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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >High-resolution coherency functionals for velocity analysis: An application for subbasalt seismic exploration
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High-resolution coherency functionals for velocity analysis: An application for subbasalt seismic exploration

机译:速度分析的高分辨率相干函数:玄武岩地震勘探的应用

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摘要

We tested the properties of three different coherency functionals for the velocity analysis of seismic data relative to subbasalt exploration. We evaluated the performance of the standard semblance algorithm and two high-resolution coherency functionals based on the use of analytic signals and of the covariance estimation along hyperbolic traveltime trajectories. Approximate knowledge of the wavelet was exploited to design appropriate filters that matched the primary reflections, thereby further improving the ability of the functionals to highlight the events of interest. The tests were carried out on two synthetic seismograms computed on models reproducing the geologic setting of basaltic intrusions and on common midpoint gathers from a 3D survey. Synthetic and field data had a very low signal-to-noise ratio, strong multiple contamination, and weak primary subbasalt signals. The results revealed that high-resolution coherency functionals were more suitable than semblance algorithms to detect primary signals and to distinguish them from multiples and other interfering events. This early discrimination between primaries and multiples could help to target specific signal enhancement and demultiple operations.
机译:我们测试了三种不同相干函数的特性,用于相对于玄武岩勘探的地震数据进行速度分析。我们基于分析信号的使用和沿双曲线旅行时间轨迹的协方差估计,评估了标准相似算法和两个高分辨率相干函数的性能。利用小波的近似知识来设计与主反射相匹配的适当滤波器,从而进一步提高功能突出显示感兴趣事件的能力。测试是在两个合成地震图上进行的,这些合成地震图是在模拟玄武岩侵入体的地质环境的模型上以及在3D测量中常见的中点集合上计算得出的。合成和现场数据的信噪比非常低,多重污染很强,初级玄武岩信号很弱。结果表明,高分辨率相干函数比相似算法更适合检测主要信号并将其与多重信号和其他干扰事件区分开。原始数和倍数之间的这种早期区分可能有助于针对特定信号增强和分频运算。

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