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Petroleum geomechanics modelling in the Eastern Mediterranean basin: analysis and application of fault stress mechanics

机译:东地中海盆地的石油地质力学建模:故障应力力学分析与应用

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摘要

A fault stress analysis of a typical gas field in the Eastern Mediterranean is presented. The objective of this study is to provide estimates of the in situ stresses and pore pressure for populating a regional Mechanical Earth Model and to characterize the stability of faults under current and changing reservoir conditions. The fault stability analysis is based on the Mohr-Coulomb frictional faulting theory. The vertical in situ stress is estimated using seismic and density data and the bounds of the horizontal stresses were determined for different fault regimes. The pore pressure for determining the effective in situ stresses is estimated using the Bowers pore pressure prediction method. Fault stress analysis is performed in a series of calculations and the results are plotted on Mohr diagrams for shear failure. The fault stress analysis is performed on a wide range of alternative azimuth orientations for S_(Hmax) in order to capture the uncertainty on the actual orientation. Sensitivity with respect to reservoir pore pressure change suggests that pressure reduction in the reservoir improves the fault stress stability, ignoring in the current analysis any stress arching effects. Pore pressure increase decreases the normal stress on the fault leading to increasing risk of shear failure of the critically stressed faults. The case study examines eight faults on the Aphrodite gas field with the objective to characterize if the faults are active or remain dormant under current stress conditions and how the stability may change in reservoir injection or depletion conditions.
机译:提出了东部地中海典型气体场的故障应力分析。本研究的目的是提供对填充区域机械地球模型的原位应力和孔隙压力的估计,并在储层条件下表征故障的稳定性。故障稳定性分析基于Mohr-Coulomb摩擦断层理论。利用地震和密度数据估计垂直的原位应力,并且确定不同的故障制度的水平应力的界限。利用鲍德孔压力预测方法估计用于确定有效原位应力的孔隙压力。故障应力分析在一系列计算中进行,结果绘制在剪切失效的MoHR图上。对S_(HMAX)的宽范围的替代方位方向进行故障应力分析,以捕获实际方向上的不确定性。对水库孔隙压力变化的敏感性表明,储层的压力降低提高了故障应力稳定性,在目前分析中忽略了任何应力拱形效应。孔隙压力增加降低了对断层的正常应力,导致危重胁迫断层的剪切失效的风险增加。案例研究在散毛岩场田地上探讨了八个故障,目的是在当前应力条件下发生故障或保持休眠状态,以及稳定性如何在储层注射或耗尽条件下变化。

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