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    • 3. 发明专利
    • HEAT STORAGE TYPE AIR CONDITIONER
    • JPH09126501A
    • 1997-05-16
    • JP28139695
    • 1995-10-30
    • MITSUBISHI HEAVY IND LTD
    • YAMAMOTO SAKAEMORITA AKIO
    • F24F5/00F25B13/00
    • PROBLEM TO BE SOLVED: To average the consumption electric power per day by cutting a power peak in the daytime by providing a heat storage tank and a hot water supply tank between an outdoor machine and an indoor machine, and operating a compressor at night and storing heat in a heat storage member in the heat storage tank. SOLUTION: A heat storage tank 30 is connected with an outdoor machine 20 through a pair of refrigerant pipings 21 for the heat storage tank, and a hot water supply tank 35 is connected with the outdoor machine 20 through a pair of refrigerant pipings 22 for the hot water supply tank. In contrast, a single or a plurality of indoor machines 10 are connected with the heat storage tank 30 through a heat storage member circulation piping 27. At night, a compressor 2 is operated to store heat in the heat storage member 45 in the heat storage tank 30. Hereby, although a circulation pump 28 is operated in the daytime, power consumption is more reduced than that of the compressor 2 having large power consumption so that peak power in the daytime is cut off. Further, since the operation is performed to store heat at night, the amount of power consumption per day is averaged.
    • 4. 发明专利
    • HEAT STORAGE TYPE AIR-CONDITIONER
    • JPH09126500A
    • 1997-05-16
    • JP28139595
    • 1995-10-30
    • MITSUBISHI HEAVY IND LTD
    • YAMAMOTO SAKAEMORITA AKIO
    • F24F5/00F25B13/00
    • PROBLEM TO BE SOLVED: To flatten power consumption during one day by providing a triple layered heat storage tank having a hot water supply heat exchanger, a heat storage heat exchanger and a cold storage heat exchanger, implementing hot water supply operation, heat storage operation and cold storage operation to store heat to thereby cut a peak of power consumption in daytime. SOLUTION: Hot water supply operation: Refrigerant is discharged from a compressor 2 within an outdoor unit 20 and water is heated by a hot water supply heat exchanger 32. The refrigerant is condensed and is evaporated in an air heat exchanger 3 and is made to return to the compressor 2. Thus, hot water is retained in an upper portion of a triple layered heat exchanger 30. Heat storage operation: the refrigerant is discharged by the compressor 2 and the water is heated by a heat storage heat exchanger 33 and the refrigerant is condensed and evaporated in the air heat exchanger 3 and is made to return to the compressor 2. Thus, hot water is retained in a middle portion of the triple layered heat exchanger 30. Cold storage operation: the refrigerant is discharged by the compressor 2, radiates heat in the air heat exchanger 3, is condensed, cools water in a cold storage heat exchanger 34 to make chilled water or ice, is evaporated and is made to return to the compressor 2. These operations are implemented during night time.
    • 7. 发明专利
    • CONTROL DEVICE OF AIR CONDITIONER
    • JPS6029536A
    • 1985-02-14
    • JP13638383
    • 1983-07-26
    • MITSUBISHI HEAVY IND LTD
    • MORITA AKIOKATOU TADAHIRO
    • F24F11/02
    • PURPOSE:To enable to decrease noise, electric current etc. according to the condition during operation by a method wherein an adequate control is made basing the difference between the room temperature and the setting temperature as well as the range of the rotation number of a compressor is selected on the condition during operation. CONSTITUTION:In an air conditioner, thereon the faculty is controlled by changing the number of revolutions of a motor compressor through a frequency conversion device 40 according to the load, in a frequency preliminarily setting means 20, the electric frequency, which is supplied to a compressor driving motor 2, is calculated by the difference between the set temperature, which is established by a room temperature regulator 28 and the room temperature, which is detected by a room temperature detector 24. Futhermore, at a frequency correcting means 30, the number of revolutions of the motor compressor 1 is controlled by correcting the frequency, which was preliminarily set by the frequency preliminarily setting means 20 according to the frequency range, which was set by a frequency range setting means 29. Herewith, when there is necessity to consider power consuming quantity, noise, or radical change of temperature etc., users can operate under an adequate condition by controlling at will.