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An improved method for hydrofracture-induced microseismic event detection and phase picking

机译:水力压裂引起的微震事件检测和相拾取的一种改进方法

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摘要

The ability to detect small microearthquakes and identify their P- and S-phase arrivals is a key issue in hydrofracture downhole monitoring because of the low signal-to-noise ra-tios (S/N). An array-based waveform correlation approach (matched filter) is applied to improve the detectability of small magnitude events with mechanisms and locations simi-lar to a nearby master event. After detecting the weak events, a transformed spectrogram method is used to identify the phase arrivals. The technique has been tested on a downhole monitoring data set of the microseismic events induced by hydraulic fracturing. It is shown that, for this case, one event with a S/N around 6 dB, which is barely detectable using an array-stacked short-time average/long-time average (STA/ LTA) detector under a reasonable false alarm rate, is readily detected on the array-stacked correlation traces. The trans-formed spectrogram analysis of the detected events improves P- and S-phase picking.
机译:由于信噪比(S / N)低,因此能够检测小型微地震并识别其P相和S相到达的能力是水力压裂井下监测的关键问题。应用基于阵列的波形相关方法(匹配滤波器)来提高小幅度事件的可检测性,其机制和位置类似于附近的主事件。在检测到弱事件之后,使用变换的频谱图方法来识别相位到达。该技术已经在由水力压裂引起的微地震事件的井下监测数据集上进行了测试。结果表明,在这种情况下,一个事件的信噪比约为6 dB,使用阵列堆叠的短时平均/长时平均(STA / LTA)检测器在合理的误报率下几乎无法检测到该事件。在阵列堆叠的相关迹线上很容易检测到。对检测到的事件进行变换的频谱图分析,可以改善P相和S相的拾取。

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