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A migration-based location method using improved waveform stacking for microseismic events in a borehole system

机译:基于迁移的基于钻孔系统中微震事件的波形的位置方法

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摘要

The migration-based microseismic event location methods using waveform stacking algorithms are widely used for hydro-fracturing monitoring. These methods have the advantage of not requiring the accurate first arrival time around a detected event, which is more suitable for noisy data than classical travel time-based methods. However, accuracy of these methods can be affected under the condition of relatively low signal-to-noise ratio (SNR). Therefore, in order to enhance the location accuracy of microseismic events in a borehole system, we have proposed a migration-based location method using improved waveform stacking with polarity correction based on a master-event technique, which optimizes the combination way of P- and S-wave waveform stacking. This method can enhance the convergence of the objective function and the location accuracy for microseismic events as compared to the conventional waveform stacking. The proposed method has been successfully tested by using synthetic data example and field data recorded from one downhole monitoring well. Our study clearly indicates that the presented method is more viable and stable under low SNR.
机译:使用波形堆叠算法的基于迁移的微震事件定位方法广泛用于水力压裂监测。这些方法的优点是不需要在检测到的事件周围围绕检测到的事件准确到达时间,这更适合于噪声数据而不是基于经典的基于行程的方法。然而,在相对低信噪比(SNR)的情况下,这些方法的准确性可能会受到影响。因此,为了提高钻孔系统中微震事件的位置准确性,我们提出了一种基于迁移的位置方法,使用基于主事件技术的极性校正的改进波形堆叠,从而优化了P-的组合方式S波波形堆叠。与传统波形堆叠相比,该方法可以增强目标函数的收敛和微震事件的位置精度。通过使用从一个井下监测井中记录的合成数据示例和现场数据成功地测试了所提出的方法。我们的研究清楚地表明,呈现的方法在低SNR下更加可行且稳定。

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