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    • 1. 发明申请
    • Multi-Stage Separation Using a Single Vessel
    • 使用单个容器进行多级分离
    • US20160186549A1
    • 2016-06-30
    • US14953539
    • 2015-11-30
    • Donald J. VICTORYNicholas F. Urbanski
    • Donald J. VICTORYNicholas F. Urbanski
    • E21B43/34B01D17/02B01D19/00
    • E21B43/34B01D17/02B01D17/0211B01D17/042B01D19/00B01D19/0036B01D19/0063
    • Apparatuses and methods are disclosed herein for separating well fluids into gaseous and liquid components using a single vessel that achieves multiple stages of separation. In one example embodiment, a system for separating a fluid mixture into different components is disclosed. The system comprises a separator. The separator comprises a first inlet configured to receive a stream of the fluid mixture, a first stage separation section configured to provide a first stage of separation to separate the stream into a first liquid, a second liquid, and a gas at a first temperature, and a second stage separation section in fluid communication with the first stage separation section such that the first stage and the second stage separation sections operate at substantially the same pressure. The second stage separation section is configured to provide a second stage of separation to further separate the second liquid at a second temperature.
    • 本文公开的装置和方法用于使用实现多级分离的单个容器将井流体分离成气体和液体组分。 在一个示例性实施例中,公开了一种用于将流体混合物分离成不同部件的系统。 该系统包括分离器。 分离器包括构造成接收流体混合物流的第一入口,第一级分离段,其构造成提供第一级分离,以将流分离成第一液体,第二液体和第一温度下的气体, 以及与第一级分离部流体连通的第二级分离部,使得第一级和第二级分离部在基本上相同的压力下操作。 第二级分离部分构造成提供第二级分离以在第二温度下进一步分离第二液体。
    • 6. 发明授权
    • Downhole gas separation method and system
    • 井下气体分离方法及系统
    • US06755251B2
    • 2004-06-29
    • US10234907
    • 2002-09-04
    • Eugene R. ThomasThomas A. PaulleyDonald J. VictoryHarry W. Deckman
    • Eugene R. ThomasThomas A. PaulleyDonald J. VictoryHarry W. Deckman
    • E21B4308
    • E21B41/0064E21B43/164E21B43/385Y02C10/14Y02P90/70
    • The invention is a method and system of separating a multi-component fluid in a wellbore. At least one fluid separation membrane comprising a feed side and a permeate side is incorporated in the wellbore. A flowing stream of the multi-component fluid obtained from a subterranean zone being in fluid communication with the wellbore is passed across the feed side of the membrane at a first pressure. A retentate stream depleted in at least one component compared to the multi-component fluid is withdrawn from the feed side of the membrane and passed to the earth's surface. A permeate stream at a second pressure is withdrawn from the permeate side, in which the permeate stream is enriched in at least one component compared with the multi-component fluid. The second pressure is controlled to maintain the second pressure below the first pressure.
    • 本发明是一种在井眼中分离多组分流体的方法和系统。 包含进料侧和渗透侧的至少一个流体分离膜被并入井筒中。 从与井筒流体连通的地下区域获得的多组分流体的流动流在第一压力下穿过膜的进料侧。 与多组分流体相比,消耗至少一种组分的滞留物流从膜的进料侧排出并传递到地球表面。 渗透物流从第二压力排出,渗透物流与多组分流体相比富含至少一种成分。 控制第二压力以将第二压力保持在第一压力以下。