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Optimizing Horizontal Well Performance in Nonuniform Pressure Environments Using Passive Inflow Control Devices

机译:使用无源流入控制装置优化非均方压环境中的水平井性能

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Passive Inflow Control Devices (ICDs) are used to enhance performance of horizontal wells in unfavorable environments, such as nonuniform permeability and/or pressure along horizontal sections. This is the first attempt at using ICDs to manage inflow along horizontal wells with substantial reservoir pressure differential. This paper presents how passive ICD completion technology is used to optimize well productivity and reduce water production in a well with significant reservoir pressure differential across the horizontal section. Prior to running the ICDs, this horizontal carbonate well exhibited a nonuniform production profile, cross-flow, and high water production resulting in reduced well performance. A production log of the initial (open hole) completion confirmed downward cross-flow of fluids from heel to toe and production contribution from only the first 10% of the horizontal section. Following the installation of the ICD system, water production was greatly reduced and oil rate doubled indicating significant improvement of the well performance. A second PLT survey showed contribution from the entire horizontal section and elimination of the cross-flow. The key factor in the success of this project was the ICD system design derived from numerous wellbore hydraulic simulations, determining the appropriate number of ICD units and compartments.
机译:被动流入控制装置(ICDS)用于增强水平孔的性能在不利环境中,例如沿水平部分的不均匀渗透性和/或压力。这是第一次尝试使用ICDS沿水平孔的流入,具有大量的储层压差。本文介绍了被动ICD完成技术如何使用井生产力并降低水平差分井中的水井生产力,并降低水平差分差分。在运行ICD之前,这种水平碳酸盐良好地表现出不均匀的生产型材,交叉流动和高水生产,从而降低了井的性能。初始(开孔)完成的生产日志确认了从脚跟到脚跟和生产贡献的向下交叉流量,从水平部分的前10%的生产贡献。在安装ICD系统之后,水产产量大大降低,油速率加倍,表明井性能显着提高。第二个PLT调查显示了整个水平部分的贡献并消除了交叉流量。该项目成功的关键因素是ICD系统设计,从众多井筒液压模拟中得出,确定适当数量的ICD单元和隔室。

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