Min Seungsik, Lim Gyuchang
Department of Natural Science, Korea Naval Academy, Changwon 51704, Korea.
Kyungpook Institute of Oceanography, University of Kyungpook, Daegu 41566, Korea.
Entropy (Basel). 2021 Sep 21;23(9):1236. doi: 10.3390/e23091236.
In this work, a Korean peninsula earthquake network, constructed via event-sequential linking known as the Abe-Suzuki method, was investigated in terms of network properties. A significance test for these network properties was performed via comparisons with those of two random networks, constructed from two approaches, that is, () and () . The Abe-Suzuki earthquake network has a clear difference from the two random networks. However, the two shuffled networks exhibited completely different functions, and even some network properties for one shuffled datum are significantly high and those of the other shuffled data are low compared to actual data. For most cases, the event-shuffled network showed a functional similarity to the real network, but with different exponents/parameters. This result strongly claims that the Korean peninsula earthquake network has a spatiotemporal causal relation. Additionally, the Korean peninsula network properties are mostly similar to those found in previous studies on the US and Japan. Further, the Korean earthquake network showed strong linearity in a specific range of spatial resolution, that is, 0.20°~0.80°, implying that macroscopic properties of the Korean earthquake network are highly regular in this range of resolution.
在这项工作中,我们研究了通过被称为阿部 - 铃木方法的事件序列链接构建的朝鲜半岛地震网络的网络特性。通过与由两种方法构建的两个随机网络的特性进行比较,对这些网络特性进行了显著性检验,这两种方法即()和()。阿部 - 铃木地震网络与这两个随机网络有明显差异。然而,这两个重排网络表现出完全不同的功能,甚至与实际数据相比,一个重排数据的某些网络特性显著较高,而另一个重排数据的则较低。在大多数情况下,事件重排网络与真实网络表现出功能相似性,但指数/参数不同。这一结果有力地表明朝鲜半岛地震网络存在时空因果关系。此外,朝鲜半岛的网络特性大多与先前关于美国和日本的研究结果相似。此外,朝鲜地震网络在特定的空间分辨率范围内,即0.20°至0.80°,表现出很强的线性,这意味着在该分辨率范围内,朝鲜地震网络的宏观特性具有高度的规律性。