • the second sub-threshold value is 8-12°C, preferably, the second sub-threshold value is 10°C.
  • the second duration is 15-25 minutes, preferably, the second duration is 20 minutes.
  • the pure heating mode means that all indoor units 20 are used for heating.
  • the pure cooling mode means that all indoor units 20 are used for cooling.
  • the detection method includes: after judging that the throttle valve 14 of the outdoor unit 10 that has not been operated fails, prompting the valve body to malfunction.
  • valve body failure the specific cause of the fault can be investigated and repaired.
  • the user can be prompted to play the voice "valve body failure" through the speaker. Or you can use a buzzer to sound a special sound to remind the user.
  • At least two outdoor units 10 of the air conditioning system 100 operate in rotation.
  • the outdoor unit 10 includes a heat exchanger 12 and a throttle valve 14 connected to the heat exchanger 12.
  • step S12 when the compressor superheat of the outdoor unit 10 in operation is less than the first threshold value and lasts for the first duration, obtain the outdoor unit that is not in operation
  • step S20 determine whether the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold
  • step S322 the difference between the coil temperature and the outdoor ambient temperature
  • step S12 when the air-conditioning system 100 is in the pure cooling mode, step S12 is first performed: when the compressor superheat of the outdoor unit 10 in operation is less than the first threshold and lasts for the first duration, the outdoor unit 10 that is not in operation is acquired The coil temperature of the heat exchanger 12 of the heat exchanger; then perform step S20: determine whether the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold; then perform step S324: the difference between the coil temperature and the outdoor ambient temperature When the absolute value is greater than the second sub-threshold value and continues for the second duration, it is determined that the throttle valve 14 of the outdoor unit 10 that has not been operated fails.
  • the air-conditioning system 100 includes at least two outdoor units 10 and a controller 30.
  • the outdoor unit 10 includes a heat exchanger 12 and a throttle valve 14 connected to the heat exchanger 12.
  • the controller 30 is used to obtain the coil temperature of the heat exchanger 12 of the outdoor unit 10 that is not in operation when the compressor superheat of the outdoor unit 10 in operation is less than the first threshold, and to determine the coil temperature and the outdoor environment Whether the absolute value of the temperature difference is greater than the second threshold, and when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold, it is determined that the throttle valve 14 of the outdoor unit 10 that is not operating is ineffective.
  • step S10, step S20, and step S30 of the valve body failure detection method of the air conditioning system 100 described above can be implemented by the controller 30.
  • the controller 30 may be installed in one of the outdoor units 10 or in one of the indoor units 20.
  • the air-conditioning system 100 can determine whether the throttle valve 14 of the unoperated outdoor unit 10 is based on the absolute value of the difference between the coil temperature of the heat exchanger 12 of the unoperated outdoor unit 10 and the outdoor ambient temperature Failure, thereby ensuring the reliability of the air conditioning system 100.
  • valve body failure detection method of the air-conditioning system 100 of the above embodiment are also applicable to the air-conditioning system 100 of this embodiment, and to avoid redundancy, they will not be described in detail here.
  • the controller 30 is used to obtain the coil of the heat exchanger 12 of the outdoor unit 10 that is not in operation when the superheat of the compressor of the outdoor unit 10 is less than the first threshold value and lasts for the first duration. temperature.
  • step S12 of the valve body failure detection method of the air conditioning system 100 described above can be implemented by the controller 30.
  • the outdoor unit 10 includes at least one heat exchanger 12, and each heat exchanger 12 is connected with a throttle valve 14.
  • the controller 30 is used to obtain the coil temperature of all the heat exchangers 12 of the same outdoor unit 10 when the compressor superheat of the outdoor unit 10 in operation is less than the first threshold.
  • the controller 30 is used to determine one by one whether the absolute value of the difference between the coil temperature of each heat exchanger 12 and the outdoor ambient temperature is greater than the second threshold, or to determine the temperature of the coils of all the heat exchangers 12 according to preset conditions Select one of the coil temperatures and determine whether the absolute value of the difference between the selected coil temperature and the outdoor ambient temperature is greater than the second threshold.
  • the preset condition is a minimum coil temperature among coil temperatures of all heat exchangers 12 of the same outdoor unit 10 that is not in operation.
  • the controller 30 is configured to determine that the throttle valve 14 of the outdoor unit 10 that has not been operated fails when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second threshold for a second duration.
  • step S32 of the valve body failure detection method of the air-conditioning system 100 described above can be implemented by the controller 30.
  • the second threshold includes the first sub-threshold.
  • the controller 30 is used to determine that the throttle valve 14 of the outdoor unit 10 that has not been operated fails when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the first sub-threshold value for a second duration .
  • step S322 of the above-mentioned valve body failure detection method of the air-conditioning system 100 can be implemented by the controller 30.
  • the second threshold includes a second sub-threshold.
  • the controller 30 is used to determine that the throttle valve 14 of the outdoor unit 10 that has not been operated fails when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is greater than the second sub-threshold value for a second duration.
  • step S324 of the valve body failure detection method of the air conditioning system 100 described above can be implemented by the controller 30.
  • the controller 30 is used to determine that the throttle valve 14 of the outdoor unit 10 that is not operating is effective when the absolute value of the difference between the coil temperature and the outdoor ambient temperature is not greater than the second threshold.
  • the controller 30 is used to notify the valve body of a failure after determining that the throttle valve 14 of the outdoor unit 10 that is not in operation has failed.
  • Any process or method description in a flowchart or otherwise described herein may be understood as representing a module, segment, or portion of code that includes one or more executable instructions for implementing specific logical functions or steps of a process , And the scope of the preferred embodiments of the present application includes additional implementations, in which the functions shown may not be in the order shown or discussed, including performing the functions in a substantially simultaneous manner or in reverse order according to the functions involved, which shall It is understood by those skilled in the art to which the embodiments of the present application belong.
  • a "computer-readable medium” may be any device that can contain, store, communicate, propagate, or transmit a program for use by or in connection with an instruction execution system, apparatus, or device.
  • computer-readable media include the following: electrical connections (electronic devices) with one or more wires, portable computer cartridges (magnetic devices), random access memory (RAM), Read only memory (ROM), erasable and editable read only memory (EPROM or flash memory), fiber optic devices, and portable compact disk read only memory (CDROM).
  • the computer-readable medium may even be paper or other suitable medium on which the program can be printed, because, for example, by optically scanning the paper or other medium, followed by editing, interpretation, or other appropriate if necessary Process to obtain the program electronically and then store it in computer memory.
  • each part of the embodiments of the present application may be implemented by hardware, software, firmware, or a combination thereof.
  • multiple steps or methods may be implemented in software or firmware stored in memory and executed by a suitable instruction execution system.
  • a logic gate circuit for implementing a logic function on a data signal
  • PGA programmable gate arrays
  • FPGA field programmable gate arrays
  • each functional unit in each embodiment of the present application may be integrated into one processing module, or each unit may exist alone physically, or two or more units may be integrated into one module.
  • the above integrated modules can be implemented in the form of hardware or software function modules. If the integrated module is implemented in the form of a software function module and sold or used as an independent product, it may also be stored in a computer-readable storage medium.
  • the storage medium mentioned above may be a read-only memory, a magnetic disk or an optical disk.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Combustion & Propulsion (AREA)
  • Human Computer Interaction (AREA)
  • Signal Processing (AREA)
  • Mathematical Physics (AREA)
  • Fuzzy Systems (AREA)
  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Biomedical Technology (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

L'invention concerne un procédé de détection d'une défaillance d'un corps de soupape d'un système de climatisation (100), et le système de climatisation (100) associé. Le système de climatisation (100) comprend au moins deux unités extérieures (10), et les unités extérieures (10) comprennent des échangeurs de chaleur (12), et des soupapes d'étranglement (14) reliées aux échangeurs de chaleur (12). Le procédé de détection consiste : à obtenir, lorsque le degré de surchauffe d'un compresseur de l'unité extérieure (10) actionnée est inférieur à un premier seuil, une température de serpentin de l'échangeur de chaleur (12) de l'unité extérieure (10) non actionnée ; à déterminer si une valeur absolue de la différence entre la température de serpentin et une température de l'environnement extérieur est supérieure à un second seuil ; et, si la valeur absolue de la différence entre la température de serpentin et la température de l'environnement extérieur est supérieure au second seuil, à déterminer la défaillance de la soupape d'étranglement (14) de l'unité extérieure (10) non actionnée.
PCT/CN2019/089849 2018-12-29 2019-06-03 Procédé de détection de défaillance de corps de soupape de système de climatisation, et système de climatisation associé WO2020133915A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201811631070.1 2018-12-29
CN201811631070.1A CN109708248B (zh) 2018-12-29 2018-12-29 空调系统的阀体失效检测方法及空调系统

Publications (1)

Publication Number Publication Date
WO2020133915A1 true WO2020133915A1 (fr) 2020-07-02

Family

ID=66258095

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/089849 WO2020133915A1 (fr) 2018-12-29 2019-06-03 Procédé de détection de défaillance de corps de soupape de système de climatisation, et système de climatisation associé

Country Status (2)

Country Link
CN (1) CN109708248B (fr)
WO (1) WO2020133915A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP7131358B2 (ja) 2018-12-13 2022-09-06 住友ゴム工業株式会社 空気入りラジアルタイヤ

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109708248B (zh) * 2018-12-29 2020-02-04 广东美的暖通设备有限公司 空调系统的阀体失效检测方法及空调系统
CN113294878B (zh) * 2021-05-11 2022-10-18 宁波奥克斯电气股份有限公司 单向阀泄漏验证方法、装置及空调器

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103851847A (zh) * 2012-12-03 2014-06-11 美的集团股份有限公司 空调电子膨胀阀控制系统、控制方法及多联机空调室外机
CN108361915A (zh) * 2018-02-05 2018-08-03 广东美的制冷设备有限公司 故障检测方法、装置、空调器和计算机可读存储介质
CN109708248A (zh) * 2018-12-29 2019-05-03 广东美的暖通设备有限公司 空调系统的阀体失效检测方法及空调系统

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3776502B2 (ja) * 1996-04-22 2006-05-17 三菱重工業株式会社 マルチ形空気調和機
JP5022920B2 (ja) * 2008-01-16 2012-09-12 三洋電機株式会社 空気調和装置
CN103245154B (zh) * 2012-02-09 2016-08-31 杭州三花研究院有限公司 一种汽车空调系统电子膨胀阀的控制方法
CN102645327B (zh) * 2012-03-31 2015-01-07 宁波奥克斯电气有限公司 多联式空调机组的外机电子膨胀阀是否焊堵的检测方法
CN105485869B (zh) * 2016-01-04 2018-06-19 广东美的暖通设备有限公司 电子膨胀阀故障检测方法和装置
CN105953483B (zh) * 2016-04-25 2018-11-20 广东美的暖通设备有限公司 多联机系统及其室内机节流元件的失效检测方法
CN106500238B (zh) * 2016-09-12 2019-06-14 珠海格力电器股份有限公司 电子膨胀阀故障检测方法、装置及多联机设备系统
CN106440198B (zh) * 2016-09-26 2019-07-26 广东美的暖通设备有限公司 空调系统的室内机的节流阀体的检测方法
CN108613335B (zh) * 2018-03-12 2019-12-27 珠海格力电器股份有限公司 空调的故障检测方法、装置、存储介质和处理器

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103851847A (zh) * 2012-12-03 2014-06-11 美的集团股份有限公司 空调电子膨胀阀控制系统、控制方法及多联机空调室外机
CN108361915A (zh) * 2018-02-05 2018-08-03 广东美的制冷设备有限公司 故障检测方法、装置、空调器和计算机可读存储介质
CN109708248A (zh) * 2018-12-29 2019-05-03 广东美的暖通设备有限公司 空调系统的阀体失效检测方法及空调系统

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
YU, XIAXIA ET AL: "Effect of the Refrigerant Internal Leakage of Electronic Expansion Valve in Indoor Unit for Multi-split Air Conditioners on Integrated Part Load Value", CHINESE JOURNAL OF REFRIGERATION TECHNOLOGY, vol. 35, no. 1, 28 February 2015 (2015-02-28), pages 70 - 73, XP009521770, ISSN: 2095-4468, DOI: 10.3969/j.issn.2095-4468.2015.01.207 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP7131358B2 (ja) 2018-12-13 2022-09-06 住友ゴム工業株式会社 空気入りラジアルタイヤ

Also Published As

Publication number Publication date
CN109708248B (zh) 2020-02-04
CN109708248A (zh) 2019-05-03

Similar Documents

Publication Publication Date Title
JP6548285B2 (ja) 空気調和機の制御方法及び空気調和機
WO2020133915A1 (fr) Procédé de détection de défaillance de corps de soupape de système de climatisation, et système de climatisation associé
US11231216B2 (en) Air conditioner, control device thereof, and method of controlling the same
CN104676845A (zh) 多联机系统及其的控制方法
US11725837B2 (en) Detection of a reversing valve fault
US11639803B2 (en) System and method for identifying causes of HVAC system faults
US11692726B2 (en) System and method for distinguishing HVAC system faults
CN110822664A (zh) 空调的冷媒回收方法、系统及空调
WO2020062597A1 (fr) Procédé, dispositif et système de détection de contenu de réfrigérant d'un appareil de régulation de température, et climatiseur
WO2022068737A1 (fr) Climatiseur et procédé de commande associé, et support de stockage lisible par ordinateur et appareil de commande
US11788753B2 (en) HVAC system fault prognostics and diagnostics
WO2021103418A1 (fr) Climatiseur, procédé de commande d'auto-nettoyage associé et dispositif associé, et support de stockage
WO2023010636A1 (fr) Procédé et dispositif pour détecter l'état d'une soupape haute et basse pression d'un climatiseur, climatiseur et support
JP2002071188A (ja) 熱媒供給異常検出装置
CN112361541B (zh) 用于多联机空调系统的膨胀阀控制方法
CN109916044B (zh) 模式切换控制方法和空调系统
CN107355951B (zh) 空调制冷模式控制方法、装置以及空调
KR102196659B1 (ko) 공기 조화기의 제어장치 및 실외기 제어방법
CN113137716B (zh) 用于多联机系统的膨胀阀类型识别方法及多联机
JP2003294293A (ja) 空気調和機
WO2020248183A1 (fr) Procédé et système d'étalonnage de réfrigérateur, et réfrigérateur associé
CN117146374A (zh) 空调除霜方法、装置、设备、空调和存储介质
CN117537471A (zh) 控制方法和空调系统
CN117190399A (zh) 空调器截止阀堵塞故障检测方法、装置及空调器
CN114484742A (zh) 空调器的控制方法、装置、空调器、控制设备及存储介质

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19903103

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19903103

Country of ref document: EP

Kind code of ref document: A1

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 16/12/2021)

122 Ep: pct application non-entry in european phase

Ref document number: 19903103

Country of ref document: EP

Kind code of ref document: A1