首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Stress tensor inversion using detailed microearthquake information and stability constraints: Application to Olfus in southwest Iceland
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Stress tensor inversion using detailed microearthquake information and stability constraints: Application to Olfus in southwest Iceland

机译:利用详细的微地震信息和稳定性约束进行应力张量反演:在冰岛西南部的奥尔夫斯应用

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Using detailed microearthquake data, we present a stress tensor inversion scheme with new methods for selecting the fault planes and allowing for errors in the focal mechanisms. The nonuniqueness of earthquake focal mechanisms is accounted for in our inversion scheme through the introduction into the inversion of a range of well-fitting focal mechanisms for each event. The range of focal mechanisms significantly improves the quality of the estimated stress tensor. Relative localization of clusters of microearthquakes is used to obtain information about which nodal plane could be correct fault plane. The clusters frequently fall on a common fault plane, and if there are acceptable focal mechanisms where one nodal plane has orientation similar to the common plane, we assume this is the correct fault plane for the event. If there is no predefined fault plane, we utilize a simple Mohr-Coloumb failure criterion to obtain a physical choice of fault plane between the two nodal planes in the focal mechanism. The nodal plane with highest relative instability is chosen as the fault plane. Differences between the instability and the standard slip angle criterion are investigated. The new inversion scheme has been applied to microearthquake data from the Olfus area in the vicinity of the southwest Iceland triple junction. We estimate an oblique strike-slip state of stress, maximum horizontal stress at N30 deg E, and minimum horizontal stress at N60 deg W, with significant normal faulting influence. The instability fault selection criterion predicts very well the orientation of faults mapped by relative localization.
机译:利用详细的微地震数据,我们提出了一种应力张量反演方案,其中包括选择断层平面和允许震源机制误差的新方法。地震震源机制的非唯一性在我们的反演方案中得到了解决,方法是将每个事件的一系列合适震源机制引入反演中。震源机制的范围显着提高了估计应力张量的质量。微地震簇的相对定位用于获得有关哪个节点平面可能是正确的断层平面的信息。这些星团经常落在一个共同的断层平面上,如果有一个节点平面的取向与共同的平面相似的可接受的震源机制,我们就认为这是该事件的正确断层平面。如果没有预定义的断层,我们将利用简单的Mohr-Coloumb破坏准则来获得焦点机制中两个节点平面之间的断层的物理选择。选择相对不稳定性最高的节点平面作为断层平面。研究了不稳定性和标准滑移角准则之间的差异。新的反演方案已应用于冰岛西南部三重交界处附近Olfus地区的微地震数据。我们估计应力的倾斜走滑状态,N30度E处的最大水平应力和N60度W处的最小水平应力,具有明显的正断层影响。不稳定性故障选择标准很好地预测了通过相对定位映射的故障方向。

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