首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Interacting Intraplate Fault Systems in Australia: The 2012 Thorpdale, Victoria, Seismic Sequences
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Interacting Intraplate Fault Systems in Australia: The 2012 Thorpdale, Victoria, Seismic Sequences

机译:在澳大利亚的互动故障系统互动:2012年Thorpdale,维多利亚,地震序列

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Using a new seismic waveform data set, we locate 234 earthquakes and estimate source parameters (focal mechanisms, magnitude, and stress drop) of the two largest earthquakes (E1 and E2) in the 2012 seismic sequence in Thorpdale, Victoria. The focal mechanisms suggest thrust faulting, consistent with previous observations in southeast Australia. The estimated magnitudes are M_w 4.9 ± 0.14 (E1) and 4.3 ± 0.1 (E2). The estimates of stress drop 57 ± 7.4 MPa (E1) and 28 ± 2.4 MPa (E2) reflect strength of faults in an intraplate environment. By analyzing spatiotemporal distribution of aftershocks, we show that E1 and E2 reflect two separate seismic sequences about a month apart. E1 and E2 ruptured two adjacent faults with orientations 218°/78°/78° (Fault 1) and 134°/27°/171° (Fault 2), respectively, where angles indicate strike/dip/slip rake. To test causal mechanism of fault interaction, we performed Coulomb stress modeling, which shows very weak unloading of E2 by E1. Thus, we infer that fault interaction might instead reflect remotely triggered fluid diffusion. Also, a local rotation of the stress field proceeding E1 might have favorably reoriented Fault 2 for failure. Finally, we identify an apparent correlation between high heat flow and seismicity in southeastern Australia, suggesting a combination of mechanisms including transient stress perturbations and lithospheric thermal weakening associated with high heat flow as the principal factors localizing intraplate seismicity.
机译:使用新的地震波形数据集,我们在维多利亚州Thorpdale的2012年地震序列中找到了234个地震(E1和E2)的地震(E1和E2)的估算源参数(焦点机制,幅度和压力下降)。焦点机制建议推力断裂,与澳大利亚东南部的先前观察一致。估计的幅度为M_W 4.9±0.14(E1)和4.3±0.1(E2)。应力下降57±7.4MPa(E1)和28±2.4MPa(E2)的估计反映了腔内环境中的断层强度。通过分析余震的时空分布,我们表明E1和E2反映了两个单独的地震序列约一个月。 E1和E2分别用方向218°/ 78°/ 78°(故障1)和134°/ 27°/ 171°(故障2)的两个相邻断层破坏了两个相邻的故障,其中角度表示撞击/浸渍/滑耙。为了测试故障相互作用的因果机制,我们进行了库仑应力建模,其显示E2的卸载非常弱。因此,我们推断出故障相互作用可以反映远程触发的流体扩散。而且,应力场进行E1的局部旋转可能具有有利地重新定向故障2以进行故障。最后,我们确定了澳大利亚东南部的高热流和地震性的表观相关性,暗示了包括瞬态应力扰动和与高热流相关的岩石间热弱的机制的组合,因为定位内部内膜地震性的主要因素。

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