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首页> 外文期刊>International journal of geomechanics >Local Rotations in Borehole Breakouts-Observed and Modeled Stress Field Rotations and Their Implications for the Petroleum Industry
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Local Rotations in Borehole Breakouts-Observed and Modeled Stress Field Rotations and Their Implications for the Petroleum Industry

机译:井眼破裂中的局部旋转-观测和模拟的应力场旋转及其对石油工业的意义

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摘要

Existing borehole breakout techniques are used to estimate the orientation of maximum horizontal stress (SHmax) with depth at a single borehole location. This method often results in regional (between boreholes) and local (with depth) scatter. It is important to understand the reason for the variability rather than disregard data because it does not conform to a tight data set. SHmax variability can be due to rotations of the stress field caused by a stiffness differential between the fault plane and surrounding rock mass. A case study in the Penola Trough, Otway Basin, South Australia, is presented where the orientation of borehole breakouts rotate with depth. The stress field rotations at the well locations can be successfully modeled with the two-dimensional distinct-element code, and compared with borehole breakout data. It is, therefore, possible to use borehole breakouts to assist in the selection of fault parameters for input into simple computational stress models.
机译:现有的井眼突围技术用于估计在单个井眼位置的最大水平应力(SHmax)随深度的方向。这种方法通常会导致区域(在井眼之间)和局部(随深度)散射。重要的是要了解变化的原因,而不是忽略数据,因为它不符合严格的数据集。 SHmax的变化性可能是由于断层平面与围岩质量之间的刚度差异引起的应力场旋转所致。在南澳大利亚州奥特韦盆地的Penola槽中,进行了一个案例研究,其中,井眼破裂的方向随深度旋转。井位处的应力场旋转可以使用二维离散元代码成功建模,并与井眼突围数据进行比较。因此,有可能使用井眼突围来协助选择故障参数,以输入到简单的计算应力模型中。

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