首页> 外文会议>SPE/AAPG Eastern Regional Meeting >Field Validation of a New BHA Model and Practical Case Studies in Unconventional Shale Plays,with a Framework for Automated Analysis for Operations Support
【24h】

Field Validation of a New BHA Model and Practical Case Studies in Unconventional Shale Plays,with a Framework for Automated Analysis for Operations Support

机译:新的BHA模型和实际案例研究在非传统页岩竞争中的现场验证,具有自动分析的框架,用于运营支持

获取原文

摘要

A new three-dimensional drillstring model has been developed that determines the static and dynamic behavior of bottom hole assemblies(BHAs)in realistic wellbores.The analysis approach has been validated with field data,and shows a strong agreement between observed and calculated BHA behavior.Several case studies are presented that show the practical use and benefit of the advanced model for,among other applications,unconventional horizontal drilling.A framework is also provided to show how the model can be incorporated into automated engineering processes for operations support.Validation tests were conducted using high-frequency down-hole data measured within a motor-assisted rotary-steerable BHA.The gathered data was used to verify the calculated mechanical loads,predicted lateral natural frequencies of the BHA,estimated directional performance of the down-hole assembly,as well as torsional resonance resulting from High-Frequency Torsional Oscillations(HFTO).Using the validated model,various analyses have been conducted for operators around the globe,in a multitude of different drilling environments,to aid in identifying drilling dysfunctions and optimizing BHA performance.Several case studies are presented that highlight the benefit of the modeling techniques in US unconventional shale plays as well as in the Canadian heavy-oil sands,with noticeable improvements in drilling efficiencies,tool design,and reduced non-productive time(NPT).Results from the field tests show a strong correlation between measured and calculated bending moment values,as well as lateral natural frequencies of the BHA with an average of 3% error across all data sets.The primary source of error is thought to be borehole spiraling,which is quantified through analysis of the down-hole bending moment data.In addition,the model is shown to provide close estimates to actual directional performance of both steerable mud motor and Rotary-Steerable BHAs.However,the directional calculation-measurement comparison does reveal a need to incorporate an ROP-dependency within the directional prediction algorithms.Nevertheless,even with these sources of discrepancy,the modeling approach provides a sensible prediction of the BHA's mechanical and dynamic behavior and,as shown through case studies,can be used as a planning tool for BHA design,an investigative tool for root-cause analysis,or potentially as a real-time optimization tool for avoiding harmful operating conditions.
机译:已经开发了一种新的三维钻头模型,其确定了现实井筒中底孔组件(BHAS)的静态和动态行为。分析方法已被现场数据验证,并在观察和计算的BHA行为之间显示了强有力的一致性。提出了几种案例研究,显示了高级模型的实际使用和优势,以及其他应用程序的非传统水平钻井。还提供了框架,以说明如何将模型结合到用于操作支持的自动工程过程中.Validation测试是如何使用在电动机辅助旋转可转向BHA内测量的高频下孔数据进行。聚集的数据用于验证计算的机械负载,预测BHA的横向自然频率,估计井下组件的方向性性能,以及由高频扭转振荡(HFTO)产生的扭转共振。使用验证模式L,各种分析已经在全球各地的运营商进行,在多个不同的钻井环境中,有助于识别钻井功能障碍和优化BHA性能。提出了案例研究,突出了美国非传统页岩扮演中的建模技术的益处以及在加拿大重油砂中,钻探效率的显着改善,工具设计和减少的非生产时间(NPT)。结果从现场测试中显示出测量和计算弯曲力矩值之间的强烈相关性,也是如此作为BHA的横向自然频率,平均跨所有数据集的3%误差。认为主要误差来源是钻孔螺旋,通过分析井下弯曲时刻数据来量化。此外,模型显示为可转向泥浆电机和旋转可转向BHAS的实际方向性能提供密切估计。然而,定向计算 - 测量值NT比较确实揭示了在方向预测算法内纳入ROP依赖性。尽管使用这些差异来源,所造型方法也能提供对BHA的机械和动态行为的明智预测,并且如通过案例研究所示,可以用作BHA设计的规划工具,一种用于根本原因分析的调查工具,或者可能是避免有害操作条件的实时优化工具。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号