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首页> 外文期刊>Pure and Applied Geophysics >Modeling Poroelastic Wave Propagation in a Real 2-D Complex Geological Structure Obtained via Self-Organizing Maps
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Modeling Poroelastic Wave Propagation in a Real 2-D Complex Geological Structure Obtained via Self-Organizing Maps

机译:通过自组织地图获得真正的2-D复杂地质结构的多孔弹性波传播

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摘要

Two main stages of seismic modeling are geological model building and numerical computation of seismic response for the model. The quality of the computed seismic response is partly related to the type of model that is built. Therefore, the model building approaches become as important as seismic forward numerical methods. For this purpose, three petrophysical facies (sands, shales and limestones) are extracted from reflection seismic data and some seismic attributes via the clustering method called Self-Organizing Maps (SOM), which, in this context, serves as a geological model building tool. This model with all its properties is the input to the Optimal Implicit Staggered Finite Difference (OISFD) algorithm to create synthetic seismograms for poroelastic, poroacoustic and elastic media. The results show a good agreement between observed and 2-D synthetic seismograms. This demonstrates that the SOM classification method enables us to extract facies from seismic data and allows us to integrate the lithology at the borehole scale with the 2-D seismic data.
机译:地震建模的两个主要阶段是模型地震响应的地质模型建设和数值计算。计算的地震响应的质量与构建的模型类型部分相关。因此,模型建设方法变得与地震前向数值方法同样重要。为此目的,通过称为自组织地图(SOM)的聚类方法从反射地震数据和一些地震属性中提取了三个岩石物理相(SANDS,SHALES和石灰岩),在此上下文中,这是一种地质模型建筑工具。该模型具有其所有属性的输入到最佳隐式交错有限差(OISFD)算法,以创建多孔弹性,波罗声和弹性介质的合成地震图。结果表明,观察到的2-D合成地震图之间存在良好的一致性。这表明SOM分类方法使我们能够从地震数据中提取相表,并允许我们与二维地震数据以钻孔秤集成岩性。

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