首页> 外文会议>Society of Petroleum Engineers Annual Technical Conference and Exhibition >Information from a Downhole Dynamics Tool Provides Real-Time Answers for Optimization While Drilling 10,000 ft Laterals in the Middle Bakken Formation of the Williston Basin
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Information from a Downhole Dynamics Tool Provides Real-Time Answers for Optimization While Drilling 10,000 ft Laterals in the Middle Bakken Formation of the Williston Basin

机译:来自井下动力学工具的信息提供了优化的实时答案,同时钻入威斯顿盆地的中间Bakken Bakken Bakken Bakken侧面

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Economically exploiting the Bakken reservoir of the Williston Basin requires long horizontal wellbores through the drilling zones which continually change from sandstone to siltstone to shale with hard calcite cementation. Changes of formation within the drilling zone have caused numerous drilling challenges by creating dynamics issues, resulting in vibration problems and bit/bottom hole assembly deflections. These, in turn, result in high local doglegs that lead to a loss of drilling efficiency. Traditionally, a real-time downhole dynamics tool has been used occasionally within lower-cost drilling projects to accelerate learning about the downhole environment. This knowledge and real-time control of drilling parameters are essential. However, the value of these downhole tools may be underexploited, since they might not be considered economical for everyday use in the lower-cost drilling projects. Case history examples display the bbenefits due to the closer-to-the-bit steering control from bending moment and bending toolface data, and have made the use of this downhole dynamics tool a necessary choice. This paper will expand on the challenges encountered while drilling the long lateral sections in the Williston Basin, and show how the use of real-time downhole dynamics information helped optimize the drilling effort by saving time and increasing the percentage of successful one-run laterals. Furthermore, the paper expands on the practical use of the directionall information from bending moment and bending toolface close to the bit thus allowing the directional driller to make better real-time decisions on whether a wellbore correction is really needed. The paper is supported with over 30 months of field examples and results.
机译:经济地利用威利斯龙盆地的Bakken水库需要长时间井筒穿过钻井区,这不断地从砂岩到硅铁石与硬质煤矿胶粘剂的页岩。钻井区内形成的变化通过创造动态问题而导致了许多钻探挑战,导致振动问题和钻头/底部孔组装偏转。反过来,这些导致高地的狗腿导致钻探效率的损失。传统上,偶尔使用实时井下动力学工具,以加速了解井下环境的学习。这种知识和对钻井参数的实时控制是必不可少的。然而,这些井下工具的价值可能是欠缺的,因为它们可能不被认为是在低成本钻井项目中日常使用的经济学。案例历史例子由于弯曲时刻和弯曲工具面数据的近距离转向控制而显示了Bbenefits,并且已经使用了这种井下动力学工具的必要选择。本文将扩展威尔斯顿盆地钻井长侧段时遇到的挑战,并展示了实时井下动力学信息的使用有助于通过节省时间和增加成功的一次运行横向的百分比来优化钻井努力。此外,该纸张在弯曲时刻和弯曲工具面的实际用途扩展,靠近该位,从而允许方向钻机对是否真正需要进行井筒校正来做出更好的实时决定。本文得到了超过30个月的现场实施例和结果。

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