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Three-dimensional analytical poromechanical solutions for an arbitrarily inclined borehole subjected to fluid injection

机译:对流体注入的任意倾斜钻孔的三维分析孔径溶液

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Hydraulic fracturing is the primary method of stimulation in unconventional reservoirs, playing a significant role in oil and gas production enhancement. A key issue for the analysis of hydraulic fracture initiation is to accurately determine the stress distributions in the vicinity of the borehole caused by the injection of pressurized fluids. This paper develops an exact, three-dimensional, poroelastic coupled analytical solution for such stress analysis of an arbitrarily inclined borehole subjected concurrently to a finite-length fluid discharge and in situ stresses, using Fourier expansion theorem and the Laplace-Fourier integral transform technique. The complicated boundary conditions, which involve the mixed boundary values at the borehole surface and the coupling between the total radial stress and injection-induced pore pressure over the sectioned borehole interval, as well as the fully three-dimensional far field in situ stresses, are addressed in a novel way and deliberately/elegantly decomposed into five fundamental, easier to handle modes. The rigour and definitive nature of the proposed analytical methodology facilitates fundamental understanding of the mechanism underlying the stress responses of the borehole and porous medium. It can be and is used here as a benchmark for the numerical solutions obtained from the finite-element analysis commercial program (ABAQUS).
机译:水力压裂是在非传统水库中刺激的主要方法,在石油和天然气生产增强中发挥着重要作用。用于分析液压断裂启动的关键问题是准确地确定由注入加压流体引起的钻孔附近的应力分布。本文利用傅里叶膨胀定理和拉普拉斯傅立叶积分变换技术,开发了对同时进行的任意倾斜的钻孔的这种应力分析进行了精确的三维的孔弹性耦合分析解。复杂的边界条件,它涉及钻孔表面处的混合边界值,并且在分段的钻孔间隔内的总径向应力和注射诱导的孔隙压力之间的耦合,以及完全三维远场以原位应力为原位应力。以小说方式解决,故意/优雅地分解为五个基本,更容易处理模式。所提出的分析方法的严谨性和最终性质有助于对钻孔和多孔介质的应力反应潜在的机制的基本理解。它可以是并且在这里使用作为从有限元分析商业计划(ABAQUS)获得的数值解决方案的基准。

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