利用传感器模块系统测量钻头的钻井参数,大大缩短了东西伯利亚地区油井的施工时间

A. Rebrikov, Anton Anatolyevich Koschenkov, Anastasiya Gennadievna Rakina, Igor Dmitrievich Kortunov, N. Koshelev, Maxim Petrovich Dubrovskiy, Vladimir Olegovich Bekasov, Yuriy Anatolyevich Yakimov, Pavel Anatolyevich Grechikho, M. A. Ataev
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引用次数: 0

摘要

目前,生产和勘探钻井已经进入了一个发展阶段,其中一个最优先的目标是利用新技术和创新来缩短建井时间。这方面的关键组成部分之一是利用岩石切削工具-钻头的最新设计和制造成果。本文介绍了利用直接安装在钻头上的传感器系统识别PDC钻头钻井时不同类型振动的一些新方法。在东西伯利亚油气田,PDC钻头钻进效果不佳的主要原因之一是振动,振动会导致钻头切削结构过早磨损,导致白云岩和白云岩层段的机械钻速较低。为了使用底部钻具组合(BHA)(包括井下马达(PDM)和PDC钻头)高效钻井各种轨迹的井,需要特别注意通过限制切割深度来控制钻头,以及在钻井过程中发生的振动水平。通常,现有的地面和底部钻具组合设备无法识别直接发生在钻头上的振动,也无法确定其发生的真正原因。因此,作为解决这一问题的创新方案,提出了直接安装在钻头本身的传感器系统。使用这种系统可以根据岩石的岩性特性来确定钻井参数,从而增加振动影响。与作业者一起,成功地进行了测试,证明了该技术应用的有效性。在现场测试中获得的数据使得在钻井过程中非常准确地确定振动的类型和来源成为可能。反过来,这使得根据所钻岩石精确调整钻井参数成为可能,从而在特定的井段绘制出有效钻井的详细路线图。根据对安装在钻头上的传感器数据的分析,对钻井参数进行校正,从而减少PDC钻头切削结构的磨损,并在必要时对钻头设计进行更改,以提高技术和经济指标。因此,使用传感器系统测量钻头的钻井参数,确保了在不同硬度岩石中钻井时,整个BHA在井底的动态稳定性,显著减少了钻井工具的磨损,从质量上提高了钻井性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Use of a Sensor Modules System for Measuring Drilling Parameters in a Bit, Significantly Reduces the Construction Time of Wells in Eastern Siberia
Currently, production and exploration drilling has entered a stage of development where one of the highest priority goals is to reduce the time for well construction with new technologies and innovations. One of the key components in this aspect is the utilizing of the latest achievements in the design and manufacture of rock cutting tools – drill bits. This article presents some new ideas on methods for identifying different types of vibrations when drilling with PDC bits using a system of sensors installed directly into the bit itself. In the oil and gas fields of Eastern Siberia, one of the main reasons for ineffective drilling with PDC bits are vibrations, which lead to premature wear of the cutting structure of the bit and the achievement of low ROPs in the dolomite and dolerite intervals. For efficient drilling of wells of various trajectories with a bottom hole assembly (BHA), including a downhole motor (PDM) and a PDC bit, special attention is paid to control of the bit by limiting the depth of cut, as well as the level of vibrations that occur during drilling process. Often, the existing complex of surface and BHA equipment fails to identify vibrations that occur directly on the bit, as well as to establish the true cause of their occurrence. Therefore, as an innovative solution to this problem, a system of sensors installed directly into the bit itself is proposed. The use of such a system makes it possible to determine the drilling parameters, differentiated depending on the lithological properties of rocks, leading to an increase in vibration impact. Together with the Operators, tests have been successfully carried out, which have proven the effectiveness of the application of this technology. The data obtained during the field tests made it possible to determine the type and source of vibration very accurately during drilling. In turn, this made it possible to precisely adjust the drilling parameters according to the drilled rocks, to draw up a detailed road map of effective drilling in a specific interval. Correction of drilling parameters based on the analysis of data obtained from sensors installed in the bit made it possible to reduce the resulting wear of the PDC bit cutting structure and, if necessary, make changes to the bit design to improve the technical and economic indicators. Thus, the use of a system of sensors for measuring the drilling parameters in a bit ensured the dynamic stability of the entire BHA at the bottomhole when drilling in rocks of different hardness, significantly reduced the wear of the drilling tools and qualitatively improved the drilling performance.
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