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Magnetic constraints on the spatial distribution of seismic activity

机译:磁约束对地震活动空间分布的影响

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Abstract The lithospheric magnetic field (LMF) in China and its surrounding are calculated using the spherical harmonic coefficients given by the NGDC-720 model. The LMF comes from the magnetization of minerals in the crust and in the uppermost mantle. It may, therefore, provide unique insight into lithospheric tectonic processes and mechanisms. Here, we study the geomagnetic manifestation of active tectonic blocks, and find a close correlation between the LMF and seismicity. Many large faults are found to closely overlap with magnetic anomalies, or are distributed along the boundaries of magnetic anomalies. Earthquakes in these fault regions have occurred on the boundaries of magnetic anomalies, or in the transition zones between positive and negative anomalies. We analyze the components of the LMF, and the LMFs at different altitudes, finding that the vertical component, B ~(z) at 200?km, is the most related to seismic activity. Relevant physical mechanisms are also discussed. We propose that the stress or viscosity differences caused by temperature variations, which manifest in the LMF, may be the predominant reason for the correlation between the LMF and seismic activity along large faults.
机译:摘要利用NGDC-720模型给出的球谐系数计算了中国及其周边地区的岩石圈磁场(LMF)。 LMF来自地壳和最上层地幔中矿物的磁化。因此,它可以提供岩石圈构造过程和机制的独特见解。在这里,我们研究了活动构造块的地磁表现,并发现了LMF和地震活动性之间的密切关系。发现许多大型断层与磁异常紧密重叠,或沿着磁异常的边界分布。这些断层区域的地震发生在磁异常的边界上,或者发生在正异常与负异常之间的过渡带中。我们分析了LMF的分量以及不同高度的LMF,发现垂直分量B〜(z)在200?km与地震活动关系最大。还讨论了相关的物理机制。我们认为,LMF中出现的由温度变化引起的应力或粘度差异可能是LMF与大型断层地震活动之间相关性的主要原因。

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