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Automation of shear-wave splitting measurements using cluster analysis

机译:使用聚类分析自动化剪切波分裂测量

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The propagation of two orthogonally polarized shear waves, or shear-wave splitting, is arguably the most robust indication of seismic anisotropy in the Earth. This splitting can be parameterized in terms of the polarization of the fast shear-wave phi and the lag time between fast and slow components deltat. These two parameters provide constraints on the mechanism causing the anisotropy. All methods of calculating splitting require a shear-wave analysis window to be selected. Then the phi and deltat that best account for the splitting in that window are calculated. Conventionally the shear-wave analysis window is picked manually. However, manual window selection is laborious and also very subjective; in many cases different windows give very different results. We present a method for automating the selection of the window. First, the splitting analysis is performed for a range of window lengths. Then a cluster analysis is applied in order to find those measurements that are stable over many different windows. Once clusters of stable results have been found, the final choice of shear-wave analysis window corresponds to the measurement with the lowest error in the cluster with the lowest variance. Resulting estimates of phi and deltat are objective, and very large datasets can be analyzed easily. The success of the technique is illustrated with application to a microseismic dataset of 324 events, which confirms previously published results using manually selected analysis windows.
机译:两个正交极化的剪切波或剪切波分裂的传播可以说是地球上地震各向异性的最有力的指示。可以根据快速剪切波phi的极化和快速分量与慢速分量之间的延迟时间来参数化该分裂。这两个参数限制了引起各向异性的机理。所有计算分裂的方法都需要选择剪切波分析窗口。然后计算出最能说明该窗口中拆分的phi和deltat。常规上,剪切波分析窗口是手动选择的。但是,手动选择窗口既费力又很主观。在许多情况下,不同的窗口会产生非常不同的结果。我们提出了一种自动选择窗口的方法。首先,针对一定范围的窗口长度执行分割分析。然后,应用聚类分析以找到在许多不同窗口上稳定的那些测量值。一旦找到稳定结果的簇,剪切波分析窗口的最终选择将对应于具有最小方差的簇中误差最小的测量。 phi和deltat的结果估计是客观的,并且可以轻松分析非常大的数据集。将该技术应用于324个事件的微震数据集,说明了该技术的成功,该数据集使用手动选择的分析窗口确认了先前发布的结果。

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