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Micromechanical Study of Borehole Breakout Mechanism.

机译:钻孔破坏机理的微力学研究。

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摘要

Borehole breakouts are zones of enlargements of the wellbore cross section that form as a result of rock failure at the wellbore wall during drilling. The analysis of borehole breakout is essential in addressing wellbore stability, well completion, and sand production problems.;In this research, a systematic methodology was developed for calibrating material micro-properties. Next, the calibration performance was assessed by simulating thick walled cylinder tests and comparing the model results against laboratory measurements. The model was also verified against analytical solutions for a TWC sample under plane strain axisymmetric conditions.;The numerical tool was then used in a series of parametric simulations of drilling conditions. These simulations allowed the relating of the breakout type to the sandstone's micro-properties. To be able to relate the breakout type to the macro-mechanical properties, a series of triaxial testing simulations were conducted to relate the micro and macro-mechanical material properties together.;The results showed that the geometry of the breakout was affected by micro-parameters such as the particle contact modulus, the parallel bond normal and shear strengths, the particle crushing strength, and the particle size distribution. In addition, it was found that the macro Young's modulus, friction and dilation angles, and the uniaxial compressive strength also affect the type of breakouts.;This research numerically investigates the effect of the material micro and macro-parameters on the failure mechanism and the geometry of the wellbore breakout. A three-dimensional discrete element method was used in the simulations.;The triaxial testing simulations showed that: (a) Young's modulus is not just affected by the particle contact modulus, but also the friction coefficient between particles and the percentage of bonded contacts, (b) the dilation angle is a function of the particle contact modulus, percentage of bonded contacts and inter-particle friction, (c) the friction angle is not only affected by the friction coefficient between particles, but also by bond strengths, (d) cohesion is not just affected by bond strengths and the percentage of bonded contacts, but also by the friction coefficient between particles, and (e) the post-peak modulus is affected by the percentage of bonded contacts and inter-particle friction.
机译:钻孔裂口是井眼横截面的扩大区域,这些区域是由于钻井过程中在井眼壁处发生岩石破坏而形成的。在解决井眼稳定性,完井性和出砂问题方面,进行井眼突围分析至关重要。在本研究中,开发了一种用于校准材料微观性质的系统方法。接下来,通过模拟厚壁圆筒测试并将模型结果与实验室测量值进行比较来评估校准性能。还针对平面应变轴对称条件下的TWC样品的解析解验证了该模型。然后,该数字工具被用于一系列钻井条件的参数模拟中。这些模拟允许将突破类型与砂岩的微观性质联系起来。为了使突破类型与宏观力学性能相关联,进行了一系列三轴试验模拟,将微观和宏观力学材料性能关联在一起;结果表明,突破的几何形状受微观结构的影响。参数,例如颗粒接触模量,平行键的法向和剪切强度,颗粒抗碎强度和粒度分布。此外,还发现宏观的杨氏模量,摩擦角和膨胀角以及单轴抗压强度也会影响断裂的类型。;本研究通过数值研究了材料的微观和宏观参数对破坏机理和破坏的影响。井眼突触的几何形状。在模拟中使用了三维离散元方法;三轴测试模拟表明:(a)杨氏模量不仅受颗粒接触模量的影响,而且还受到颗粒之间的摩擦系数和键合接触百分比的影响, (b)膨胀角是颗粒接触模量,键合接触百分比和颗粒间摩擦的函数,(c)摩擦角不仅受颗粒之间的摩擦系数影响,还受键合强度影响,(d内聚不仅受粘结强度和粘结接触百分比的影响,而且还受颗粒之间的摩擦系数的影响,并且(e)峰后模量受粘结接触的百分比和颗粒间摩擦的影响。

著录项

  • 作者

    Rahmati, Hossein.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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