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    • 1. 发明申请
    • AIR CONDITIONING DEVICE FOR VEHICLE
    • 车用空调装置
    • US20120017637A1
    • 2012-01-26
    • US13143807
    • 2010-01-08
    • Kazuo NakajoToshihiro TakeiYoshitoshi NodaTomohiro MaruyamaJunichiro Hara
    • Kazuo NakajoToshihiro TakeiYoshitoshi NodaTomohiro MaruyamaJunichiro Hara
    • B60H1/03
    • B60H1/03B60H1/00914B60H1/00921B60H2001/00949
    • Provided is a vehicle air conditioning device with a simple structure which can quickly raise the temperature of engine cooling water used for heating the air in a vehicle cabin in an engine start period in a low ambient temperature. The vehicle air conditioning device comprises the following elements integrally connected with each other: a first water heat exchanger (26) provided in the middle of a passage through which an engine cooling water flows from the water jacket of an engine (3) to a heater core (8a), a second water heat exchanger (27) provided in the middle of a passage through which the engine cooling water flows from the heater core (8a) to the water jacket of the engine (3), and a first external heat exchanger (18) for refrigerant condensation provided between the first and second water heat exchangers (26, 27). In the engine start period in a low ambient temperature, the engine cooling water flowing from the water jacket to the heater core (8a) is heated by heat released from the first external heat exchanger (18) to rise in temperature.
    • 本发明提供一种结构简单的车辆用空气调节装置,其能够在低环境温度下,在发动机起动时段内快速提高用于加热车厢内的空气的发动机冷却水的温度。 车辆用空气调节装置包括:一体地连接的以下元件:设置在发动机冷却水从发动机(3)的水套流入加热器的通路的中途的第一水热交换器(26) 芯部(8a),设置在发动机冷却水从加热器芯(8a)流向发动机(3)的水套的通道的中间的第二水热交换器(27),以及第一外部热 用于在第一和第二水热交换器(26,27)之间设置的用于制冷剂冷凝的交换器(18)。 在环境温度低的发动机起动期间,从水套流入加热芯(8a)的发动机冷却水通过从第一外部热交换器(18)释放的热量升温而升温。
    • 3. 发明授权
    • Automotive air conditioning system
    • 汽车空调系统
    • US06604576B2
    • 2003-08-12
    • US08968040
    • 1997-11-12
    • Yoshitoshi NodaHiroyuki YamaguchiTadayoshi TajimaHiroki YoshiokaToshio OhashiKenichi Abe
    • Yoshitoshi NodaHiroyuki YamaguchiTadayoshi TajimaHiroki YoshiokaToshio OhashiKenichi Abe
    • F25B2900
    • F28D7/106B60H1/00342B60H1/00878B60H1/323F28D1/0408
    • An air conditioning system for a vehicle has a first cycle including a compressor, a first condenser, a second condenser, a liquid tank, an expansion valve and an evaporator which are connected through pipes to form a first refrigerant circulation circuit through which a refrigerant flows from an outlet of the compressor to an inlet of the compressor while changing the phase. The first cycle causes the evaporator to act as a cooler when operated. The system further has a second cycle including the compressor, the second condenser, the liquid tank, the evaporator and the evaporator which are connected through pipes to form a second refrigerant circulation circuit through which the refrigerant flows from the outlet of the compressor to the inlet of the compressor while changing the phase. The second cycle causes the condenser to act as a heater and the evaporator to act as a cooler when operated. The first and second cycles are switched by switch means. The system further has an air duct case having an air flow passage in which the second condenser and the evaporator are installed. The air flow passage is connected at its downstream part to a passenger room of the vehicle. The air conditioning system further comprises heater means for heating a returning refrigerant which, under operation of the second cycle, flows in the pipe extending from an outlet of the evaporator to the inlet of the compressor.
    • 一种用于车辆的空调系统具有包括压缩机,第一冷凝器,第二冷凝器,液罐,膨胀阀和蒸发器的第一循环,所述压缩机,第一冷凝器,膨胀阀和蒸发器通过管连接以形成制冷剂流过的第一制冷剂循环回路 在改变相位时,从压缩机的出口到压缩机的入口。 第一个循环使蒸发器在操作时作为冷却器。 该系统还具有包括压缩机,第二冷凝器,液罐,蒸发器和蒸发器的第二循环,其通过管连接以形成第二制冷剂循环回路,制冷剂通过第二制冷剂循环回路从压缩机的出口流到入口 的压缩机。 第二个循环使冷凝器充当加热器,蒸发器在操作时用作冷却器。 第一和第二周期由开关装置切换。 该系统还具有一个具有空气流通道的空气管道壳体,其中安装有第二冷凝器和蒸发器。 气流通道在其下游部分连接到车辆的乘客室。 空调系统还包括用于加热回流制冷剂的加热器装置,其在第二循环的运行中在从蒸发器的出口延伸到压缩机的入口的管中流动。
    • 5. 发明授权
    • Heat pump type air conditioning system for automotive vehicle
    • 汽车用热泵式空调系统
    • US5899086A
    • 1999-05-04
    • US961254
    • 1997-10-30
    • Yoshitoshi NodaHiroyuki YamaguchiToshio OhashiTadayoshi TajimaKaoru Kamiyama
    • Yoshitoshi NodaHiroyuki YamaguchiToshio OhashiTadayoshi TajimaKaoru Kamiyama
    • B60H1/22B60H1/00B60H1/32F25B5/02F25B29/00B60H3/00F25B27/00
    • B60H1/00914B60H1/00921B60H1/323B60H2001/00942B60H2001/00949
    • A heat pump type air conditioning system (A) for air-conditioning a passenger compartment of an automotive vehicle. The air conditioning system comprises first and second units (10, 20). The first unit includes a heater core (12) and a first evaporator (13) while the second unit includes a second condenser (22) and a second evaporator (23). A compressor (2) and a first condenser (3) are disposed outside the first and second units which constitute a refrigeration cycle including the first evaporator (13). A circuit change-over valve (4) is provided to cause flow of the refrigerant discharged from the compressor (2) to be changed over between a refrigeration operation refrigerant circuit including the first condenser and a heating operation refrigerant circuit including a bypass passage for allowing the refrigerant to flow bypassing the first condenser. A third evaporator (30) is disposed outside the first and second units (10, 20). A flow control valve (31) is provided to control a flow amount of the engine coolant circulating through the third evaporator (30) in accordance with a thermal load condition of the vehicle under control of an opening degree of the flow control valve, during the heating operation of the air conditioning system. The flow control valve (31) is set to take its fully closed state to prevent the engine coolant from circulating through the third evaporator (30) when a discharge pressure of the compressor (2) rises to a level not lower a first set value which is lower than a standard value to stop an operation of the compressor, and to take its fully opened state to allow the engine coolant to circulate through the third evaporator (30) when the discharge pressure of the compressor (2) lowers to a level not higher than a second set value which is lower than the first set value.
    • 一种用于空调汽车乘客舱的热泵式空调系统(A)。 空调系统包括第一和第二单元(10,20)。 第一单元包括加热器芯(12)和第一蒸发器(13),而第二单元包括第二冷凝器(22)和第二蒸发器(23)。 压缩机(2)和第一冷凝器(3)设置在构成包括第一蒸发器(13)的制冷循环的第一和第二单元的外部。 提供一种电路换向阀(4),用于使从压缩机(2)排出的制冷剂在包括第一冷凝器的制冷运转制冷剂回路和包括旁通通道的制冷运转制冷剂回路之间转换 旁路制冷剂流过第一冷凝器。 第三蒸发器(30)设置在第一和第二单元(10,20)的外侧。 设置流量控制阀31,用于根据流量控制阀的开度控制车辆的热负荷状态,控制在第三蒸发器30内循环的发动机冷却水的流量。 供暖运行的空调系统。 当压缩机(2)的排出压力上升到不低于第一设定值的第一设定值的水平时,流量控制阀(31)被设定为完全关闭状态,以防止发动机冷却剂通过第三蒸发器(30)循环, 低于标准值以停止压缩机的操作,并且当压缩机(2)的排放压力降低到不是的水平时,采取其完全打开状态以允许发动机冷却剂循环通过第三蒸发器(30) 高于低于第一设定值的第二设定值。
    • 9. 发明授权
    • Automotive air conditioning system
    • 汽车空调系统
    • US5910157A
    • 1999-06-08
    • US984020
    • 1997-12-03
    • Yoshitoshi Noda
    • Yoshitoshi Noda
    • B60H1/00B60H1/32
    • B60H1/323B60H1/00914B60H1/00921B60H2001/00935B60H2001/00949
    • An air conditioning system for a motor vehicle powered by an internal combustion engine has a first system for carrying out a first cycle, which includes a compressor driven by the engine, a main condenser, a first sub-condenser and an evaporator which are connected through pipes to form a first refrigerant circulation circuit through which a refrigerant flows from an outlet of the compressor to an inlet of the same while changing its phase, the first cycle causing the first sub-condenser as a heater and the evaporator as a cooler when operated. The air conditioning system has further a second system for carrying out a second cycle, which includes the compressor and a second sub-condenser which are connected through pipes to form a second refrigerant circulation circuit through which the refrigerant flows from the outlet of the compressor to the inlet of the same while changing its phase, the second cycle causing the second sub-condenser as a heater when operated. First and second independent air flow passages are defined. The first passage has the heater core, the first sub-condenser and the evaporator installed therein, and the second passage has the second sub-condenser installed therein. A sub-evaporator is arranged in the pipe extending from an outlet of the second sub-condenser to an inlet of the compressor. A cooling water circuit is arranged through which engine cooling water of the engine is fed to the sub-evaporator to carry out heat exchange between the engine cooling water and the refrigerant flowing in the pipe. A control device is arranged to control, when the second system is under operation, the flow of engine cooling water directed to the sub-evaporator in accordance with a load of the engine.
    • 用于由内燃机驱动的机动车辆的空调系统具有执行第一循环的第一系统,该第一系统包括由发动机驱动的压缩机,主冷凝器,第一副冷凝器和蒸发器,所述压缩机通过 管道,以形成第一制冷剂循环回路,通过该第一制冷剂循环回路,制冷剂从压缩机的出口流入其中的入口,同时改变其相位,第一循环使第一副冷凝器作为加热器,并且蒸发器作为冷却器操作 。 空调系统还具有进行第二循环的第二系统,该系统包括通过管道连接的压缩机和第二副冷凝器,以形成第二制冷剂循环回路,制冷剂通过第二制冷剂循环回路从压缩机的出口流向 其入口同时改变其相位,第二循环使第二副冷凝器作为加热器工作时。 定义第一和第二独立的空气流通道。 第一通道具有加热器芯,第一副冷凝器和蒸发器安装在其中,第二通道具有安装在其中的第二副冷凝器。 副蒸发器设置在从第二副冷凝器的出口延伸到压缩机的入口的管中。 设置冷却水回路,通过该冷却水回路将发动机的发动机冷却水供给到副蒸发器,以在发动机冷却水和在管道中流动的制冷剂之间进行热交换。 控制装置被布置成当第二系统处于运行状态时根据发动机的负载来控制引导到副蒸发器的发动机冷却水的流量。