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Study on geophone coupling and attenuating compensatory of low-depression velocity layer in desert area

机译:沙漠地区低洼速度层的地震静电耦合及衰减补偿研究

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In a desert area, it is difficult to couple geophones with dry sands. A low and depression velocity layer can seriously attenuate high frequency components of seismic data. Therefore, resolution and signal-to-noise (S/N) ratio of seismic data deteriorate. To enhance resolution and S/N ratio of seismic data, we designed a coupling compensatory inverse filter by using the single trace seismic data from Seismic Wave Detect System (SWDS) and common receivers on equal conditions. We designed an attenuating compensatory inverse filter by using seismic data from a microseismogram log. At last, in order to convert a shot gather from common receivers to a shot gather from SWDS, we applied the coupling compensatory inverse filter to the shot gather from common receivers. And then we applied the attenuating compensatory inverse filter to the coupling stacked seismic data to increase its resolution and S/N ratio. The results show that the resolution of seismic data from common receivers after processing by using the coupling compensatory inverse filter is nearly comparable with that of data from SWDS. It is also found that the resolution and S/N ratio have been enhanced after the use of attenuating compensatory inverse filter. From the results, we can conclude that the filters can compensate high frequencies of seismic data. Moreover, the low frequency changed nearly.
机译:在沙漠地区,很难将地震孔耦合用干燥的沙子。低凹陷速度层可以认真衰减地震数据的高频分量。因此,地震数据的分辨率和信号对噪声(S / N)比率恶化。为了增强地震数据的分辨率和S / N比,我们设计了通过使用来自地震波检测系统(SWDS)和公共接收器的单迹线地震数据设计了耦合补偿性逆滤波器。我们通过使用微震图日志的地震数据设计了衰减补偿性逆滤波器。最后,为了将镜头从公共接收器转换为从SWDS收集到镜头,我们将耦合补偿性逆滤波器从公共接收器应用于镜头。然后我们将衰减补偿逆滤波器应用于耦合堆叠的地震数据,以提高其分辨率和S / N比。结果表明,通过使用耦合补偿逆滤波器处理后,通过使用耦合补偿逆滤波器进行处理的地震数据的分辨率与来自SWDS的数据几乎相当。还发现,在使用衰减补偿性逆滤波后,分辨率和S / N比已经提高。从结果中,我们可以得出结论,过滤器可以补偿地震数据的高频。此外,低频变化几乎。

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