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首页> 外文期刊>Journal of Applied Geophysics >Inversion-based directional deconvolution to remove the effect of a geophone array on seismic signal
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Inversion-based directional deconvolution to remove the effect of a geophone array on seismic signal

机译:基于反演的方向性反褶积消除地震检波器阵列对地震信号的影响

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摘要

The geophone array, as a directivity filter, has been widely used in seismic data acquisition for suppressing noises and alias-free sampling, and its negative effects have long been recognized by analyzing its response to harmonic waves. We extended the analysis by considering its effects on seismic signals, especially on amplitude variation with offset (AVO). Taking the ratio of the array length to the dominant wavelength as a reference, we analyzed the attenuations of the peak amplitude and the peak frequency with the incident angle for the Ricker wavelet. When an array with a ratio of 1.0 is used, the peak amplitude and the peak frequency decay to around 50% and 80% respectively at an angle of 40. The effect of an array is directivity-dependent, and it acts on the seismic record as a nonstationary filter. We present an inversion-based solution to remove the directional effects. On the approximation of the horizontal stratified medium, the horizontal velocity of the seismic reflection can be concisely expressed in terms of its reflection time, offset, and rms velocity, which facilitates the implementation of directional deconvolution. The method was tested using model-based and logging-based synthetic data. (C) 2016 Elsevier B.V. All rights reserved.
机译:地震检波器阵列作为方向性滤波器已被广泛用于地震数据采集中,以抑制噪声和无混叠采样,并且通过分析其对谐波的响应,人们早已认识到其负面影响。我们通过考虑分析对地震信号的影响,特别是对具有偏移的振幅变化(AVO)的影响来扩展分析。以阵列长度与主波长之比作为参考,我们分析了Ricker小波的峰值振幅和峰值频率与入射角的衰减。当使用比率为1.0的阵列时,峰值振幅和峰值频率分别以40度角衰减至50%和80%左右。阵列的作用与方向性有关,并且会影响地震记录作为非平稳过滤器。我们提出了一种基于反演的解决方案,以消除方向效应。在近似水平分层介质的情况下,地震反射的水平速度可以用其反射时间,偏移量和均方根速度来简明表示,这有助于实现方向性反褶积。使用基于模型和基于记录的综合数据对该方法进行了测试。 (C)2016 Elsevier B.V.保留所有权利。

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