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    • 1. 发明授权
    • Control system for air-conductioner
    • 空气传导控制系统
    • US5148977A
    • 1992-09-22
    • US717669
    • 1991-06-19
    • Yozo HibinoSusumu NakayamaHiromu YasudaKensaku OguniKenji Tokusa
    • Yozo HibinoSusumu NakayamaHiromu YasudaKensaku OguniKenji Tokusa
    • F24F11/02G05B13/02G05D23/19
    • G05D23/1902G05B13/0275Y10S706/90Y10S706/906
    • The control system for the air-conditioner disclosed herein comprises means for setting a set value of a room temperature, means for detecting an actual value of the room temperature, means for detecting a radiant heat from walls etc. of the room as a radiation temperature, and an operational control means. The operational control means stores a comfort line which defines an inverse proportional relation between the room temperature and the radiation temperature, said comfort line depending upon set value of the room temperature. The operational control means calculates a first control index which is represented by a difference between the actual value and the set value of the room temperature and a second control index which is represented by a difference between the comfort line and the current temperature condition represented by the actual room temperature and the radiation temperature. The room temperature set value is modified in the operatal control means, according to fuzzy rule, on the basis of said first and second control indexes. The operational control means controls the air-conditioner, depending upon a difference between the modified value of the room temperature and the actual value of the room temperature, thereby providing a comfortable air-conditioned environment to a person staying in the room.
    • 本文公开的空调机的控制系统包括用于设定室温的设定值的装置,用于检测室内实际值的装置,用于检测房间的墙壁等的辐射热的装置作为辐射温度 ,以及操作控制装置。 操作控制装置存储一个舒适线,该舒适线定义室温和辐射温度之间的反比例关系,所述舒适线取决于室温的设定值。 操作控制装置计算由实际值和室温的设定值之间的差表示的第一控制指标,以及由舒适线和由该温度表示的当前温度条件之间的差表示的第二控制指标 实际室温和辐射温度。 根据所述第一和第二控制指标,根据模糊规则,在操作控制装置中修改室温设定值。 操作控制装置根据室温的修正值和室内实际值之间的差异来控制空调,从而为留在房间中的人提供舒适的空调环境。
    • 3. 发明授权
    • Air-conditioner system
    • 空调系统
    • US5065588A
    • 1991-11-19
    • US564608
    • 1990-08-09
    • Susumu NakayamaKensaku OguniHiromu YasudaRumi MinakataKazumoto UrataMasatoshi MuramatsuKenji TokusaTakao SenshuHirokiyo TeradaFumihiko Kitani
    • Susumu NakayamaKensaku OguniHiromu YasudaRumi MinakataKazumoto UrataMasatoshi MuramatsuKenji TokusaTakao SenshuHirokiyo TeradaFumihiko Kitani
    • F24F3/06F25B13/00F25B41/04
    • F25B41/04F24F3/065F25B13/00F25B2313/023F25B2313/025F25B2313/02741F25B2313/02743F25B2313/02791
    • An air-conditioner system having a compressor, a plurality of heat exchangers for heating or cooling the air in a room, a radiator for transferring heat energy of refrigerant outside of the room, a plurality of orifices, a manifold with a main port and a plurality of sub-ports, flow direction control multi-port valves directing the flow of the refrigerant from the compressor to the main port and not from the main port to the compressor when at least one of the heat-exchangers is heating the room. The refrigerant does not flow from the compressor to the radiator when at least one of the heat exchangers is heating and none of the heat exchangers is cooling. Also, it does not flow from the compressor to the main port but flows instead from the compressor to the radiator and from the main port to the compressor when none of the heat exchangers is heating and at least one of the heat exchangers is cooling. The system also employs a plurality of valve pairs each of which having a first valve and second valve such that the first valve opens (closes) when the second valve closes (opens). The first valves are arranged for providing flow of refrigerant to the inlet of the compressor from the heat exchangers and the second valves provide flow of refrigerant from the outlet port of the compressor to the respective heat exchanger first ports via the sub-ports of the manifold.
    • 一种具有压缩机,多个用于加热或冷却房间中的空气的热交换器的空调系统,用于将制冷剂外部的热能传递到室外的散热器,多个孔,具有主端口的歧管和 多个子端口,流动方向控制多端口阀,当至少一个热交换器加热房间时,将制冷剂从压缩机流向主端口,而不是从主端口流向压缩机。 当至少一个热交换器加热并且没有热交换器冷却时,制冷剂不会从压缩机流到散热器。 此外,当没有热交换器被加热并且至少一个热交换器被冷却时,其不从压缩机流向主端口,而是从压缩机流到散热器,并且从主端口流到压缩机。 该系统还采用多个阀对,每个阀对具有第一阀和第二阀,使得当第二阀关闭(打开)时第一阀打开(关闭)。 第一阀被布置成用于从热交换器向制冷剂的入口提供制冷剂流,并且第二阀提供制冷剂从压缩机的出口流到相应的热交换器第一端口,经由歧管的子端口 。
    • 4. 发明授权
    • Refrigerant path apparatus
    • 制冷路径装置
    • US5159817A
    • 1992-11-03
    • US795737
    • 1991-11-21
    • Toshiyuki HojoKenji TokusaKensaku OguniSusumu Nakayama
    • Toshiyuki HojoKenji TokusaKensaku OguniSusumu Nakayama
    • F25B29/00F24F3/06F25B13/00F25B40/00F25B41/04
    • F25B40/00F24F3/065F25B13/00F25B41/04F25B2313/023F25B2313/0231F25B2313/025F25B2400/19
    • A method for controlling a refrigerant path apparatus including a pressurized gas refrigerant path for a flow of a pressurized gas refrigerant which has not been substantially cooled to be liquefied, a pressurized liquid refrigerant path for a flow of a pressurized liquid refrigerant which is generated from the pressurized gas refrigerant by being cooled to be liquefied, a first heat exchanger means which is fluidly connected to the pressurized gas refrigerant path to supply the pressurized gas refrigerant into the first heat exchanger so that a heat exchange is carried out between the pressurized gas refrigerant in the first heat exchanger and the outside of the first heat exchanger, comprises the steps of allowing a flow of the refrigerant from the pressurized gas refrigerant path to the pressurized liquid refrigerant path when a supply of the pressurized gas refrigerant from the pressurized gas refrigerant path into the first heat exchanger means is prevented, and preventing the flow of the refrigerant from the pressurized gas refrigerant path to the pressurized liquid refrigerant path when the supply of the pressurized gas refrigerant form the pressurized gas refrigerant path into the first heat exchanger means is allowed.
    • 一种用于控制制冷剂路径装置的方法,该制冷剂路径装置包括用于未实质上被冷却以液化的加压气体制冷剂的流动的加压气体制冷剂路径,用于从所述加压液体制冷剂流动产生的加压液体制冷剂的流动的加压液体制冷剂路径 通过冷却液化的加压气体制冷剂,第一热交换器装置,其流体连接到加压气体制冷剂路径,以将加压气体制冷剂供应到第一热交换器中,使得在加压气体制冷剂之间进行热交换 第一热交换器和第一热交换器的外部包括以下步骤:当从加压气体制冷剂路径供应加压气体制冷剂进入到加压气体制冷剂路径时,允许制冷剂从加压气体制冷剂路径流动到加压液体制冷剂路径 防止第一热交换器装置,并防止流动 允许当加压气体制冷剂供应到加压气体制冷剂路径进入第一热交换器装置时,制冷剂从加压气体制冷剂路径传递到加压液体制冷剂路径。
    • 9. 发明授权
    • Multi-airconditioner
    • 多功能空调
    • US5279131A
    • 1994-01-18
    • US743499
    • 1991-08-09
    • Tadayuki UrushihataFumio HaradaKenji TokusaToshiyuki HojoKeij TanakaKensaku Oguni
    • Tadayuki UrushihataFumio HaradaKenji TokusaToshiyuki HojoKeij TanakaKensaku Oguni
    • F24F5/00F24F3/06F25B13/00F25B31/00F24F11/00
    • F25B31/002F24F3/065F25B13/00F25B2313/007F25B2313/023F25B2313/0231F25B2313/025F25B2313/0272F25B2400/075
    • Disclosed is a multi-airconditioner including a plurality of outdoor units and at least one indoor units in which refrigerant conduits connecting the outdoor units and the at least one indoor units are united in the form of two or three conduits. In the case of the multi-airconditioner for effecting either room-cooling or room-heating, each of the outdoor units and each of the indoor units have a liquefied refrigerant conduit and a gasified refrigerant conduit, which are connected with a single common liquefied refrigerant conduit and a single common gasified refrigerant conduit, respectively. In the case of the multi-conditioner for effecting simultaneous room-cooling and room-heating operation in which some of the indoor units are under room-cooling operation while the other indoor units are under room-heating operation, each outdoor unit and each indoor unit have a liquefied refrigerant conduit, a high-pressure gasified refrigerant conduit and a low-pressure gasified refrigerant conduit, and these liquefied refrigerant conduits, high-pressure gasified refrigerant conduits and low-pressure gasified refrigerant conduits are connected to a single common liquefied refrigerant conduit, a single common high-pressure gasified refrigerant conduit and a single common low-pressure gasified refrigerant conduit, respectively.
    • 公开了一种多空气调节器,其包括多个室外单元和至少一个室内单元,其中连接室外单元和至少一个室内单元的制冷剂导管以两个或三个导管的形式结合。 在用于进行室内冷却或室内加热的多功能空调机的情况下,室外机和室内机各有一液化制冷剂导管和气化制冷剂导管,它们与单一的普通液化制冷剂 导管和单个普通气化制冷剂导管。 在进行室内机室内机室内制冷运转的同时进行室内冷却和室内制热运转的多功能室的情况下,其他室内机组进行室内加热运转的情况下, 单元具有液化制冷剂管道,高压气化制冷剂管道和低压气化制冷剂管道,并且这些液化制冷剂管道,高压气化制冷剂管道和低压气化制冷剂管道连接到单个普通液化制冷剂 管道,单个普通高压气化制冷剂管道和单个普通低压气化制冷剂管道。
    • 10. 发明授权
    • Defrosting of refrigerator system out-door heat exchanger
    • 冰箱系统门外换热器除霜
    • US4770000A
    • 1988-09-13
    • US66301
    • 1987-06-25
    • Sigeaki KurodaKensaku OguniHiromu YasudaHirokiyo Terada
    • Sigeaki KurodaKensaku OguniHiromu YasudaHirokiyo Terada
    • F25B47/02F25B13/00F25B41/04F25B47/00F25D21/06
    • F25B13/00F25B41/04F24F2011/0089F25B2313/0314F25B2313/0315F25B2700/21152F25B47/022
    • An air conditioner includes a compressor, a four-way valve, an indoor heat exchanger, an expansion valve, an outdoor heat exchanger which are connected via pipings to form a heat pump type refrigerant circuit, the four-way valve being switched over to select a heating or cooling mode of operation. This air conditioner is further provided with a first and second branch pipes which extend from an outlet conduit of the compressor, the first branch pipe forming a first bypass pipe connected to an inlet conduit of the compressor. The first and second branch pipes have first and second valves, respectively. The air conditioner is also provided with a microcomputer for selectively opening and closing the second valve in response to the degree of superheating of discharged gaseous refrigerant after the first valve has been opened so that the discharged gaseous refrigerant is supplied to the outdoor heat exchanger to effect a defrosting operation while a heating operation is continued. When the degree of superheating of discharged gaseous refrigerant is low, a part of discharged gas is supplied to the inlet conduit so as to regulate the degree of superheating.
    • 空气调节器包括通过管道连接以形成热泵式制冷剂回路的压缩机,四通阀,室内热交换器,膨胀阀,室外热交换器,四通阀切换以选择 加热或冷却操作模式。 该空气调节器还设置有从压缩机的出口导管延伸的第一和第二分支管,第一分支管形成连接到压缩机的入口管道的第一旁通管。 第一和第二支管分别具有第一和第二阀。 该空气调节器还设置有微型计算机,用于响应于在第一阀打开之后排出的气态制冷剂的过热度来选择性地打开和关闭第二阀,使得排放的气体制冷剂被供应到室外热交换器以实现 在继续加热操作时的除霜操作。 当排出的气态制冷剂的过热度低时,将一部分排出气体供给至入口导管,以调节过热度。