岩石物理学
地质学
地震反演
相
概率逻辑
贝叶斯推理
岩性
后验概率
采样(信号处理)
地震属性
贝叶斯概率
算法
计算机科学
地球物理学
岩石学
人工智能
多孔性
数学
岩土工程
地貌学
几何学
滤波器(信号处理)
构造盆地
方位角
计算机视觉
作者
Muhammad Atif Nawaz,Andrew Curtis,Mohammad Shahraeeni,Constantin Gerea
出处
期刊:Geophysics
[Society of Exploration Geophysicists]
日期:2020-03-19
卷期号:85 (4): MR213-MR233
被引量:31
标识
DOI:10.1190/geo2019-0163.1
摘要
Seismic attributes (derived quantities) such as P-wave and S-wave impedances and P-wave to S-wave velocity ratios may be used to classify subsurface volume of rock into geologic facies (distinct lithology-fluid classes) using pattern recognition methods. Seismic attributes may also be used to estimate subsurface petrophysical rock properties such as porosity, mineral composition, and pore-fluid saturations. Both of these estimation processes are conventionally carried out independent of each other and involve considerable uncertainties, which may be reduced significantly by a joint estimation process. We have developed an efficient probabilistic inversion method for joint estimation of geologic facies and petrophysical rock properties. Seismic attributes and petrophysical properties are jointly modeled using a Gaussian mixture distribution whose parameters are initialized by unsupervised learning using well-log data. Rock-physics models may be used in our method to augment the training data if the existing well data are limited; however, this is not required if sufficient well data are available. The inverse problem is solved using the Bayesian paradigm that models uncertainties in the form of probability distributions. Probabilistic inference is performed using variational optimization, which is a computationally efficient deterministic alternative to the commonly used sampling-based stochastic inference methods. With the help of a real data application from the North Sea, we find that our method is computationally efficient, honors expected spatial correlations of geologic facies, allows reliable detection of convergence, and provides full probabilistic results without stochastic sampling of the posterior distribution.
科研通智能强力驱动
Strongly Powered by AbleSci AI