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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Two methods for determining geophone orientations from VSP data
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Two methods for determining geophone orientations from VSP data

机译:从VSP数据确定地震检波器方位的两种方法

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Vertical seismic profile (VSP) data are usually acquired with three-component geophones of unknown azimuthal orientation. The geophone orientation must be estimated from the recorded data as a prerequisite to processing such as P-and S-wave separation, calculation of wave-incident directions, and 3D migration. We compare and combine two methods for estimating azimuthal orientation by least-squares fitting over a large number of shots. Combining the two methods can be done in an automated manner, which provides more accurate estimates of the geophone orientations than previous methods. In the polarization-plane method, we calculate the polarization plane of the first P-wave arrival. Then we subtract the source azimuth to determine the geophone orientation, independently for each geophone, with an angular uncertainty of pi, and with no accumulated errors. In the relative-angle method, we obtain relative angles between adjacent geophone pairs using trace crosscorrelations, and operate on all coherent signals (even noise). Swapped geophone components can be detected automatically using the polarization-plane method. The main limitation of these (and all other known) methods is that uncertainties associated with path refraction are not estimated, unless some geophones have a priori known orientations, or we have a known earth model to correct for refraction.
机译:垂直地震剖面(VSP)数据通常是使用方位角方向未知的三分量检波器采集的。地震检波器的方位必须从记录的数据中估算出来,作为诸如P波和S波分离,波入射方向的计算以及3D迁移等处理的前提。我们比较并结合了两种方法,可通过对大量镜头进行最小二乘拟合来估计方位角方向。可以以自动化方式完成这两种方法的组合,与以前的方法相比,这可以提供对地震检波器方位的更准确的估计。在极化平面方法中,我们计算了第一个P波到达的极化平面。然后,我们减去源方位角来确定地震检波器的方向,对于每个地震检波器,其角度不确定度均为pi,并且没有累积误差。在相对角度方法中,我们使用迹线互相关来获取相邻地震检波器对之间的相对角度,并对所有相干信号(甚至噪声)进行运算。可以使用极化平面方法自动检测交换的检波器组件。这些(以及所有其他已知的)方法的主要局限性在于,除非某些地震检波器具有先验的已知方向,或者我们有已知的地球模型来校正折射,否则不会估计与路径折射相关的不确定性。

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