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    • 2. 发明申请
    • Method For Comparing And Back Allocating Production
    • 比较分配生产方法
    • US20090198477A1
    • 2009-08-06
    • US12303530
    • 2007-04-27
    • Timothy G. BenishMichael E. McCracken
    • Timothy G. BenishMichael E. McCracken
    • G06G7/48
    • G01F1/00E21B43/00E21B43/14E21B47/10G01F1/74
    • Methods and system for incorporating downhole and surface data with models and adjustment algorithms to back allocate flow rates of commingled zones. The models include fluid flow in the reservoir and wellbore, pressure drop across a choke, and fluid flow in the well completion. The models are coupled with an algorithm for comparing the results from the individual commingled zones to the total cumulative commingled volume and adjusting at least one predicted rate so that they match the measured flow rate over a specified time period. One method utilizes a reassignment factor for the adjustment of the predicted rates. These comparisons and allocation adjustments can be accomplished even when the frequency of the commingled flow rate and cumulative measurements, and the frequency of the predicted rates from the model differ from each other and the specified time period.
    • 将井下和地面数据与模型和调整算法相结合的方法和系统,以分配混合区域的流量。 这些模型包括储层和井眼中的流体流动,扼流圈上的压降以及井完井中的流体流动。 这些模型与用于将来自各个混合区域的结果与总累积混合体积进行比较的算法相结合,并且调整至少一个预测速率,使得它们在指定的时间段内匹配测量的流量。 一种方法利用重新分配因子来调整预测速率。 即使当混合流量和累积测量的频率以及来自模型的预测速率的频率彼此不同并且指定的时间段时,也可以实现这些比较和分配调整。
    • 3. 发明申请
    • Wellbore Method and Apparatus For Sand And Inflow Control During Well Operations
    • 井井操作中砂井和井底控制的井筒法和装置
    • US20090008092A1
    • 2009-01-08
    • US12279176
    • 2007-02-23
    • David C. HaeberleCharles YehTimothy G. BenishMichael D. BarryMichael T. HeckerJon Blacklock
    • David C. HaeberleCharles YehTimothy G. BenishMichael D. BarryMichael T. HeckerJon Blacklock
    • E21B43/02E21B43/08
    • E21B43/04E21B33/12E21B43/08
    • A method, system and apparatus associated with the production of hydrocarbons are described. The system includes a wellbore that accesses a subsurface reservoir; a production tubing string disposed within the wellbore; and one or more sand control devices coupled to the production tubing string and disposed within the wellbore. At least one of the sand control devices includes a first tubular member having a permeable section and a non permeable section; a second tubular member disposed within the first tubular member. The second tubular member has a plurality of openings and an inflow control device that each provide a flow path to the interior of the second tubular member. Also, the at least one of the sand control devices includes a sealing mechanism disposed between the first tubular member and the second tubular member. The sealing mechanism is configured to provide a pressure loss during gravel packing operations that is less than the pressure loss during at least some of the production operations.
    • 描述了与烃的生产相关的方法,系统和装置。 该系统包括访问地下储层的井眼; 设置在井眼内的生产油管柱; 以及耦合到生产油管柱并设置在井眼内的一个或多个防砂装置。 至少一个防砂装置包括具有可渗透部分和不可渗透部分的第一管状部件; 设置在第一管状构件内的第二管状构件。 第二管状构件具有多个开口和流入控制装置,其各自提供到第二管状构件内部的流动路径。 此外,所述至少一个所述防砂装置包括设置在所述第一管状构件和所述第二管状构件之间的密封机构。 密封机构构造成在砾石包装操作期间提供小于在至少一些生产操作期间的压力损失的压力损失。
    • 6. 发明授权
    • Systems and methods for regulating flow in a wellbore
    • 用于调节井筒流量的系统和方法
    • US08899339B2
    • 2014-12-02
    • US12812197
    • 2009-01-16
    • Randy C. TolmanTimothy G. Benish
    • Randy C. TolmanTimothy G. Benish
    • E21B43/12E21B33/124E21B43/14E21B33/10
    • E21B43/14E21B33/10E21B43/12
    • Isolation systems for use in a wellbore include two or more tubular segments and at least one coupling assembly. The at least one coupling system is adapted to couple the first and second tubular segments together. The at least one coupling system is further adapted to block at least a portion of the wellbore annulus. The at least one coupling system is further configured as a leaky isolation assembly to separate the wellbore annulus into at least two isolated zones when disposed in the wellbore. At least one isolation zone has at least two outlets including a first outlet through an opening into the tubular and a second outlet past the leaky isolation assembly. The isolation system is configured to provide the isolation with hydraulics during well operation that preferentially drives fluids through the first outlet and at least substantially prevents fluid from passing the isolation assembly.
    • 用于井眼的隔离系统包括两个或更多个管状段和至少一个联接组件。 所述至少一个联接系统适于将所述第一和第二管段联接在一起。 所述至少一个联接系统还适于阻挡井筒环的至少一部分。 所述至少一个联接系统还被配置为泄漏隔离组件,以在设置在所述井筒中时将所述井筒环分离为至少两个隔离区域。 至少一个隔离区具有至少两个出口,包括通过进入管状物的开口的第一出口和经过泄漏隔离组件的第二出口。 隔离系统构造成在井操作期间提供液压的隔离,其优先地驱动流体穿过第一出口并且至少基本上防止流体通过隔离组件。
    • 9. 发明申请
    • Systems and Methods For Regulating Flow In A Wellbore
    • 在井筒中调节流量的系统和方法
    • US20100276160A1
    • 2010-11-04
    • US12812197
    • 2009-01-16
    • Randy C. TolmanTimothy G. Benish
    • Randy C. TolmanTimothy G. Benish
    • E21B33/12
    • E21B43/14E21B33/10E21B43/12
    • Isolation systems for use in a wellbore include two or more tubular segments and at least one coupling assembly. The at least one coupling system is adapted to couple the first and second tubular segments together. The at least one coupling system is further adapted to block at least a portion of the wellbore annulus. The at least one coupling system is further configured as a leaky isolation assembly to separate the wellbore annulus into at least two isolated zones when disposed in the wellbore. At least one isolation zone has at least two outlets including a first outlet through an opening into the tubular and a second outlet past the leaky isolation assembly. The isolation system is configured to provide the isolation with hydraulics during well operation that preferentially drives fluids through the first outlet and at least substantially prevents fluid from passing the isolation assembly.
    • 用于井眼的隔离系统包括两个或更多个管状段和至少一个联接组件。 所述至少一个联接系统适于将所述第一和第二管段联接在一起。 所述至少一个联接系统还适于阻挡井筒环的至少一部分。 所述至少一个联接系统还被配置为泄漏隔离组件,以在设置在所述井筒中时将所述井筒环分离为至少两个隔离区域。 至少一个隔离区具有至少两个出口,包括通过进入管状物的开口的第一出口和经过泄漏隔离组件的第二出口。 隔离系统构造成在井操作期间提供液压的隔离,其优先地驱动流体穿过第一出口并且至少基本上防止流体通过隔离组件。