The Vital Role of Well Intervention Technologies and Techniques in Pushing the Boundaries in Extreme Well Completions

Laurie S. Duthie, Muhammad Awwadh Harthi, Hussain Saiood, O. Afif
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引用次数: 1

Abstract

The advantages of drilling extended reach wells (ERW’s) are well known; increased reservoir contact, reduced surface footprint and less wells drilled. Although the benefits of drilling these wells is clear, it is also essential to have the ability to conduct well intervention throughout the life of the well. Matrix acid stimulation and production logging are critically important well intervention operations for efficient reservoir management. Coiled tubing (CT) is commonly deployed in ERW’s to perform these intervention operations. For open hole ERW’s, the success of the operation is often directly correlated to the length of the lateral covered. For ERW’s that can exceed 30,000 ft, the challenges to reach total depth (TD) can almost be insurmountable in terms of overcoming the high frictional forces acting against the CT. The level of difficulty is further magnified covering open sections often greater than 10,000 ft, where additional frictional forces are present from the rock, high dogleg severity and well trajectory. High bottom hole temperature along with high H2S & CO2 levels pose further challenges. Formation damage after drilling may result in serious production and therefore economic consequences and it is imperative to restore reservoir permeability along the complete interval with accurate treatment placement. The same challenges are present for logging operations where the main objective is to determine the flow profile along the entire open hole section. To achieve the main objectives, a comprehensive approach is taken for these well intervention operations. Custom designed technologies have been developed to increase the open hole coverage achieved to provide good zonal coverage in matrix acid treatments and also a clearer understanding of multiphase flow from the formation during production logging. Technologies developed specifically to tackle these challenges are hydraulically powered CT tractors that can deliver up to 14,000 lbs pulling force and mechanical agitator tools that effectively reduce the total friction coefficient. Other technologies employed are a downhole compression/tension sub to monitor downhole performance in real time to enhance operational decision making. To extend the ultimate reach, certain techniques can add a few thousand feet in coverage. These techniques include high pressure jetting to clean out the horizontal section of the cased hole to lower the friction, strategically deploying friction reducer and using momentum assiduously. These new technologies and applied techniques opens the window to ultimately meeting the goals of improved well surveillance and treatment in long horizontal laterals. Creative solutions have been core to inventing the best fit for purpose technologies, with great leaps having been made through pioneering technologies to extend CT reach in these extreme conditions.
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修井技术和技术在极端完井中突破界限的重要作用
大位移井(ERW’s)的优势是众所周知的;增加了储层接触,减少了地面占地面积,减少了钻井数量。虽然钻井这些井的好处是显而易见的,但在井的整个生命周期内,有能力进行油井干预也是至关重要的。为了实现高效的储层管理,基质酸化和生产测井是至关重要的修井作业。连续油管(CT)通常部署在ERW中进行这些修井作业。对于裸眼ERW,作业的成功与否通常与分支覆盖的长度直接相关。对于长度超过30,000英尺的ERW,达到总深度(TD)的挑战几乎是无法克服的,因为要克服作用于连续油管的高摩擦力。对于通常大于10,000英尺的开放段,难度进一步加大,因为岩石、狗腿的严重程度和井眼轨迹都存在额外的摩擦力。井底温度高,H2S和CO2含量高,这些都是进一步的挑战。钻井后的地层损害可能会导致严重的生产和经济后果,因此必须通过精确的处理位置来恢复整个层段的储层渗透率。测井作业也面临着同样的挑战,测井作业的主要目标是确定整个裸眼段的流动剖面。为了实现主要目标,这些修井作业采用了综合方法。开发了定制设计的技术,以增加裸眼覆盖范围,在基质酸处理中提供良好的层间覆盖,并在生产测井过程中更清楚地了解地层的多相流。为了应对这些挑战,专门开发了液压驱动的连续油管牵引器(可提供高达14000磅的拉力)和机械搅拌工具(可有效降低总摩擦系数)。采用的其他技术包括井下压缩/张力短节,用于实时监测井下性能,以提高作业决策。为了扩大最终覆盖范围,某些技术可以增加几千英尺的覆盖范围。这些技术包括高压喷射,以清洁套管井的水平段,以降低摩擦,策略性地部署摩擦减速器,并努力使用动量。这些新技术和应用技术为最终实现改进长水平分支井的监测和处理目标打开了一扇窗。创新的解决方案是发明最适合用途的技术的核心,通过开创性的技术,扩大了CT在极端条件下的覆盖范围,取得了巨大的飞跃。
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