We present an analysis of the seismicity of northern Iran in the period between 2005 and 2016 using a recently introduced method based on concepts '/> Analysis of the 2005–2016 Earthquake Sequence in Northern Iran Using the Visibility Graph Method
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Analysis of the 2005–2016 Earthquake Sequence in Northern Iran Using the Visibility Graph Method

机译:伊朗北部2005 - 2016地震序列的可见图方法分析

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AbstractWe present an analysis of the seismicity of northern Iran in the period between 2005 and 2016 using a recently introduced method based on concepts of graph theory. The method relies on the inter-event visibility defined in terms of a connectivity degree parameter,k, which is correlated with the earthquake magnitude,M. Previous studies show that the slopemof the line fitting thekMplot by the least squares method also observes a relationship with thebvalue from the Gutenberg–Richter law, thus rendering the graph analysis useful to examine the seismicity of a region. These correlations seem to hold for the analysis of relatively small sequences of earthquakes, offering the possibility of studying seismicity parameters in time. We apply this approach to the case of the seismicity of northern Iran, using an earthquake catalog for the tectonic seismic regions of Azerbaijan, Alborz, and Kopeh Dagh. We use results drawn for this region with the visibility graph approach in combination with results from other similar studies to further improve the universal relationship betweenmandb, and show that the visibility graph approach can be considered as a valid alternative for analyzing regional seismicity properties and earthquake sequences.]]>
机译: k ,其与地震幅度相关,<重点类型=“斜体”> m < /重点>。以前的研究表明,斜坡<重点类型=“斜体”> m <重点类型=“斜体”> k - <重点类型=“斜体”> m 由最小二乘法的绘图还观察到与古龄 - 填料法的<重点类型=“斜体”> B 值的关系,从而使图表分析用于检查区域的地震性。这些相关性似乎是对地震相对小序列的分析,提供了在时间上研究地震性参数的可能性。我们将这种方法应用于伊朗北部地震性的案例,利用阿塞拜疆,alborz和Kopeh dagh的构造地震区域的地震目录。我们利用该区域绘制的结果与可见性图表方法结合使用其他类似研究的结果,以进一步提高<重点类型=“斜体”> M 和<重点类型=“斜体”> B之间的普遍关系,并表明可见性图形方法可以被认为是分析区域地震性特性和地震序列的有效替代方案。]]>

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