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POST WELL VIBRATION ANALYSIS IN THE NORTH SEA: A TOOL TO UNDERSTAND DRILLING PERFORMANCE

机译:在北海发布井振动分析:一种了解钻井性能的工具

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Severe drill stem vibrations could leads to excessive damage to the bottom hole assembly causing an increase in nonproductive time. Different drill stem vibrations models are used to predict and avoid resonance regions by optimizing the selection of bottom hole assembly components and operating parameters such as weight on bit, and surface RPM. In addition to avoid the resonance regions, specialized tools have been developed to reduce vibrations. However a complete understanding on how to mitigate vibration and its effect on drilling performance is still lacking. This study investigates the cause of drill stem vibrations, its effect on drilling performance, and the effect of including vibration reductions tools in the bottom hole assembly design in several recent drilled wells in the North Sea. Vibration damping tools used in this study were able to reduce both lateral and torsional drill stem vibration compared to a well with no vibration damping tool. Torsional drill stem vibrations tend to increase through rich sand zones causing an increase in lateral vibrations. The impact drill stem vibrations have on drilling performance was identified through rate of penetration. As lateral vibration intensity increases, instantaneous rate of penetration decreases.
机译:严重的钻杆振动可能导致底部孔组件的过度损坏导致非培养时间增加。通过优化底部孔组件组件和诸如位的重量和表面RPM的操作参数,使用不同的钻杆振动模型来预测和避免谐振区域。除了避免共振区外,还开发了专门的工具来减少振动。但是,仍然缺乏对如何减轻振动及其对钻井性能影响的完全理解。本研究调查了钻杆振动的原因,其对钻井性能的影响,以及在北海最近钻井井中的底孔组装设计中的抗振缩工具包括抗振缩工具的效果。与没有振动阻尼工具的井相比,本研究中使用的振动阻尼工具能够减少横向和扭转钻杆振动。扭转钻杆振动倾向于通过富含砂区域增加,导致横向振动增加。通过渗透率来确定冲击钻杆振动对钻井性能进行了鉴定。随着横向振动强度的增加,瞬时穿透速率降低。

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