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á knowledge-integration framework for interpreting seismic facies

机译:á解释地震相的知识整合框架

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In recent years, the size of seismic data volumés and the number of seismic attributes available have increased. As a result, the task of recognizing seismic anomalies for the prediction of stratigraphic features or reservoir properties can be overwhelming. One way to evaluate a large amount of data and understand potential geologic trends is to automate seismic facies classification. However, the interpretation of seismic facies remains an elusive issue. Interpreters are confronted with the selection of the clustering technique and the optimal number of seismic facies that best uncover the spatial distribution of seismic facies. An interpretation framework combining data visualization with the results from various clustering techniques was evaluated. The framework allows interpreters to be directly involved in the seismic facies classification process. Because of the active participation, interpreters (1) gain insight into the detected, seismic facies, (2) verify hypotheses with respect to the spatial distribution of seismic facies, (3) compare different seismic facies classification, and (4) gain more confidence with the seismic facies interpretation.
机译:近年来,地震数据量的规模和可用地震属性的数量都在增加。结果,识别地震异常以预测地层特征或储层特性的任务可能会很繁重。评估大量数据并了解潜在地质趋势的一种方法是使地震相分类自动化。然而,地震相的解释仍然是一个难以捉摸的问题。解释者面临着聚类技术的选择和最佳揭示地震相空间分布的地震相最佳数量的挑战。一个解释框架结合了数据可视化和各种聚类技术的结果。该框架允许解释人员直接参与地震相分类过程。由于积极参与,解释人员(1)深入了解了检测到的地震相,(2)验证了关于地震相空间分布的假设,(3)比较了不同的地震相分类,(4)获得了更多的置信度与地震相解释。

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