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Feasibility Study of Heat Extraction from a Closed-loop Fractured Geothermal Reservoir; a Multiphysics problem

机译:闭环裂缝地热储层热萃取的可行性研究;多体验问题

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Geothermal energy is considered as an attractive alternative source of energy in some parts of the world. In general, geothermal systems can be identified as either open- or closed-loop. In an open-loop system, fluid is produced from the subsurface, while there might be some concurrent fluid injection into the reservoir. The loss of working fluid, surface subsidence, formation compaction, and induced seismicity are major shortfalls of the open-loop systems. To address the indicated challenges, closed-loop geothermal systems can be considered as an alternative option. In this method, a working fluid with low boiling point is circulated through the coaxial sealed pipes to extract the stored heat from the formation rock and fluid. To improve the heat extraction from closed-loop wells, we introduce a highly conductive hydraulic fracture to the system to improve the rate of the heat extraction from the surrounding rocks. Considering the multiphysics nature of the heat extraction from such systems, a comprehensive analysis of this problem requires simultaneous modeling of the interactions between fluid flow, heat transfer and rock deformation. A numerical thermo-poroelastic model is developed using the finite element methods to simulate this problem. The numerical results suggest that fractured wellbore has significantly larger thermal power and cumulative extracted heat than the unfractured wellbore in the proposed closed-loop configuration.
机译:地热能被认为是世界某些地区有吸引力的替代能源来源。通常,地热系统可以被识别为开放或闭环。在开环系统中,流体由地下产生,而可能会在储存器中产生一些并发流体注入。工作流体,表面沉降,形成压实和诱导地震性的损失是开环系统的主要短缺。为了解决所指出的挑战,闭环地热系统可以被视为替代选项。在该方法中,具有低沸点的工作流体通过同轴密封管循环,以从地层岩石和流体中提取储存的热量。为了改善闭环孔的热萃取,我们向系统引入了高导电的液压骨折,以提高周围岩石的热萃取速率。考虑到这种系统的热萃取的多体性性质,对该问题的综合分析需要同时建模流体流动,传热和岩石变形之间的相互作用。使用有限元方法开发了数值热孔弹性模型来模拟这个问题。数值结果表明,在所提出的闭环配置中,骨折井筒的热力和累积提取的热量显着更大。

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