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首页> 外文期刊>Journal of natural gas science and engineering >Borehole stability analysis: A new model considering the effects of anisotropic permeability in bedding formation based on poroelastic theory
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Borehole stability analysis: A new model considering the effects of anisotropic permeability in bedding formation based on poroelastic theory

机译:钻孔稳定性分析:基于多孔弹性理论的床上用品渗透性的研究

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摘要

The mechanical properties of bedding planes in laminated shale rocks have attracted great attention especially when assessing borehole stability. However, the anisotropic permeability effects, though proved significant in bedding rocks by many experiments, are seldom indicated for the borehole-stability problem in the literature. In this paper, a new borehole-stability model was developed to thoroughly analyze the anisotropic permeability effects: the equivalent permeability coefficient of bedding formation is first defined according to the permeability tensor theory in anisotropic medium; the poroelastic solutions of the stress state around inclined boreholes are then obtained incorporating the anisotropic permeability effects; the failures of both rock matrix and bedding planes are considered to evaluate borehole stability. The results show that the permeabilities around deviated boreholes are quite different in bedding formation, which will lead to the change of stress state, failure area around the borehole and the change of collapse pressure and fracture pressure. The pore pressure around the borehole calculated under anisotropic permeability condition (APC) is usually lager than that calculated under isotropic permeability condition (IPC), while for other effective stresses the opposite holds true. The failure depth around borehole is quite different for APC and IPC under the Mohr-Coulomb and Mogi-Coulomb criteria. In general, the collapse failure of rock matrix can be initiated at some distance away from the borehole while the collapse failure of weak planes is usually initiated at the borehole wall. It is more crucial to consider the anisotropic permeability effects to calculate collapse pressure than fracture pressure when assessing borehole stability. Besides, the time growth may lead to collapse or fracture failures near the borehole. The developed analytical model can provide a theoretical basis for drilling design in laminated shale formation.
机译:在评估钻孔稳定性时,层压页岩岩石中床上用品的机械性能引起了极大的关注。然而,各向异性渗透效应虽然在许多实验中在床上用品岩石中证明了显着的渗透性效应,但对于文献中的钻孔稳定性问题很少表示。在本文中,开发了一种新的钻孔稳定性模型以彻底分析各向异性渗透效应:首先根据各向异性培养基中的渗透性张量理论首先定义床上用品的等效渗透系数;然后获得倾斜钻孔周围的应力状态的络弹性溶液掺入各向异性渗透效应;岩石基体和床上用品的故障被认为是评估钻孔稳定性。结果表明,偏离钻孔周围的渗透性在床上用品形成中是完全不同的,这将导致钻孔周围应力状态,故障区域的变化以及塌陷压力和断裂压力的变化。在各向异性渗透条件(APC)下计算的钻孔周围的孔隙压力通常比在各向同性渗透性条件(IPC)下计算的孔,而相反的其他有效应力是真实的。在Mohr-Coulomb和Mogi-Coulomb标准下,钻孔周围的故障深度对于APC和IPC而言非常不同。通常,岩石基质的崩溃失败可以在远离钻孔的一定距离处开始,而通常在钻孔壁上开始弱平面的塌陷失败。考虑在评估钻孔稳定性时,考虑各向异性渗透性效应来计算比裂缝压力的裂缝压力更为重要。此外,时间生长可能导致钻孔附近的塌陷或断裂失效。开发的分析模型可以为层压页岩形成中的钻井设计提供理论依据。

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