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Focal Mechanism Determination of Induced Microearthquakes in an Oil Field Using Full Waveforms from Shallow and Deep Seismic Networks

机译:利用浅层和深层地震全网波形确定油田诱发微地震的震源机制

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摘要

A new, high frequency, full waveform matching method is used to study the focalmechanisms of small, local earthquakes induced in an oil field, which are monitored by a sparse near-surface network and a deep borehole network. The determined source properties are helpful for understanding the local stress regime in this field. During the waveform inversion, we maximize both the phase and amplitude matching between the observed and modeled waveforms. We also use the polarities of the first P-wave arrivals and the average S/P amplitude ratios to better constrain the matching. An objective function is constructed to include all four criteria. For different hypocenters and source types, comprehensive synthetic tests show that our method is robust to determine the focal mechanisms under the current array geometries, even when there is considerable velocity inaccuracy. The application to several tens of induced microseismic events showed satisfactory waveform matching between modeled and observed seismograms. The majority of the events have a strike direction parallel with the major NE-SW faults in the region, and some events trend parallel with the NW-SE conjugate faults. The results are consistent with the in-situ well breakout measurements and the current knowledge on the stress direction of this region. The source mechanisms of the studied events together with the hypocenter distribution indicate that the microearthquakes are caused by the reactivation of preexisting faults. We observed that the faulting mechanism varies with depth, from strike-slip dominance at shallower depth to normal faulting dominance at greater depth.
机译:一种新的高频全波形匹配方法用于研究油田引起的小型局部地震的震源机制,并通过稀疏的近地表网络和深孔网络对其进行监测。确定的震源特性有助于理解该领域的局部应力状态。在波形反转过程中,我们将观察到的波形和建模波形之间的相位和幅度匹配最大化。我们还使用第一个P波到达的极性和平均S / P振幅比来更好地约束匹配。一个目标函数被构造为包括所有四个标准。对于不同的震源和震源类型,综合的综合测试表明,即使在速度误差较大的情况下,我们的方法也能确定当前阵列几何条件下的震源机制。在数十个诱发的微地震事件中的应用表明,模拟地震图和观测地震图之间的波形匹配令人满意。大多数事件的走向与该地区的主要NE-SW断层平行,有些事件的趋势与NW-SE共轭断层平行。结果与原位井突测量和该区域应力方向的当前知识相一致。所研究事件的震源机制以及震源分布表明,微地震是由先前存在的断层的重新激活引起的。我们观察到断层机制随深度变化,从浅层的走滑优势到较大深度的正常断层优势。

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