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A Novel True Triaxial Apparatus to Study the Geomechanical and Fluid Flow Aspects of Energy Exploitations in Geological Formations

机译:一种新颖的真三轴仪器,用于研究地质构造中能量开采的地质力学和流体流动方面

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Fluid-solid coupling investigations of the geological storage of CO2, efficient unconventional oil and natural gas exploitations are mostly conducted under conventional triaxial stress conditions (sigma (2) = sigma (3)), ignoring the effects of sigma (2) on the geomechanical properties and permeability of rocks (shale, coal and sandstone). A novel multi-functional true triaxial geophysical (TTG) apparatus was designed, fabricated, calibrated and tested to simulate true triaxial stress (sigma (1) > sigma (2) > sigma (3)) conditions and to reveal geomechanical properties and permeability evolutions of rocks. The apparatus was developed with the capacity to carry out geomechanical and fluid flow experiments at high three-dimensional loading forces and injection pressures under true triaxial stress conditions. The control and measurement of the fluid flow with effective sealing of rock specimen corners were achieved using a specially designed internally sealed fluid flow system. To validate that the apparatus works properly and to recognize the effects of each principal stress on rock deformation and permeability, stress-strain and permeability experiments and a hydraulic fracturing simulation experiment on shale specimens were conducted under true triaxial stress conditions using the TTG apparatus. Results show that the apparatus has advantages in recognizing the effects of sigma (2) on the geomechanical properties and permeability of rocks. Results also demonstrate the effectiveness and reliability of the novel TTG apparatus. The apparatus provides a new method of studying the geomechanical properties and permeability evolutions of rocks under true triaxial stress conditions, promoting further investigations of the geological storage of CO2, efficient unconventional oil and gas exploitations.
机译:在传统的三轴应力条件下(sigma(2)= sigma(3))进行了对CO2地质存储,有效的非常规石油和天然气开采的流固耦合研究,而忽略了sigma(2)对地质力学的影响的性质和渗透性(页岩,煤和砂岩)。设计,制造,校准和测试了新型的多功能真三轴地球物理(TTG)装置,以模拟真三轴应力(sigma(1)> sigma(2)> sigma(3))条件,并揭示地质力学特性和渗透率演化的岩石。该设备具有在真正的三轴应力条件下以高三维载荷力和注入压力进行岩土力学和流体流动实验的能力。使用专门设计的内部密封的流体流动系统,可以有效地密封岩石样品角,从而实现对流体流动的控制和测量。为了验证该装置是否正常工作并认识到每个主应力对岩石变形和渗透率的影响,使用TTG装置在真实的三轴应力条件下对页岩样品进行了应力应变和渗透率实验以及水力压裂模拟实验。结果表明,该仪器在识别sigma(2)对岩石的力学性能和渗透率的影响方面具有优势。结果还证明了新型TTG设备的有效性和可靠性。该仪器提供了一种研究真实三​​轴应力条件下岩石的岩石力学特性和渗透率演化的新方法,从而促进了对二氧化碳地质封存,有效的非常规油气开采的进一步研究。

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