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Effect of in-situ stress alterations on flow through faults and fractures in the cap rock

机译:原位应力改变对帽岩体过滤骨折流动的影响

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Cap-rock integrity is of paramount importance during injection and subsequent long-term storage of CO2 in the subsurface. Preexisting (natural) and man-induced fractures in the cap rock represent potential flow paths out of the storage formation. In this study, a first-order semi-analytical model of flow through a vertical fracture penetrating cap rock is constructed taking the stress-dependent fracture permeability into account. The model is then applied to study the effects of in-situ stress normal to fracture on the flow rate through the fracture. The flow rate increases nonlinearly with the reservoir pressure, which is due to a combined effect of nonlinear fracture deformation law and the cubic law governing the flow rate.
机译:帽岩石完整性在注射期间至关重要,并且在地下的CO2的长期存储过程中至关重要。 Prock Rock中的预先存在(自然)和人诱导的骨折代表了储存形成的潜在流动路径。在本研究中,通过垂直骨折穿透帽岩石的一阶半分析模型被构建考虑应力依赖性骨折渗透性。然后应用该模型以研究原位应力正常对骨折的裂缝对裂缝的影响。流量与储层压力不连续增加,这是由于非线性断裂变形法的综合效果和控制流速的立方法。

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