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Coupled thermo-hydro-mechanical effects on caprock stability during carbon dioxide injection

机译:耦合热水机械对二氧化碳注射液期间的载体稳定性

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This study presents a numerical investigation of the effects of coupled material properties on the caprock stability. A thermo-hydro-mechanical framework is proposed in order to reproduce the physical processes. The results indicate that for a given geometrical configuration and a given temperature difference between injected CO2 and reservoir, the potential for the caprock failure may increase or decrease. This contradictory behaviour mainly depends on the combination of the thermal-hydro-mechanical parameters, i.e., thermal expansion coefficient, stiffness and the Biot coefficient. Therefore, the coupled effects of material properties on the caprock stability should be addressed in a combined way for low-temperature CO2 injection problems.
机译:该研究提出了对耦合材料特性对载体稳定性的影响的数值研究。 提出了一种热压机械框架以再现物理过程。 结果表明,对于给定的几何构造和注射的CO2和贮存器之间的给定温差,谱系的可能性可能会增加或减少。 这种矛盾的行为主要取决于热 - 水力 - 力学参数,即热膨胀系数,刚度和生物系数的组合。 因此,应以低温二氧化碳注射问题的组合方式解决材料性质对载体稳定性的耦合效应。

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