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Stress state analysis of a fault plane with large induced seismicity

机译:大致震性断裂面的应力状态分析

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Induced seismicity associated with hydraulic stimulation for the development of underground resources has been recognized as a risk factor in causing seismic hazards and is of public concern. To understand the simple physics behind induced seismicity, we analyzed the stress state of a fault plane where large seismicity was induced during hydraulic stimulation in the Cooper Basin, Australia and Basel, Switzerland. Using information regarding the stress magnitude and orientation, and the geometry of the fault plane where large events occurred, the stress state of these events was evaluated and the pore pressure necessary to cause shear slip was estimated. The fault plane of the large event in the Cooper Basin was close to being well oriented and only needed small increase in pore pressure (~10MPa) to induce shear slip. It was also discovered that the fault plane of the largest event at Basel required a moderate increase in pore pressure of around 20 MPa to induce a seismic event. Other large events occurring at different depths needed much lower pore pressures to induce shear slip. On the fault planes at Basel where these large events occurred, large shear stress was present, suggesting causality between shear stress and event magnitude.
机译:诱导与地下资源发展的液压刺激相关的地震性被认为是引起地震危害和公众关注的危险因素。要了解诱发地震背后的简单的物理,我们分析了故障机,其中大地震是在库珀盆地,澳大利亚和瑞士巴塞尔水力压裂过程中引起的应力状态。使用关于应力幅度和取向的信息,以及发生大事件的故障平面的几何形状,评估了这些事件的应力状态,估计了引起剪切滑动所需的孔隙压力。 Cooper盆地中的大型事件的断层平面接近良好定向,仅需要孔隙压力(〜10MPa)的小增加,以诱导剪切滑动。还发现巴塞尔最大事件的故障平面需要温和的孔隙压力增加约20MPa以诱导地震事件。在不同深度发生的其他大型事件需要更低的孔隙压力以诱导剪切滑动。在巴塞尔的故障平面上,存在大的剪切应力,提示剪切应力和事件幅度之间的因果关系。

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