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TOUGH2Biot - A simulator for coupled thermal-hydrodynamic-mechanical processes in subsurface flow systems: Application to CO_2 geological storage and geothermal development

机译:TOUGH2Biot-地下流动系统中热-水-动力-机械过程耦合的模拟器:在CO_2地质存储和地热开发中的应用

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摘要

Coupled thermal-hydrodynamic-mechanical processes have become increasingly important in studying the issues affecting subsurface flow systems, such as CO_2 sequestration in deep saline aquifers and geothermal development. In this study, a mechanical module based on the extended Biot consolidation model was developed and incorporated into the well-established thermal-hydrodynamic simulator TOUGH2, resulting in an integrated numerical THM simulation program TOUGH2Biot. A finite element method was employed to discretize space for rock mechanical calculation and the Mohr-Coulomb failure criterion was used to determine if the rock undergoes shear-slip failure. Mechanics is partly coupled with the thermal-hydrodynamic processes and gives feedback to flow through stress-dependent porosity and permeability. TOUGH2Biot was verified against analytical solutions for the 1D Terzaghi consolidation and cooling-induced subsidence. TOUGH2Biot was applied to evaluate the thermal, hydrodynamic, and mechanical responses of CO_2 geological sequestration at the Ordos CCS Demonstration Project, China and geothermal exploitation at the Geysers geothermal field, California. The results demonstrate that TOLJGH2Biot is capable of analyzing change in pressure and temperature, displacement, stress, and potential shear-slip failure caused by large scale underground man-made activity in subsurface flow systems. TOUGH2Biot can also be easily extended for complex coupled process problems in fractured media and be conveniently updated to parallel versions on different platforms to take advantage of high-performance computing.
机译:在研究影响地下流动系统的问题(例如深层盐水中的CO_2固存和地热开发)时,热流体动力学机械过程耦合已变得越来越重要。在这项研究中,开发了基于扩展的Biot固结模型的机械模块,并将其并入完善的热流体动力学模拟器TOUGH2中,从而生成了集成的THM数值模拟程序TOUGH2Biot。采用有限元方法离散空间进行岩石力学计算,并使用Mohr-Coulomb破坏准则确定岩石是否经历了剪切滑移破坏。力学部分与热流体动力学过程耦合,并提供反馈,使其流经应力相关的孔隙率和渗透率。 TOUGH2Biot已针对一维Terzaghi固结和冷却引起的沉陷的分析解决方案进行了验证。在中国的鄂尔多斯CCS示范项目中,TOUGH2Biot被用于评估CO_2地质封存的热,流体动力和力学响应,以及在加利福尼亚的Geysers地热田进行地热开采。结果表明,TOLJGH2Biot能够分析压力和温度的变化,位移,应力以及地下地下流动系统中大规模地下人为活动引起的潜在剪切滑移破坏。 TOUGH2Biot还可以轻松扩展以解决裂隙介质中的复杂耦合过程问题,并可以方便地将其更新为不同平台上的并行版本,以利用高性能计算的优势。

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