首页> 外文会议>SPE International Conference and Exhibition on Formation Damage Control >Understanding the Impact of Production Slugging Behavior on Near-Wellbore Hydraulic Fracture and Formation Integrity
【24h】

Understanding the Impact of Production Slugging Behavior on Near-Wellbore Hydraulic Fracture and Formation Integrity

机译:了解生产障碍行为对井井下液压骨折和形成完整性的影响

获取原文

摘要

Numerous studies on unconventional shale well production data have shown that downhole pressure fluctuations can exceed 300 psig during a slugging period. Such pressure fluctuation will result in very high drawdown and could lead to near-wellbore formation damage when the rock failure criterion was met. An engineering workflow was developed to investigate the impact of multiphase slugging events on cemented casing plug and perforation (CCPP)and open hole sliding sleeves (OHSS) completions. Based on transient pressure analysis and geomechanical evaluation, safety operational envelope was generated to minimize the risk of formation damage due to slugging behavior. In this study, a dynamic multiphase flow simulator was used to predict the pressure amplitude and frequency during the slugging events in both a CCPP and OHSS completion configuration. The results from the simulation were then incorporated into a geomechanical model to analyze and identify potential hydraulic fracture closure and formation damage concerns, which can compromise well performance. The results from this study show that OHSS completion is more vulnerable to damage during the downhole slugging period than a CCPP completion. However, severe formation and fracture damage could occur during downhole slugging for CCPP well if the well is operated outside the safety operational envelope. Results from the two case studies led to the conclusion that it is crucial to consider the effect of downhole slugging on near-wellbore fracture and formation integrity to avoid permanent and irreversible damage.
机译:许多关于非传统页岩井生产数据的研究表明,在凹槽期间,井下压力波动可能超过300psig。这种压力波动将导致非常高的缩减,并且在满足岩石故障标准时可能导致井眼形成损坏。开发了一种工程工作流程,以研究多相粘贴事件对水泥套管插头和穿孔(CCPP)和开孔滑动套筒(OHSS)完成的影响。基于瞬态压力分析和地质力学评估,产生了安全操作包络,以最大限度地减少由于狭窄行为引起的形成损坏的风险。在该研究中,使用动态多相流模拟器来预测CCPP和OHS完成配置中的晃动事件期间的压力幅度和频率。然后将模拟的结果纳入地质力学模型中,以分析和识别潜在的液压断裂闭合和形成损伤问题,这可能会损害良好的性能。本研究结果表明,OHSS完成比CCPP完成在井下狭窄期间更容易受到损坏。然而,如果在安全操作包络外部运行井,则可以在井下堵塞时发生严重的形成和断裂损坏。两种案例研究的结果导致了结论,即将井下折叠对近井筒骨折和形成完整性的影响至关重要,以避免永久性和不可逆转的损伤。

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