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DrillString Vibration With Hole-Enlarging Tools: Analysis and Avoidance

机译:带扩孔工具的钻柱振动:分析和避免

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摘要

In high-risk, high-cost environments, such as ultra-deep waters, refining advanced technologies for the successful completion of wells is paramount. Challenges are still very much associated with complex bottomhole assemblies (BHAs) and with the vibration of the drillstring when used with hole enlarging tools. These tools with complex profiles and designs become additional excitation sources of vibration. The more widespread use of downhole tools for both directional telemetry and logging-while-drilling (LWD) applications, as part of the front line data acquisition system within the drilling process, has made reliability a prime area of importance. This paper presents and validates an existing model to predict severe damaging vibrations. It also provides analysis techniques and guidelines to successfully avoid the vibration damage to dpwnhole tools and to their associated downhole assemblies when using hole enlarging tools, such as hole openers and underreamers. The dynamic analysis model is based on forced frequency response (FFR) to solve for resonant frequencies. In addition, a mathematical formulation includes viscous, axial, torsional, and structural damping mechanisms. With careful consideration of input parameters and the judicious analysis of results, we demonstrated that drillstring vibration can be avoided by determining the three-dimensional vibrational response at selected excitations that are likely to cause them. In addition, the analysis provides an estimate of relative bending stresses, shear forces, and lateral displacements for the assembly used. Based on the study, severe vibrations causing potentially damaging operating conditions that had been a major problem in nearby wells were avoided. Steps required to estimate the operating range of the drilling parameter such as weight on bit and rotational speeds to mitigate and avoid the downhole tool failures due to vibration are given. Extensive simulations were performed to compare the data from the downhole vibration sensors; this paper includes severe vibration incidence data from three case studies in which the model estimated, predicted, and avoided severe vibration (Samuel, R., et al., 2006, "Vibration Analysis Model Prediction and Avoidance: A Case History," Paper SPE 102134 Presented at the IADC India Conference, Mumbai, India, Oct. 16-18; Samuel, R., 2010, "Vibration Analysis for Hole Enlarging Tools" SPE 134512, Annual Technical Conference, Florence, Italy).
机译:在高风险,高成本的环境(例如超深水域)中,精炼先进技术以成功完井是至关重要的。当与扩孔工具一起使用时,挑战仍然与复杂的井底钻具(BHA)和钻柱的振动密切相关。这些具有复杂轮廓和设计的工具成为振动的附加激励源。作为钻井过程中前线数据采集系统的一部分,井下工具在定向遥测和随钻测井(LWD)应用中的更广泛使用使可靠性成为重要的重要领域。本文介绍并验证了现有模型来预测严重的破坏性振动。它还提供了分析技术和指南,可在使用扩孔工具(例如开孔器和扩孔器)时成功避免对dpwnhole工具及其相关的井下组件造成振动损坏。动态分析模型基于强制频率响应(FFR)解决共振频率。另外,数学公式包括粘性,轴向,扭转和结构阻尼机制。通过仔细考虑输入参数和对结果进行明智的分析,我们证明了通过确定可能引起它们的选定激励下的三维振动响应,可以避免钻柱振动。此外,该分析还提供了所用组件的相对弯曲应力,剪切力和横向位移的估计值。根据这项研究,避免了造成潜在破坏性操作条件的剧烈振动,这种振动是附近井中的主要问题。给出了估计钻削参数的操作范围所需的步骤,例如钻头重量和转速,以减轻和避免由于振动引起的井下工具故障。进行了广泛的模拟以比较来自井下振动传感器的数据。本文包括来自三个案例研究的严重振动发生数据,其中模型估计,预测并避免了严重振动(Samuel,R.等人,2006,“振动分析模型的预测和避免:案例历史”,论文SPE 102134在10月16日至18日于印度孟买举行的IADC印度会议上发表; R。Samuel,2010年,“扩孔工具的振动分析”,SPE 134512,年度技术会议,意大利佛罗伦萨。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2013年第3期|032904.1-032904.13|共13页
  • 作者

    Robello Samuel; Dongping Yao;

  • 作者单位

    Halliburton, Houston, TX 77032;

    Shell, Houston, TX 77002;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:29:12

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