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Illuminating the Rupturing of Microseismic Sources in an Injection-Induced Earthquake Experiment

机译:在注射诱导的地震实验中照亮微震源的破裂

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摘要

We analyze source parameters of M-w-3.9 to -3.1 induced earthquakes during an in situ fluid injection experiment in France using the spectral ratio method based on empirical Greeds function. We choose 10 event pairs with highly similar waveforms and resolve their spectral ratios using multiple S wave windows. We find that master events ruptured meter-scale source patches with <1-mu m slip in a preexisting fracture network oriented differently from the injected plane. The temporal correlation between master earthquake occurrence and injection pressure peak and the relatively low ratio of stress drop to crustal strength suggest that both fluid pressure perturbation and aseismic deformation play important roles in inducing the earthquakes. The comparison between stress drops of induced earthquakes in the experiment and in the central United States indicates a dependency of stress drop on crustal shear strength.
机译:使用基于经验贪婪功能的光谱比法,分析M-W-3.9至-3.1诱导地震的源参数。 我们选择10个事件对,具有高度相似的波形,并使用多个波窗来解决它们的光谱比率。 我们发现主事件与从注入的平面不同的预先存在的骨折网络中的仪表尺度源贴片破裂仪表尺度源贴片。 总部地震发生和注射压力峰值之间的时间相关性和应力下降与地壳强度的相对低比表明,流体压力扰动和抗攻变形在诱导地震中起重要作用。 实验中诱导地震应力下降的比较表明应力下降对地壳剪切强度的依赖性。

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