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Evaluating the effect of the joining platform on seismic data acquired by geophones mounted to rigid media

机译:评估连接平台对安装在刚性介质上的地震检波器采集的地震数据的影响

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摘要

High-resolution shallow seismic data can be acquired efficiently by using rigid media to rapidly deploy geophones. Minor changes Occur to the recorded wavefield when geophones and spikes are rigidly attached to a bar of square steel tubing. We show through forward modeling and frequency-domain inverse filtering that the bar acts as a linear filter on the data acquired. This filter contains both a phase shift and an amplitude scalar and is a function of spike-to-receiver offset on the bar. Filter characteristics are independent of phase-moveout direction or spike and receiver placement. By combining the phase-shift and the amplitude scalar, frequency-domain filter generation proved more computationally efficient than previously employed time-domain algorithms. While statistical methods show the amplitude scalar in the filter to vary from shot to shot, the phase shift appears to remain constant. This research shows that rigidly mounted geophones have the ability to record the seismic wavefield with high fidelity, thus making the acquisition of ultra-shallow seismic data more efficient.
机译:通过使用刚性介质快速部署地震检波器,可以有效地获取高分辨率浅层地震数据。当地震检波器和尖峰钉牢固地固定在方钢管上时,记录的波场会发生微小变化。我们通过正向建模和频域逆滤波表明,该条形对获取的数据起线性滤波器的作用。该滤波器既包含相移又包含幅度标量,并且是条形图上尖峰到接收器偏移的函数。滤波器特性与移相方向或尖峰和接收器放置无关。通过组合相移和幅度标量,频域滤波器的生成比以前采用的时域算法具有更高的计算效率。虽然统计方法显示滤波器中的振幅标量因镜头而异,但相移似乎保持恒定。这项研究表明,刚性安装的地震检波器具有高保真度记录地震波场的能力,从而使超浅地震数据的采集更加有效。

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