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首页> 外文期刊>Arabian journal of geosciences >Three-dimensional supervirtual seismic refraction interferometry
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Three-dimensional supervirtual seismic refraction interferometry

机译:三维超虚拟地震折射干涉仪

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摘要

Improved supervirtual interferometry (SVI) method that enhance the signal-to-noise ratio (SNR) of noisy seismic refraction data is presented. This 3D supervirtual algorithm is helpful in removal of side lobes caused by convolution in the conventional 3D SVI method. In this study, we extend the supervirtual seismic refraction interferometry method to 3D geometries commonly used in active seismic exploration. To achieve this objective, synthetic 3D seismic refraction data were created using single patch orthogonal geometry. Simple two-layers velocity model was used. A zero phase wavelet was convolved with the refraction travel time to create the seismic wiggle trace. The refraction arrival is computed using the equation for horizontal refractor case and is not adapted for dipping refractor. Noise of Gaussian distribution with zero mean and 0.25 standard deviation was added to simulate a case of moderate ambient noise. The supervirtual algorithm, consisting of crosscorrelation, alignment, summation, and first arrival calculation is performed. By aligning and summation of all the correlogram, the stationary position of source-receiver pairs as required in the 2D supervirtual method are eliminated in this case. Synthetic data presented in this study shows accurate first arrivals after the application of the 3D SVI and traces with much better SNR than the actual traces.
机译:提出了一种改进的超虚拟干涉法(SVI),可以提高嘈杂的地震折射数据的信噪比(SNR)。这种3D超虚拟算法有助于消除常规3D SVI方法中由卷积引起的旁瓣。在这项研究中,我们将超虚拟地震折射干涉法扩展到了主动地震勘探中常用的3D几何形状。为了实现此目标,使用单个面片正交几何图形创建了合成3D地震折射数据。使用简单的两层速度模型。将零相位小波与折射传播时间进行卷积以创建地震摆动轨迹。折射到达时间是使用水平折射器情况下的公式计算的,不适用于浸入折射器。高斯分布噪声的均值为零且标准差为0.25,从而模拟了环境噪声为中等的情况。执行由互相关,对齐,求和和首次到达计算组成的超虚拟算法。通过对所有相关图进行对齐和求和,在这种情况下,可以消除二维超虚拟方法中所需的源-接收器对的固定位置。这项研究中提供的合成数据显示了在应用3D SVI之后准确的初次到达,并且迹线的SNR比实际迹线好得多。

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