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Global seismic horizon interpretation based on data mining - A new tool for seismic geomorphologic study

机译:基于数据挖掘的全球地震地平线解释 - 地震映射研究的新工具

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摘要

Accurate and efficient seismic horizon interpretation is important for seismic geomorphology study. By integrating the improved density-based clustering method to generate horizon patches and a heuristic combining strategy to merge horizon patches, we have developed a novel data mining approach to automatically extract globally optimal horizons for detailed geomorphologic interpretation. First, the application of improved density-based clustering method has distinct merits in calculation speed and avoiding the phenomenon of mis-ties. We design a heuristic combining strategy to effectively combine the horizon patches. It is also able to ameliorate the problem of mis-ties that frequently occurs in horizon picking. Second, the proposed algorithm can identify abnormal unit in terms of independent horizon fragments. Furthermore, the introduced method is capable of detecting small-scale seismic geomorphologic features. The applications indicate good real-time performance of our new global interpretation algorithm in automated-tracking speed and quality. Our method can resolve the problem of mis-ties in cases of complex seismic reflection to a certain extent. Besides, not only are a series of channels separately recognized, but also small-scale meandering rivers are clearly mapped. Our algorithm is capable of adding more geologic information and realizing a better showcase of geomorphologic features.
机译:准确和高效的地震地平线解释对于地震地貌研究很重要。通过将改进的基于密度的聚类方法集成到生成地平线补片和合并地平线补丁的启发式结合策略,我们开发了一种新的数据挖掘方法,可以自动提取全球最佳的视野以供详细的整晶学解释。首先,改进的基于密度的聚类方法的应用在计算速度下具有不同的优点,避免了错误关系现象。我们设计一种启发式结合策略,以有效地结合地平线补丁。它还能够改善经常发生在地平线采摘中的错误问题。其次,所提出的算法可以根据独立的地平线片段识别异常单位。此外,引入的方法能够检测小规模的地震性地貌特征。应用程序在自动跟踪速度和质量上表明我们新的全局解释算法的良好实时性能。在一定程度上,我们的方法可以解决复杂地震反射的情况下的错误关系问题。此外,不仅是一系列分别认可的渠道,而且还有小规模的蜿蜒河流清晰地映射。我们的算法能够添加更多地质信息并实现更好的地貌特征展示。

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    《Interpretation》 |2020年第1期|共10页
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  • 正文语种 eng
  • 中图分类 地球物理学;
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