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Fault Zone Elastic Properties Investigated by Fluid Injection

机译:故障区通过流体注射调查的弹性特性

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We studied the elastic properties of a fault zone intersecting the Opalinus Clay formation at 300m depth in the Mont Terri Underground Research Laboratory (Switzerland). Four controlled water injection experiments were performed in borehole straddle intervals set at successive locations across the fault zone. A three-component displacement sensor, which allowed capturing the borehole wall movements during injection, was used to estimate the elastic properties of representative locations across the fault zone, from the host rock to the damage zone to the fault core. Young’s moduli were estimated by an analytical approach. Results show a decrease in Young’s modulus from the host rock to the damage zone by a factor of 5 and from the damage zone to the fault core by a factor of 2. In the host rock, our results are in reasonable agreement with laboratory data showing a strong elastic anisotropy characterized by the direction of the plane of isotropy parallel to the laminar structure of the shale formation. In the fault zone, strong rotations of the direction of anisotropy can be observed.
机译:我们研究了在Mont Terri地下研究实验室(瑞士)的300米深度的300米深度交叉蛋白质粘土形成的断层区域的弹性特性。以钻孔跨越间隔在断层区的连续位置设定的钻孔跨跨度间隔进行四个受控注水实验。一种三分位移传感器,其允许在注射期间捕获钻孔壁运动,用于估计故障区的代表位置的弹性特性,从主体岩石到故障芯的损坏区域。杨氏的模态由分析方法估算。结果显示杨氏模量从主体岩石到损伤区的减少,从损伤区到故障核心的损伤区一倍数为2.在主机岩石中,我们的结果与实验室数据显示合理协议一种强弹性各向异性,其特征在于同位数平行于页岩形成的层状结构的各向同性的方向。在断层区域中,可以观察到各向异性方向的强旋转。

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