A vehicle air conditioner selectively switches one of a cooling mode in which an interior heat exchanger of a refrigerant cycle is operated as an evaporator for cooling air, and a hot-gas heating mode in which the interior heat exchanger is operated as a radiator for heating air. The cooling mode is
A vehicle air conditioner selectively switches one of a cooling mode in which an interior heat exchanger of a refrigerant cycle is operated as an evaporator for cooling air, and a hot-gas heating mode in which the interior heat exchanger is operated as a radiator for heating air. The cooling mode is selected by turning on an air-conditioning switch, and the hot-gas heating mode is selected by turning on a hot gas switch. When both the switches are turned on at the same time, a control unit determines a priority mode having a higher necessity among the hot-gas heating mode and the cooling mode. Specifically, the hot-gas heating mode is automatically set by the control unit when the outside air temperature is lower than a predetermined temperature, and the cooling mode is automatically set by the control unit when the outside air temperature is higher than the predetermined temperature.
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What is claimed is: 1. An air conditioner for a vehicle, comprising: an air conditioning case in which air flows toward a passenger compartment of the vehicle; a refrigerant cycle including a compressor for compressing and discharging refrigerant, and an interior heat exchanger for cooling air by a
What is claimed is: 1. An air conditioner for a vehicle, comprising: an air conditioning case in which air flows toward a passenger compartment of the vehicle; a refrigerant cycle including a compressor for compressing and discharging refrigerant, and an interior heat exchanger for cooling air by absorbing heat from air in a cooling mode, the interior heat exchanger being disposed in the air conditioning case to heat air in a heating mode where the refrigerant discharged from the compressor is introduced directly into the interior heat exchanger, the refrigerant cycle being provided to switch one of the cooling mode and the heating mode; a control unit for controlling operation of the refrigerant cycle; a cooling mode switch for outputting an operational command of the cooling mode to the control unit, and a heating mode switch for outputting an operational command of the heating mode to the control unit, the heating mode switch being operated independent from the cooling mode switch, wherein: the control unit selects the cooling mode when the operational command from the cooling mode switch is input to the control unit, and selects the heating mode when the operational command from the heating mode switch is input to the control unit; when the operational commands from both of the cooling mode switch and the heating mode switch are input to the control unit at the same time, the control unit always selects one of the cooling mode and the heating mode and no other mode as a priority mode for. 2. The air conditioner according to claim 1, wherein: the control unit determines the priority mode based on an air temperature outside the passenger compartment; the control unit selects the cooling mode when the air temperature outside the passenger compartment is higher than a predetermined air temperature; and the control unit determines the heating mode when the air temperature outside the passenger compartment is equal to or lower than the predetermined air temperature. 3. The air conditioner according to claim 1, wherein: the control unit determines the priority mode based on an air temperature inside the passenger compartment; the control unit selects the cooling mode when the air temperature inside the passenger compartment is higher than a predetermined air temperature; and the control unit selects the heating mode when the air temperature inside the passenger compartment is equal to or lower than the predetermined air temperature. 4. The air conditioner according to claim 1, wherein: the control unit determines the priority mode based on an air inlet mode for introducing air to be blown toward the interior heat exchanger in the air conditioning case; the control unit selects the cooling mode when the air inlet mode is an inside-air inlet mode in which air inside the passenger compartment is introduced in the air conditioning case to be blown toward the interior heat exchanger; and the control unit selects the heating mode when the air inlet mode is an outside-air inlet mode in which air outside the passenger compartment is introduced in the air conditioning case to be blown toward the interior heat exchanger. 5. The air conditioner according to claim 1, wherein: the control unit determines the priority mode based on an air outlet mode for blowing air after passing through the interior heat exchanger into the passenger compartment; the control unit selects the cooling mode when the air outlet mode is a defrosting-performance enhancing mode in which defrosting performance for defrosting a windshield is enhanced; and the control unit selects the heating mode in an air outlet mode except for the defrosting-performance enhancing mode. 6. The air conditioner according to claim 1, further comprising a heating heat exchanger disposed in the air conditioning case at a downstream air side of the interior heat exchanger, for heating air using water from a vehicle engine as a heat source, wherein the compressor is driven by the vehicle engine. 7. The air conditioner according to claim 1, further comprising a heating heat exchanger disposed in the air conditioning case at a downstream air side of the interior heat exchanger, for heating air using water from a vehicle engine as a heat source, wherein: the control unit determines the priority mode among the cooling mode and the heating mode, based on temperature of water supplied to the heating heat exchanger from the vehicle engine; when the temperature of water supplied to the heating heat exchanger is lower than a predetermined water temperature, the control unit selects the heating mode; and when the temperature of water supplied to the heating heat exchanger is equal to or higher than the predetermined water temperature, the control unit selects the cooling mode. 8. The air conditioner according to claim 2, further comprising a heating heat exchanger disposed in the air conditioning case at a downstream air side of the interior heat exchanger, for heating air using water from a vehicle engine as a heat source, wherein: the control unit determines the priority mode among the cooling mode and the heating mode, based on the air temperature outside the passenger compartment and temperature of water supplied to the heating heat exchanger from the vehicle engine; the control unit selects the heating mode, when the air temperature outside the passenger compartment is equal to or lower than the predetermined air temperature, and when the temperature of water supplied to the heating heat exchanger is lower than a predetermined water temperature. 9. The air conditioner according to claim 1, wherein: the refrigerant cycle includes an exterior heat exchanger in which refrigerant discharged from the compressor is radiated in the cooling mode, and a cooling decompression unit for decompressing the refrigerant from the exterior heat exchanger in the cooling mode; the exterior heat exchanger is disposed outside the air conditioning case; and when the cooling mode is selected as the priority mode, only the cooling mode is performed, and refrigerant decompressed in the cooling decompression unit is evaporated by absorbing heat from air within the air conditioning case during the cooling mode.
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