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Variation dynamics of the complex topology of a seismicity network

机译:地震活动网络复杂拓扑的变化动力学

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Reduction in the scaling exponent of the frequencymagnitude power law of regional seismic activity as a precursor to sizable earthquakes has been widely documented and debated. Recently, postulation based on a modified sand-pile model has been proposed as a plausible explanation. The model demonstrates systematic variations in the frequencysize scaling exponent of avalanches through the introduction of varying degrees of randomness to the conventional regular, nearest-neighbor network connection. In this study, we examined a connection network of successive events in the Taiwan seismicity, in an attempt to shed lights on the behavior of the actual earthquake network. The revealed nature of connection is indeed quite different from the nearest-neighbor interaction usually presumed in most conventional seismicity modeling. However, monthly variations in the statistics of the connection degree, the connection time and the connection distance that reflect important transition dynamics of the regional seismicity network, are inconsistent with the postulation based on the modified sand-pile model that attributes the scaling exponent variation to the varying degree of long range connections.
机译:广泛记录和辩论了作为大地震先兆的区域地震活动的频率幅度幂定律的比例指数的减小。近来,已经提出了基于改进的沙堆模型的假设作为合理的解释。该模型通过向常规规则的最近邻居网络连接中引入不同程度的随机性,证明了雪崩频率大小缩放指数的系统变化。在这项研究中,我们研究了台湾地震活动中一系列连续事件的联系网络,以试图揭示实际地震网络的行为。所揭示的连接本质确实与大多数传统地震活动性建模中通常假定的最近邻相互作用有很大不同。但是,连接度,连接时间和连接距离的统计数据的每月变化反映了区域地震活动网络的重要过渡动态,这与基于改进的沙堆模型的假设相矛盾,该模型将尺度指数变化归因于不同程度的远程连接。

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