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    • 24. 发明公开
    • Seal joint between internals and pressure vessel inlet for separator arrangement
    • Dichtung zwischenDruckbehältereinlassund Einbautenfüreine Trennvorrichtung
    • EP1030033A2
    • 2000-08-23
    • EP99308379.9
    • 1999-10-25
    • Hudson Products Corporation
    • Richardson, Robert A.Millas, George S.
    • E21B43/34B01D19/00
    • B01D19/0057B04C5/02B04C11/00
    • A seal joint for an arrangement for separating a gas and liquid mixture, the arrangement having a vessel with an inlet for entry of the gas and liquid mixture and an outlet for exit of a separated gas, and a centrifugal separation cyclone in the vessel for centrifugally separating the gas from the mixture. The vessel includes an internal tubular member (16) having an open end and an inlet tube (14) having an open end extending toward the open end of the internal tubular member. A seal joint ring (18) is fixed to the open end of the internal tubular member. The ring has an annular trough which is open toward the open end of the inlet tube and a gasket (22) is provided in the trough and is engaged by the open end of the inlet tube for sealing the open end of the inlet tube to the open end of the internal tubular member.
    • 一种用于分离气体和液体混合物的装置的密封接头,该装置具有容器,该容器具有用于输入气体和液体混合物的入口和用于离开分离气体的出口,以及用于离心的容器中的离心分离旋风分离器 从混合物中分离气体。 容器包括具有开口端的内部管状构件(16)和具有朝向内部管状构件的开口端延伸的开口端的入口管(14)。 密封接头环(18)固定到内部管状构件的开口端。 该环具有朝向入口管的开口端开口的环形槽,并且垫槽(22)设置在槽中并与入口管的开口端接合,用于将入口管的开口端密封到 内部管状构件的开口端。
    • 28. 发明公开
    • METHOD OF REDUCING WATER IN OIL WELLS
    • 法降低供水联合国石油钻探。
    • EP0681641A1
    • 1995-11-15
    • EP94904932.0
    • 1994-01-21
    • CENTRE FOR FRONTIER ENGINEERING RESEARCH INSTITUTE
    • PEACHEY, Bruce, R.
    • B01D17B04C5B04C9B04C11E21B43
    • E21B43/385B04C5/00B04C9/00B04C11/00
    • A method of reducing water in oil wells. Firstly, place a cyclone separator (11) downhole in a producing oil well. The cyclone separator includes a separation chamber (15) wherein liquids of differing densities are separated, a mixed liquids inlet (17) through which liquids pass into the separation chamber (15), a first outlet (19) for liquids of a first density to pass from the separation chamber (15), and a second outlet (21) for liquids of a second density to pass from the separation chamber (15). Secondly, connect the first outlet (19) to a recovery conduit (27) extending to surface whereby a stream of mainly oil is separated in the separation chamber (15) from the oil/water stream flowing through the mixed liquids inlet (17). The stream of mainly oil flowing out the first outlet (19) and along the recovery conduit (27) to surface. Thirdly, connect the second outlet (21) to a disposal conduit (33) extending to a selected disposal site whereby a stream of mainly water is separated in the separation chamber (15) from the the oil/water stream passing through the mixed liquids inlet (17). The stream of mainly water flowing out the second outlet (21) and along the disposal conduit (33) to a selected disposal site.