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Detection of Natural Fractures from Observed Surface Seismic Data Based on a Linear-Slip Model

机译:基于线性滑移模型检测观察到表面地震数据的自然骨折

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Natural fractures play an important role in migration of hydrocarbon fluids. Based on a rock physics effective model, the linear-slip model, which defines fracture parameters (fracture compliances) for quantitatively characterizing the effects of fractures on rock total compliance, we propose a method to detect natural fractures from observed seismic data via inversion for the fracture compliances. We first derive an approximate PP-wave reflection coefficient in terms of fracture compliances. Using the approximate reflection coefficient, we derive azimuthal elastic impedance as a function of fracture compliances. An inversion method to estimate fracture compliances from seismic data is presented based on a Bayesian framework and azimuthal elastic impedance, which is implemented in a two-step procedure: a least-squares inversion for azimuthal elastic impedance and an iterative inversion for fracture compliances. We apply the inversion method to synthetic and real data to verify its stability and reasonability. Synthetic tests confirm that the method can make a stable estimation of fracture compliances in the case of seismic data containing a moderate signal-to-noise ratio for Gaussian noise, and the test on real data reveals that reasonable fracture compliances are obtained using the proposed method.
机译:天然裂缝在烃类流体运移中起着重要作用。基于岩石物理有效模型线性滑动模型,该模型定义了裂缝参数(裂缝柔度),用于定量描述裂缝对岩石总柔度的影响,我们提出了一种通过裂缝柔度反演从观测地震数据中检测天然裂缝的方法。首先,我们根据断裂柔度导出了一个近似的PP波反射系数。利用近似反射系数,我们导出了方位弹性阻抗作为断裂柔度的函数。提出了一种基于贝叶斯框架和方位弹性阻抗的裂缝柔度反演方法,该方法分两步实现:方位弹性阻抗最小二乘反演和裂缝柔度迭代反演。我们将反演方法应用于合成和真实数据,以验证其稳定性和合理性。综合测试证实,在高斯噪声的信噪比适中的地震数据中,该方法可以对裂缝柔度进行稳定的估计,对实际数据的测试表明,该方法获得了合理的裂缝柔度。

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