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    • 1. 发明授权
    • Mixing pipe arrangement with housing
    • US10072550B2
    • 2018-09-11
    • US15105079
    • 2014-12-12
    • TENNECO GMBH
    • Joachim GehrleinFrank TerresAndreas LangGert Müller
    • F01N3/28B01F5/04F01N13/18B01F5/06B01F3/04B01F5/00
    • F01N3/2892B01F3/04049B01F5/0451B01F5/0689B01F2005/0091F01N13/1888F01N13/1894F01N2240/20F01N2470/02F01N2470/04F01N2610/00
    • A mixer for an exhaust system of an internal combustion engine for mixing additives into an exhaust gas flow, with at least one inlet pipe having a pipe axis, with at least one outlet pipe having a pipe axis and with a housing for receiving the inlet pipe and the outlet pipe, wherein the outlet pipe has an inner part which is arranged within the housing and is provided with at least one outflow opening for the purpose of conducting the exhaust gas out of the housing, wherein the housing has a first housing part with a first housing edge and at least one second housing part with a second housing edge, wherein the two housing parts are at least partially connected via the housing edge, and in that the inlet pipe has an inner part which is arranged within the housing and is provided with at least one inlet opening for the purpose of introducing the exhaust gas into the housing, wherein a) the respective housing edge as at least two formations, each having a center axis, and/or b) the respective housing part has at least two rim holes, each having a center axis, and the respective pipe has bearing points via which said pipe is mounted within the formations or within the rim holes, wherein i) the respective pipe is formed symmetrically with respect to the design of the bearing points, and, for the purpose of installation, can be mounted in at least two different positions R1, R2 in the respective formation, or ii) the inlet pipe and the outlet pipe are of identical design with respect to the design of the bearing points, or iii) the two housing parts are connectable in a plurality of positions S1, S2 relative to each other via the housing edge.
    • 5. 发明授权
    • Actuatable flow conditioning apparatus
    • 可执行流量调节装置
    • US09463424B2
    • 2016-10-11
    • US14327214
    • 2014-07-09
    • ONESUBSEA IP UK LIMITED
    • Stig Kaare KanstadNils Egil Kangas
    • E21B43/26B01F5/06B01D3/14B01D47/10B01F3/04B01F15/00
    • B01F3/04985B01F3/04503B01F5/0689B01F15/00032
    • An actuatable apparatus, such as a mixer or flow splitter, is described that forms part of a multiphase pumping station. An outer tank has an upper inlet and an actuatable inner vessel disposed within the outer vessel. Multiphase fluid can pass from the outer vessel into the inner vessel though large upper openings. The inner vessel is configured to be actuatable such that the inner vessel moves in a vertical direction, thereby altering the size of an annular opening between the bottom of the inner vessel and the outer vessel. In some cases, the annular opening is adjusted to alter the operating envelope of a mixer. In other cases, the annular opening is opened to allow for sand cleaning. In yet other cases the apparatus is a downstream flow splitter, and the annulus is shut off to prevent loss of liquid phase during the startup of a dead field.
    • 描述了形成多相泵站的一部分的可致动装置,例如混合器或分流器。 外箱具有设置在外容器内的上入口和可致动的内容器。 多相流体可以通过大的上部开口从外部容器进入内部容器。 内容器构造成可致动,使得内容器沿垂直方向移动,从而改变内容器底部和外容器之间的环形开口的尺寸。 在一些情况下,调整环形开口以改变混合器的操作范围。 在其他情况下,打开环形开口以允许沙子清洁。 在其他情况下,装置是下游分流器,并且关闭环形空间以防止在死区启动期间液相的损失。
    • 6. 发明授权
    • Compact device for enhancing the mixing of gaseous species
    • 用于增强气态物质混合的紧凑装置
    • US09327252B2
    • 2016-05-03
    • US13834625
    • 2013-03-15
    • APPLIED MATERIALS, INC.
    • John W. LaneBerrin DaranRamachandra Murthy GunturiMariusch GregorBhaswan ManjunathPrashanth Vasudeva
    • B01F5/00B01F5/06B01F15/04B01F3/02
    • B01F5/0077B01F3/028B01F5/0689B01F15/0429B01F2215/0096
    • Apparatus and system for mixing gas comprising a first valve coupled to a first conduit controlling flow of a first gas, a second valve coupled to a second conduit controlling flow of a second gas, a controller controlling the valves, a base block with a first gas input coupled to the first conduit, a second gas input coupled to the second conduit and an output opening, a mixing chamber formed within the base block, wherein the mixing chamber is coupled to the first gas input and the second gas input to receive input gases, an inner block disposed within the mixing chamber, the inner block including a body with an inner volume and one or more perimeter holes formed through the body coupling the mixing chamber to the inner volume of the inner block; and a gas outlet configured to flow gas through the output opening of the base block.
    • 用于混合气体的设备和系统,包括联接到控制第一气体流的第一导管的第一阀,连接到控制第二气体的流动的第二导管的第二阀,控制阀的控制器,具有第一气体的基座 输入,其耦合到第一导管,耦合到第二导管的第二气体输入口和输出开口,形成在基座块内的混合室,其中混合室与第一气体输入端相连,而第二气体输入端接收输入气体 设置在所述混合室内的内部块,所述内部块包括具有内部容积的主体和通过将所述混合室连接到所述内部块的内部容积的本体形成的一个或多个周边孔; 以及气体出口,其构造成使气体流过所述基座的输出开口。
    • 7. 发明申请
    • In-Line, High Pressure Well Fluid Injection Blending
    • 在线,高压井流体注射混合
    • US20140202702A1
    • 2014-07-24
    • US14075436
    • 2013-11-08
    • ChemRight, LLC
    • Don B. Cobb
    • E21B43/25
    • E21B21/062B01F5/0614B01F5/0652B01F5/0689B01F2005/0637E21B43/26
    • A mixing device has an elongate shell, an inlet, an outlet and at least one shear orifice between the inlet and the outlet. A hydration passage is located between the shear orifice and the outlet. The hydration passage has a flow area greater than a total shear flow area of the shear orifice, greater than an inlet flow area of the inlet and greater than an outlet flow area of the outlet. During operation, a polymer is mixed in a fluid flow flowing to the intake of a positive displacement pump, which pumps the fluid through the mixing device and into an injection conduit leading into a well. The shear orifice produces high shear separation of molecules of the polymer. The hydration passage causes hydration under pressure of the various polymer molecules in addition to blending the various chemicals and/or gases with other components of the fluid flow stream.
    • 混合装置在入口和出口之间具有细长壳体,入口,出口和至少一个剪切孔口。 水合通道位于剪切孔和出口之间。 水合通道具有大于剪切孔的总剪切流动面积的流动面积,大于入口的入口流动面积并大于出口的出口流动面积。 在操作期间,聚合物在流入容积式泵的入口的流体流中混合,该容积泵将流体泵送通过混合装置并进入通向井的注入导管。 剪切孔产生聚合物分子的高剪切分离。 除了将各种化学物质和/或气体与流体流动流的其它组分混合之外,水合通道在各种聚合物分子的压力下引起水合。