Heat pump cycle system
    6.
    发明授权
    Heat pump cycle system 有权
    热泵循环系统

    公开(公告)号:US06230506B1

    公开(公告)日:2001-05-15

    申请号:US09378833

    申请日:1999-08-23

    IPC分类号: F25B4104

    摘要: A heat pump cycle system which can switches cooling operation and heating operation for a compartment includes a first inside heat exchanger and a second inside heat exchanger disposed in an air conditioning case. The first inside heat exchanger is disposed in the air conditioning case at a downstream air side of the second inside heat exchanger, while being arranged in line in a flow direction of refrigerant. The first inside heat exchanger is upstream from the second inside heat exchanger in the flow direction of refrigerant during the heating operation. In the heat pump cycle system, an expansion valve is controlled so that coefficient of performance in each operation becomes approximately maximum. Thus, during the heating operation of the heat pump cycle system, a lower limit temperature of air blown from the inside heat exchangers can be increased so that temperature of air blown into the compartment is increased, while the coefficient of performance is improved.

    摘要翻译: 能够切换室内的制冷运转和加热运转的热泵循环系统包括设置在空调箱内的第一内部热交换器和第二内部热交换器。 第一内侧热交换器在第二内侧热交换器的下游侧的空调壳体中配置成沿制冷剂的流动方向配置。 第一内侧热交换器在制热运转时在制冷剂的流动方向上从第二内侧热交换器的上游侧。 在热泵循环系统中,控制膨胀阀,使得每个操作中的性能系数近似为最大。 因此,在热泵循环系统的加热运转时,可以提高从内部热交换器吹出的空气的下限温度,从而提高吹入室内的空气的温度,同时提高性能系数。

    Refrigerant cycle
    7.
    发明授权
    Refrigerant cycle 有权
    制冷循环

    公开(公告)号:US6000233A

    公开(公告)日:1999-12-14

    申请号:US150318

    申请日:1998-09-09

    摘要: In a CO.sub.2 refrigerant cycle, a lubricating oil for a compressor has a compatibility relative to CO.sub.2 refrigerant, and the compatibility of the lubricating oil relative to the CO.sub.2 refrigerant at a pressure lower than a critical pressure of the CO.sub.2 refrigerant is lower than that at a pressure higher than the critical pressure of the CO.sub.2 refrigerant. Thus, in a low-pressure side such as an accumulator of the CO.sub.2 refrigerant cycle, because a liquid lubricating oil is separated with a liquid CO.sub.2 refrigerant, only the lubricating oil can be readily introduced into a suction side of the compressor, and it can prevent the liquid CO.sub.2 refrigerant from being sucked into the compressor. As a result, it can prevent a damage to the compressor while preventing deterioration of coefficient of performance of the CO.sub.2 refrigerant cycle.

    摘要翻译: 在二氧化碳制冷剂循环中,用于压缩机的润滑油具有相对于二氧化碳制冷剂的相容性,并且在低于二氧化碳制冷剂的临界压力的压力下,润滑油相对于二氧化碳制冷剂的相容性低于二氧化碳制冷剂 压力高于CO2制冷剂的临界压力。 因此,在CO 2制冷剂循环的蓄压器等低压侧,由于液体润滑油与液体CO 2制冷剂分离,所以只能将润滑油引入压缩机的吸入侧, 防止液体CO2制冷剂被吸入压缩机。 结果,能够防止压缩机的损坏,同时防止二氧化碳制冷剂循环的性能系数的劣化。

    Air conditioning system
    10.
    发明授权
    Air conditioning system 失效
    空调系统

    公开(公告)号:US5983657A

    公开(公告)日:1999-11-16

    申请号:US13345

    申请日:1998-01-26

    IPC分类号: F25B49/02 B60H1/32 F25B1/00

    CPC分类号: B60H1/3225 F25B2309/061

    摘要: An air conditioning system having an evaporator 8 at a location upstream from a compressor. When a compressor is stopped, a refrigerant inlet is closed by an electromagnetic valve 28 and a refrigerant outlet is closed by a check valve 29. A pressure in the closed passageway is detected by a pressure sensor 22. A leakage of refrigerant at the evaporator is reliably detected, which allows the leakage of the refrigerant to be quickly noticed.

    摘要翻译: 一种在压缩机上游位置具有蒸发器8的空调系统。 当压缩机停止时,制冷剂入口被电磁阀28关闭,制冷剂出口由止回阀29关闭。封闭通道中的压力由压力传感器22检测。制冷剂在蒸发器处的泄漏是 可靠地检测,这允许快速注意到制冷剂的泄漏。