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Geomechanics Coupling Simulation of Fracture Closure and Its Influence on Gas Production in Shale Gas Reservoirs

机译:裂缝闭合的地质力学耦合仿真及其对页岩气藏气体产量的影响

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A sharp initial decline in the production rate is being experienced in many shale gas plays.One reason is the closure of natural micron and micro fractures.The natural fractures,which widely exist in the over-pressurized source rock,react sensitively to the change of subsurface stress.The change in stress can be caused by the decrease of gas pressure during production.These fracture closure or re-open phenomena have significant effects on reservoir permeability and gas production. In this paper,a fully coupled geomechanics and multiphase fluid flow model is presented to accurately simulate the fields of stress and fluid flow in shale gas reservoirs.Several relationships between fracture closure and applied stress are incorporated in this model,based on the experimental data from literatures. Therefore,the stress dependency of shale natural fractures is quantified and modeled in its full complexity. The natural fractures in this model are characterized as stiff,self-propped,and prone to closure.It represents an extension of our earlier“hybrid-fracture model”(DFN for hydraulic fractures,double- porosity for natural fractured domain inside the SRV,and single porosity or dual-continuum outside the SRV).
机译:在许多页岩气相中,生产率的急剧下降正在发生巨大的初步下降。原因是自然微米和微骨折的闭合。自然骨折,广泛存在于过压源岩中,敏感地反应变化地下应力。压力的变化可能是由生产过程中的气体压力降低引起的。这些裂缝闭合或重新开放现象对储层渗透性和天然气生产具有显着影响。本文提出了一种完全耦合的地质力学和多相流体流动模型,以精确模拟页岩气藏的应力和流体流动领域。基于来自的实验数据,在该模型中结合了裂缝闭合和施加应力之间的探讨关系。文献。因此,量化和模拟了页岩自然骨折的应力依赖性以完全复杂性。该模型中的自然骨折的特征在于僵硬,自我支撑,易于关闭。代表我们之前的“杂交 - 骨折模型”(用于液压骨折的DFN,SRV内的自然碎片域的双孔隙率,和SRV外的单孔隙或双连续素)。

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