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    • 4. 发明授权
    • Vapor compression circuit and method including a thermoelectric device
    • 蒸汽压缩电路及方法,包括热电装置
    • US08307663B2
    • 2012-11-13
    • US12813149
    • 2010-06-10
    • Masao AkeiKirill IgnatievNagaraj JayanthHung M. PhamJean-Luc M. Caillat
    • Masao AkeiKirill IgnatievNagaraj JayanthHung M. PhamJean-Luc M. Caillat
    • F25B21/02
    • F25B1/00F25B6/02F25B27/02H01L35/00Y02A30/274
    • A fluid compression circuit may include a compression mechanism, a volume, a heat exchanger, a fluid conduit, a thermoelectric device, and a heat-transfer device. The compression mechanism includes first and second members cooperating to form a fluid pocket. The volume receives discharge fluid from the fluid pocket. The heat exchanger is in communication with the volume. The fluid conduit is connected to at least one of the volume and the heat exchanger. The thermoelectric device may include a first side in heat-transfer relation with a member at least partially defining the volume and a second side in heat-transfer relation with ambient air and cooperating with the first side to define a temperature gradient generating electrical current in the thermoelectric device. The heat-transfer device may receive electrical current generated by the thermoelectric device and may be in heat-transfer relation with at least one of the heat exchanger and the fluid conduit.
    • 流体压缩回路可以包括压缩机构,体积,热交换器,流体导管,热电装置和热传递装置。 压缩机构包括协同形成流体袋的第一和第二构件。 体积接收来自流体袋的排出流体。 热交换器与容积连通。 流体导管连接到容积和热交换器中的至少一个。 热电装置可以包括与至少部分地限定体积的构件的热传递关系的第一侧和与环境空气的热传递关系的第二侧,并与第一侧配合以限定在第一侧产生电流的温度梯度 热电装置。 传热装置可以接收由热电装置产生的电流,并且可以与热交换器和流体导管中的至少一个热传递关系。
    • 5. 发明申请
    • Vapor Compression Circuit and Method Including A Thermoelectric Device
    • 包括热电装置的蒸汽压缩电路和方法
    • US20110120145A1
    • 2011-05-26
    • US12813149
    • 2010-06-10
    • Masao AkeiKirill IgnatievNagaraj JayanthHung M. PhamJean-Luc M. Caillat
    • Masao AkeiKirill IgnatievNagaraj JayanthHung M. PhamJean-Luc M. Caillat
    • F25B21/02
    • F25B1/00F25B6/02F25B27/02H01L35/00Y02A30/274
    • A fluid compression circuit may include a compression mechanism, a volume, a heat exchanger, a fluid conduit, a thermoelectric device, and a heat-transfer device. The compression mechanism includes first and second members cooperating to form a fluid pocket. The volume receives discharge fluid from the fluid pocket. The heat exchanger is in communication with the volume. The fluid conduit is connected to at least one of the volume and the heat exchanger. The thermoelectric device may include a first side in heat-transfer relation with a member at least partially defining the volume and a second side in heat-transfer relation with ambient air and cooperating with the first side to define a temperature gradient generating electrical current in the thermoelectric device. The heat-transfer device may receive electrical current generated by the thermoelectric device and may be in heat-transfer relation with at least one of the heat exchanger and the fluid conduit.
    • 流体压缩回路可以包括压缩机构,体积,热交换器,流体导管,热电装置和热传递装置。 压缩机构包括协同形成流体袋的第一和第二构件。 体积接收来自流体袋的排出流体。 热交换器与容积连通。 流体导管连接到容积和热交换器中的至少一个。 热电装置可以包括与至少部分地限定体积的构件的热传递关系的第一侧和与环境空气的热传递关系的第二侧,并与第一侧配合以限定在第一侧产生电流的温度梯度 热电装置。 传热装置可以接收由热电装置产生的电流,并且可以与热交换器和流体导管中的至少一个传热关系。
    • 10. 发明申请
    • SCROLL COMPRESSOR
    • 滚动压缩机
    • US20120258004A1
    • 2012-10-11
    • US13528285
    • 2012-06-20
    • Kirill M. IgnatievJames F. FogtMasao Akei
    • Kirill M. IgnatievJames F. FogtMasao Akei
    • F04C2/00
    • F04C18/0215F04C18/0253F04C18/0261F04C23/008F04C27/005F04C29/0007F04C29/02F04C2240/50Y10S418/01
    • A compressor may include a shell assembly, a first scroll member located within the shell assembly and including a first end plate and a first spiral wrap extending from the first end plate, and a second scroll member located within the shell assembly, supported for orbital movement relative to the first scroll member and including a second end plate and a second spiral wrap extending from the second end plate and meshingly engaged with the first spiral wrap to form compression pockets. The first scroll member may define a fluid injection port and the second scroll member may define a passage in communication with the fluid injection port and at least one of the compression pockets to provide pressurized vapor from the fluid injection port to the at least one of the compression pockets.
    • 压缩机可以包括壳体组件,位于壳体组件内的第一涡旋构件,并且包括第一端板和从第一端板延伸的第一螺旋形涡卷,以及位于壳组件内的第二涡旋构件,支撑用于轨道运动 相对于第一涡旋构件并且包括第二端板和从第二端板延伸并与第一螺旋形卷绕物啮合地形成压缩腔的第二螺旋形涡卷。 第一涡旋构件可以限定流体喷射端口,并且第二涡旋构件可以限定与流体喷射端口和至少一个压缩凹穴连通的通道,以将压力蒸汽从流体喷射端口提供到至少一个 压缩口袋。