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Using borehole breakouts to constrain the complete stress tensor: Results from the Sijan Deep Drilling Project and offshore Santa Maria Basin, California

机译:使用钻孔突破来约束整个应力张量:Sijan深钻项目和加利福尼亚圣玛丽亚盆地近海的结果

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摘要

We use borehole breakouts in nonvertical drill holes to constrain the directions of the three principal stresses and their relative magnitudes. In this paper we start by modifying previously published breakout selection criteria to work with highly deviated borehole data. We present a forward modeling technique using genetic algorithms and a nongradient N-dimensional optimizer to find the best fitting stress state for a set of breakout data. The stress state is parameterized by three Euler angles and the stress state ratio ø. A technique is developed to determine the 95% confidence weighted misfit between a model and the data. We then map out the 95% misfit confidence limits on the best fitting stress state. This technique is applied to data published by Qian and Pedersen [1991]. Removing their constraint of a vertical principal stress direction reduces the misfit between the stress state and the breakout data. We find that the best fitting stress state they report with a vertical principal stress direction lies outside our 95% confidence limits. We also invert breakouts in the offshore Santa Maria Basin, California. These data show a "thrust faulting" stress state with the maximum principal stress,udS_1, at N148.5°E plunging 31.5°. The 95% confidence range for the azimuth of S_1 ranges from N143.0°E to N198.1°E. The stress ratio ø was found to be 0.82l^1_(0.584).
机译:我们在非垂直钻孔中使用钻孔突破来约束三个主应力的方向及其相对大小。在本文中,我们将从修改先前发布的井眼选择标准开始,以处理高度偏离的井眼数据。我们提出一种使用遗传算法和非梯度N维优化器的正向建模技术,以找到一组突破数据的最佳拟合应力状态。应力状态由三个欧拉角和应力状态比ø进行参数化。开发了一种确定模型和数据之间95%置信加权失配的技术。然后,我们绘制出最佳拟合应力状态下95%的失配置信度限制。此技术适用于Qian和Pedersen [1991]发布的数据。消除它们在垂直主应力方向上的约束,可以减少应力状态与断裂数据之间的不匹配。我们发现,他们报告的垂直主应力方向的最佳拟合应力状态超出了我们95%的置信度范围。我们还将在加利福尼亚州圣玛丽亚盆地的突围中进行反演。这些数据显示在N148.5°E骤降31.5°时具有最大主应力 udS_1的“推力断裂”应力状态。 S_1方位角的95%置信范围为N143.0°E至N198.1°E。发现应力比为0.82l ^ 1_(0.584)。

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