首页> 外文会议>SPE Russian Petroleum Technology Conference >Experience of Using Various Horizontal Well Logging Technologies During Multi-Stage Hydraulic Fracturing at Sredne-Nazymskoye Field
【24h】

Experience of Using Various Horizontal Well Logging Technologies During Multi-Stage Hydraulic Fracturing at Sredne-Nazymskoye Field

机译:Sredne-Nazymskoye田多级水力压裂过程中使用各种水平井测井技术的经验

获取原文

摘要

In today’s operations in the conditions of drilling technologies active development, well completion and production intensification, there is a tendency towards increasing growth lengths of horizontal sections of horizontal drilling volumes, resulting in an increase of multi-zone hydraulic fracturing stages. With existing conventional horizontal well logging methods, alternative technologies that utilize tracer- based inflow indicators are becoming more common. These technologies enable horizontal well production logging and allow users to obtain long-term analytical information. The objective of this article is to analyze the efficiency of several production logging methods applied to horizontal wells with multi-stage hydraulic fracturing at Sredne-Nazymskoye field. During the project, horizontal well oil and water inflows were monitored using a 15-stage hydraulic fracturing and the application of marked polymer-coated proppant. Monodisperse polymer microglobules, encoded for each stage of the multi-stage hydraulic fracturing and interacting selectively with water and oil, were used as markers. Upon completion of the stimulation works and once the well was put into operation, formation fluid sampling from the wellhead was carried out with subsequent analysis to determine the concentration of markers of each code and was associated with fracturing stages. Well production logging with the marked proppant application was carried out periodically for several months, and the horizontal well profiles were built on the basis of the obtained analytical data. The results allowed us to conduct a long-term analysis of the stimulation efficiency for each of the hydraulic fracturing stages. We also used the data to assess the formation reserves development for each of the multi-stage hydraulic fracturing stages. In contrast to conventional logging methods, the primary advantage of the horizontal well production logging technology is that there is no requirement to use special means of tool deliver and there is no risk of down-hole tools getting stuck or a loss or ambiguity of interpretation. During the course of the study, the performance of the monitoring technology was confirmed using flow indicators placed in the hydraulic fractures, providing long-term selective interaction of marker particles with water and oil parts of formation fluid. The obtained geological and technical information contributes to further planning of effective geological and technical measures and additional oil recovery.
机译:在当今在钻井技术的条件下的运营方面积极发展,完井和生产强化,趋势趋势促进水平钻孔级水平段的生长长度,从而增加了多区水力压裂阶段。利用现有的传统水平井测井方法,利用基于示踪剂的流入指示器的替代技术变得越来越普遍。这些技术使水平良好的生产记录能够允许用户获得长期分析信息。本文的目的是分析应用于水平井的几种生产测井方法的效率,在Sredne-Nazymskoye田中的多级水力压裂。在该项目期间,使用15阶段水力压裂和标记的聚合物涂层支撑剂的应用来监测水平井油和水流量。单分散聚合物微胶囊,用于多级液压压裂和选择性与水和油相互作用的每个阶段编码,用作标记。在完成刺激作品并且一旦井被投入运行时,通过随后的分析进行了从井口的形成流体取样,以确定每个代码的标记的浓度,并且与压裂阶段相关联。使用标记的支撑剂应用程序的良好生产进行定期进行数月,并且横向井简档是基于所获得的分析数据构建的。结果允许我们对每个液压压裂阶段进行刺激效率进行长期分析。我们还使用数据来评估每个多级水力压裂阶段的形成储备开发。与传统的测井方法相比,水平井生产测井技术的主要优点是不需要使用特殊工具提供的手段,并且没有陷入孔工具的风险陷入困境或解释的损失或歧义。在该研究过程中,使用放置在液压骨折中的流量指示器确认了监测技术的性能,提供了与水和油部分形成液的标记颗粒的长期选择性相互作用。获得的地质和技术信息有助于进一步规划有效的地质和技术措施和额外的石油恢复。

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