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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Empirical mode skeletonization of deep crustal seismic data: Theory and applications
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Empirical mode skeletonization of deep crustal seismic data: Theory and applications

机译:深地壳地震数据的经验模式骨架化:理论与应用

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Seismic skeletonization is a pattern recognition technique used to decompose reflection seismic data into events or reflectors and their seismic attributes, and to store the results in an "event file" for an analysis toward seismic interpretation. The extraction of instantaneous frequency from the event file for any statistical analysis of the seismic attribute analysis is currently not possible, thus precluding the complete parameterization of the reflected seismic wave field in terms of its decomposition products. Empirical mode decomposition of reflection seismic data has uniquely addressed the question of computing the instantaneous frequency from its decomposition products using the Hilbert transform. Although the decomposition products of the seismic skeletonization and the empirical mode decomposition are conceptually different, they share a common link to the primitive features of the seismic waveforms. In this paper, we introduce a new decomposition technique, empirical mode skeletonization, that combines the features of both seismic skeletonization and empirical mode decomposition By this process, it is now possible to subject the reflection seismic data to an analysis that could include a parameterization of the reflected wave field. We apply the new technique to a segment of seismic line 1 of the Lithoprobe Slave Northern Cordillera Lithosphere Evolution (SNORCLE) transect to extract event-oriented instantaneous frequency attributes and also to analyze the decomposition products for any scaling behavior of the re reflected wave field. [References: 25]
机译:地震骨架化是一种模式识别技术,用于将反射地震数据分解为事件或反射器及其地震属性,并将结果存储在“事件文件”中,以进行地震解释分析。对于地震属性分析的任何统计分析,目前都不可能从事件文件中提取瞬时频率,从而无法根据反射波的分解产物对反射波场进行完整的参数化。反射地震数据的经验模态分解已经独特地解决了使用希尔伯特变换从其分解产物中计算瞬时频率的问题。尽管地震骨架化和经验模态分解的分解产物在概念上是不同的,但它们与地震波形的原始特征有着共同的联系。在本文中,我们引入了一种新的分解技术,即经验模态骨架化,它结合了地震骨架化和经验模态分解的特征。通过此过程,现在可以对反射地震数据进行分析,其中可能包括参数化反射波场。我们将这项新技术应用到岩石探针奴隶北科尔迪勒拉岩石圈演化(SNORCLE)样线的一段地震线中,以提取面向事件的瞬时频率属性,并分析反射波场的任何缩放行为的分解产物。 [参考:25]

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