首页> 外文会议>SPE Russian Petroleum Technology Conference >Integrated Approach to Real-Time Drilling Optimization Based on Methods of Geosteering,Petrophysics and Geomechanics
【24h】

Integrated Approach to Real-Time Drilling Optimization Based on Methods of Geosteering,Petrophysics and Geomechanics

机译:基于地升性,岩石物理学和地质力学方法的实时钻井优化综合方法

获取原文

摘要

The objective of this work was to drill a horizontal well in the Bazhen formation(Western Siberia,Severo-Demyanskoye field)in order to achieve the maximum possible efficiency both from technological and economical points of view.To solve the task,it was decided to apply a integrated approach to drilling support: synchronously use the methods of geosteering,the results of geomechanical modeling and evaluation of the reservoir properties during the drilling process.The experience of drilling support accumulated by the company at the beginning of the work demonstrated that the coordinated use of the three disciplines leads to an increase in the efficiency of the well construction process.Pre-drill geomechanical models of the geological interval of interest were constructed for the target well,and also reservoir properties were evaluated.The wellbore stability analysis is carried out and intervals with high risks of destruction of a breed on walls of a chink are revealed.To minimize risks,recommendations were given on the technological parameters of the well construction: mud weight,casing shoe depth,etc.Based on the actually measured rock properties,the petrophysical characteristics of the formation were evaluated.Geosteering methods were used to correct the trajectory in real time for the most efficient well placement in the target interval with the best reservoir properties.Every time the trajectory was changed,the geomechanical model was rebuilt,demonstrating an updated risk map.As a result,the well trajectory was adjusted taking into account minimization of unstable borehole risks.
机译:这项工作的目标是在Bazhen Chormation(西伯利亚,Severo-Demyanskoye田西方)钻井井,以实现从技术和经济的观点达到最大可能效率。要解决任务,但决定了应用钻探支持的综合方法:同步使用地统治的方法,地质力学建模和钻井过程中储层性能的评价。公司在工作开始时积累的钻井支持的经验表明协调使用三个学科导致井施工过程的效率的提高。为靶孔构建了兴趣地质间隔的钻孔地质力学模型,并评估了储层性质。进行井筒稳定性分析揭示了追随墙壁上的品种的销毁高风险的间隔。尽量减少风险,在井结构的技术参数上给出了建议:泥浆重量,套管深度等。基于实际测量的岩石性质,进行了岩石物理特征,进行了评估。使用寿命方法用于实时校正轨迹目标间隔中最有效的井放置,具有最佳的储层属性。每次轨迹都改变了,地质力学模型被重建,展示了更新的风险地图。结果,考虑了不稳定的钻孔最小化的井轨迹风险。

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