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首页> 外文期刊>Annals Of Geophysics >ALGORITHM FOR CONSTRAINING EARTHQUAKE SOURCE DOMAINS AND ESTIMATING THEIR POTENTIAL MAGNITUDES FROM GEOPHYSICAL DATA
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ALGORITHM FOR CONSTRAINING EARTHQUAKE SOURCE DOMAINS AND ESTIMATING THEIR POTENTIAL MAGNITUDES FROM GEOPHYSICAL DATA

机译:用于约束地震源域的算法和地球物理数据估算其潜在量大的算法

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A two-stage algorithm for constraining earthquake source domains and estimating expected magnitudes of the potential earthquakes is suggested. Constraining of the EQ source domains in the crystalline crust of the study area is carried out by means of geophysical proxies derived from comparison of physical and mechanical properties of rocks in the hypocenters of past earthquakes and in the nodes of 3D grid covering appropriate models. At the second stage forecasting of the expected EQ magnitudes in the constrained source domains is fulfilled using artificial neural network taught by correspondence of the shear modulus determined in the hypocenters of past earthquakes and EQ magnitudes. Application of this algorithm to the Altai-Sayan seismically active area enabled to delineate earthquake source domains at different depths. Two of them were previously guessed from the surface seismicity data and interpreted in terms of the fault tectonics, whereas others have been constrained for the first time. The results of research indirectly support the hypothesis that rheological weakness of rocks is likely to be responsible for common physical and mechanical conditions controlling the occurrence of the earthquakes and evolution of the faults. Another important inference is that neither the statistical information on past seismicity alone nor speculations on fault tectonics are sufficient to constrain the ESDs in the Earth’s crust.
机译:提出了一种用于约束地震源域和估算潜在地震估计势幅度的两阶段算法。通过从过去地震的低封闭器中的岩石的物理和力学性质和覆盖适当模型的3D网格的节点来实现研究区域的结晶外壳中的晶体地壳中的晶体地壳中的晶体壳体的约束。在第二阶段,使用通过在过去地震的低封闭器中确定的剪切模量的对应构成的人工神经网络来满足受约束源区中的预期EQ幅度的预期预测。该算法在Altai-Sayan地震活动区域的应用使其在不同深度下描绘地震源域。其中两个以前从地表地震性数据猜测并在故障构造方面解释,而其他人则是第一次约束。研究结果间接地支持假设,即岩石的流变弱势可能负责控制地震发生的常见物理和机械条件和故障的演变。另一个重要推论是,对过去地震性的统计信息也不是故障构造的猜测都足以限制地壳中的eSD。

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