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A texture-based interpretation workflow with application to delineating salt domes

机译:基于纹理的解释工作流程,其应用于划定盐圆顶

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摘要

We propose a texture-based interpretation workflow and apply it to delineate salt domes in 3D migrated seismic volumes. First, we compute an attribute map using a novel seismic attribute, 3D gradient of textures (3D-GoT), which measures the dissimilarity between neighboring cubes around each voxel in a seismic volume across the time or depth, crossline, and inline directions. To evaluate the texture dissimilarity, we introduce five 3D perceptual and nonperceptual dissimilarity functions. Second, we apply a global threshold on the 3D-GoT volume to yield a binary volume and demonstrate its effects on salt-dome delineation using objective evaluation measures such as receiver operating characteristic curves and the areas under the curves. Third, with an initial seed point selected inside the binary volume, we use a 3D region growing method to capture a salt body. For an automated 3D region growing, we adopt a tensor-based automatic seed point selection method. Finally, we apply morphological postprocessing to delineate the salt dome within the seismic volume. Furthermore, we also develop an objective evaluation measure based on the curvature and shape to compute the similarity between detected salt-dome boundaries and the reference interpreted by the geophysicist. Experimental results on a real data set from the North Sea show that the proposed method outperforms the state-of-the-art methods for salt-dome delineation.
机译:我们提出了一种基于纹理的解释工作流程,并将其应用于3D迁移的地震卷中的盐圆形。首先,我们使用新颖的地震属性来计算属性地图,纹理的3D梯度(3D-get),这在横跨时间或深度,十字线和内联方向上的地震体积围绕每个体素周围的相邻立方体之间的异化性。为了评估纹理相似性,我们介绍了五个3D感知和非关注异化功能。其次,我们在3D-GOT卷上应用全局阈值,以产生二进制卷,并使用客观评估措施(如接收器操作特征曲线和曲线下的区域)展示其对盐穹顶描绘的影响。第三,通过在二元体积内选择的初始种子点,我们使用3D区域生长方法来捕获盐体。对于自动化3D区域的生长,我们采用了一种基于张量的自动种子点选择方法。最后,我们应用形态后处理以在地震体积内描绘盐圆顶。此外,我们还基于曲率和形状开发了一种客观评估措施,以计算检测到的盐圆形边界之间的相似性和地球物理学家解释的参考。从北海设定的真实数据的实验结果表明,所提出的方法优于盐穹顶描绘的最先进方法。

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