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Inflow Control Devices: Application and Value Quantification of a Developing Technology

机译:流入控制设备:正在发展的技术的应用和价值量化

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Horizontal and multilateral completions are a proven, superior development option compared to conventional solutions in many reservoir situations. However, they are still susceptible to coning toward the heel of the well despite their maximizing of reservoir contact. This is due to frictional pressure drop and/or permeability variations along the well. Annular flow, leading to severe erosion "hot-spots" and plugging of screens is another challenge. Inflow Control Devices (ICDs) were proposed as a solution to these difficulties in the early ‘90s. ICDs have recently gained popularity and are being increasingly applied to a wider range of field types. Their efficacy to control the well inflow profile has been confirmed by a variety of field monitoring techniques. An ICD is a choking device installed as part of the sandface completion hardware. It aims to balance the horizontal well’s inflow profile and minimize the annular flow at the cost of a limited, extra pressure drop. Fractured and more heterogeneous formations require, in addition, the installation of annular isolation. The new technologies of Swell Packers and Constrictors can provide this annular isolation in an operationally simple manner. This paper describes the history of ICD development with an emphasis on the designs available and their areas of application. These technical criteria will be illustrated using published field examples. The ICD’s flexibility will be shown by its integration with other conventional and advanced production technologies e.g. Stand-Alone-Screens, annular isolation, artificial lift, gravel packs and intelligent completions in both horizontal and multilateral wells. It will be shown how the value of such well-construction options can be quantified using commercially available, modelling simulators. Simple, but reliable, guidelines on how to model the performance of ICDs over the well’s life will be provided. This technique can thus be used as part of the value quantification process for both the evaluation of completion options and for their detailed design.
机译:与许多储层情况下的常规解决方案相比,水平和多边完井是一种行之有效的优越开发选择。然而,尽管它们使储层接触最大化,但它们仍然易于朝井底倾斜。这是由于沿井的摩擦压降和/或渗透率变化。环形流动,导致严重的腐蚀“热点”和滤网堵塞是另一个挑战。提议使用流入控制设备(ICD)来解决90年代初期的这些难题。 ICD最近变得越来越流行,并且正越来越多地应用于更广泛的领域类型。各种现场监测技术已经证实了它们控制井流入剖面的功效。 ICD是作为沙面完井硬件的一部分安装的节流装置。它的目的是平衡水平井的流入剖面,并以有限的额外压降为代价,最大程度地减少环形流量。此外,断裂的和非均质的地层还需要安装环形隔离层。膨胀包装机和压缩器的新技术可以以操作简单的方式提供这种环形隔离。本文介绍了ICD开发的历史,重点介绍了可用的设计及其应用领域。这些技术标准将使用已发布的现场示例进行说明。 ICD与其他常规和先进生产技术(例如,水平井和多边井中的独立筛,环形隔离,人工举升,砾石充填和智能完井。将显示如何使用市售的建模模拟器来量化此类井井有条的选项的价值。将提供有关如何对ICD的性能进行建模的简单但可靠的准则,以指导其寿命。因此,该技术可以用作价值量化过程的一部分,用于完成选项的评估及其详细设计。

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