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Numerical analysis of a caprock integrity during oil production by steam-assisted gravity drainage method

机译:蒸汽辅助重力排水法在采油过程中盖层完整性的数值分析

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The work is devoted to the investigation of a caprock integrity during oil production by steam-assisted gravity drainage method. An originally proposed thermo-hydro-mechanical model was used for the evaluation of mechanical loading acting on the over-burden. The model includes mass conservation laws, the energy conservation law and the linear momentum balance. Filtration of each phase of the three-phase flow (steam, oil and water) is described by Darcy’s law. Inelastic deformations are described by the phenomenological viscoplastic model based on Drucker-Prager yield criterion.? The effect of? the porosity evolution induced by the propagation of the steam chamber within the reservoir on the oil production rate and the caprock integrity is studied. It has been shown that the oil production rate is strongly depend on the prevailing physical mechanism of the porosity evolution.? Reservoirs characterized by the volumetric strain mechanism of the porosity evolution produce slightly higher values of the mechanical loadings acting on the over-burden.
机译:该工作致力于通过蒸汽辅助重力排水法研究采油过程中的盖层完整性。最初提出的热-水力-机械模型用于评估作用于覆盖层的机械载荷。该模型包括质量守恒定律,能量守恒定律和线性动量平衡。达西定律描述了三相流(蒸汽,油和水)各相的过滤。基于Drucker-Prager屈服准则的现象粘塑性模型描述了非弹性变形。的效果?研究了油藏内蒸汽腔的传播所引起的孔隙度变化对产油率和盖层完整性的影响。已经表明,产油率很大程度上取决于孔隙演化的主要物理机制。以孔隙度演化的体积应变机制为特征的储层产生作用于上覆岩层的机械载荷值略高。

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