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Temporal Relationship Between Injection Rates and Induced Seismicity

机译:注射率与诱导地震性之间的时间关系

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Normalized cross-correlation of effective functions was originally developed to differentiate induced and natural seismicity. We apply this methodology to data sets acquired during hydraulic stimulation of shale gas to study temporal relationship between seismicity and the injection. Delays of seismicity induced by hydraulic fracturing are compared with delays of seismicity related to changes of the water level in a dam. A new observation is made; we show that seismicity induced by hydraulic fracturing and measured by the normalized cross-correlation can have very positive to even short negative delay after the injection. We explain this observation by rapid decline of induced seismicity after decrease of injection. On the contrary, we show that the seismicity triggered by water impounding in a dam is characterized by longer delays due to much greater distance between lake and the induced seismicity. We show how it is possible to measure the delay by the cross-correlation methodology despite periodicity of the signals.
机译:有效函数的归一化互相关最初用于区分诱发地震和自然地震活动。我们将这种方法应用于页岩气水力增产期间获得的数据集,以研究地震活动与注入之间的时间关系。将水力压裂引起的地震活动延迟与大坝水位变化引起的地震活动延迟进行了比较。进行了新的观察;我们表明,水力压裂诱发的地震活动和通过归一化互相关测量的地震活动在注入后可能具有非常正的延迟,甚至很短的负延迟。我们通过减少注入后诱发地震活动的快速下降来解释这一观察结果。相反,我们表明,由于湖泊与诱发地震之间的距离更大,大坝蓄水引发的地震活动具有更长的延迟。我们展示了在信号具有周期性的情况下,如何通过互相关方法测量延迟。

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