首页> 外文会议>Society of Petroleum Engineers Annual Technical Conference >Minimizing Over-Flush Volumes at the End of Fracture-Stimulation Stages-An Eagle Ford Case Study
【24h】

Minimizing Over-Flush Volumes at the End of Fracture-Stimulation Stages-An Eagle Ford Case Study

机译:最小化裂缝刺激阶段结束时的过度冲水量 - 鹰福特案例研究

获取原文

摘要

With the growing popularity of multi-stage hydraulic fracturing treatments in horizontal wellbores, various completion systems have been utilized for mechanical isolation and staging of individual fracture treatments.One of the more popular fracture staging techniques is the plug-and-perf technique in cemented casing,which requires the lateral section of the wellbore to be free of debris and proppant so that the plug and perforation tool string can be pumped down to the desired setting depth.Proppant that has settled in the lateral can result in plugs getting stuck and prematurely setting at the wrong depth, requiring costly intervention work and delaying the progress of completing the well. The industry standard practice to prepare a clean wellbore has been to over-flush each fracture treatment by 50 to 100 barrels in excess of the volume to the perforations.This practice has raised concerns about disturbing near-wellbore proppant conductivity and potentially harming fracture continu-ity with the wellbore,and thus productivity.Since operators have achieved satisfactory economics in many shale plays,this practice continues despite its controversy. These concerns have led to experiments in minimizing excess flush volumes in wells located in the liquids-bearing window of the Eagle Ford Shale.This paper proposes a process involving the use of real-time treatment data displayed within a wellbore model simulation to adjust the flush volume of each stage based on the reduction in proppant concentration at the perforations.Over 200 stages were successfully placed with this method with no incidences of plugs sticking in the lateral.This paper contains a selection of treatment charts and wellbore diagrams from actual applications of this method. Simulated fracture profiles of different over-flush scenarios are also compared and discussed. This paper will be useful for engineers and managers involved in well completions and stimulation,and presents detailed methodology for successfully applying this strategy in their fields.By applying these procedures,continuity between the proppant pack in the fractures and the wellbore should be improved, and fresh water usage will be reduced.
机译:随着水平井筒中多级液压压裂处理的普及日益普及,各种完井系统已经用于机械隔离和阶段的单个骨折处理。更受欢迎的骨折分期技术是粘液壳体中的插头和完善技术,这需要井筒的横向部分不含碎屑和支撑剂,使得塞子和穿孔工具串可以向下泵送到所需的设置深度。稳定在横向的所需设置深度可能导致插头陷入卡住和过早地设置在错误的深度,需要昂贵的干预工作和延迟完成井的进展。制备干净的井筒的行业标准做法一直在将每个骨折处理过度齐平50至100桶,超过穿孔的体积。本实践提出了令人不安的井孔支撑剂导电性和潜在伤害的骨折继续担忧凭借井展,从而生产力。企业经营者在许多页岩剧中取得了令人满意的经济学,尽管有争议,但这种做法仍在继续。这些问题已导致实验中在位于鹰福特Shale.This纸的液体轴承窗井最小化过量的冲洗体积提出涉及使用实时处理数据的处理的井眼模型模拟来调节冲洗内显示基于穿孔的支撑剂浓度的降低的每个阶段的体积。通过这种方法成功地放置了200个阶段,在侧向中没有插头的插头。本文包含各种处理图表和井筒图中的实际应用方法。还比较和讨论了不同过度冲洗场景的模拟裂缝简谱。本文对参与井井井和刺激的工程师和管理人员有用,并提出了在其领域成功应用此策略的详细方法。使用这些程序,骨折和井筒中的支撑剂包之间的连续性应该得到改善,并且将减少淡水使用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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