首页> 外文期刊>Surveys in Geophysics: An International Review Journal of Geophysics and Planetary Sciences >Estimation of Dry Fracture Weakness, Porosity, and Fluid Modulus Using Observable Seismic Reflection Data in a Gas-Bearing Reservoir
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Estimation of Dry Fracture Weakness, Porosity, and Fluid Modulus Using Observable Seismic Reflection Data in a Gas-Bearing Reservoir

机译:含气储层中可观察地震反射数据的干骨折,孔隙率和流体模量的估计

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摘要

Fracture detection and fluid identification are important tasks for a fractured reservoir characterization. Our goal is to demonstrate a direct approach to utilize azimuthal seismic data to estimate fluid bulk modulus, porosity, and dry fracture weaknesses, which decreases the uncertainty of fluid identification. Combining Gassmann's (Vier. der Natur. Gesellschaft Zurich 96:1-23, 1951) equations and linear-slip model, we first establish new simplified expressions of stiffness parameters for a gas-bearing saturated fractured rock with low porosity and small fracture density, and then we derive a novel PP-wave reflection coefficient in terms of dry background rock properties (P-wave and S-wave moduli, and density), fracture (dry fracture weaknesses), porosity, and fluid (fluid bulk modulus). A Bayesian Markov chain Monte Carlo nonlinear inversion method is proposed to estimate fluid bulk modulus, porosity, and fracture weaknesses directly from azimuthal seismic data. The inversion method yields reasonable estimates in the case of synthetic data containing a moderate noise and stable results on real data.
机译:断裂检测和流体识别是裂缝储层表征的重要任务。我们的目标是展示利用方位置地震数据来估计流体散装模量,孔隙率和干骨折弱点的直接方法,这降低了流体鉴定的不确定性。结合Gassmann(Vier。Der Natur。Gesellschaft苏黎世96:1-23,1951)方程式和线性滑移模型,我们首先建立具有低孔隙率和小骨折密度的含气饱和骨折岩体的新型简化表达。然后我们在干背景岩石性质(P波和S波模量和密度),断裂(干骨折弱点),孔隙率和流体(流体散装模量)方面产生新的PP波反射系数。提出了贝叶斯马尔可夫链蒙特卡罗非线性反转方法,以估算液体模量,孔隙率直接从方位置地震数据的裂缝。反转方法在含有适度噪声的合成数据和实际数据的稳定结果的情况下产生合理的估计。

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