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Sensitivity analysis of coupled processes and parameters on the performance of enhanced geothermal systems

机译:耦合过程和参数对增强地热系统性能的敏感性分析

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3-D modeling of coupled thermo-hydro-mechanical (THM) processes in enhanced geothermal systems using the control volume finite element code was done. In a first, a comparative analysis on the effects of coupled processes, operational parameters and reservoir parameters on heat extraction was conducted. We found that significant temperature drop and fluid overpressure occurred inside the reservoirs/fracture that affected the transport behavior of the fracture. The spatio-temporal variations of fracture aperture greatly impacted the thermal drawdown and consequently the net energy output. The results showed that maximum aperture evolution occurred near the injection zone instead of the production zone. Opening of the fracture reduced the injection pressure required to circulate a fixed mass of water. The thermal breakthrough and heat extraction strongly depend on the injection mass flow rate, well distances, reservoir permeability and geothermal gradients. High permeability caused higher water loss, leading to reduced heat extraction. From the results of TH vs THM process simulations, we conclude that appropriate coupling is vital and can impact the estimates of net heat extraction. This study can help in identifying the critical operational parameters, and process optimization for enhanced energy extraction from a geothermal system.
机译:使用控制体积有限元代码,对增强型地热系统中的热-水-机械(THM)过程进行了3-D建模。首先,对耦合过程,运行参数和储层参数对热量提取的影响进行了比较分析。我们发现,储层/裂缝内部发生了明显的温度下降和流体超压,从而影响了裂缝的传输行为。裂隙孔径的时空变化极大地影响了热降,从而影响了净能量输出。结果表明,最大孔径演变发生在注入区而不是生产区附近。裂缝的开放降低了循环固定量的水所需的注入压力。热突破和热量提取在很大程度上取决于注入质量流量,井距,储层渗透率和地热梯度。高渗透性导致较高的水分流失,导致热量提取减少。从TH对比THM过程仿真的结果,我们得出结论,适当的耦合至关重要,并且会影响净热量提取的估计。这项研究可以帮助确定关键的运行参数,并优化过程以增强从地热系统中的能量提取。

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