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In-situ stress and pore pressure in the south eugene island field, fulf of mexico

机译:墨西哥湾南部尤金岛油田的原地应力和孔隙压力

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Analysis of minifracs and pore pressure surveys from sanmd reservoirs in a Gulf of Mexico oil field show effective stress ratios, K, that scatter significantly and do not correlate with previously published fracture gradient models for this area. The lower-bound value of K is 0.33, which corresponds to the expected value for Coulomb failure for a coefficient of friction of 0.6 in normal faulting environments. However, in some sands K approaches unity, thus indicating an essentially isotropic stress field. Hoence, the data indicate a highly variable state of stress that cannot be simply related to depth or pore pressure, but appears to reflect an interaction between deformational processes and material properties. Borehole breakout analysis in vertical wells reveals stress orientations that are predominantly perpendicular to normal faults and, hence, consistent with an extensional stress regime. Analysis of breakouts in inclined wells in two sand reservoirs allows to constrain the magnitude of the maximum horizontal principal stress, S_(Hmax), and further indicates an active normal faulting environment with a clear, but small degree of horizontal stress anisotropy (i.e., SV-_v>S_(Hmax)>S_(hmin).
机译:从墨西哥湾油田的桑姆德油藏进行的微裂缝和孔隙压力调查分析表明,有效应力比K显着分散,并且与该地区先前发表的裂缝梯度模型不相关。 K的下界值为0.33,它对应于正常断层环境中摩擦系数为0.6时库仑破坏的预期值。但是,在某些沙子中,K趋于一致,因此指示出基本各向同性的应力场。因此,数据表明应力的高度可变状态不能简单地与深度或孔隙压力相关,而似乎反映出变形过程与材料特性之间的相互作用。垂直井中的井眼突围分析显示应力方向主要垂直于正常断层,因此与扩展应力状态一致。对两个砂岩储层倾斜井中的井眼的分析可以限制最大水平主应力S_(Hmax)的大小,并进一步表明活动的正断层环境具有清晰但水平较小的水平应力各向异性(即SV -_v> S_(Hmax)> S_(hmin)。

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