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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >An approach for predicting stress-induced anisotropy around a borehole
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An approach for predicting stress-induced anisotropy around a borehole

机译:一种预测井眼周围应力引起的各向异性的方法

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摘要

Formation elastic properties near a borehole may be altered from their original state due to the stress concentration around the borehole. This could result in a biased estimation of formation properties but could provide a means to estimate in situ stress from sonic logging data. To properly account for the formation property alteration, we propose an iterative numerical approach to calculate stress-induced anisotropy around a borehole by combining a rock physics model and a finite-element method. We tested the validity and accuracy of our approach by comparing numerical results to laboratory measurements of the stress-strain relation of a sample of Berea sandstone, which contains a borehole and is subjected to a uniaxial stress loading. Our iterative approach converges very fast and can be applied to calculate the spatially varying stiffness tensor of the formation around a borehole for any given stress state.
机译:由于井眼周围的应力集中,井眼附近的地层弹性可能会从其原始状态发生变化。这可能导致对地层性质的估计有偏差,但可以提供一种根据声波测井数据估计原位应力的方法。为了适当地解释地层性质的变化,我们提出了一种迭代数值方法,通过结合岩石物理模型和有限元方法来计算井眼周围的应力引起的各向异性。通过将数值结果与实验室测量的Berea砂岩样品的应力-应变关系进行比较,我们测试了该方法的有效性和准确性。Berea砂岩样品包含一个钻孔并且承受单轴应力。我们的迭代方法收敛速度非常快,可以用于计算在任何给定应力状态下井眼周围地层的空间变化刚度张量。

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