Yu Zining, Hattori Katsumi, Zhu Kaiguang, Chi Chengquan, Fan Mengxuan, He Xiaodan
Key Laboratory of Geo-Exploration Instrumentation, Ministry of Education, Jilin University, Changchun 130061, China.
The College of Instrumentation and Electrical Engineering, Jilin University, Changchun 130061, China.
Entropy (Basel). 2020 Sep 27;22(10):1086. doi: 10.3390/e22101086.
To investigate the nonlinear spatio-temporal behavior of earthquakes, a complex network has been built using borehole strain data from the southwestern endpoint of the Longmenshan fault zone, Sichuan-Yunnan region of China, and the topological structural properties of the network have been investigated based on data from 2011-2014. Herein, six observation sites were defined as nodes and their edges as the connections between them. We introduced Multi-channel Singular Spectrum Analysis (MSSA) to analyze periodic oscillations, earthquake-related strain, and noise in multi-site observations, and then defined the edges of the network by calculating the correlations between sites. The results of the daily degree centrality of the borehole strain network indicated that the strain network anomalies were correlatable with local seismicity associate with the earthquake energy in the strain network. Further investigation showed that strain network anomalies were more likely to appear before major earthquakes rather than after them, particularly within 30 days before an event. Anomaly acceleration rates were also found to be related to earthquake energy. This study has revealed the self-organizing pre-earthquake phenomena and verified the construction of borehole networks is a powerful tool for providing information on earthquake precursors and the dynamics of complex fault systems.
为研究地震的非线性时空行为,利用中国四川 - 云南地区龙门山断裂带西南端点的钻孔应变数据构建了一个复杂网络,并基于2011 - 2014年的数据研究了该网络的拓扑结构特性。在此,将六个观测点定义为节点,它们之间的连接定义为边。我们引入多通道奇异谱分析(MSSA)来分析多站点观测中的周期性振荡、与地震相关的应变和噪声,然后通过计算站点之间的相关性来定义网络的边。钻孔应变网络日度中心性的结果表明,应变网络异常与应变网络中与地震能量相关的局部地震活动相关。进一步研究表明,应变网络异常更有可能在大地震之前而非之后出现,特别是在事件发生前30天内。还发现异常加速度率与地震能量有关。本研究揭示了地震前的自组织现象,并验证了钻孔网络的构建是提供地震前兆信息和复杂断层系统动力学的有力工具。