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Reservoir lithology classification based on seismic inversion results by Hidden Markov Models: Applying prior geological information

机译:基于隐马尔可夫模型的地震反演结果的水库岩性分类:应用先前的地质信息

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Hidden Markov Models (HMMs) have been applied to predict reservoir lithologies using seismic inversion results as inputs. This approach takes into account the conditional probabilities between different lithologies, i.e. the vertical transitions in sedimentary sequences. These properties are used as prior geological information. In order to relate the seismic inversion results to the true well-log data, HMMs need to be trained based on the Expectation-Maximization theory. Application of the resulting model on a synthetic example from the Book Cliffs (Utah, USA) showed that most lithologies are classified correctly, even for some thin layers. A comparison with point-wise methods in which data samples are treated independently from each other, such as k-means and fuzzy logic classifiers, leads to the conclusion that the spatial correlation in HMMs allows better lithological predictions because the prior information accounts for the geological depositional processes. A real case study with data from the Vienna Basin (Austria) is performed, in which lithologies in a 3D cube are obtained based on properties from seismic inversions, via trained HMMs. While the vertical sequences are shown to be reasonably well predicted, the horizontal continuities are not. This indicates that the future research should focus on the lateral geological relationships.
机译:隐藏的马尔可夫模型(HMMS)已应用于使用地震反演结果作为输入来预测储层岩性。这种方法考虑了不同岩性之间的条件概率,即沉积序列中的垂直转变。这些属性用作先前地质信息。为了将地震反演结果与真正的良好日志数据相关联,需要基于期望最大化理论培训HMM。由此产生的模型在书悬崖(USA,USA)中的应用模型表明,大多数岩性均匀分类,即使对于一些薄层。与点明智方法的比较,其中数据样本彼此独立地处理,例如K-Means和模糊逻辑分类器,导致HMMS中的空间相关性允许更好的岩性预测,因为之前的信息占地质的信息沉积过程。对来自维也纳盆地(奥地利)的数据进行真正的案例研究,其中通过训练的HMMS基于来自地震逆转的性质获得3D立方体的岩性。虽然显示垂直序列被认为是合理的预测,但水平连续性不是。这表明未来的研究应该专注于横向地质关系。

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