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Hydraulic Fracturing in C02 Geological Storage

机译:C02地质储存中的液压压裂

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Among the outstanding technical issues in C02 geological storage are the risks of hydraulic fracturing and migration of C02 in upper formations and to the atmosphere, the wellbore C02 injectivity and the storage capacity of the formation. We present a contribution on these issues based on conclusions of the modelling work of hydraulic fracturing in weak formations. The work was initially carried out with finite element analysis of a fully coupled elastoplastic hydraulic fracturing model and later was extended to analytical work based on a Mohr-Coulomb dislocation model where the complete slip process that is distributed around the crack tip was replaced by superdislocations that are placed in the effective centers of plastic deformation. Scaling of the FEM and analytical results enables the identification of a dominant parameter, which defines the regimes of brittle to ductile propagation and the limit at which a mode-1 fracture cannot advance. We found that a hydraulically induced vertical fracture from C02 injection is more likely to propagate horizontally than vertically, remaining contained in the storage zone. The horizontal fracture propagation will have a positive effect on the injectivity and storage capacity of the formation.
机译:在C02的出色技术问题中,地质储存是液压压裂和CO 2迁移的风险在上层形成和大气中,井筒C02的注射性和形成的储存能力。基于弱形成液中水力压裂的建模工作的结论,我们对这些问题提出了贡献。最初使用完全耦合的弹塑性液压压裂模型的有限元分析进行了该作品,后来基于Mohr-Coulomb位错模型扩展到分析工作,其中通过超级分配围绕裂纹尖端分布的完整滑动过程被置于有效的塑性变形中心。 FEM和分析结果的缩放使得能够识别主要参数,其定义了脆性的脆性传播和模式-1裂缝无法前进的极限。我们发现,来自CO 2喷射的液压诱导的垂直骨折更可能水平地垂直地传播,剩余的储存区包含在内。水平骨折传播将对地层的注射性和储存能力产生积极影响。

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