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    • 32. 发明申请
    • AIR CONDITIONER AND METHOD FOR CONTROLLING AN AIR CONDITIONER
    • 空调器和控制空调的方法
    • US20150114013A1
    • 2015-04-30
    • US14524945
    • 2014-10-27
    • LG ELECTRONICS INC.
    • Jinyoung JOOSeokhoon JANG
    • F25B43/02F25B49/02
    • F25B43/02F25B31/004F25B40/02F25B41/003F25B49/02F25B2400/061F25B2400/23F25B2500/16F25B2600/2515F25B2700/03
    • An air conditioner and a method for controlling and air conditioner are provided. The air conditioner may include at least one compressor, a main suction passage to guide a refrigerant into the at least one compressor, at least one oil separator connected to the at least one compressor, that separates oil from the refrigerant discharged from the at least one compressor, at least one oil level sensor disposed in the at least one compressor to detect whether the at least one compressor lacks oil, a return passage to collect the oil separated from the at least one oil separator into the at least one compressor, a distribution return passage branched from the at least one return passage and connected to the main suction passage, and a valve disposed in each of the at least one return passage and the distribution return passage.
    • 提供了一种空调和控制和空调的方法。 空调可以包括至少一个压缩机,用于将制冷剂引导到至少一个压缩机中的主吸入通道,连接到至少一个压缩机的至少一个油分离器,其将油与从至少一个压缩机排出的制冷剂分离 压缩机,设置在所述至少一个压缩机中的至少一个油位传感器,以检测所述至少一个压缩机是否缺少油;用于收集从所述至少一个油分离器分离成至少一个压缩机的油的返回通道, 从所述至少一个返回通道分支并连接到所述主吸入通道的返回通道和设置在所述至少一个返回通道和所述分配返回通道中的每一个中的阀。
    • 33. 发明授权
    • Heat pump system
    • 热泵系统
    • US08991199B2
    • 2015-03-31
    • US13202623
    • 2010-02-23
    • Masahiro Honda
    • Masahiro Honda
    • F25B13/00F25B17/02F25B49/00F25B7/00F25B31/00
    • F25B7/00F25B13/00F25B31/004F25B2339/047
    • A heat pump system includes: a heat-source-side refrigerant circuit having a heat-source-side compressor, a first usage-side heat exchanger operable as a radiator of heat-source-side refrigerant, and a heat-source-side heat exchanger operable as an evaporator of heat-source-side refrigerant; and a usage-side refrigerant circuit having a usage-side compressor arranged to compress usage-side refrigerant with a pressure of the usage-side refrigerant corresponding to a saturated gas temperature of 65° C. that is 2.8 MPa or less at gauge pressure, a refrigerant-water heat exchanger operable as a radiator of usage-side refrigerant to heat an aqueous medium, and a first usage-side heat exchanger operable as an evaporator of usage-side refrigerant by the radiation of heat-source-side refrigerant. The weight of usage-side refrigerant enclosed in the usage-side refrigerant circuit is one to three times the weight of refrigeration machine oil enclosed to lubricate the usage-side compressor.
    • 热泵系统包括:热源侧制冷剂回路,其具有热源侧压缩机,作为热源侧制冷剂的散热器工作的第一利用侧热交换器和热源侧制热器 交换器可操作为热源侧制冷剂的蒸发器; 以及具有使用侧压缩机的利用侧制冷剂回路,所述利用侧制冷剂回路被配置成在所述使用侧制冷剂的压力下压缩使用侧制冷剂,所述利用侧制冷剂的压力对应于在表压为2.8MPa以下的饱和气体温度为65℃, 作为利用侧制冷剂的散热器可以加热水性介质的制冷剂水热交换器以及通过热源侧制冷剂的放射而可以作为利用侧制冷剂的蒸发器工作的第一利用侧热交换器。 封闭在使用侧制冷剂回路中的利用侧制冷剂的重量是密封用于使用侧压缩机的制冷机油的重量的一至三倍。
    • 35. 发明申请
    • COOLING SYSTEM AND A METHOD FOR SEPARATION OF OIL
    • 冷却系统及其分离方法
    • US20150052915A1
    • 2015-02-26
    • US14383955
    • 2013-03-05
    • Danarctica ApS
    • Flemming Clarence Larsen
    • F25B43/02F25B1/00
    • F25B43/02F25B1/005F25B31/004F25B39/04
    • The invention relates to a cooling system (2) and a method for oil separation, where a condenser unit (10) contains an oil separator (18,20), from which oil separator oil is lead through a pipeline (24) and back to the compressor (4). It is an object of the invention to collect all condensing functions and oil separation functions into a common pressure container (26). According to the invention, this objective is achieved by a system, the condenser unit and oil separator are integrated in a common pressure tank (26) that contains at least one first oil separator and at least a second secondary oil separator, which pressure tank contains a condenser container (30) which interacts with a third oil separator (22). Hereby, it is attained that condensation and oil separation are integrated in a common pressure tank.
    • 本发明涉及一种冷却系统(2)和一种油分离方法,其中冷凝器单元(10)包含油分离器(18,20),油分离器油从该分离器通过管道(24)引导回到 压缩机(4)。 本发明的一个目的是将所有冷凝功能和油分离功能集中到一个共同的压力容器(26)中。 根据本发明,该目的通过系统实现,冷凝器单元和油分离器集成在共同的压力罐(26)中,该压力容器包含至少一个第一油分离器和至少第二辅助油分离器,该压力罐包含 与第三油分离器(22)相互作用的冷凝器容器(30)。 因此,可以将冷凝和油分离结合在一般的压力罐中。
    • 38. 发明申请
    • CRYOGENIC REFRIGERATOR SYSTEM AND OIL SEPARATOR
    • 低温制冷系统和油分离器
    • US20140223954A1
    • 2014-08-14
    • US14169468
    • 2014-01-31
    • Sumitomo Heavy Industries, Ltd.
    • Takuya Shimada
    • F25B43/02
    • F25B43/02F25B9/14F25B31/004F25B2339/047F25B2600/0271F25B2600/2501
    • Provided is an oil separator in which a filter member is arranged between inner and outer punching plates and that includes a filter element configured so that a refrigerant gas that has flowed in from an inlet pipe flows into the filter member through inner through-holes provided in the inner punching plate, and flows outside through outer through-holes provided in the outer punching plate, and a shell that houses the filter element therein and has a bottom portion that collects leak oil that has flowed out of the outer through-holes. An auxiliary flow channel plate for the leak oil is provided in the surface of the outer punching plate, and is configured so that the leak oil is discharged to the bottom portion of the shell through the auxiliary flow channel plate.
    • 本发明提供一种油分离器,其中过滤构件设置在内冲压板和外冲孔板之间,并且包括过滤元件,其被构造成使得从入口管流入的制冷剂气体通过设置在过滤构件中的内通孔流入过滤构件 内冲孔板,并且通过设置在外冲孔板中的外通孔向外流动,以及将过滤元件容纳在其中的壳体,并且具有收集从外通孔流出的泄漏油的底部。 在外冲孔板的表面设置有用于泄漏油的辅助流路板,并且构成为使漏油通过辅助流路板排出到壳体的底部。