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Methodology for dense spatial sampling of multicomponent recording of converted waves in shallow marine environments

机译:浅海环境中转换波多分量记录的密集空间采样方法

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摘要

A widespread use of converted waves for shallow marine applications is hampered by spatial aliasing and field efficiency. Their short wavelengths require dense spatial sampling which often needs to be achieved by receivers deployed on the seabed. We adopted a new methodology where the dense spatial sampling is achieved in the common-receiver domain by reducing the shot spacing. This is done by shooting one track multiple times and merging the shot lines in an effective manner in a separate processing step. This processing step is essential because positioning errors introduced during the field measurement can become significant in the combined line, particularly when they exceed the distance between two adjacent shot positions. For this processing step, a particular shot line is used as a reference line and relative variations in source and receiver positions in the other shot lines are corrected for using crosscorrelation. The combined shot line can subsequently be regularized for further processing. The methodology is adopted in a field experiment conducted in the Danube River in Hungary. The aim of the seismic experiment was to acquire properly sampled converted-wave data using a multicomponent receiver array. The dense spatial sampling was achieved by sailing one track 14 times. After correcting for the underwater receiver positions using the direct arrival, the crosscorrelation step was applied to merge the different shot lines. The successfully combined result is regularized into a densely sampled data set free of visible spatial aliasing and suitable for converted-wave processing.
机译:空间混叠和场效率阻碍了转换波在浅海应用中的广泛使用。它们的短波长需要密集的空间采样,这通常需要部署在海床上的接收器来实现。我们采用了一种新的方法,其中通过减小发射间隔在公共接收器域中实现了密集的空间采样。这是通过多次拍摄一条轨道并在单独的处理步骤中以有效方式合并拍摄线来完成的。该处理步骤至关重要,因为在野外测量期间引入的定位误差在组合线中可能变得很明显,尤其是当它们超过两个相邻射击位置之间的距离时。对于该处理步骤,将特定的发射线用作参考线,并使用互相关来校正其他发射线中源和接收器位置的相对变化。合并的生产线随后可以进行正规化以进行进一步处理。该方法在匈牙利的多瑙河进行的野外试验中被采用。地震实验的目的是使用多分量接收器阵列获取正确采样的转换波数据。密集的空间采样是通过航行14条轨迹来实现的。在使用直接到达校正水下接收器位置之后,应用互相关步骤合并不同的发射线。成功组合的结果将被正规化为一个密集采样的数据集,该数据集没有可见的空间混叠,并且适合于转换波处理。

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